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Multidisciplinary Control Scheme based Capacitor Voltage for LCL Filtered Grid Connected Converter

机译:基于多学科控制方案LCL滤波网格连接转换器的电容电压

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Grid-connected converters employing LCL filters for grid interface experience resonance peaks issue which affects the system control and stability. In this paper, a multidisciplinary control scheme that can mitigate resonance raised by interaction between LCL filter and grid inductance particularly for weak grid scenarios of widely varying parameters is presented. Besides, the proposed controller provides improved low order harmonics rejection capability and maintains system stability. The proposed method relies on using capacitor voltage feedback to counteract the influence of grid impedance parameters variations on the system performance. In order to maintain system stability for the entire range of grid parameters and concurrently provide effective resonance damping, a design approach for the grid inner current controller is obtained. The system robustness, bandwidth and harmonics rejection capabilities are explored. The significance of the proposed active damping method is explored via frequency domain analysis and time domain simulation under different operating conditions.
机译:电网连接转换器采用LCL滤波器进行网格接口体验谐振峰值问题,影响系统控制和稳定性。在本文中,提出了一种多学科控制方案,其可以提出了一种通过LCL滤波器和电网电感之间的交互升高的谐振,特别是对于广泛变化参数的弱网格场景。此外,所提出的控制器提供了改进的低阶谐波抑制能力并保持系统稳定性。该方法依赖于使用电容电压反馈来抵消电网阻抗参数变化对系统性能的影响。为了保持整个网格参数范围的系统稳定性并同时提供有效的谐振阻尼,获得了网格内部电流控制器的设计方法。探讨了系统鲁棒性,带宽和谐波拒绝功能。通过不同操作条件下的频域分析和时域模拟探索了所提出的主动阻尼方法的重要性。

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