Here's a recent publication on China's outer space activities both from a technological and diplomacy point of view. The issue brief, published by the Observer Research Foundation, has been co-authored with my colleague, Rahul Prakash.
China conducted its first manual space docking in June 2012, a feat so far achieved by only two other countries: the US and Russia. This particular achievement, along with several others in the Crecent years, highlights the importance attached by China to building its expertise and assets in outer space. China has emphasised that these are for 'peaceful purposes'; still, it might be naïve to accept such declarations at face value. China's increasing advances in space technology under the direction of the PLA are likely to have serious military implications. There is no denying the fact that these applications have economic and commercial value but the military utility should not be ignored.
For the full issue brief, click here.
An interesting aspect of China's programme is that it is promoting commercial initiatives within scientific laboratories in a big way. While on the one hand China's aerospace industry is expanding, Beijing has also frequently emphasised the national security dimensions of space. In one of his more recent statements, General Xu Qiliang, Commander of the PLA Air Force, reiterated the critical role played by space exploration in furthering China's national security interests. Earlier, the space White Paper of 2011 had also elucidated this stand: “The purposes of China's space industry are: to explore outer space and to enhance understanding of the Earth and the cosmos; to utilize outer space for peaceful purposes, promote human civilization and social progress, and to benefit the whole of mankind; to meet the demands of economic development, scientific and technological development, national security and social progress; and to improve the scientific and cultural knowledge of the Chinese people, protect China's national rights and interests, and build up its national comprehensive strength.”
This Issue Brief examines the major achievements of China in outer space in recent years, both from a technological as well as an arms-control perspective. The paper concludes by looking at the implications for India, both in the domain and in the broader regional security context.
China's Vision in Space
Since 1949, Chinese leaders have paid close attention and given importance to the utilisation of space for the country's overall development. While China began its space programme as early as in 1956, the intellectual foundations were laid with the establishment of research centres such as the Beijing University of Aeronautics and Astronautics in October 1952. Beihang University, as it is currently known, is closely linked with the various arms of the government; engineers associated with the recent Shenzhou space project, Qi Faran and Wang Yongzhi, are products of Beihang. These efforts continued well into the 1960s, with China making significant investments in research and development (R&D) and also establishing important institutions such as the Academy of Satellite Spaceship, today known as the China
Academy of Space Technology (CAST), responsible for spacecraft design and abrication. China also started launching sounding rockets into space for suborbital flights. However, the space programme could not really pick up pace due to economic and political turmoil in the country following the Cultural Revolution.
It was in 1970 that China achieved a major success by launching its first satellite, the “Dongfanghong-I.” China's space programme has come a long way since then. Major highlights of the 1970s and 1980s include: launching of the first recoverable satellite in 1975; development of geo-stationary satellites in 1984; and becoming a big player in the commercial satellite launching area with the launch of AsiaSAT-I in
1990. The 1990s saw a major push, with China launching the Long March series of rockets under “Project 921”. This project has assumed special status in China's space programme as it was the beginning of its manned space exploration programme. The aim of the Long March series has been to develop bigger and more powerful rockets required for a manned space programme. Earlier, China had also initiated a few other programmes such as Project 863, which identified key hightechnology sectors from nanotechnology and biotechnology to develop a sound biotechnological R & D
level indigenously. This was followed by Project 973, a continuation of the Project 863, outlining technological needs for improving competencies. Project 211 was initiated to set up national universities and colleges with an intent to study and research technologies for future development. China has around 2,000 institutions of higher education of which about 100 are categorised under Project 211; these
contribute 85 per cent of the state's key subjects in the technological arena, have 96 per cent of the state's key laboratories, and utilise 70 per cent of scientific research funding.
Having made heavy investments in space, China carried out the first space flight of Shenzhou in 1999. In 2003, China achieved a bigger feat as it carried out its first human space flight mission and became only the third country to do so after the Soviet Union and the US. Another achievement for China came in February 2004 when it began implementing the non-manned lunar exploration project. The first phase of
the project––orbiting the moon––has been completed. The second phase saw landing on the moon in October 2010. The mission was highly successful and produced some of the best resolution pictures ever taken.
Today, China has made significant progress in the technological realm and is on its way to developing its indigenous satellite navigation system–Beidou––and a space station by 2020. It has also entered in a big way the global satellite launch market and is likely to become an important player with a significant market share in the space industry. A major development which clearly indicated Chinese intent to use space for military purposes was the Anti-Satellite (ASAT) weapon test in February 2007 when China shot down its Feng Yun-1C meteorological satellite with a DF-21/KT-1 missile. The test generated large-scale debris in the orbit which provoked heavy criticism from the international community.
The next section will look at the recent developments in China's space programme, including the manned space docking and operationalisation of the Beidou satellite navigation system.
