采用串联谐振型故障电流限制器(fault current limiter,FCL)是解决超高压电网短路电流超标问题的一种新技术手段。文章介绍了华东500kV电网FCL示范工程的选址和主要参数设计等基本情况,阐述了基于晶闸管保护串联电容器(TPSC)技术的FCL...采用串联谐振型故障电流限制器(fault current limiter,FCL)是解决超高压电网短路电流超标问题的一种新技术手段。文章介绍了华东500kV电网FCL示范工程的选址和主要参数设计等基本情况,阐述了基于晶闸管保护串联电容器(TPSC)技术的FCL的基本原理和主体结构,以及FCL控制保护样机的系统结构和主要功能,详细描述了样机所采用的各类保护配置,并分析了FCL对系统继电保护的影响。对保护配置中最具代表性的线路过电流瞬时保护和金属氧化物限压器(MOV)过电流保护试验数据进行了分析,验证了FCL控制保护样机保护配置的合理性和实用性。展开更多
This paper analyzes the fundamental frequency impedance presents a novel transmission line pilot protection scheme characteristic of a thyristor controlled series capacitor (TCSC) and based on fault component integr...This paper analyzes the fundamental frequency impedance presents a novel transmission line pilot protection scheme characteristic of a thyristor controlled series capacitor (TCSC) and based on fault component integrated impedance (FCII) calculated for a transmission line with TCSC and controllable shunt reactor (CSR). The FCII is defined as the ratio of the sum of the fault component voltage phasors of a transmission line with TCSC and CSR to the sum of the fault component current phasors where all the phasors are determined at both line's terminals. It can be used to distinguish internal faults occurring on the line from external ones. If the fault is an external one the FCII reflects the line's capacitive impedance and has large value. If the fault is an internal one on the line the FCII reflects the impedance of the equivalent system and the line and is relatively small. The new pilot protection scheme can be easily set and has the fault phase selection ability and also it is not affected by the capacitive current and the fault transition resistance. It is not sensitive to compensation level and dynamics of TCSC and CSR. The effectiveness of the new scheme is validated against data obtained in ATP simulations and Northwest China 750 kV Project.展开更多
文摘采用串联谐振型故障电流限制器(fault current limiter,FCL)是解决超高压电网短路电流超标问题的一种新技术手段。文章介绍了华东500kV电网FCL示范工程的选址和主要参数设计等基本情况,阐述了基于晶闸管保护串联电容器(TPSC)技术的FCL的基本原理和主体结构,以及FCL控制保护样机的系统结构和主要功能,详细描述了样机所采用的各类保护配置,并分析了FCL对系统继电保护的影响。对保护配置中最具代表性的线路过电流瞬时保护和金属氧化物限压器(MOV)过电流保护试验数据进行了分析,验证了FCL控制保护样机保护配置的合理性和实用性。
基金supported by the National Natural Science Foundation of China (Grant Nos.50877061 and 51037005)
文摘This paper analyzes the fundamental frequency impedance presents a novel transmission line pilot protection scheme characteristic of a thyristor controlled series capacitor (TCSC) and based on fault component integrated impedance (FCII) calculated for a transmission line with TCSC and controllable shunt reactor (CSR). The FCII is defined as the ratio of the sum of the fault component voltage phasors of a transmission line with TCSC and CSR to the sum of the fault component current phasors where all the phasors are determined at both line's terminals. It can be used to distinguish internal faults occurring on the line from external ones. If the fault is an external one the FCII reflects the line's capacitive impedance and has large value. If the fault is an internal one on the line the FCII reflects the impedance of the equivalent system and the line and is relatively small. The new pilot protection scheme can be easily set and has the fault phase selection ability and also it is not affected by the capacitive current and the fault transition resistance. It is not sensitive to compensation level and dynamics of TCSC and CSR. The effectiveness of the new scheme is validated against data obtained in ATP simulations and Northwest China 750 kV Project.