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Shunt active filtering by constant power load in microgrid based on IRP p-q and CPC reference signal generation schemes

机译:基于IRP P-Q和CPC参考信号发生方案的微电网恒功率负载分流主动滤波

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Constant power loads (CPLs), interfaced by active rectifiers can be used to provide reactive power for voltage stability in a microgrid they are part of. In addition, they have the potential to minimize the harmonic issues caused by the power electronic non-linear loads. This article investigates the possibility of using a CPL for shunt active filtering in addition to consuming a constant active power from the source. Reference signal generation techniques for shunt compensator or CPL are based on instantaneous reactive power (IRP) p-q theory and the theory of current's physical components (CPC), in synchronous rotating reference frame. CPL control is based on vector control method. IRP p-q theory based reference signal generation technique uses filters to extract the desired current components. CPC utilizes frequency domain methods to compute the current references. In this paper, discrete Fourier transform (DFT) is used to extract the reference signal for shunt compensation by CPL. Simulation results show that the CPL performs shunt active filtering very efficiently. It is also observed that the source current distortion is further reduced when CPL acts as a load interface compared to the case when it behaves as shunt active compensator only.
机译:由有源整流器接口的恒定功率负载(CPLS)可用于在微电网中提供用于电压稳定性的无功功率,它们是部分的。此外,它们有可能最小化电力电子非线性负载引起的谐波问题。本文除了消耗来自源的恒定有效功率之外,还研究了使用CPL进行分流主动滤波的可能性。分流补偿器或CPL的参考信号生成技术基于瞬时无功功率(IRP)P-Q理论和当前的物理分量(CPC),在同步旋转参考帧中。 CPL控制基于矢量控制方法。基于IRP P-Q理论的参考信号生成技术使用滤波器提取所需的电流分量。 CPC利用频域方法来计算当前引用。在本文中,离散傅里叶变换(DFT)用于通过CPL提取用于分流补偿的参考信号。仿真结果表明,CPL非常有效地执行分流主动滤波。还观察到,当CPL作为负载接口时,源电流失真仅与载荷接口相比仅当其行为的情况相比,当其行为的情况时才表现为分流器有源补偿器。

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