Recent Developments
Manned Space Docking
One of the most significant achievements in space for China so far has been the manual docking conducted in June 2012 when the spacecraft Shenzhou-9 was docked with the space lab Tiangong-1. Earlier in 2011, China successfully completed automated docking of Shenzhou-8 with the space lab. The astronauts of Shenzhou-9 conducted experiments during their mission, findings of which would contribute to future long duration missions. In a follow-up to this mission, Shenzhou-10 will be launched
in 2013. The Tiangong-1, in orbit since 2011, is part of a larger plan to build a space station by the year 2020, under an initiative known as Project 921. The space station, which was approved in 1992, will be the only one left in space by 2020, as the International Space Station is due to retire in the same year. However, it is argued that the success of the Chinese space station will depend on the successful development of the Long March-5 rocket, which is likely to make its first flight in 2014.
Beidou Satellite Navigation System
The Beidou (also known as Compass) satellite navigation system is one of
China's most ambitious missions in space. According to China's plans for Beidou, a
total of 35 satellites will be launched in orbit which would cover the entire Earth
by 2020 and send navigation data for users. As of April 2012, China had set 13
satellites into orbit. By the end of 2012, China will add three more satellites into
the constellation, making a total of 16 satellites and covering the entire Asia-Pacific, both for real-time navigation and weather monitoring purposes.
Some countries in the region such as Mongolia and Pakistan have already expressed interest in using Beidou's services. Beidou, which is aiming to achieve a positioning accuracy of 10 meters, will make China the third country to possess its very own satellite navigation system after the US and Russia. With an operational navigation system of its own, China will not have to depend on the US to provide these services––a vulnerability that China has been keen to avoid. Beijing feels that during a crisis, the US could deny the services provided by its Global Positioning System (GPS). An article in the China Daily said, “There have long been concerns that the US might take its dominant GPS offline in certain international emergencies.”
Satellite Launches and Launch Vehicles
China's satellite series today conduct a variety of functions including earth observation, communication, and broadcasting, as well as navigation and positioning. China's communication and broadcasting satellites have become successful in space-based data relays, tracking, telemetry and command (TT&C). These satellites today have substantially improved China's radio, television, data and voice communications. China's family of observation satellites consists of Fengyun (Wind and Cloud), Haiyang (Ocean), Ziyuan (Resources), Yaogan (Remote-Sensing) and Tianhui (Space Mapping) satellites. These are capable of providing global, three-dimensional and multispectral quantitative observation. The image
resolution and coverage capacity of these satellites has also improved significantly over the years.
As far as China's satellite launch vehicles are concerned, the 'Long March' rocket series forms the backbone of the launching technology. From 2006 to 2011, the Long March rockets conducted 67 launches and sent 79 spacecrafts into space. In 2011, China conducted 20 rocket launches successfully which in itself is commendable; the country is developing an entire series––L5, L6, and L7––in the coming years. The payload capability of these launch vehicles has progressed to an extent that for the first time China was able to launch two navigational satellites on one rocket on April 30, 2012. China's recent advances suggest that they may be in a position to have launch vehicles capable of carrying up to four satellites on one rocket. Additionally, they plan to conduct up to 100 satellite launches between 2010 and
2015, or an average of 20 launches per year.
Commercial Launching
While China entered the international satellite launch market in 1985, it has gone far ahead in the last three decades. Today, China is launching satellites for countries in Latin America, Africa, as well as Pakistan. Experts believe that given China's increasing expertise in commercial launching, it will most likely acquire a
large share of the commercial satellite launch market in the future. It is reported that Beijing seeksto gain 10 per cent of the world's commercial satellite market and 15 per cent of commercial launch business by 2015.
Space-based Solar Power
Given its growing economy and the rising hunger for energy resources, China has plans to develop clean energy options in space such as utilising space-based solar power (SBSP). By August 2011, China had completed the initial study for the project which aims to begin commercial use of the solar space station by 2040. China's plan, drawn by one of its space pioneers Wang Xiji, aims to look at various aspects of spacebased solar power applications, designs and key technologies that would make the option economically feasible in the first instance and sustainable by 2020. Highlighting the importance of exploring the spacebased solar power options, Wang said, “whoever takes the lead in the development and utilization of clean and renewable energy and the space aviation industry will be the world leader.” While India and the US have been talking about SBSP, China has actually made the pioneering moves. While utilisation of space assets for energy purposes should be seen as environment friendly and therefore a positive step, the spin-off benefits of technological development and their utility in the military domain cannot be overlooked.
Chinese Lunar Exploration Project
Since 2007, China has been engaged in moon missions probing the lunar surface for scientific data. In 2007, the Chang'e-1 lunar probe mapped the entire surface of the moon. The Chang'e-2 launched in October 2010 provided high-resolution maps of the moon's surface. China claims that these pictures are the highest resolution images of the moon captured so far. Meanwhile, the Chang'e-3 lunar probe is undergoing preparations and is scheduled for launch in 2013. The device is designed to conduct land surveys, living conditions assessment and space observations over the moon for three months and will be equipped with advanced recognition and navigation systems. Additionally, China plans to do a moon walk some time between 2020 and 2030.
