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An Optimized Control Method for Firing Angle of Hybrid Line Commutated Converter During AC Faults
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作者 Jianchao Ma Xiaoping Zhou +7 位作者 lingfeng deng Lerong Hong Hanting Peng Yizhen Hu Lei Zhang Fenfen Zhu Haitao Xia Honglin Ouyang 《Journal of Modern Power Systems and Clean Energy》 2025年第3期1102-1112,共11页
The introduction of fully controlled devices to build hybrid line commutated converter(H-LCC)has become a new idea to solve the commutation failure.However,existing H-LCC has not considered the implementation of a tar... The introduction of fully controlled devices to build hybrid line commutated converter(H-LCC)has become a new idea to solve the commutation failure.However,existing H-LCC has not considered the implementation of a targeted firing angle control strategy during AC faults,with the objective of enhancing their power transmission and fault response performance.For this reason,this paper proposes an optimized control method for firing angle of H-LCC,designated as flexible virtual firing(FVF).This method first analyzes the influence of alterations in firing angle on reactive power,commutation process and associated action paths.By combining prediction and dynamic search,it optimizes the natural commutation process through the utilization of dynamic boundary and minimum commutation area difference.This can mitigate the impact of AC faults on H-LCC and DC system,thereby improving power transmission and defense to commutation failure,which is beneficial for improving the stability of AC/DC power grids.Finally,the simulation results in PSCAD/EMTDC verify the effectiveness of the proposed method. 展开更多
关键词 Commutation failure fully controlled device firing angle optimization optimal control hybrid line commutated converter
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Commutation Failure Mitigation Method Based on Imaginary Commutation Process 被引量:3
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作者 Renlong Zhu Xiaoping Zhou +4 位作者 Haitao Xia Lerong Hong Hanhang Yin lingfeng deng Yifeng Liu 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2022年第5期1413-1422,共10页
The commutation failure(CF) mitigation effectiveness is normally restricted by the delay of extinction angle(EA)measurement or the errors of existing prediction methods for EA or firing angle(FA). For this purpose, th... The commutation failure(CF) mitigation effectiveness is normally restricted by the delay of extinction angle(EA)measurement or the errors of existing prediction methods for EA or firing angle(FA). For this purpose, this paper proposes a CF mitigation method based on the imaginary commutation process. For each sample point, an imaginary commutation process is constructed to simulate the actual commutation process.Then, the imaginary EA is calculated by comparing the imaginary supply voltage-time area and the imaginary demand voltage-time area, which can update the imaginary EA earlier than the measured EA. In addition, the proposed method considers the impacts of commutation voltage variation, DC current variation, and phase angle shift of commutation voltage on the commutation process, which can ensure a more accurate EA calculation. Moreover, the DC current prediction is proposed to improve the CF mitigation performance under the single-phase AC faults. Finally, the simulation results based on CIGRE model prove that the proposed method has a good performance in CF mitigation. 展开更多
关键词 Commutation failure(CF) commutation failure mitigation extinction angle line commutated converter based high-voltage direct current(LCC-HVDC)
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