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Design Simulation and Experimental Investigations on a Shunt Active Power Filter for Harmonics and Reactive Power Compensation

机译:用于谐波和无功补偿的并联型有源电力滤波器的设计仿真和实验研究

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This paper presents complete design, simulation, and experimental investigations on a 3-phase shunt active power filter to compensate harmonics and the reactive power requirement of nonlinear loads. The paper describes the complete design aspects of power circuit elements and control circuit parameters. The compensation process is based on sensing line currents only, an approach different from conventional methods that require the harmonics and reactive volt-ampere requirement of the load. Various simulation results are presented to study the performance during steady-state and transient conditions to validate the design. A laboratory prototype has been developed to verify the simulation results. The control scheme is realized on a dedicated micro-controller-based system. PWM pattern generation is based on carrierless hysteresis-based current control to obtain the switching signals. Based on simulation and experimental results it can be concluded that the compensation process is simple and easy to implement. The spectral performance shows that the active filter brings the THD of the system well below 5%, the limit imposed by the IEEE-519 standard.
机译:本文介绍了用于补偿非线性负载的谐波和无功功率的三相并联有源电力滤波器的完整设计,仿真和实验研究。本文介绍了电源电路元件和控制电路参数的完整设计方面。补偿过程仅基于感测线电流,这种方法不同于需要负载的谐波和无功伏安的常规方法。给出了各种仿真结果,以研究稳态和瞬态条件下的性能以验证设计。已经开发了实验室原型来验证仿真结果。该控制方案在专用的基于微控制器的系统上实现。 PWM模式的产生是基于无载波磁滞的电流控制来获得开关信号的。根据仿真和实验结果,可以得出补偿过程简单易实现的结论。频谱性能表明,有源滤波器使系统的THD大大低于5%(IEEE-519标准所施加的限制)。

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