China's interest in the lunar mission is also related to exploration of natural resources. It plans to bring back soil and rock samples from the moon. Apart from other potential use, including exploration of the known mineral reserves such as iron, China has done considerable research on exploration of Helium-3, a source for nuclear fusion. Ouyang Ziyuan, head of the first phase of lunar exploration, has said: “There are altogether 15 tons of helium-3 on Earth, while on the Moon, the total amount of helium-3 can reach one to five million tons … If we human beings can finally use such energy material to generate electricity, then China might need 10 tons of helium-3 every year.” Meanwhile, China also has plans for a Mars mission. It had originally planned for a mission in collaboration with Russia. However, after the failure of the first mission that was also carrying the Russian Mars Orbiter, China has decided to go solo on the next mission, possibly in 2013.
China's Space Diplomacy
China is party to several international agreements on outer space, including: the Outer Space Treaty; Convention on the Registration of Objects Launched in Outer Space (Launched Registration Convention); Agreement on the Rescue of Astronauts, the Return of Astronauts and the Return of Objects Launched into Outer Space (Rescue Agreement); Convention on International Liability for Damage Caused by Space Objects (Liability Convention); Agreement Relating to the International Telecommunications Satellite Organisations (ITSU); and International Telecommunications Constitution and Convention (ITU). Additionally, China is a member of the UN Committee on the Peaceful Uses of Outer Space (COPUOS) since 1981. Being a space-faring nation, China has been active in the international debate on issues concerning space. In one of Beijing's recent official statements, Chinese Ambassador Cheng Jingye, at the Legal Subcommittee of COPUOS, reiterated China's policy of using outer space for peaceful purposes and against weaponisation. The latest space White Paper has also emphasised on the “peaceful development and peaceful exploration, exploitation and use of outer space.” Cheng reiterated that the Chinese government opposes “weaponization and arms race in outer space and dedicates itself actively to the effort of maintaining peace and security in outer space. China continues to believe that elaborating relevant international legal instruments through negotiation is still the best option to preserve long lasting peace and security in outer space.”
While in certain international fora, China officially maintains a policy of peaceful use of outer space, it has sent an entirely different message in other quarters. For instance, as the European Union began bilateral dialogues with different countries on universalising a space code, China made it clear that space debris cannot be a major item in any normative exercise. Such a posturing on the part of China results in wariness among its neighbours as well as other global space powers.
While China has articulated a policy of non-weaponisation, it is a fact that there are military spin-off benefits from the advancements it has made in space because of the dual-use nature of the technology, as well as the fact that its space programme is almost entirely run by the PLA. While non-weaponisation is a point of emphasis in the Russia-China co-sponsored “Treaty on the Prevention of the Placement of
Weapons in Outer Space, the Threat or Use of Force against Outer Space Objects” (PPWT) at the Conference on Disarmament, there exists a huge lacunae given that the treaty mentions only the placement of weapons in outer space. Not mentioning the use of ground-based weapons for operations in space is significant, potentially suggesting that China wants to keep open the option of using ASAT weapons.
While China has been active on space debris mitigation efforts within the UN COPUOS and the Conference on Disarmament, it has been resistant to making debris a major issue even in a non-legally binding code of conduct on space. For instance, Ambassador Tang Guoqiang at the 46th session of COPUOS said: “As a responsible space-faring country, China supports the SDMG [Space Debris Mitigation Guidelines] recently adopted by the STSC [Scientific and Technical Subcommittee] and stands ready to continue exploring and promoting ways and means of sustainable development in the peaceful uses of OS (Outer Space).” Four years later and after the missile defence test in January 2010, China has continued to argue on similar lines. For instance, Wang Qun, the Chinese Ambassador for disarmament affairs said at the First Committee of the UN General Assembly: “The outer space is a common wealth of
mankind as the global public space. The permanent peace of outer space is correlated to all nations' security, development and prosperity. Safeguarding the peaceful use of outer space and preventing the weaponisation of and an arms race in outer space are common interests and obligations of all countries.”
However, activities of the PLA have gone on undeterred and recent advances are a reflection of this. The stated official policy continues to be one that supports the space debris mitigation guidelines and peaceful uses of outer space; however, Chinese opposition to space debris which comes out in unofficial parleys such as the EU negotiations on the Code, as mentioned earlier, reflects a different reality.
Implications for India
Technologically, China may be far behind the US and Russia; the fact is, however, that Beijing has been making steady progress in recent years. The development of the indigenous satellite navigation system, space lab module, and the manned space docking experiments, are only some examples that highlight Beijing's continued progress in this area. These developments also highlight the growing gap between
India and China, with Beijing moving closer to becoming a top-tier space power. This could have a significant impact on the balance of power between the two Asian giants.
China's growing capabilities have military and security implications for India. For instance, the Beidou navigation system is being used by the PLA to conduct operations such as border and coastal control, wherein Beidou data is being used by the troops. This could further transform into becoming the backbone of Chinese military operations at a future date. The Beidou will be in a position to provide detailed coordinates and other data of troops on the ground, significantly improving operational efficiency. India should also be mindful of China's advancements in the field of satellite imagery that may be able to provide better, real-time data on Indian military installations and positioning. India should also consider that China may provide such data to Pakistan, which might prove particularly relevant during
times of conflict.
