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首页> 外文期刊>IEEE Transactions on Industrial Electronics >A Noniterative Optimized Algorithm for Shunt Active Power Filter Under Distorted and Unbalanced Supply Voltages
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A Noniterative Optimized Algorithm for Shunt Active Power Filter Under Distorted and Unbalanced Supply Voltages

机译:供电电压失真和不平衡时并联有源滤波器的非迭代优化算法

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摘要

In this paper, a single-step noniterative optimized algorithm for a three-phase four-wire shunt active power filter under distorted and unbalanced supply conditions is proposed. The main objective of the proposed algorithm is to optimally determine the conductance factors to maximize the supply-side power factor subject to predefined source current total harmonic distortion (THD) limits and average power balance constraint. Unlike previous methods, the proposed algorithm is simple and fast as it does not incorporate complex iterative optimization techniques (such as Newton–Raphson and sequential quadratic programming), hence making it more effective under dynamic load conditions. Moreover, separate limits on odd and even THDs have been considered. A mathematical expression for determining the optimal conductance factors is derived using the Lagrangian formulation. The effectiveness of the proposed single-step noniterative optimized algorithm is evaluated through comparison with an iterative optimization-based control algorithm and then validated using a real-time hardware-in-the-loop experimental system. The real-time experimental results demonstrate that the proposed method is capable of providing load compensation under steady-state and dynamic load conditions, thus making it more effective for practical applications.
机译:提出了一种三相四线并联有源电力滤波器在失真和不平衡供电条件下的单步非迭代优化算法。所提出算法的主要目的是在预定的源电流总谐波失真(THD)限制和平均功率平衡约束条件下,最优地确定电导系数,以使供电侧功率因数最大化。与以前的方法不同,该算法简单,快速,因为它不包含复杂的迭代优化技术(例如Newton-Raphson和顺序二次编程),因此使其在动态负载条件下更加有效。此外,已经考虑了对奇数和偶数THD的单独限制。使用拉格朗日公式可得出用于确定最佳电导因子的数学表达式。通过与基于迭代优化的控制算法进行比较,评估了所提出的单步非迭代优化算法的有效性,然后使用实时硬件在环实验系统对其进行了验证。实时实验结果表明,该方法能够在稳态和动态负载条件下提供负载补偿,从而使其在实际应用中更加有效。

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