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Performance analysis of a power factor compensator which simultaneously eliminates line current harmonics

机译:同时消除线电流谐波的功率因数补偿器的性能分析

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The performance and dynamic characteristics of a solid-state power factor compensator which simultaneously eliminates line current harmonics are presented and analyzed. Power factor compensation is achieved by controlling the magnitude and the phase angle (delta) of the transistorized PWM inverter output voltage. Fast response times are obtained by adjusting the amplitude of the PWM inverter output voltage through a modulation index control. The principal advantage of this scheme is that it can maintain a near unity mains overall power factor without sensing and computing the associated reactive components. It can also substantially reduce the harmonic content of the line current when the load is nonlinear. A time domain model is derived and used to accurately predict dynamic behavior and stability region, and to adjust system controllers. The transfer function of the power factor compensator is obtained. Experimental results confirm the operation characteristics obtained by computer simulation and analyses.
机译:呈现和分析了固态功率因数补偿器的性能和动态特性,其同时消除了线电流谐波。通过控制晶体管PWM逆变器输出电压的幅度和相位角(Δ)来实现功率因数补偿。通过调节通过调制指数控制来调节PWM逆变器输出电压的幅度来获得快速响应时间。该方案的主要优点在于它可以在不感应和计算相关的反应部件的情况下保持近一起的主电源因子。当负载是非线性时,它也可以大大降低线电流的谐波含量。推导出时域模型,用于准确地预测动态行为和稳定性区域,并调整系统控制器。获得功率因数补偿器的传递函数。实验结果证实了计算机仿真和分析所获得的操作特性。

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