China's advancement in commercial satellite launching capability is something that India should be concerned about and take corrective steps. China's ability to conduct nearly 20 launches per year, as against India's low number of four, requires focussed attention. Cost is an additional factor in which China has clear advantage.
While SBSP has remained a dream project for several countries including India and the US, China has made fast progress with plans to establish the first commercial solar power station by 2040. This will ensure China not only secure and reliable sources of energy but also technological spin-offs which would be significant. China's initiatives in this regard should be a wakeup call for many countries, including India. India should also take note of the geostrategic implications of China's space programme.
While Pakistan's space capabilities are nowhere comparable to that of India's, the fact that the former is receiving assistance from China is of immediate consequence. A repeat of what China did in the nuclear arena, providing Pakistan with assistance in nuclear design and technology, cannot be ignored.
As evident in several statements by Chinese leaders and the development plans announced periodically, China is likely to invest more resources to develop capabilities in outer space, both civilian and military. The increasing militarisation of political issues would provide Beijing a justification for its growing military space programme. An arms control measure that would bring about restraint on China, in the form of a code or a legally binding mechanism, will be in the interest of India. India as an established space power should take the lead in Asia and abroad in developing a consensus on this issue.
While India has many programmes similar to those of China, including military communications and manned space flights, its programmes continue to be subcritical in nature and the resources are spread too thin to be effective. Instead of adopting a knee-jerk reaction to developments on the Chinese side and attempting to catch up with China, India needs to prioritise and develop capabilities from a commercial
and national security perspective. As noted recently by former President and former scientific advisor to the Prime Minister, Dr. A.P.J. Adbul Kalam, India has to shed the “fifth nation” syndrome and aim for the number one slot in selective fields including space.
India also needs to be mindful of the benefits of issuing a white paper on space outlining its long-term aims and objectives, in both commercial and military space domains. This would bring about the much-needed clarity and prioritization in the space domain and additionally open up avenues for international cooperation.
Lastly, while India's space programme has come a long way in terms of its technological prowess, with its utilities applicable including in the military domain, the priorities and directions have been so far set forth largely by the scientific bureaucracy. Neither the UPA nor its predecessor, the NDA government, had lent political leadership to India's space programme. This approach needs to change if India has to develop a vibrant programme that best secures its national interests in the backdrop of newer challenges.
Endnotes:
1. Chinese Government's Official Web Portal, “Full Text: China's Space Activities in 2011,” available at http://www.gov.cn/english/official/2011-
12/29/content_2033200_2.htm.
2. China National Space Administration, “China's Space Activities (White Paper),” December 15, 2003, available at
http://www.cnsa.gov.cn/n615709/n620681/n771967/69198.html.
3. “Over 10 Billion Yuan to be Invested in 211 Project,” People's Daily Online, March 26, 2008, available at
http://english.people.com.cn/90001/6381319.html
4. Brian Spegele, “Chinese Hit New Space Heights,” The Wall Street Journal, June 18, 2012, available at
http://online.wsj.com/article/SB10001424052702303703004577473850707372174.html.
5. Ibid.
6. “Beidou Satellite Navigation System Launched,” China.org website, December 28, 2011, available at http://www.china.org.cn/china/2011-
12/28/content_24266178.htm.
7. In comparison, India and other major space faring countries do two to three launches per year.
8. Xin Dingding, “China to Build Satellite for Belarus,” China Daily, September 20, 2011, available at http://www.chinadaily.com.cn/china/2011-
09/20/content_13737510.htm.
9. “China Unveils Plan for Solar Power Station in Space,” Want China Times, September 02, 2011, available at http://www.wantchinatimes.com/newssubclass-cnt.aspx?id=20110902000023&cid=1105.
10. “China Launches Second Moon Mission: Is Mining Rare Helium 3 an Ultimate Goal?” The Daily Galaxy, October 03, 2010, available at
http://www.dailygalaxy.com/my_weblog/2010/10/china-launches-second-moon-mission-is-mining-helium-3-an-ultimate-goal.html.
11. “General Statement by Ambassador CHENG Jingye, Head of the Chinese delegation to the 51st Session of the Legal Subcommittee of COPUOS,”
March 19, 2012, available at http://www.chinesemission-vienna.at/eng/dbtyw/hplywk/t915383.htm.
12. “Statement by Ambassador Tang Guoqiang at 46th Session of COPUOS LSC Under the Item of General Exchange of Views,” April 04, 2007, available
at http://www.chinesemission-vienna.at/eng/xw/t308746.htm.
13. “Statement by H. E. Mr. Wang Qun, Ambassador for Disarmament Affairs of China, at the Thematic Debate on Outer Space at the First Committee of
the UNGA,” October 17, 2011, available at http://www.fmprc.gov.cn/eng/wjdt/zyjh/t869579.htm.
