In this work,a directional relaying algorithm is proposed for transmission line to prevent relay maloperation during coupling capacitor voltage transformer(CCVT)subsidence transient.The effect of CCVT subsidence trans...In this work,a directional relaying algorithm is proposed for transmission line to prevent relay maloperation during coupling capacitor voltage transformer(CCVT)subsidence transient.The effect of CCVT subsidence transient during single-pole-tripping condition is highlighted in this paper.The proposed method which is based on phase angle difference of post fault and prefault positive sequence current can help the directional relay to take accurate decision during erroneous CCVT secondary response.The available CCVT model in PSCAD is not able to generate significant subsidence transient in the secondary side.So,a new CCVT model is developed in EMTDC/PSCAD domain for transient response analysis and to check the relay operation.Next,the performance of different voltage and current information based directional relaying techniques have been analyzed and compared with the proposed method.The results are evaluated for different system and fault conditions.Results demonstrate the accuracy of the proposed method.展开更多
柔性直流输电(voltage source converter based high voltage direct current,VSC-HVDC)技术以其无换相失败等优势,在孤岛新能源送出等领域具有广阔的应用前景。当风电经柔直孤岛送出系统送端交流电网发生交流故障时,在故障清除后出现...柔性直流输电(voltage source converter based high voltage direct current,VSC-HVDC)技术以其无换相失败等优势,在孤岛新能源送出等领域具有广阔的应用前景。当风电经柔直孤岛送出系统送端交流电网发生交流故障时,在故障清除后出现交流暂态过电压,危害风机及柔直设备安全。以双馈风机(doubly fed induction generator,DFIG)为例,针对基于模块化多电平换流器(modular multilevel converter,MMC)的柔直电网,开展了从柔直侧控制实现交流暂态过电压抑制的策略研究。分析了柔直控制系统与DFIG数学模型,提出暂态过电压是由风机无功与柔直无功引起的,在此基础上,结合柔直控制系统模型,提出了暂态过电压辅助抑制策略,根据交流电压恢复,减少柔直无功输出。最后,在PSCAD平台上利用张北柔直工程模型进行仿真,验证了所提策略的有效性。展开更多
文摘In this work,a directional relaying algorithm is proposed for transmission line to prevent relay maloperation during coupling capacitor voltage transformer(CCVT)subsidence transient.The effect of CCVT subsidence transient during single-pole-tripping condition is highlighted in this paper.The proposed method which is based on phase angle difference of post fault and prefault positive sequence current can help the directional relay to take accurate decision during erroneous CCVT secondary response.The available CCVT model in PSCAD is not able to generate significant subsidence transient in the secondary side.So,a new CCVT model is developed in EMTDC/PSCAD domain for transient response analysis and to check the relay operation.Next,the performance of different voltage and current information based directional relaying techniques have been analyzed and compared with the proposed method.The results are evaluated for different system and fault conditions.Results demonstrate the accuracy of the proposed method.
文摘柔性直流输电(voltage source converter based high voltage direct current,VSC-HVDC)技术以其无换相失败等优势,在孤岛新能源送出等领域具有广阔的应用前景。当风电经柔直孤岛送出系统送端交流电网发生交流故障时,在故障清除后出现交流暂态过电压,危害风机及柔直设备安全。以双馈风机(doubly fed induction generator,DFIG)为例,针对基于模块化多电平换流器(modular multilevel converter,MMC)的柔直电网,开展了从柔直侧控制实现交流暂态过电压抑制的策略研究。分析了柔直控制系统与DFIG数学模型,提出暂态过电压是由风机无功与柔直无功引起的,在此基础上,结合柔直控制系统模型,提出了暂态过电压辅助抑制策略,根据交流电压恢复,减少柔直无功输出。最后,在PSCAD平台上利用张北柔直工程模型进行仿真,验证了所提策略的有效性。