DocumentCode :
2447863
Title :
Networked rectenna array for smart material actuators
Author :
Choi, S.H. ; Golembiewski, Walter T. ; Song, K.D.
Author_Institution :
NASA Langley Res. Center, Hampton, VA, USA
Volume :
2
fYear :
2000
fDate :
2000
Firstpage :
1449
Abstract :
The concept of microwave-driven smart material actuators is envisioned as the best option to alleviate the complexity associated with hard-wired control circuitry. A networked rectenna patch array receives and converts microwave power into DC power for an array of smart actuators. To use microwave power effectively, the concept of a power allocation and distribution (PAD) circuit is adopted for networking a rectenna/actuator patch array. The PAD circuit is imbedded into a single embodiment of rectenna and actuator array. The thin-film microcircuit embodiment of the PAD circuit adds an insignificant amount of rigidity to membrane flexibility. Preliminary design and fabrication of PAD circuitry that consists of a few nodal elements were made for laboratory testing. The networked actuators were tested to correlate the network coupling effect, power allocation and distribution, and response time. The features of preliminary design are 16-channel computer control of actuators by a PCI board and the compensator for a power failure or leakage of one or more rectennas
Keywords :
intelligent actuators; microstrip antenna arrays; microwave power transmission; power conversion; 16-channel computer control; DC power; laboratory testing; microwave power conversion; microwave-driven smart material actuators; network coupling effect; networked rectenna array; networked rectenna patch array; power allocation and distribution circuit; power failure; rectenna/actuator patch array; response time; smart material actuators; thin-film microcircuit; Atherosclerosis; Biomembranes; Circuit testing; Fabrication; Flexible printed circuits; Intelligent actuators; Microwave antenna arrays; Microwave circuits; Rectennas; Thin film circuits;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy Conversion Engineering Conference and Exhibit, 2000. (IECEC) 35th Intersociety
Conference_Location :
Las Vegas, NV
Print_ISBN :
1-56347-375-5
Type :
conf
DOI :
10.1109/IECEC.2000.870963
Filename :
870963
Link To Document :
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