At present, the widely applied mechanical on-load tap-changer is not suitable for the 10 kV power distribution network. Along with the development of power electronic technology, there has the report on on-load tap ch...At present, the widely applied mechanical on-load tap-changer is not suitable for the 10 kV power distribution network. Along with the development of power electronic technology, there has the report on on-load tap changing (OLTC) distributing transformer based on the power electronic technology. In this paper, the analysis on the characteristic of several kinds of non-contacts OLTC distributing transformer was carried on. The result indicates that OLTC distributing transformer based on the solid state relay has the broad applied prospect in the 10 kV medium distribution network.展开更多
随着电力电子装置的广泛应用,大量的谐波和无功电流注入电网,引起电网污染,造成电能质量问题日益严重。有源电力滤波器(active power filter,APF)是补偿电力系统谐波及无功功率的重要装置,其控制的实时性和准确性是实现有效补偿的一个...随着电力电子装置的广泛应用,大量的谐波和无功电流注入电网,引起电网污染,造成电能质量问题日益严重。有源电力滤波器(active power filter,APF)是补偿电力系统谐波及无功功率的重要装置,其控制的实时性和准确性是实现有效补偿的一个关键。介绍了几种适合于有源电力滤波器的谐波电流检测方法和补偿电流控制策略的基本原理,进行了对比分析,并指出了它们各自的优缺点。控制策略的不断发展可使有源滤波器获得更好的性能和更广泛的应用。展开更多
文摘At present, the widely applied mechanical on-load tap-changer is not suitable for the 10 kV power distribution network. Along with the development of power electronic technology, there has the report on on-load tap changing (OLTC) distributing transformer based on the power electronic technology. In this paper, the analysis on the characteristic of several kinds of non-contacts OLTC distributing transformer was carried on. The result indicates that OLTC distributing transformer based on the solid state relay has the broad applied prospect in the 10 kV medium distribution network.
文摘随着电力电子装置的广泛应用,大量的谐波和无功电流注入电网,引起电网污染,造成电能质量问题日益严重。有源电力滤波器(active power filter,APF)是补偿电力系统谐波及无功功率的重要装置,其控制的实时性和准确性是实现有效补偿的一个关键。介绍了几种适合于有源电力滤波器的谐波电流检测方法和补偿电流控制策略的基本原理,进行了对比分析,并指出了它们各自的优缺点。控制策略的不断发展可使有源滤波器获得更好的性能和更广泛的应用。