An Active Filter with Low-Frequency Ripple Reduction for Single-Phase Grid-Connected System
碩士 === 國立臺北科技大學 === 車輛工程系 === 106 === The objective of this dissertation is to propose a new control strategy for the active filter. It controls the output current of the distributed energy devices for simplifying the control loop design of the active filter, and therefore the output current of the...
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ndltd-TW-106TIT051620072019-05-16T00:22:33Z http://ndltd.ncl.edu.tw/handle/jrw852 An Active Filter with Low-Frequency Ripple Reduction for Single-Phase Grid-Connected System 具低頻漣波抑制之主動式濾波器 於單相市電併聯系統應用 Quan-Sheng Lin 林詮盛 碩士 國立臺北科技大學 車輛工程系 106 The objective of this dissertation is to propose a new control strategy for the active filter. It controls the output current of the distributed energy devices for simplifying the control loop design of the active filter, and therefore the output current of the filter can be adjustable indirectly. The proposed control strategy can be used to reduce the instantaneous power phenomenon with double line frequency of the single-phase DC/AC conversion system. Thus, the low output ripple and long-life cycle characteristics of distributed energy devices can be achieved. This dissertation covers the root causes of the double line-frequency ripple and how to reduce that with the proposed active filter. Besides, the circuit simulation, steady-state analysis, small-signal model derivation, control loop design, and hardware implementation are made. Finally, the proposed active filter is built for single-phase grid-connected system with input voltage of 36V and output AC voltage of 110Vrms / output rated power of 500W. According to the simulation results and experimental verifications for the proposed active filter, the low ripple characteristics of the DC side for the single-phase grid-connected system can be achieved. 賴慶明 2017 學位論文 ; thesis 92 zh-TW |
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碩士 === 國立臺北科技大學 === 車輛工程系 === 106 === The objective of this dissertation is to propose a new control strategy for the active filter. It controls the output current of the distributed energy devices for simplifying the control loop design of the active filter, and therefore the output current of the filter can be adjustable indirectly. The proposed control strategy can be used to reduce the instantaneous power phenomenon with double line frequency of the single-phase DC/AC conversion system. Thus, the low output ripple and long-life cycle characteristics of distributed energy devices can be achieved. This dissertation covers the root causes of the double line-frequency ripple and how to reduce that with the proposed active filter. Besides, the circuit simulation, steady-state analysis, small-signal model derivation, control loop design, and hardware implementation are made. Finally, the proposed active filter is built for single-phase grid-connected system with input voltage of 36V and output AC voltage of 110Vrms / output rated power of 500W. According to the simulation results and experimental verifications for the proposed active filter, the low ripple characteristics of the DC side for the single-phase grid-connected system can be achieved.
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author2 |
賴慶明 |
author_facet |
賴慶明 Quan-Sheng Lin 林詮盛 |
author |
Quan-Sheng Lin 林詮盛 |
spellingShingle |
Quan-Sheng Lin 林詮盛 An Active Filter with Low-Frequency Ripple Reduction for Single-Phase Grid-Connected System |
author_sort |
Quan-Sheng Lin |
title |
An Active Filter with Low-Frequency Ripple Reduction for Single-Phase Grid-Connected System |
title_short |
An Active Filter with Low-Frequency Ripple Reduction for Single-Phase Grid-Connected System |
title_full |
An Active Filter with Low-Frequency Ripple Reduction for Single-Phase Grid-Connected System |
title_fullStr |
An Active Filter with Low-Frequency Ripple Reduction for Single-Phase Grid-Connected System |
title_full_unstemmed |
An Active Filter with Low-Frequency Ripple Reduction for Single-Phase Grid-Connected System |
title_sort |
active filter with low-frequency ripple reduction for single-phase grid-connected system |
publishDate |
2017 |
url |
http://ndltd.ncl.edu.tw/handle/jrw852 |
work_keys_str_mv |
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