Showing posts with label EADS. Show all posts
Showing posts with label EADS. Show all posts

07 April 2010

STRATFOR's George Friedman Discusses EADS Space Solar Power


STRATFOR’s founder and CEO discusses the push for space-based energy infrastructure after EADS, Europe’s largest space company, announces plans to launch a test satellite with solar panels.


Also from:  http://timesofindia.indiatimes.com/home/science/Lasers-to-beam-solar-energy-from-space-to-earth/articleshow/5496009.cms

Lasers to beam solar energy from space to earth


LONDON: Space engineers plan to put satellites into orbit that can collect large amounts of energy from the Sun and convert it into a infrared laser beam transmitted back to Earth as an alternative to the planet’s fast-disappearing energy sources. 

Experts at EADS Astrium, Europe’s largest space company, are working on a small demonstrator of a full sized space-based power station, a network of which could meet demands of electricity 24X7. 

“There is a global need for increased energy generation that does not have an environmental impact,” the British newspaper Daily Telegraph quoted Matthew Perren, head of innovation at Astrium’s headquarters in Paris, as saying. 

“The real advantage of space solar power is that it can provide power on demand as we can essentially point the laser beam where ever we like on the earth below the orbit. 

“Looking to the future we envisage large power stations in space that are capable of transmitting energy to any point in the planet on demand,” Perren added.

25 January 2010

Lasers to beam energy to Earth from space


From: http://www.telegraph.co.uk/earth/energy/solarpower/7060015/Lasers-to-beam-energy-to-Earth-from-space.html

Solar energy collected in space and beamed back to Earth by laser could soon be used to power homes and electric vehicles under a project by European space engineers.

By Richard Gray, Science Correspondent
Published: 8:30PM GMT 23 Jan 2010
It sounds more like a scheme dreamed up by a James Bond villain attempting to destroy the Earth than a technology that could help provide a solution to the planet's dwindling energy supplies.
Engineers plan to put satellites into orbit around the planet that can gather energy from the sun, concentrate it into powerful laser beams and transmit the energy back to the Earth where it can be used to generate electricity.
While harvesting solar energy in space has been discussed by scientists for more than 30 years, engineers at EADS Astrium, Europe's largest space company, now believe the technology is available to allow them to start building a working prototype.
They hope to have a small demonstrator of a full sized space-based power station, capable of beaming back 10-20kW of power, ready for launch in the next five years.
Using a network of these solar power stations it would be possible to provide energy on demand 24 hours a day – something that is not possible with solar power on the planet's surface which can only produce energy during the hours of sunlight.
"There is a global need for increased energy generation that does not have an environmental impact," explained Matthew Perren, head of innovation at Astrium's headquarters in Paris.
"The real advantage of space solar power is that it can provide power on demand as we can essentially point the laser beam where ever we like on the earth below the orbit.
"Looking to the future we envisage large power stations in space that are capable of transmitting energy to any point in the planet on demand."
Space-based solar power, although more expensive than using solar panels on Earth, is attractive because of its capability to provide a clean, inexhaustible power supply around the clock.
Much of the power of the sun is filtered out by the Earth's atmosphere while clouds and the inability to produce power at night have all limited the use of solar power as an energy source.
In space, however, the sun's rays are far more powerful and even with a relatively inefficient conversion process, could still produce large amounts of power. Most importantly, satellites can be positioned so they are exposed to sunlight for far longer than sites on Earth.
The space power stations would be launched into a geostationary orbit, which means they remain above the same point above the planet, around 22,300 miles above the surface.
With solar panels more than 50 metres across, they would be able to gather large amounts of energy from the sun which would then be converted into a infrared laser beam to be transmitted back to Earth.
One of the key uses of the technology could be to power a new generation of large electric vehicles such as cargo ships and tankers. The satellites could be made to move the laser beam to track the ships as they move across the ocean, providing a constant energy supply.
Scientists at Astrium have already begun work on developing the technology needed to turn a laser beam into movable source of electricity. They have managed to use lasers in the laboratory to power toy cars.
Astrium hopes to work with international space agencies, governments and power companies to develop a network of space based power stations that will eventually be capable of supplying enough energy to power hundreds of thousands of homes.
But it is not the only firm working in the field. In September Japan announced a $21 billion plan to send solar panel equipped satellite into space that could beam enough power back to Earth to supply 300,000 homes.
California has also made a deal with a company called Solaren to design satellites that would beam power back down from solar powered satellites.
But Astrium claims that its approach of using infrared lasers will make the system safer than other proposals which have suggested using microwaves to transmit the energy. If misdirected, microwaves could cause widespread damage, effectively cooking anything in their path.
Such schemes are reminiscent of far fetched plots in James Bond movies such as Die Another Day, where villain Gustav Graves builds a space based laser that he can control as a weapon, and Diamonds are Forever, where Ernst Stavro Blofeld attempts to hold the world to ransom with a laser in space.
Astrium, however, insist that the infrared laser, which is typically used in laser guidance systems for the military, will be safe. As it is beyond the visible spectrum of the human eye, it would also not be harmful to eyesight should anyone look into the beam.
Mr Perren said: "We are concentrating on developing something that is safe. While the laser beam will have some heat in it, we intend for it to be safe for people to walk through unaffected.
"Much of the technology we need has already been tried and tested in existing satellites and spacecraft, but there are technical difficulties that still need to be overcome such as improving the efficiency of converting the energy and increasing the power of the laser we can build.
"It is important to remember that we are not looking to take the place of power stations on Earth, but to provide another piece of the puzzle in finding alternative energy sources."

