Asteroid As A Resource
Abstract & Details
Research Area
Computer Engineering-Space Science
Keywords
Cislunar Space
Gravity
Seed Craft
Asteroids
Spacecraft
Orbit
Extraterrestrial
Abstract
Humanity has evolved on the largest solid body in our solar system, and transporting anything into space is an energy and cost-intensive process. So intensive, that if all the materials we have ever launched into space were collected and compressed into a single solid body, it would occupy a region no bigger than a tennis court [1]. Given how expensive it is to lift anything into space from the surface of the Earth, the future of efficient and affordable space travel may be dependent on using the resources that are already up there. Space may seem big and empty, and it mostly is, but there's enough raw material floating around out there in the form of asteroids and comets to keep us going for eons. The trick is going to be rounding these asteroids up and bringing them somewhere they can be of use without spending so much fuel on the process that the effort is rendered pointless. Made in Space is a company that develops technology for, you guessed it, making stuff in space. To gather the raw material for all of our making-in-space needs, Made in Space wants to send small “seed craft” to near-Earth asteroids with the aim of turning them into giant spacecraft that will fly themselves back to Earth to be mined. The basic idea of grabbing asteroids and bringing them back to the Earth-Moon system to harvest their resources isn't a new one. In fact, it's such a not-new idea that NASA plans to send a robotic spacecraft to a near-Earth asteroid and bring a chunk of it back to lunar orbit for study sometime within the next decade. The problem: NASA can bring back only a very, very small portion of the space rock, because asteroids are very, very big, and moving big things in space takes a lot of fuel. (In the case of a big asteroid, an almost impossibly large amount of fuel, especially if you want things done in a timely manner. What Made in Space wants to do with Project RAMA*, short for Reconstituting Asteroids into Mechanical Automata, is to make asteroids into self-assembled, self-contained, self-propelled, fully autonomous spacecraft.
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Author Information
| # | Name | Institute / Affiliation |
|---|---|---|
| 1 | Rohan Munshi | SRM Institute of Science and Technology |
| 2 | Kalpataru Podder | SRM Institute of Science and Technology |
| 3 | Nehal Singh | SRM Institute of Science and Technology |
| 4 | Arun Kumar | SRM Institute of Science and Technology |
How to Cite
Use the following formats to cite this article in your research.
APA Style
Munshi, Rohan, Podder, Kalpataru, Singh, Nehal, & Kumar, Arun (2018). Asteroid As A Resource. International Journal of Advance Research and Innovative Ideas In Education, 4(2), 4162-4166.
MLA Style
Munshi, Rohan, et al. "Asteroid As A Resource." International Journal of Advance Research and Innovative Ideas In Education, vol. 4, no. 2, 2018, pp. 4162-4166.
IEEE Style
Rohan Munshi, Kalpataru Podder, Nehal Singh, and Arun Kumar, "Asteroid As A Resource," International Journal of Advance Research and Innovative Ideas In Education, vol. 4, no. 2, pp. 4162-4166, 2018.
Vancouver Style
Munshi Rohan, Podder Kalpataru, Singh Nehal, Kumar Arun. Asteroid As A Resource. International Journal of Advance Research and Innovative Ideas In Education. 2018;4(2):4162-4166.
Harvard Style
Munshi, Rohan, Podder, Kalpataru, Singh, Nehal, & Kumar, Arun (2018) 'Asteroid As A Resource', International Journal of Advance Research and Innovative Ideas In Education, 4(2), pp. 4162-4166.
Chicago Style
Munshi, Rohan, et al. "Asteroid As A Resource." International Journal of Advance Research and Innovative Ideas In Education 4, no. 2 (2018): 4162-4166.
Turabian Style
Munshi, Rohan, et al. "Asteroid As A Resource." International Journal of Advance Research and Innovative Ideas In Education 4, no. 2 (2018): 4162-4166.
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