Design of Programmable Power-Quality Power Supply

碩士 === 國立中央大學 === 電機工程學系 === 103 === This thesis is to describe the design process and methods of a programmable power-quality power supply. The main purpose is to design an AC power supply, but it can editing an arbitrary output voltage waveform through a programmable program not only the general c...

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Main Authors: Chieh-yin Cheng, 鄭介尹
Other Authors: Cheng-i Chen
Format: Others
Language:en_US
Published: 2015
Online Access:http://ndltd.ncl.edu.tw/handle/ub94gr
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spelling ndltd-TW-103NCU054420822019-05-15T22:08:47Z http://ndltd.ncl.edu.tw/handle/ub94gr Design of Programmable Power-Quality Power Supply 可程式化電力品質電源供應器設計 Chieh-yin Cheng 鄭介尹 碩士 國立中央大學 電機工程學系 103 This thesis is to describe the design process and methods of a programmable power-quality power supply. The main purpose is to design an AC power supply, but it can editing an arbitrary output voltage waveform through a programmable program not only the general common sinusoidal output voltage waveform. The alternating current with arbitrary waveform can be used to emulate a power supply of pollution with power harmonics, flicker, sags, swells and other disturbances. They can be used as a reference simulate power source when we are designing a power source filter or can be used to test equipment for power pollution interference. Power-quality power supply rated output power given here is 500 VA, which is mainly use of class-D power amplifier as the main body. The stage before class-D power amplifier is a boost circuit which used to rise the input voltage. Input voltage of the class-D power amplifier is output voltage of the boost circuit. Programmable signal and user interface are edited by the LabVIEW software, and the signal DAC output through myDAQ which input to the microcontroller dsPIC30f4011 for the PWM control of switching elements in the system. Finally, coupled with hardware circuits, software and firmware to complete the overall structure and function. Sine wave output voltage of the system up to R.M.S. value 120V. In the part of harmonic waveform output voltage can be added multiple sets of arbitrary frequency, amplitude harmonic components. The highest harmonic frequency up to 2kHz. In the part of flicker output voltage waveform can be added multiple sets of arbitrary frequency, amplitude flicker component. The minimum flicker frequency up to 1Hz. In the part of swells, sags, interrupts waveform output voltage can be set that voltage fluctuation occur at any times, and can do multiple sets of voltage fluctuation function. Cheng-i Chen 陳正一 2015 學位論文 ; thesis 117 en_US
collection NDLTD
language en_US
format Others
sources NDLTD
description 碩士 === 國立中央大學 === 電機工程學系 === 103 === This thesis is to describe the design process and methods of a programmable power-quality power supply. The main purpose is to design an AC power supply, but it can editing an arbitrary output voltage waveform through a programmable program not only the general common sinusoidal output voltage waveform. The alternating current with arbitrary waveform can be used to emulate a power supply of pollution with power harmonics, flicker, sags, swells and other disturbances. They can be used as a reference simulate power source when we are designing a power source filter or can be used to test equipment for power pollution interference. Power-quality power supply rated output power given here is 500 VA, which is mainly use of class-D power amplifier as the main body. The stage before class-D power amplifier is a boost circuit which used to rise the input voltage. Input voltage of the class-D power amplifier is output voltage of the boost circuit. Programmable signal and user interface are edited by the LabVIEW software, and the signal DAC output through myDAQ which input to the microcontroller dsPIC30f4011 for the PWM control of switching elements in the system. Finally, coupled with hardware circuits, software and firmware to complete the overall structure and function. Sine wave output voltage of the system up to R.M.S. value 120V. In the part of harmonic waveform output voltage can be added multiple sets of arbitrary frequency, amplitude harmonic components. The highest harmonic frequency up to 2kHz. In the part of flicker output voltage waveform can be added multiple sets of arbitrary frequency, amplitude flicker component. The minimum flicker frequency up to 1Hz. In the part of swells, sags, interrupts waveform output voltage can be set that voltage fluctuation occur at any times, and can do multiple sets of voltage fluctuation function.
author2 Cheng-i Chen
author_facet Cheng-i Chen
Chieh-yin Cheng
鄭介尹
author Chieh-yin Cheng
鄭介尹
spellingShingle Chieh-yin Cheng
鄭介尹
Design of Programmable Power-Quality Power Supply
author_sort Chieh-yin Cheng
title Design of Programmable Power-Quality Power Supply
title_short Design of Programmable Power-Quality Power Supply
title_full Design of Programmable Power-Quality Power Supply
title_fullStr Design of Programmable Power-Quality Power Supply
title_full_unstemmed Design of Programmable Power-Quality Power Supply
title_sort design of programmable power-quality power supply
publishDate 2015
url http://ndltd.ncl.edu.tw/handle/ub94gr
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