每年專案
摘要
In this study, a recurrent fuzzy cerebellar model articulation controller (RFCMAC) is proposed to regulate the active and reactive power of a single-stage three-phase grid-tied photovoltaic (PV) system during grid faults. The proposed RFCMAC uses the signed distance and input space repartition mechanisms to convert the dual input variables to sole input variable and repartition the input space to an appropriate quantity. Therefore, the structure and computation complexities of the proposed RFCMAC are lowered and make it more practical. Moreover, in order to satisfy the low-voltage ride through (LVRT) requirements and ensure the injected currents within the safety value, the active and reactive power commands of the controllers are calculated by using the current profile of the LVRT grid requirements and the current limit of the inverter. Furthermore, varied learning-rate coefficients for the online parameters learning are designed to guarantee the convergence of the tracking error for the proposed RFCMAC. Finally, some experimental tests are presented to demonstrate the effectiveness of the proposed controller.
原文 | ???core.languages.en_GB??? |
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主出版物標題 | 2017 IEEE 3rd International Future Energy Electronics Conference and ECCE Asia, IFEEC - ECCE Asia 2017 |
發行者 | Institute of Electrical and Electronics Engineers Inc. |
頁面 | 716-721 |
頁數 | 6 |
ISBN(電子) | 9781509051571 |
DOIs | |
出版狀態 | 已出版 - 25 7月 2017 |
事件 | 3rd IEEE International Future Energy Electronics Conference and ECCE Asia, IFEEC - ECCE Asia 2017 - Kaohsiung, Taiwan 持續時間: 3 6月 2017 → 7 6月 2017 |
出版系列
名字 | 2017 IEEE 3rd International Future Energy Electronics Conference and ECCE Asia, IFEEC - ECCE Asia 2017 |
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???event.eventtypes.event.conference??? | 3rd IEEE International Future Energy Electronics Conference and ECCE Asia, IFEEC - ECCE Asia 2017 |
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國家/地區 | Taiwan |
城市 | Kaohsiung |
期間 | 3/06/17 → 7/06/17 |
指紋
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