Design of a Single-Phase Inverter using Trapezoidal Integration-Based Proportional Integral Derivative Controller
碩士 === 義守大學 === 電機工程學系 === 103 === Traditional PID (proportional-integral-derivative) controllers have been broadly applied to single-phase inverters due to their simple structures and easy designs. Yet, the integral term of traditional PID controllers is based on rectangular integration. If the loa...
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ndltd-TW-103ISU054420242019-05-15T22:08:24Z http://ndltd.ncl.edu.tw/handle/2vsau7 Design of a Single-Phase Inverter using Trapezoidal Integration-Based Proportional Integral Derivative Controller 基於梯形積分的比例積分微分控制器於單相換流器之設計 Kuo-Yuan Liao 廖國淵 碩士 義守大學 電機工程學系 103 Traditional PID (proportional-integral-derivative) controllers have been broadly applied to single-phase inverters due to their simple structures and easy designs. Yet, the integral term of traditional PID controllers is based on rectangular integration. If the load of the inverter is highly non-linear, the precision of calculations will be low, and there will be steady-state errors. This thesis proposed a PID controller based on trapezoidal integration. Unlike rectangular integration, trapezoidal integration does not underestimate the error area, which can further result in calculation errors. Thus, the proposed single-phase inverter can achieve low total harmonic distortion (THD) output voltage and fast dynamic response. The problem with inverters using traditional PID controller of possible tracking errors in cases with highly non-linear loads can be resolved. To verify the effectiveness of the proposed controller, this thesis used the software MATLAB to run simulations. And the results showed that the AC output voltage of the proposed single-phase inverter is of high quality in any case with resistive load, step load change, or non-linear load. En-Chih Chang 張恩誌 2015 學位論文 ; thesis 44 zh-TW |
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碩士 === 義守大學 === 電機工程學系 === 103 === Traditional PID (proportional-integral-derivative) controllers have been broadly applied to single-phase inverters due to their simple structures and easy designs. Yet, the integral term of traditional PID controllers is based on rectangular integration. If the load of the inverter is highly non-linear, the precision of calculations will be low, and there will be steady-state errors. This thesis proposed a PID controller based on trapezoidal integration. Unlike rectangular integration, trapezoidal integration does not underestimate the error area, which can further result in calculation errors. Thus, the proposed single-phase inverter can achieve low total harmonic distortion (THD) output voltage and fast dynamic response. The problem with inverters using traditional PID controller of possible tracking errors in cases with highly non-linear loads can be resolved. To verify the effectiveness of the proposed controller, this thesis used the software MATLAB to run simulations. And the results showed that the AC output voltage of the proposed single-phase inverter is of high quality in any case with resistive load, step load change, or non-linear load.
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author2 |
En-Chih Chang |
author_facet |
En-Chih Chang Kuo-Yuan Liao 廖國淵 |
author |
Kuo-Yuan Liao 廖國淵 |
spellingShingle |
Kuo-Yuan Liao 廖國淵 Design of a Single-Phase Inverter using Trapezoidal Integration-Based Proportional Integral Derivative Controller |
author_sort |
Kuo-Yuan Liao |
title |
Design of a Single-Phase Inverter using Trapezoidal Integration-Based Proportional Integral Derivative Controller |
title_short |
Design of a Single-Phase Inverter using Trapezoidal Integration-Based Proportional Integral Derivative Controller |
title_full |
Design of a Single-Phase Inverter using Trapezoidal Integration-Based Proportional Integral Derivative Controller |
title_fullStr |
Design of a Single-Phase Inverter using Trapezoidal Integration-Based Proportional Integral Derivative Controller |
title_full_unstemmed |
Design of a Single-Phase Inverter using Trapezoidal Integration-Based Proportional Integral Derivative Controller |
title_sort |
design of a single-phase inverter using trapezoidal integration-based proportional integral derivative controller |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/2vsau7 |
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