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Modified PI Controller with Improved Steady-State Performance and Comparison with PR Controller on Direct Matrix Converters

机译:具有改进的稳态性能的改进型PI控制器,并与直接矩阵转换器上的PR控制器进行了比较

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摘要

This paper proposes a modified proportional-integral(PI)controller and compares it with a proportional-resonant(PR)controller.These controllers are tested on a three-phase direct matrix converter(MC).The modified PI controller involves current feedforward together with space vector modulation(SVM)to control the MC output currents.This controller provides extra control flexibility in terms of the current error reduction,and it gives improved steady-state tracking performance.When the coefficient of current feedforward is equal to the load resistor(K=R),the steady-state error is effectively minimized even when regulating sinusoidal variables.The total harmonic distortion is also reduced.In order to comparatively evaluate the modified PI controller,a PR controller is designed and tested.Both the modified PI and PR controllers are implemented in the natural frame(abc)in a straightforward manner.This removes the coordinate transformations that are required in the stationary(αβ)and synchronous(dq)reference frame based control strategies.In addition,both controllers can handle the unbalanced conditions.The experimental and simulation results verify the feasibility and effectiveness of the proposed controllers.
机译:本文提出了一种改进的比例积分(PI)控制器,并将其与比例谐振(PR)控制器进行了比较。这些控制器在三相直接矩阵转换器(MC)上进行了测试。改进的PI控制器涉及电流前馈和空间矢量调制(SVM)用于控制MC输出电流。该控制器在减小电流误差方面提供了额外的控制灵活性,并提供了改进的稳态跟踪性能。当电流前馈系数等于负载电阻时( K = R),即使在调节正弦变量时也可以有效地减小稳态误差,还可以降低总谐波失真。为了比较评估改进型PI控制器,设计并测试了PR控制器。 PR控制器以自然的方式(abc)轻松实现,从而消除了固定(αβ)和同步中所需的坐标变换基于参考框架的控制策略。此外,两种控制器都可以处理不平衡情况。实验和仿真结果验证了所提出控制器的可行性和有效性。

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