14. JiTianxiang and LuoWenyi, “Frontier Defense Regiment's Information-Based New Equipment Aids, Border and Coastal Control,” People's Daily Online,
June 26, 2012, available at http://english.people.com.cn/90786/7856116.html
Showing posts with label SBSP. Show all posts
Showing posts with label SBSP. Show all posts
Wednesday, September 26, 2012
Wednesday, September 21, 2011
China Walks the US-India Space-Based Solar Power Dream

Here's a link to the analysis on how China walks the US-India space-based solar power dream, written by Rahul and me for the ORF.
While India and the US make pledges about potential collaboration on space, others walk those promises and potentials. In the India-US context, space has remained a potential area of cooperation for the last decade or so whereas China, which has studied the Indo-US joint communications carefully, has made fast progress on space-based solar power (SBSP), in terms of devoting financial and human resources into the project.
The need of the hour is for democracies like India, US and may be even Japan to come together, structure large collaborations around space and capture the political space in this regard. The political leadership in both India and the US should recognise the importance of it and act accordingly before it is too late.
Recognising the spin-off benefits of space-based solar power, China recently unveiled a plan to build and orbit a solar power station for commercial use by 2040. The Chinese plan drawn by one of its space pioneers Wang Xiji is an ambitious one and aims to look at various aspects of space-based solar power applications, designs and key technologies that would make the option economically feasible in the first instance and sustainable by 2020. Detailing the research conducted by the China Academy of Sciences, Wang said at the fourth China Energy Environment Summit Forum: "The development of solar power station in space will fundamentally change the way in which people exploit and obtain power. Whoever takes the lead in the development and utilization of clean and renewable energy and the space and aviation industry will be the world leader."
Given China's rising energy requirements, it is imperative that Beijing look at alternate sources of energy to meet its enormous demand. By 2050, it is estimated that China would have an energy gap of approximately 10.5 percent which it would seek to fill in by exploring alternate sources of energy such as fusion and space power stations. Also, the greenhouse gas emissions and climate change considerations have become serious enough concerns for the international community. These factors have also pushed Beijing to invest more in low-carbon energy sources. SBSP is possibly on top of the options list for China given the safety concerns vis-à-vis nuclear energy, particularly after the Fukushima crisis. According to the China Academy of Space Technology (CAST), the Solar Power Satellites (SPS) and solar power applications will help China in sustaining its economic and social development, disaster prevention and mitigation and would also assist in retention of qualified personnel.
China has been working on this concept for several years with CAST spearheading its research work. After the initial feasibility report compiled by CAST, a concept design for the SPS was submitted to China's Ministry of Industry and Information Technology, which eventually gave the approval and funding for the design. According to CAST, the SPS development includes four parts - satellite launching, in-orbit construction/multi-agents, efficient conversion of solar energy and wireless transmission. Apart from the launch factor, an area where China has excelled significantly, other parts of the project will demand greater effort for development.
While China's lead in the SBSP could provide for a co-operative framework in Asia, the geopolitical realities and the inherent problems in Asia - competition, rivalry and mistrust - may hamper such collaboration in the near future.
Under such a scenario, there lies a strong imperative for India, the US and other like-minded democracies to come together and realise the SBSP utilisation dream. This will not only provide economic gains but also give a strategic advantage in the changing security environment in Asia. For India, such collaboration would meet its growing energy demand and provide other spinoff benefits like job creation and access to advanced technology, much-needed for sustaining India's growth story. It is estimated that India's energy requirements would double by 2030, making it imperative for it to explore other feasible options. Also, if India becomes a part of the process of realising the SBSP dream, it will augment India's position in Asia as well as the world as a responsible leader.
The political consensus for India and the US to collaborate in space already exists although it appears that each side has been leaving it to the other to take the initiative and materialise the potential. The US-India Agreement to establish an S&T Board and an endowment for research provides the apparatus needed for starting the SBSP research and development. This fund can finance a broad number of issues of mutual interest such as bio technology, advanced materials and nanotechnology science, clean energy technologies, basic space, atmospheric and earth science. SBSP easily fits into the sphere of issues supported by this fund. As far as other funding options are concerned, private sector companies on both sides have shown interest in exploring the SBSP option. US companies like Lockheed Martin, Northrop Grumman and Tata in India have shown positive signs. Other countries like Japan have also done considerable research in this field. Japan's Aerospace Exploration Agency has done decade-long research on SBSP in collaboration with high-end technological companies such as Mitsubishi. Collaboration among these countries would also facilitate funding for this ambitious project.
While China may not have developed the best model in terms of cost effectiveness, it will surely send out a strong message to the international community about China's capabilities in developing such technologies and its ambitions to become the global leader in space solar power harnessing. If China wins the race in developing SBSP as a feasible source of energy, which would meet the world's growing energy demand, it will result in huge economic and strategic gains for China.
It is now time for both India and the US to explore the opportunity seriously and not let prospects for cooperation remain only as prospects. Hopefully, the advent of China into the picture would give the much-needed push for both countries to actually start real-time development work on SBSP.
