用电流最小法求解非正弦条件下的最优无功补偿

U. Mujumdar, J. Joshi
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引用次数: 2

摘要

对于电压电流非正弦的系统,采用传统的功率三角法计算无功功率是位移和畸变无功功率之和。在这种情况下,试图使功率因数统一,采用并联补偿器,对系统进行过补偿,过量的电容有效地增加了系统电流,这是不可取的。本文提出了一种利用无源元件进行无功补偿的新方法。该方法基于电流最小化,不需要任何无功功率定义进行补偿。负载的无功功率需求是通过在系统中添加测试电容器,以期望并联电容器电流来计算的。使电路电流最小所需的容性电流是根据电路电流和测试电容器电流的变化的测量值计算出来的。建立了补偿电容在正弦和非正弦条件下的计算公式。该方法已通过使用8位微控制器ATMega32开发的实验样机在各种负载条件下进行测试验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal reactive power compensation under non sinusoidal conditions using current minimization method
For systems with non sinusoidal voltage and current, reactive power calculation using conventional power triangle method is the summation of displacement and distortion reactive power. Under such condition, attempt to make power factor unity, using shunt compensator, overcompensates the system and excess capacitor effectively increases the system current which is not desirable. In this paper, a new method for reactive power compensation using passive components is presented. The proposed approach is based on current minimization and does not need any reactive power definition for compensation. Reactive power demand of the load is calculated in terms of desired shunt capacitor current, using addition of test capacitor in the system. Capacitive current required to minimize the circuit current is calculated from the measured values of change in circuit current and test capacitor current. Mathematical equations are developed for the computation of compensation capacitor under sinusoidal as well as non sinusoidal conditions. The method has been validated by testing under various load conditions with an experimental prototype developed using 8 bit microcontroller ATMega32.
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