Development and Application of the High Power Planetary Power Generator

碩士 === 崑山科技大學 === 光電工程研究所 === 99 === The size of the output voltage of traditional power generators depend on the magnetic flux changes in the induction coil over an amount of time, so in order to increase the output voltage one needs to increase the size of the magnetic field, the number of inducti...

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Main Authors: Hong Ji, 季宏
Other Authors: Ming-Chun Hsieh
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/24698828914753109009
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spelling ndltd-TW-099KSUT51240012015-10-13T20:18:51Z http://ndltd.ncl.edu.tw/handle/24698828914753109009 Development and Application of the High Power Planetary Power Generator 高功率行星式發電機構之應用研究 Hong Ji 季宏 碩士 崑山科技大學 光電工程研究所 99 The size of the output voltage of traditional power generators depend on the magnetic flux changes in the induction coil over an amount of time, so in order to increase the output voltage one needs to increase the size of the magnetic field, the number of induction coils, add silicon steels, and install gear boxes..etc. However, these methods will cause the rotor weight to increase, resulting in a magnetic pull, thereby increasing the generator bearing load which makes the rotor harder to run, making it a bad choice to use clean energy as its driving source. Therefore how to improve traditional power generating devices is the purpose of this research. This thesis report introduces a newly developed “Planet Style Power Generator”, and applies this generator on a variety of devices. Based on actual testing results using the device on HPEG, the maximum output of the developed HPEG can reach 300W, with the output current being 1.2~1.3A. Using the device on an emergency back up power generator, the maximum output power could reach up to 46W, with a maximum output current of 0.38A.Used on Planetary axial flux a single-phase AC power permanent magnet generator, the greatest successful output is about 410W when the rotating speed reaches the maximum 200 rpm. Ming-Chun Hsieh 謝明君 2011 學位論文 ; thesis 82 zh-TW
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description 碩士 === 崑山科技大學 === 光電工程研究所 === 99 === The size of the output voltage of traditional power generators depend on the magnetic flux changes in the induction coil over an amount of time, so in order to increase the output voltage one needs to increase the size of the magnetic field, the number of induction coils, add silicon steels, and install gear boxes..etc. However, these methods will cause the rotor weight to increase, resulting in a magnetic pull, thereby increasing the generator bearing load which makes the rotor harder to run, making it a bad choice to use clean energy as its driving source. Therefore how to improve traditional power generating devices is the purpose of this research. This thesis report introduces a newly developed “Planet Style Power Generator”, and applies this generator on a variety of devices. Based on actual testing results using the device on HPEG, the maximum output of the developed HPEG can reach 300W, with the output current being 1.2~1.3A. Using the device on an emergency back up power generator, the maximum output power could reach up to 46W, with a maximum output current of 0.38A.Used on Planetary axial flux a single-phase AC power permanent magnet generator, the greatest successful output is about 410W when the rotating speed reaches the maximum 200 rpm.
author2 Ming-Chun Hsieh
author_facet Ming-Chun Hsieh
Hong Ji
季宏
author Hong Ji
季宏
spellingShingle Hong Ji
季宏
Development and Application of the High Power Planetary Power Generator
author_sort Hong Ji
title Development and Application of the High Power Planetary Power Generator
title_short Development and Application of the High Power Planetary Power Generator
title_full Development and Application of the High Power Planetary Power Generator
title_fullStr Development and Application of the High Power Planetary Power Generator
title_full_unstemmed Development and Application of the High Power Planetary Power Generator
title_sort development and application of the high power planetary power generator
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/24698828914753109009
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