Saturday, April 23, 2011
Post-Japan, the hunt for the safest option

Here's the link to an article of mine that appeared in today's Pioneer about the space based solar power option.
The nuclear meltdown in northern Japan has confirmed our worst fears about nuclear energy. Tragically, India continues to blindly follow the discarded notions of yesterday, ignoring viable possibilities like solar power
With the nuclear crisis still unfolding in Japan, there is fresh thinking around the world about the safety of the nuclear energy option. While India has examined several alternative energy options, no single option is likely to be a magic bullet. It will probably be wise to look at other options including ones that have not yet been seriously considered as yet.
Under such a scenario, it may be a good time for India to explore the option of space-based solar power (SBSP) — a possibility that has not caught the popular or government attention very much, for a variety of reasons. Unlike the ground-based solar power option, SBSP does not have problems like cloud cover or availability of sunlight and so on.
The SBSP option is likely to be costly. While cost may have been the most serious impediment in making the SBSP option a reality so far, there has been lack of direction and commitment from the political leadership that has also contributed to this. Exploiting space for solar power is not a new idea although it has remained a theoretical exercise for a number of reasons, including because of the lobbying by other alternate energy groups.
SBSP involves using extremely large satellites made up of a large number of solar cells to collect the sun’s energy, convert it to radio waves to be beamed to antenna farms on the ground where it is reconverted to energy.
The scale of such a project will be large but the SBSP is comparable to several mega projects undertaken in the past by both India and the US — the US National Highway project or the Indian rural electrification programme are two cases in point. On cost, experts opine that developing a prototype or putting a 10 MW demonstrator in GEO (geosynchronous Earth orbit), using exiting launch vehicles, will be to the tune of around $10 billion over 10 years. Collaboration with other space-faring nations will bring down the cost to make it a cheaper, safer and cleaner option. More important is the need to calculate the cost on the basis of both direct and indirect cost of climate change and environmental issues. Also, this will be a huge effort in strengthening international hi-tech cooperation, creating several spin-off benefits, including job creation and gaining access to advanced technology.
In the recent past, former President APJ Abdul Kalam promoted the idea of SBSP at the Aeronautical Society of India (AeSI) and later at a NSS (US-based National Space Society) press conference in Washington DC last year. This initiative as of now remains an India-US initiative although it needs to be broadened, may be at a later stage, to set up a larger consortium to make SBSP into a viable proposition.
Why SBSP? Speaking in November last year, Dr Kalam highlighted the huge energy shortage that India and the world would be facing in the next few decades. Kalam estimated that by 2050, even if one were to use all possible sources of energy, there will be a global shortage to the tune of 66 per cent. On the other hand, if one were to use the SBSP option, the world would move from an energy deficit to an energy surplus situation. Additionally, the clean and safe energy option will go a long way in solving the world’s climate change woes.
At the India-US level, this initiative is associated with some key technocrats such as Dr Kalam, Mark Hopkins, CEO of the NSS, John Mankins from the Space Power Association and a veteran of NASA and also Dr TK Alex from the Indian Space Research Organisation (ISRO) Satellite Centre, Bangalore who is also heading the Chandrayaan Project. Participation of TK Alex in a sense gives an official colour to the project.
On the Indian side, some preliminary studies were done in 1987 on advanced space transportation system at a conceptual level to make SBSP a cheaper option, but there has been no follow up. In the recent past, the ISRO has been engaged in getting some additional technical studies on the feasibility of this option, looking at three specific configurations. While continuing with the technical feasibility studies, ISRO has also made it clear that it can proceed only if they get suitable proposals/funding from foreign governments. While the technical studies are one aspect of it, more important is the need for a clear directive from the government. A clear political mandate calling upon the technocrats and scientific community to develop the necessary technologies is one way to take this option forward. The government can thereafter be a facilitator if it seeks foreign collaboration, for instance. But the initiative has to come from the political leadership.
What are India’s options to make SBSP a real viable option given the cost factor and technology? Can the governments and the private sectors of both India and the US make serious commitments to take the first step towards R&D investment on SBSP? It might be worth the effort to place the SBSP initiative within the US-India S&T Endowment and Board. The Indo-US S&T Fund finances projects on an entire range of issues from biotechnology, advanced materials and nanotechnology science to clean energy technologies, basic space and atmospheric and earth science. Other countries making significant investment in this area include Japan that has made an investment of $21 bn for the next few years. India and the US can take the lead to establish an international consortium based on cost sharing and more importantly on international technology cooperation.
Countries like India and the US need to take up initiatives to do major technological demonstrations and milestone projects, which will have far reaching consequences across political, strategic and technological spheres. Cooperation on SBSP will convey a major strategic message.
Wednesday, April 6, 2011
SENIOR INDIAN RESEARCHER BACKS JOINT US - INDIA DEVELOPMENT OF SPACE SOLAR POWER – A MULTI-NATIONAL POWER SOURCE

US-based National Space Society has issued a Press Release about my article on space-based solar power that appeared on the ORF website.
