首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Stability of LCL-filtered grid-connected inverters with capacitor current feedback active damping considering controller time delays
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Stability of LCL-filtered grid-connected inverters with capacitor current feedback active damping considering controller time delays

机译:考虑控制器时间延迟的具有电容器电流反馈有源阻尼的LCL滤波并网逆变器的稳定性

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This paper investigates the stability of LCL-filtered grid-connected inverters with capacitor current feedback (CCF) active damping. The impact of time delays in the digital controller on active damping and its equivalent virtual impedance is analyzed. The inherent relationship between these time delays and stability is illustrated. Specially, a critical value of the CCF active damping coefficient k_(damp_c) is proposed to define three distinct regions of stability evaluation. If k_(damp_c) > 0, a sufficient but smaller damping coefficient (k_(damp) < k_(damp_c)) is recommended as optimum damping solution; if k_(damp_c) = 0, system will be unstable irrespective of active damping; and if k_(damp_c) < 0, active damping is not necessary to design a stable system. Necessary conditions to ensure stability are identified; guidelines for controller design are then presented to optimize the performance of active damping and dynamic response. Simulation and experimental results confirm the presented analysis.
机译:本文研究了具有电容电流反馈(CCF)主动阻尼的LCL滤波并网逆变器的稳定性。分析了数字控制器中的时间延迟对主动阻尼及其等效虚拟阻抗的影响。说明了这些时间延迟与稳定性之间的固有关系。特别地,提出了CCF主动阻尼系数k_(damp_c)的临界值,以定义稳定性评估的三个不同区域。如果k_(damp_c)> 0,建议使用足够但较小的阻尼系数(k_(damp)

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