DocumentCode
3223233
Title
Performance improvement of the linear BLDG generator in a deep space explorer
Author
Lee, Hyung-Woo ; Kim, Taehyung ; Ehsani, Mehrdad
Author_Institution
Dept. of Theor. & Appl. Mech., Cornell Univ., Ithaca, NY, USA
Volume
3
fYear
2004
fDate
2-6 Nov. 2004
Firstpage
2497
Abstract
This paper presents methods to improve performance of the power supply system in a NASA deep space explorer. In the Stirling engine driven reciprocating Brushless DC (BLDC) generator, the accurate position information of the prime mover is important to diagnose the performance of the engine and prevent the distortion of the output power. Because sensors to detect the position arc fragile and unreliable, and conventional sensorless technique has a drawback in the low speed region, a novel sensorless position detection technique for the prime mover has been proposed and verified. Another major issue of the generator for the spacecraft is power density maximization. The mass of the power system is important to the mass of the satellite. Therefore, the components of the spacecraft should be lightweight. Conventional rectification methods cannot achieve the maximum power possible because of non-optimal current waveforms. The optimal current waveform for maximizing power density and minimizing machine size and weight in a nonsinusoidal power supply system has been derived, incorporated in a control system, and verified by simulation work.
Keywords
DC generators; Stirling engines; aircraft power systems; brushless machines; linear machines; optimal control; position control; sensors; space vehicle power plants; NASA; Stirling engine; accurate position information; control system; deep space explorer; linear BLDG generator; nonoptimal current waveforms; position detection technique; power density maximization; power supply system; prime mover; reciprocating brushless DC generator; satellites; sensors; spacecraft generators; Control system synthesis; DC generators; NASA; Power generation; Power supplies; Power systems; Satellites; Space exploration; Space vehicles; Stirling engines;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics Society, 2004. IECON 2004. 30th Annual Conference of IEEE
Print_ISBN
0-7803-8730-9
Type
conf
DOI
10.1109/IECON.2004.1432193
Filename
1432193
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