Recent demonstrations of Laser power beaming at DFRC and MSFC
Недавние демонстрации передачи мощности лазерным лучом в DFRC и MSFC
2005-01-01
SCID: 54.1/ddft88sf
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beam-expanding telescopelaser power beamingphotovoltaic receiversunmanned aircraftwireless power transmission
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Abstract (AI)
For several decades researchers have studied the potential of beaming energy to remote systems with experimental successes that have helped to drive the industry forward. We are, in today’s world, fortunate to see advances in solid‐state lasers, photovoltaic receivers, and unmanned probe vehicles complimenting an increasing complexity of envisioned earth based and deep space robotic systems. Recently, NASA researchers along with academia have helped to renew public awareness in the potential for such green power generation by demonstration of wireless power transmission from a laser to a small aircraft. This paper, given as the first compiled information release from these flight experiments, will discuss our flight demonstrations as well as address some of the key advances regarding laser development, beam‐expanding telescope, and photovoltaic receiver designs.
Key Findings
1
NASA researchers and academic partners demonstrated wireless power transmission from a laser to a small aircraft during flight experiments.
2
Recent advances in solid-state lasers, beam-expanding telescopes, and photovoltaic receivers enabled progress in laser power-beaming demonstrations.
3
The demonstrations represent a compiled release of experimental flight data supporting the feasibility of laser power beaming for remote systems.
4
The work highlights laser power beaming as a potential green power-generation approach for increasingly complex Earth-based and deep-space robotic systems.
Research Object
laser power beaming to remote systems, demonstrated through wireless power transmission from a laser to a small aircraft
Research Subject
flight-demonstration performance and enabling technologies, including laser development, beam-expanding telescope design, and photovoltaic receiver design
Publication Details
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2005-01-01
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