An accurate numerical algorithm for three-line fault involving different phases from each of two-parallel lines is presented. It is based on one-terminal voltage and current data. The loop and nodel equations comparin...An accurate numerical algorithm for three-line fault involving different phases from each of two-parallel lines is presented. It is based on one-terminal voltage and current data. The loop and nodel equations comparing faulted phase to non-faulted phase of two-parallel lines are introduced in the fault location estimation modal, in which the faulted impedance of remote end is not involved. The effect of load flow and fault resistance on the accuracy of fault location are effectively eliminated, therefore an accurate algorithm of locating fault is derived. The algorithm is demonstrated by digital computer simulations and the results show that errors in locating fault are less than 1%.展开更多
为了快速可靠识别基于模块化多电平换流器MMC(modular multilevel converter)的多端柔性直流MTDC(multi-terminal direct current)输电系统直流侧故障,提出了一种基于单端单极电流的柔性直流电网故障识别方案。该方案通过对电流动态偏...为了快速可靠识别基于模块化多电平换流器MMC(modular multilevel converter)的多端柔性直流MTDC(multi-terminal direct current)输电系统直流侧故障,提出了一种基于单端单极电流的柔性直流电网故障识别方案。该方案通过对电流动态偏差值极值的检测与电流累差值的计算实现直流线路故障快速定位,采用母线短时能量保护区分直流母线故障和线路故障,并根据所提保护方案设计了一套故障检测和识别单元。在PSCAD/EMTDC仿真平台上搭建仿真模型,通过仿真算例验证了该保护方案能在各种情况下快速、可靠地识别故障,无需双端数据通信,无需复杂数据分析与处理,满足多端柔性直流输电系统对保护的要求。展开更多
文摘An accurate numerical algorithm for three-line fault involving different phases from each of two-parallel lines is presented. It is based on one-terminal voltage and current data. The loop and nodel equations comparing faulted phase to non-faulted phase of two-parallel lines are introduced in the fault location estimation modal, in which the faulted impedance of remote end is not involved. The effect of load flow and fault resistance on the accuracy of fault location are effectively eliminated, therefore an accurate algorithm of locating fault is derived. The algorithm is demonstrated by digital computer simulations and the results show that errors in locating fault are less than 1%.
文摘为了快速可靠识别基于模块化多电平换流器MMC(modular multilevel converter)的多端柔性直流MTDC(multi-terminal direct current)输电系统直流侧故障,提出了一种基于单端单极电流的柔性直流电网故障识别方案。该方案通过对电流动态偏差值极值的检测与电流累差值的计算实现直流线路故障快速定位,采用母线短时能量保护区分直流母线故障和线路故障,并根据所提保护方案设计了一套故障检测和识别单元。在PSCAD/EMTDC仿真平台上搭建仿真模型,通过仿真算例验证了该保护方案能在各种情况下快速、可靠地识别故障,无需双端数据通信,无需复杂数据分析与处理,满足多端柔性直流输电系统对保护的要求。