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作 者:李思维 穆昱壮 马少华[1] 石彬 哲东旭 王思雨 LI Siwei;MU Yuzhuang;MA Shaohua;SHI Bin;ZHE Dongxu;WANG Siyu(Institute of Electrical Engineering,Shenyang University of Technology,Shenyang 110870,China;Sanya Power Supply Company,Hainan Sanya 572000,China;New Northeast Electric Group Power Capacitor Co.,Ltd.,Liaoning Yingkou 115007,China)
机构地区:[1]沈阳工业大学电气工程学院,沈阳110870 [2]三亚供电公司,海南三亚572000 [3]新东北电气集团电力电容器有限公司,辽宁营口115007
出 处:《电力电容器与无功补偿》2021年第2期36-42,共7页Power Capacitor & Reactive Power Compensation
摘 要:无功补偿控制系统需要快速、准确地检测出系统基波无功功率以及功率因数等参数,用以控制无功补偿设备输出系统所需的基波无功功率。针对现有检测方法受电网以及无功补偿设备本身产生的谐波影响而造成计算结果准确度降低、计算速度慢等问题,基于锁相放大器原理,提出一种适用于无功控制系统的快速、准确的基波无功功率以及功率因数检测方法;在Matlab上进行了仿真分析,对比了含有多种谐波时,不同信噪比下各参数的最大误差,并搭建了实验平台,以Fluke-435-II电能质量分析仪验证该方法的准确性;经仿真和实验表明,该方法可以在含有谐波时准确、快速地检测出系统的基波无功功率及功率因数,为无功补偿系统的无功检测提供了理论依据和实用方法。The reactive compensation control system needs such parameters which detect quickly and accurately the fundamental reactive power and power factor of the system so to control the fundamental reactive power of for the output system of reactive power compensation equipment.In view of such problems in the existing detection method as reduction of calculation result and slow calculation speed due to the harmonics of network and the reactive power compensation equipment itself and on the basis of the principle of phase-locked amplifier,a kind of fast and accurate fundamental wave reactive power and power factor detection method is proposed.Simulation analysis is carried out on Matlab,the maximum errors of each parameter at different SNR in case of containing multiple kinds of harmonics are compared.The experimental platform is set up and the accuracy of the method is verified by Fluke-435-II power quality analyzer.It is shown by the simulation and experiment that this method can,in case of containing harmonics,detect accurately and quickly the fundamental reactive power and power factor of the system and has provided theoretical basis and practical method for reactive power detection of the reactive power compensation system.
分 类 号:TM761.12[电气工程—电力系统及自动化] TN722[电子电信—电路与系统]
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