Experimental teaching research on the design of sequence control system of synthetic circuit for capacitive current switching
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(School of Electrical and Automation Engineering, East China Jiaotong University, Nanchang 330013, China)

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TM561;G642.423

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    Abstract:

    In power systems, the high?voltage circuit breakers are routinely deployed to switch capacitor banks, thus optimizing reactive power compensation, enhancing power factor, minimizing power losses, stabilizing voltage, and elevating power supply quality. Consequently, the capacitive current switching experiment plays a pivotal role in assessing the effectiveness of high?voltage circuit breakers. In laboratory settings, synthetic circuits are commonly employed to evaluate the capacitive current switching performance of these circuit breakers. This article introduces a novel synthesis loop for capacitive current switching, along with its corresponding operation sequence control system. This synthetic loop capitalizes on the phase angle characteristics inherent in three?phase AC power supplies, enabling direct synchronization of voltage and current sources without the complexity of additional synchronization devices. This simplifies the operations and enhances the reliability. The timing control system for the loop comprises an upper computer software operating platform based on LabVIEW and a lower computer control unit based on Arduino. This setup achieves intelligent and visual control. The system design prioritizes resistance against electromagnetic interference and employs photoelectric technology for signal transmission, mitigating potential disruptions caused by high?voltage and high?current signals on control signals. Following rigorous testing, the entire control system demonstrated remarkable performance under high?pressure conditions. This experimental teaching approach not only equips students with an good understanding of capacitive switching synthesis loop control schemes but also instills a comprehensive grasp of timing control principles. Moreover, it fosters practical skills in hands?on operation and proficiency in engineering software applications, providing a solid foundation for future roles in related positions.

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韦宝泉,李泽文,余勇祥,曾建军,邓芳明.高压断路器容性投切合成回路时序控制系统设计实验教学研究[J].电力科学与技术学报英文版,2023,38(4):257-264. WEI Baoquan, LI Zewen, YU Yongxiang, ZENG Jianjun, DENG Fangming. Experimental teaching research on the design of sequence control system of synthetic circuit for capacitive current switching[J]. Journal of Electric Power Science and Technology,2023,38(4):257-264.

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  • Received:
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  • Online: November 06,2023
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