The release read: Dr. Rajeswari Pillai Rajagopalan, a Senior Fellow at India's Institute of Security Studies, and Senior Fellow at India's Observer Research Foundation, is urging the United States and India to jointly develop an energy alternative that can take us beyond nuclear technology. Events like the recent earthquake in Japan are causing many to rethink traditional energy sources. The energy alternative suggested is Space Solar Power (SSP). In the online publication "Analysis" of the Indian Observer Research Foundation, Dr. Rajagopalan writes, "With the earthquake and the subsequent tsunami that hit Japan on March 11, isn’t it time for India and the US to make serious commitments to Space-Based Solar Power?"
For the full text of the release, continue reading.
Dr. Rajagopalan points out that the concept of space solar power is 40 years old. Much of its technology has been in use for close to sixty years. But space solar power has never been seriously pursued as a major energy option, even though there are supporters of space solar power in Japan, Russia, the European Union, and most of the world's leading nations.
The National Space Society (NSS) has recently teamed with a former president of India, Dr. A.P.J. Kalam, in the Kalam-NSS Energy Initiative, to drive home the potential of what Dr. Kalam calls "energy harvested in space." Kalam is famous for his accomplishments in the aerospace field. He is known as the "Missile Man of India" and currently serves as Chancellor of the Indian Institute of Space Science and Technology. Dr. Rajagopalan quotes Dr. Kalam: "By 2050, even if we use every available energy resource we have, clean and dirty, conventional and alternative, solar, wind, geothermal, nuclear, coal, oil, and gas, the world will fall short of the energy we need by 66%."
Space solar power involves placing large arrays of lightweight solar panels in high Earth orbit, where sunlight is 36 percent stronger than on Earth. Any equipment placed there is totally immune to earthquakes, floods, volcanoes, tsunamis, hurricanes, tornadoes, fires, local wars, rust, corrosion, hail, and other forms of destruction occurring on the ground. The solar power gathered by the arrays is beamed down to a receiver on the ground. Clean electrical energy would be efficiently and safely delivered night and day, 7 days a week. Space solar power could provide a large alternate supply of carbon-free electrical power to the whole Earth. For details see Dr. Rajagopalan's article.
Most importantly, the prestigious International Academy of Astronautics is expected to complete a study of SSP within weeks, which may set the stage for the first substantial steps towards making SSP a reality. The National Space Society plans to hold a press conference at the National Space Club in Washington DC concerning the study when it is released. NSS also plans to hold a SSP symposium as part of its annual convention, the International Space Development Conference, in Huntsville, Alabama, May 18-22, 2011.
Dr. Rajagopalan’s article can be found at: http://www.nss.org/orf-02April2011
A video of the November 4, 2011 NSS press conference announcing the Kalam-NSS Energy Initiative is available at: http://www.nss.org/news/releases/pc20101104.html
Information on Space Solar Power is at: www.nss.org/ssp
.
Media contact:
Gary Barnhard
Phone: (202) 429-1600
E-mail: nsshq@nss.org
About National Space Society
The National Space Society (NSS) is an independent, grassroots organization dedicated to the creation of a spacefaring civilization. Founded in 1974, NSS is widely acknowledged as the preeminent citizen's voice on space. NSS counts thousands of members and more than 50 chapters in the United States and around the world. The society also publishes Ad Astra magazine, an award-winning periodical chronicling the most important developments in space. For more information about NSS, visit www.nss.org.
Saturday, April 2, 2011
Space Based Solar Power: Time to Put it on the New US-India S&T Endowment Fund?

Here's the link to an article of mine on Space-Based Solar Power (SBSP) published by ORF. The article looks at the prospect of making SBSP a real and viable option for India.
With the earthquake and the subsequent tsunami that hit Japan on March 11, isn’t it time for India and the US to make serious commitments to Space-Based Solar Power (SBSP)? Japanese crisis has triggered worldwide re-thinking on the feasibility of pursuing nuclear energy to meet growing global energy demands. This has kick-started a debate also in India not only on the safety of nuclear plants but also on other energy options. It is time that India and the United States and the countries around the world looked at an often-overlooked option: SBSP.
The idea of harnessing SBSP as an option originated in the United States some 40 years ago. But it has not been pursued with vigour for a variety of reasons, including possibly the influence of nuclear lobbyists. In simple terms, SBSP is described thus by Lt. Col. Peter Garretson of the US Air Force: "In this concept, very large satellites, the largest ever constructed, made up of kilometers of solar cells, would collect the Sun’s energy where there is no night, and convert it to radio-waves to be beamed to special receiving antenna farms on the ground (called rectennas) about the size of a small airport. The energy is sent in the form of a low energy beam at about 1/6th the intensity of normal sunlight that falls on earth. But because it is a low-energy, non-ionizing wavelength, it is not as dangerous as sunlight with its high energy ultraviolet rays. At the rectenna, the energy is reconverted and sent via the existing electrical grid. Such satellites would necessitate a fleet of re-useable space planes, and as a consequence of economies of scale, reduce the cost of space access a hundred fold, enabling many other applications."2 It is estimated that one kilometre-wide band of geo-synchronous earth bit can produce solar flux to match as much as the total amount of energy produced from all the different recoverable oil reserves on Earth.
