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Optimal Control of Shunt Active Power Filter to Meet IEEE Std. 519 Current Harmonic Constraints Under Nonideal Supply Condition

机译:满足IEEE标准的并联有源功率滤波器的最佳控制。 519非理想供电条件下的电流谐波约束

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A shunt active power filter (APF) is a well-mature technology for the compensation of nonlinear and/or reactive loads. Normally, the shunt APF is controlled such that it eliminates the load current harmonics and supplies load reactive power to achieve harmonic-free source currents at unity power factor. However, these control objectives cannot be achieved simultaneously when the supply voltages are distorted and unbalanced (nonideal). Hence, under such situation, the shunt APF should be controlled optimally to achieve a maximum possible power factor without violating the current harmonic constraints recommended by IEEE Std. 519. This paper presents an optimal algorithm to control a three-phase four-wire shunt APF under nonideal supply conditions. The optimization problem aiming at maximizing the power factor subject to current harmonic constraints as per IEEE Std. 519 has been formulated and solved mathematically using the Lagrangian formulation. The proposed algorithm avoids the use of complex iterative optimization techniques and thus is simple to implement and has fast dynamic response. The effectiveness of the proposed method is evaluated through a detailed experimental investigation using a digital signal processor controlled shunt APF prototype developed in the laboratory.
机译:并联有源功率滤波器(APF)是一种成熟的技术,用于补偿非线性和/或无功负载。通常,对并联APF进行控制,以消除负载电流谐波并提供负载无功功率,以达到单位功率因数的无谐波源电流。但是,当电源电压失真和不平衡(不理想)时,这些控制目标无法同时实现。因此,在这种情况下,应在不违反IEEE Std建议的电流谐波约束的前提下,对分路APF进行最佳控制,以实现最大可能的功率因数。 519.本文提出了一种在非理想供电条件下控制三相四线并联APF的最佳算法。根据IEEE Std,优化问题旨在最大化受电流谐波约束的功率因数。 519已使用拉格朗日公式公式化并数学求解。所提出的算法避免了使用复杂的迭代优化技术,因此易于实现并且具有快速的动态响应。通过使用实验室开发的数字信号处理器控制的并联APF原型,通过详细的实验研究来评估所提出方法的有效性。

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