21 January 2010

EADS & SBSP


From: http://www.physorg.com/news183278937.html  retrieved 01-21-2010
Science and technology news
European space company wants solar power plant in spaceJanuary 21, 2010 by Lin Edwards Enlarge(PhysOrg.com) -- EADS Astrium, Europe's biggest space company, plans to put a solar power satellite in orbit to demonstrate the collection of solar power in space and its transmission via infrared laser to provide electricity on Earth.Ads by GooglePhotovoltaic Basic Course - Nationally Accredited Online Course w/ Live Student Support. Find More! - www.Training4Green.comPower Monitors - Pwr Monitors for all applications Energy Management software - www.Measurlogic.com Chief executive officer of Astrium, François Auque, said the system is at the testing stage, but that a viable system collecting and transmitting power from space could be within reach soon. Auque said space solar power is an attractive idea because it is an inexhaustible and clean form of energy. Unlike solar plants on Earth, orbital solar collectors can work around the clock, and there is no interference from clouds or atmospheric dusts or gases, which means the energy hitting photovoltaic cells in orbit is much greater than it would be for the same panels on the ground.Earlier concepts of beaming power to Earth from space were criticized because they relied on microwaves to transmit the power to the ground, which has safety concerns, so Astrium plans to use infrared lasers instead, which means that even if they were misdirected people and objects hit by the laser beams could not be scorched.The transmission of power via infrared laser has been tested in Astrium’s laboratories, and they are now concentrating on improving the system’s efficiency. Work on developing converters to convert received infrared energy to electricity is proceeding rapidly, and Astrium is collaborating in this work with scientists at the University of Surrey, in the UK. The company is hoping to achieve 80% efficiency in the conversion.According to Astrium’s chief technology officer, Robert Laine, at present the power handled by the system is limited by the size of the laser that can be built. A demonstration mission would also be necessary to prove the system works, and this should be possible within the present decade.The concept of harvesting solar power in space has been discussed for at least the last three decades, but the problems of power loss during transmission and the expense and difficulty of assembling large arrays of solar collectors in space have seemed almost insurmountable. However, Astrium is not the only company close to bringing the idea to fruition. Last September Japan announced it is planning to put a small demonstration solar collecting satellite in orbit by 2015. This system will transmit the power to Earth using microwaves.EADS Astrium is seeking investors and partners such as the EU, national governments, space agencies, or power companies, to fund and contribute in other ways to the development of its operational orbital solar collection and transmission system.More information: EADS Astrium -- http://www.astrium.eads.net/© 2010 PhysOrg.com

05 September 2009

The Elegant Way to Save Earth From Asteroid Destruction

From: http://blogs.discovermagazine.com/sciencenotfiction/2009/09/04/the-elegant-way-to-save-the-earth-from-asteroid-destruction/
The Elegant Way to Save Earth From Asteroid Destruction

The one fact in Deep Impact that we can all agree on is that we should not allow the Earth to get hit by a large meteor. Depending on its size, it could potentially destroy anything from a city to the entire planet. And nations it doesn’t destroy outright would still have to deal with big atmospheric and weather problems caused by dust and debris. General badness all around.
Where common sense and the film divide is just how best to dodge an oncoming meteor. I wrote a while back on the idea of painting one side of the asteroid black while beaming heat onto it, causing the asteroid to shift course. It’s a neat idea, but not nearly as neat as the gravity tractor, not just because this approach is more elegant, but because there’s a British company called EADS Astriumthat announced last week that they could actually build one if it were needed.
The idea for the tug first proposed by NASA scientists Edward Lu and Stanley Love in a paper inNature in 2005. The pair realized that sure, we could change an asteroid’s course by docking a rocket onto the asteroid and pushing it, but landing on an asteroid is really hard: The asteroid is an extremely fast-moving target, and often it rotates asymmetrically around its axis, meaning that a lumpy part of the asteroid could smash a relatively teeny rocket in its rotational path. But, the scientists argued, the spaceship could hover 200 meters or more above the asteroid and use their mutual gravitational attraction to form a “towline” between the two. Then ship could use its own propulsion to slowly pull the asteroid to another course. It would have to push very gently to avoid breaking the bond and flying away, but over the course of 15 to 20 years, the asteroid could be persuaded to miss our planet.
The idea of a gravity tractor has been refined (PDF) by scientist Bong Wie, working at Arizona State University, who proposed the use of solar sails to eliminate the problem of fuel capacity on the satellite. (Love and Lu’s proposal relied on nuclear energy generators for power in their design.) Solar sails capture the momentum from photons of solar radiation to provide propulsion. By properly angling the sail (Wie proposes 35 degrees), the body of the space ship can be moved in the desired direction. The sail can take months to build up significant velocity, but since it has a long time to accomplish its tugboat-like task, this isn’t inherently a showstopper. That said, solar sail technology is still in its infancy—it’s only been tested on a very small scale by American and Japanese scientists in space—so it’s not ready for large-scale deployment just yet.
EADS Astrium’s design uses four ion thrusters of the sort used on Deep Space 1. Each is aligned to keep the device hovering above the asteroid while gently pulling the asteroid via it’s gravitation “towline” off course. The ship will be 30 meters (about 98 feet) across and weigh about 10 tons. In news articles, Astrium representatives say they haven’t even built a prototype yet, but they’re convinced they can bang one out if necessary.
All of which puts us back to the question of whether there’s enough capacity to provide the necessary early warning to build and launch a gravity tractor in time to have it work. Since NASA currently tracks about 6,000 asteroids, of the 100,000 out there, I’m going to go with no.