The idea was promoted by none other than Dr. APJ Abdul Kalam first at the Aeronautical Society of India (AeSI) and later again at a press conference in Washington DC last year. The initiative is now titled as the Kalam-NSS (National Space Society) Energy Initiative. The Kalam-NSS initiative is an India-US partnership taken up by individuals with long-term expertise in the space realm. Some of the key people involved are, in addition to Dr. Kalam, Mark Hopkins, CEO of the US-based National Space Society and John Mankins, President of the Space Power Association and a veteran of NASA. On the Indian side, there seems to be some official involvement due to the involvement of Dr. T.K. Alex, who is the Director of the Indian Space Research Organisation (ISRO) Satellite Centre, Bangalore and leader of the Chandrayan-I project.
Speaking in New Delhi in November last year, Dr. Kalam said that "by 2050, even if we use every available energy resource we have, clean and dirty, conventional and alternative, solar, wind, geothermal, nuclear, coal, oil, and gas, the world will fall short of the energy we need by 66%. There is an answer. An answer for both the developed and developing countries. This is a solar energy source that is close to infinite, an energy source that produces no carbon emissions, an energy source that can reach the most distant villages of the world, and an energy source that can turn countries into net energy exporter."3 According to the International Energy Agency (IEA), the worldwide demand for primary energy increases by 55 per cent between 2005 and 2030 - 1.8 per cent hike per year on average; and for India, the demand is expected to more than double by 2030, growing at 3.6 per cent rate per year.4
With energy demand growing rapidly, the SBSP option offers huge opportunities. Such an option will also be reportedly a cleaner energy option. This option would also significantly augment India’s capabilities in the space domain, which will have far-reaching positive spin-offs in the ever-changing security environment in Asia. This will bring the much-desired focus on the question of technology transfer between India and the US, Japan and Israel.
India has looked at this option for quite sometime. In 1987, the first bit of work was undertaken looking at advanced space transportation system design concepts for cost-effective space solar power. Recently, ISRO is reported to have done some exercise looking at the feasibility of this option and examined three specific configurations. Thereafter, ISRO is believed to have welcomed an International Preliminary Feasibility Study.Unlike terrestrial solar and wind power plants, SBSP is available throughout the year, in huge quantities. It can also reportedly work irrespective of conditions that are a problem for other alternative energy sources such as cloud cover, availability of sunlight, or wind speed.
What has prevented the SBSP from becoming a real option? Is it the enormous cost involved in developing the option or is it an option that never got the popular attention due to the multiplicity of departments involved? Proponents argue that the cost of SBSP should not be compared to the direct costs involved. The cost-benefit analysis needs to be done on a different scale, including the direct and indirect cost of global warming and climate change. Otherwise, the costs of developing this technology may seem exorbitant.
What are the options to meet this cost? Are the Indian and American governments and private sectors willing to make significant investments on the R&D of this technology? The US-India Agreement to establish an S&T Board and an Endowment to carry out research (July 20, 2009) appears to be an ideal basis for new research and development on SBSP. SBSP seems like an ideal candidate because this fund seeks to finance projects on a broad spectrum of issues of mutual benefit such as biotechnology, health and infectious diseases, advanced materials and nanotechnology science, clean energy technologies, climate science, basic space and atmospheric and earth science among others. The US side of funding for the Endowment is reported to come from the US S&T "Rupee Funds" established in the 1980s to encourage and fund bilateral S&T projects.5 However, for the SBSP per se, there appears to be interest among the private sector companies like Boeing, Lockheed Martin, and Northrop Grumman and on the Indian side, Tatas have shown interest in exploring this option.
While this can potentially be an excellent case for public-private partnership, the initiative has to come from the government. India’s foray into space and its space policies have had strong civilian and developmental roots and accordingly the government needs to place the SBSP within its overall national space policy. India’s decision to pursue SBSP will have multiple impact -clean energy, clean environment, advancement in the space arena with technology transfer as a given between India, US and Japan.
2Peter A Garretson, "Power the Final Frontier: Could Satellites in Orbit be a Source of Energy for the Future? It’s Possible," Satkal Times, May 22, 2009. For a detailed study, see Peter A Garretson, "Sky’s No Limit: Space Based Solar Power, the Next Major Step in the Indo-US Strategic Partnership?," IDSA Occasional Paper No. 9, (Institute for Defence Studies and Analyses, New Delhi, August 2010), p. 17.
3Announcement of the Kalam-NSS Energy Initiative, The NSS Conference Announcement, November 05, 2010, available at http://blog.nss.org/?cat=5.
4International Energy Agency, World Energy Outlook 2007: China and India Insights, International Energy Agency, Paris, 2007, p. 42 and 46.
5Press Information Bureau, "US-India to Establish a Bi-National Science and Technology Endowment Fund and Joint Commission," India PR Wire, March 3, 2006.
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