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LQG Based Augmented Control for Stability Enhancement of a Grid Tied Inverter

机译:基于LQG的增强控制,用于并网逆变器的稳定性增强

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This paper proposes an augmented controller to the existing grid tied inverter (GTI) control system, to deal with the instability arising during weak grid condition. The proposed linear feedback controller is a linear-quadratic-gaussian (LQG) regulator which helps in loop-shaping of the conventional feedback control to attain stability at the point of common coupling (PCC) during varying grid condition. The LQG design also involves the reduction of states which makes the synthesis realizable in low cost processors and also plays a successful role in the loop shaping. Time domain simulation results validate the loop-shaping in the frequency domain and show that the proposed approach successfully brings stability to a GTI system at PCC. A trade-off between stability and current reference tracking performance has also been discussed.
机译:本文提出了一个增强控制器到现有的网格栓逆变器(GTI)控制系统,以处理弱网格条件下产生的不稳定性。所提出的线性反馈控制器是线性 - 二次高斯(LQG)调节器,其有助于在变化网格状况期间有助于实现传统反馈控制的环形成形,以实现在共同耦合(PCC)的点处的稳定性。 LQG设计还涉及减少使合成在低成本处理器中可实现的状态,并且在环形整形中也发挥成功作用。时域仿真结果验证频域中的环形整形,并表明所提出的方法成功地将稳定性带来PCC的GTI系统。还讨论了稳定性和当前参考跟踪性能之间的权衡。

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