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Robust Single-Loop Direct Current Control of LCL-Filtered Converter-Based DG Units in Grid-Connected and Autonomous Microgrid Modes

机译:并网和自主微电网模式下基于LCL滤波的基于转换器的DG单元的鲁棒单回路直流控制

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This paper presents a robust direct single-loop current control scheme based on structured singular value (μ) minimization approach for induced-capacitor-inductor (LCL)-filtered distributed generation converters in grid-connected and isolated microgrid modes. Unlike the conventional $H_infty$ -based approach, the proposed interface maintains perturbed system stability, under wide range of grid (or microgrid) impedance variation, without the application of any additional damping loops. Moreover, the performance of the perturbed system in terms of grid-voltage and harmonic disturbance rejection can be improved significantly by the adopted method. This is due to the less conservative nature of the μ-synthesis-based solution as it takes advantage of the additional structure introduced to the uncertainty block by the performance criteria. The salient features of the proposed controller are 1) single-loop direct current control of LCL -filtered converters with inherent damping of the LCL filter resonance without any need for additional damping loops; 2) robust stability and active damping performances by mitigating the LCL resonance under wide range of grid (or microgrid) impedance variation; 3) improving the performance of the current controller by removing its dependency on the grid-voltage feed-forward loop by providing high disturbance rejection feature against fundamental and harmonic voltage disturbances; 4) computationally efficient fixed-order structure with minimum sensor requirements (only grid-side currents are needed for feedback control). A comparative theoretical analysis, time-domain simulation results, and experimental test results are presented to show the effectiveness of the proposed control scheme.
机译:本文提出了一种基于结构化奇异值(μ)最小化方法的鲁棒直接单环电流控制方案,该方法用于并网和隔离微电网模式下的电感电容-电感(LCL)滤波分布式发电转换器。与传统的基于H_infty $的方法不同,所提出的接口在较大的电网(或微电网)阻抗变化范围内保持了扰动的系统稳定性,而无需应用任何附加的阻尼环路。此外,通过采用该方法,可以显着提高扰动系统在电网电压和谐波干扰抑制方面的性能。这是由于基于μ合成的解决方案的保守性较差,因为它利用了性能标准引入不确定性模块的附加结构。所提出的控制器的显着特征是:1)对LCL滤波的转换器进行单回路直流控制,并具有固有的LCL滤波器谐振阻尼,无需任何额外的阻尼环路; 2)通过在较大的电网(或微电网)阻抗变化范围内减轻LCL谐振,具有鲁棒的稳定性和主动阻尼性能; 3)通过提供针对基波和谐波电压干扰的高干扰抑制功能,消除电流控制器对电网电压前馈环路的依赖性,从而提高电流控制器的性能; 4)计算效率高的固定顺序结构,具有最低的传感器要求(反馈控制仅需要电网侧电流)。进行了比较理论分析,时域仿真结果和实验测试结果,以证明所提出的控制方案的有效性。

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