NASA NTRS · 20030012920
Microwave Power for Smart Membrane Actuators
Abstract
The concept of microwave-driven smart membrane actuators is envisioned as the best option to alleviate the complexity associated with hard-wired control circuitry. A large, ultra-light space structure, such as solar sails and Gossamer spacecrafts, requires a distribution of power into individual membrane actuators to control them in an effective way. A patch rectenna array with a high voltage output was developed to drive smart membrane actuators. Networked patch rectenna array receives and converts microwave power into a DC power for an array of smart actuators. To use microwave power effectively, the concept of a power allocation and distribution (PAD) circuit is developed and tested for networking a rectenna/actuator patch array. For the future development, the PAD circuit could be imbedded into a single embodiment of rectenna and actuator array with the thin-film microcircuit embodiment. Preliminary design and fabrication of PAD circuitry that consists of a sixteen nodal elements were made for laboratory testing.
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Choi, Sang H., Song, Kyo D., Golembiewski, Walter T., Chu, Sang-Hyon, King, Glen C.. 2002-01-01. Microwave Power for Smart Membrane Actuators. https://ntrs.nasa.gov/citations/20030012920
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