Implementation of a Series Resonant High Voltage Generator for High Power Apparatus Test

碩士 === 國立臺灣科技大學 === 電機工程系 === 94 === The purpose of this thesis is to implement a series resonant type high voltage generator used for testing high power electric device. Under high voltage testing procedure, the impedance characteristic of the terminal of the under-test device is similar to capacit...

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Main Authors: Zhi-Ping Guo, 郭志平
Other Authors: Tsung-Ming, Yang
Format: Others
Language:zh-TW
Published: 2006
Online Access:http://ndltd.ncl.edu.tw/handle/72nq58
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spelling ndltd-TW-094NTUS54420262019-05-15T19:18:14Z http://ndltd.ncl.edu.tw/handle/72nq58 Implementation of a Series Resonant High Voltage Generator for High Power Apparatus Test 串聯諧振式高壓設備試驗用電源產生器之研製 Zhi-Ping Guo 郭志平 碩士 國立臺灣科技大學 電機工程系 94 The purpose of this thesis is to implement a series resonant type high voltage generator used for testing high power electric device. Under high voltage testing procedure, the impedance characteristic of the terminal of the under-test device is similar to capacitance. Therefore, the series resonant method can be employed with treating the device terminals as the capacitor needed in the resonant circuit. The proposed system is a standard second-order system, so the resonant frequency can be estimated through the transient responses of the system. Besides, the resonant condition is monitored by minimizing the total harmonic distortion(THD) of the voltage applied to the device terminals. Because the resonant frequency is device dependent, a tunable digital band-pass filter is designed for separating the fundamental component from the output voltage. In this thesis, we use perturbation and observeation method to track the resonant frequency of the system. A DSP-based controller is employed to regulate the output voltage. Both the simulation and experimental results are obtained to show the validity of the proposed system. Tsung-Ming, Yang 楊宗銘 2006 學位論文 ; thesis 124 zh-TW
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language zh-TW
format Others
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description 碩士 === 國立臺灣科技大學 === 電機工程系 === 94 === The purpose of this thesis is to implement a series resonant type high voltage generator used for testing high power electric device. Under high voltage testing procedure, the impedance characteristic of the terminal of the under-test device is similar to capacitance. Therefore, the series resonant method can be employed with treating the device terminals as the capacitor needed in the resonant circuit. The proposed system is a standard second-order system, so the resonant frequency can be estimated through the transient responses of the system. Besides, the resonant condition is monitored by minimizing the total harmonic distortion(THD) of the voltage applied to the device terminals. Because the resonant frequency is device dependent, a tunable digital band-pass filter is designed for separating the fundamental component from the output voltage. In this thesis, we use perturbation and observeation method to track the resonant frequency of the system. A DSP-based controller is employed to regulate the output voltage. Both the simulation and experimental results are obtained to show the validity of the proposed system.
author2 Tsung-Ming, Yang
author_facet Tsung-Ming, Yang
Zhi-Ping Guo
郭志平
author Zhi-Ping Guo
郭志平
spellingShingle Zhi-Ping Guo
郭志平
Implementation of a Series Resonant High Voltage Generator for High Power Apparatus Test
author_sort Zhi-Ping Guo
title Implementation of a Series Resonant High Voltage Generator for High Power Apparatus Test
title_short Implementation of a Series Resonant High Voltage Generator for High Power Apparatus Test
title_full Implementation of a Series Resonant High Voltage Generator for High Power Apparatus Test
title_fullStr Implementation of a Series Resonant High Voltage Generator for High Power Apparatus Test
title_full_unstemmed Implementation of a Series Resonant High Voltage Generator for High Power Apparatus Test
title_sort implementation of a series resonant high voltage generator for high power apparatus test
publishDate 2006
url http://ndltd.ncl.edu.tw/handle/72nq58
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