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Multi-loop linear resonant voltage source inverter controller design for distorted loads using the linear quadratic regulator method

机译:使用线性二次调节器方法设计用于失真负载的多回路线性谐振电压源逆变器控制器设计

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In this study, an optimal multi-loop linear resonant control structure for a voltage source inverter (VSI) coupled to an inductor-capacitor (LC) filter is proposed for supplying nonlinear loads. A resonant controller ensures that sinusoidal voltage references are properly tracked and sinusoidal current disturbances are rejected without steady-state error under stable conditions. A desired transient response, on the other hand, can only be obtained by properly setting the controller coefficients. Further challenges include the reduction of output total harmonic distortion (THD), improving the damping of the LC resonance frequency and preventing the generation of fast closed-loop modes, which surpass the bandwidth of the inverter. The proposed technique is an extension of the classic linear quadratic regulator (LQR) that addresses the optimal tracking problem and provides a simple and step-by-step problem solving without stability or robustness issues. Additionally, the study also presents an improved controller to further reduce the voltage distortions for applications requiring acute accuracy. The designed controller is simulated and experimentally tested. The results are presented, discussed and confirmed against analytical derivations.
机译:在这项研究中,为耦合非线性电容器的电压源逆变器(VSI)提出了一种最优的多回路线性谐振控制结构。谐振控制器可确保在合理的条件下正确跟踪正弦电压参考并抑制正弦电流干扰而不会产生稳态误差。另一方面,仅通过适当设置控制器系数才能获得所需的瞬态响应。进一步的挑战包括减少输出总谐波失真(THD),改善LC谐振频率的阻尼以及防止产生超过逆变器带宽的快速闭环模式。所提出的技术是经典线性二次调节器(LQR)的扩展,它解决了最佳跟踪问题,并提供了简单而逐步的问题解决方法,而没有稳定性或鲁棒性问题。此外,该研究还提出了一种改进的控制器,可进一步降低要求精确度极高的应用中的电压失真。设计的控制器经过仿真和实验测试。提出,讨论并根据分析推导得出了结果。

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