Rapid Re-Evolution of an X-Band Antenna for Nasa’s Space Technology 5 Mission

  • Lohn J
  • Hornby G
  • Linden D
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Abstract

Whereas the current practice of designing antennas by hand is severely limited because it is both time and labor intensive and requires a significant amount of domain knowl- edge, evolutionary algorithms can be used to search the design space and automatically find novel antenna designs that are more effective than would otherwise be developed. Here we present our work in using evolutionary algorithms to automatically design an X-band antenna for NASA’s Space Technology 5 (ST5) spacecraft. Two evolution- ary algorithms were used: the first uses a vector of real-valued parameters and the second uses a tree-structured generative representation for constructing the antenna. The highest-performance antennas from both algorithms were fabricated and tested and both outperformed a hand-designed antenna produced by the antenna contractor for the mission. Subsequent changes to the spacecraft orbit resulted in a change in requirements for the spacecraft antenna. By adjusting our fitness function we were able to rapidly evolve a new set of antennas for this mission in less than a month. One of these new antenna designswas built, tested, and approved for deployment on the three ST5 spacecraft, which were successfully launched into space on March 22, 2006. This evolved antenna design is the first computer-evolved antenna to be deployed for any application and is the first computer-evolved hardware in space. processes are able to accommodatenew requirements quickly and with minimal humaneffort.

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Lohn, J. D., Hornby, G. S., & Linden, D. S. (2006). Rapid Re-Evolution of an X-Band Antenna for Nasa’s Space Technology 5 Mission. In Genetic Programming Theory and Practice III (pp. 65–78). Kluwer Academic Publishers. https://doi.org/10.1007/0-387-28111-8_5

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