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Optimal Current Balance Control of Three-Level Inverter under Grid Voltage Unbalance: An Adaptive Dynamic Programming Approach

机译:电网电压不平衡下三级逆变器的最佳电流平衡控制:自适应动态规划方法

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摘要

When the grid voltage is unbalanced, the positive and negative sequence components in the grid voltage cause grid current to be disordered. Under current balance control, proportional integral (PI) closed-loop control will increase the grid currents instantaneously, which affects the safety and reliability of the inverter operation, and PI parameters are difficult to select without the complete system mathematical model. This paper introduces an adaptive dynamic programming (ADP) approach to solve this problem. The best state feedback controller for the system is obtained by driving the ADP by the value iteration ( V I ) algorithm without the need for an accurate mathematical model. In the simulations, the ADP approach can improve the dynamic performance of the system, the current increase can be suppressed when the grid voltage is unbalanced, and the harmonic rate of output currents is reduced.
机译:当电网电压不平衡时,电网电压中的正和负序列分量导致网格电流待混乱。在电流平衡控制下,比例积分(PI)闭环控制将瞬间增加电流电流,这影响了逆变器操作的安全性和可靠性,并且在没有完整的系统数学模型的情况下难以选择PI参数。本文介绍了一种自适应动态规划(ADP)方法来解决这个问题。通过通过价值迭代(v i)算法驱动ADP而无需准确的数学模型,获得系统的最佳状态反馈控制器。在模拟中,ADP方法可以提高系统的动态性能,当电网电压不平衡时,可以抑制电流增加,并且减少了输出电流的谐波速率。

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