针对电容式电压互感器(Capacitor Voltage Transformers,CVT)的频率特性影响导致传统的高压谐波测量方法结果不准确的问题,对CVT的谐波特性进行了分析,提出了采用电容电流法对CVT的谐波进行检测,通过与传统谐波测试方法的结果以及电网...针对电容式电压互感器(Capacitor Voltage Transformers,CVT)的频率特性影响导致传统的高压谐波测量方法结果不准确的问题,对CVT的谐波特性进行了分析,提出了采用电容电流法对CVT的谐波进行检测,通过与传统谐波测试方法的结果以及电网实际谐波的对比,验证了电容电流法的正确性和准确性,并在电网中对电压谐波进行测试比对和验证,实验结果表明,文中电容电流法进行谐波测试准确度高,满足测试的标准要求,可解决目前CVT不能用于谐波测量的问题。展开更多
When single phase earth fault occurs in the arc suppression coil grounding system, the amplitude of the transient capacitance current is high and decays fast, but the attenuation of the transient inductance current is...When single phase earth fault occurs in the arc suppression coil grounding system, the amplitude of the transient capacitance current is high and decays fast, but the attenuation of the transient inductance current is much slower. This paper analyses the DC component of fault branch, and has found it is much bigger than that of the normal branches in transient state. All the simulation results obtained from three compensation types, different fault time and different wave cycles show that the DC component of fault branch is much higher than that of those normal branches. These results verify the effectiveness of taking the DC component as the method of fault line selection in the arc suppression coil grounding system.展开更多
文摘针对电容式电压互感器(Capacitor Voltage Transformers,CVT)的频率特性影响导致传统的高压谐波测量方法结果不准确的问题,对CVT的谐波特性进行了分析,提出了采用电容电流法对CVT的谐波进行检测,通过与传统谐波测试方法的结果以及电网实际谐波的对比,验证了电容电流法的正确性和准确性,并在电网中对电压谐波进行测试比对和验证,实验结果表明,文中电容电流法进行谐波测试准确度高,满足测试的标准要求,可解决目前CVT不能用于谐波测量的问题。
文摘When single phase earth fault occurs in the arc suppression coil grounding system, the amplitude of the transient capacitance current is high and decays fast, but the attenuation of the transient inductance current is much slower. This paper analyses the DC component of fault branch, and has found it is much bigger than that of the normal branches in transient state. All the simulation results obtained from three compensation types, different fault time and different wave cycles show that the DC component of fault branch is much higher than that of those normal branches. These results verify the effectiveness of taking the DC component as the method of fault line selection in the arc suppression coil grounding system.