谐波电流检测是有源电力滤波器的关键环节之一,采用锁相环准确锁定电网电压频率是保证正确检测谐波电流的重要前提。基于瞬时无功功率理论ip-iq谐波电流检测算法,详细研究了应用于谐波检测环节的各种软件锁相环的原理及优缺点,并在此基...谐波电流检测是有源电力滤波器的关键环节之一,采用锁相环准确锁定电网电压频率是保证正确检测谐波电流的重要前提。基于瞬时无功功率理论ip-iq谐波电流检测算法,详细研究了应用于谐波检测环节的各种软件锁相环的原理及优缺点,并在此基础上,对基于DSC(Delay Signal Cancellation)模块的三相软件锁相环进行了改进。仿真和实验结果表明基于DSC模块的新型三相软件锁相环SPLL(Software Phase-locked Loop)算法实现简单,运算速度快,能够准确锁定相位信息。展开更多
Variable IP method mainly measures the Percent Frequency Effect (PFE), and phase IP method mainly measures phase. They both aim at finding IP anomaly. However, only using PFE anomaly or single phase anomaly can′t dis...Variable IP method mainly measures the Percent Frequency Effect (PFE), and phase IP method mainly measures phase. They both aim at finding IP anomaly. However, only using PFE anomaly or single phase anomaly can′t distinguish IP body′s property. The authors put forward a new method——dualfrequency and multiparameter IP method, which can not only find anomaly of PFE and phase, but also provide the property information of IP anomaly resource. The authors also have invented the dualfrequency and multiparameter IP instrument. A lot of experiments and field work have been done. The results show that the instrument is valuable in distinguishing IP anomalies.展开更多
文摘谐波电流检测是有源电力滤波器的关键环节之一,采用锁相环准确锁定电网电压频率是保证正确检测谐波电流的重要前提。基于瞬时无功功率理论ip-iq谐波电流检测算法,详细研究了应用于谐波检测环节的各种软件锁相环的原理及优缺点,并在此基础上,对基于DSC(Delay Signal Cancellation)模块的三相软件锁相环进行了改进。仿真和实验结果表明基于DSC模块的新型三相软件锁相环SPLL(Software Phase-locked Loop)算法实现简单,运算速度快,能够准确锁定相位信息。
文摘Variable IP method mainly measures the Percent Frequency Effect (PFE), and phase IP method mainly measures phase. They both aim at finding IP anomaly. However, only using PFE anomaly or single phase anomaly can′t distinguish IP body′s property. The authors put forward a new method——dualfrequency and multiparameter IP method, which can not only find anomaly of PFE and phase, but also provide the property information of IP anomaly resource. The authors also have invented the dualfrequency and multiparameter IP instrument. A lot of experiments and field work have been done. The results show that the instrument is valuable in distinguishing IP anomalies.