适用于逆变型电源送出线路的自适应补偿距离保护原理OA
Adaptive Compensation Based Distance Protection Principle for Transmission Lines Supplied by Inverter-based Resources
受换流器弱馈特性和控制策略影响,逆变型电源故障电流幅值和相位受控,导致送出线路基于工频量的传统距离保护抗过渡电阻能力弱,过渡电阻较高时,不对称故障下逆变型电源侧距离保护无法正确动作.该文提出一种基于特征谐波自适应补偿的距离保护原理,利用电力电子换流器的高可控性,通过实时检测换流器出口等效阻抗变化,根据故障严重程度自适应注入特征谐波,用以补偿逆变型电源侧故障电流的幅值和相位,通过谐波整定阻抗和测量阻抗的关系构成保护判据,从原理上削弱了过渡电阻的影响,解决了新能源送出线路距离保护在弱馈场景下不正确动作的问题.所提保护方案不受换流器容量和新能源场站容量变化的影响,具备较高的抗过渡电阻能力及较好的抗噪声干扰能力.在PSCAD/EMTDC软件中基于改进IEEE 9节点测试系统进行仿真分析,测试结果表明,所提方案适用于逆变型电源送出线路保护.
Due to the weak infeed characteristics of converters and the influence of control strategies,the fault current magnitude and phase of inverter-based resources(IBRs)are highly controllable,leading to poor transition resistance tolerance of conventional distance protection schemes.Under high transition resistance conditions,especially during asymmetric faults,distance protection on the IBR side of the transmission line may fail to operate correctly.This paper proposes a distance protection principle based on adaptive compensation using characteristic harmonics.By employing the high controllability of power electronic converters,the method monitors the variation of the converter's output equivalent impedance in real time.According to the severity of the fault,the converter injects characteristic harmonic signals adaptively to compensate for the magnitude and phase of the IBR-side fault current.The protection logic is built on the relationship between the measured impedance and a preset impedance at the harmonic frequency.This approach reduces the influence of transition resistance from the protection principle and effectively addresses the malfunction of distance protection under weak infeed conditions.The proposed protection is independent of converter capacity or the installed capacity of the new energy station.It offers strong tolerance to transition resistance and demonstrates strong immunity to noise.Simulation studies based on a modified IEEE 9-bus test system in PSCAD/EMTDC confirm that the proposed scheme is suitable for transmission line protection involving inverter-based renewable energy sources.
赵兴乾;郑晓冬;韩正谦;晁晨栩;邰能灵;刘中平;侯勇;贺超凡
电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市闵行区 200240电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市闵行区 200240电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市闵行区 200240电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市闵行区 200240电力传输与功率变换控制教育部重点实验室(上海交通大学),上海市闵行区 200240国家电网有限公司华东分部,上海市浦东新区 200120国家电网有限公司华东分部,上海市浦东新区 200120国网湖南省电力有限公司长沙供电分公司,湖南省长沙市 410015
信息技术与安全科学
逆变型电源送出线路特征谐波注入自适应补偿距离保护过渡电阻新能源场站
transmission line of inverter-based resourcescharacteristic harmonic injectionadaptive compensation based distance protectiontransition resistancenew energy station
《中国电机工程学报》 2026 (14)
5772-5782,中插6,12
国家自然科学基金项目(52277112)国家重点研发计划项目(2024YFB4206501)国家电网有限公司科技项目(SGSHCMOOHWJS2200750).Project Supported by National Natural Science Foundation of China(52277112)National Key R&D Program of China(2024YFB4206501)Science and Technology Project of State Grid Corporation of China(SGSHCMOOHWJS2200750).
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