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Robust Two Degrees-of-freedom Single-current Control Strategy for LCL-type Grid-Connected DG System under Grid-Frequency Fluctuation and Grid-impedance Variation

机译:电网频率波动和电网阻抗变化下LCL型并网DG系统的鲁棒二自由度单电流控制策略

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摘要

For LCL-type grid-connected distributed generation(DG) system, the grid-frequency fluctuation and grid-impedance variation affect the active/reactive power control accuracy and resonance peak suppression respectively, which would reduce the system robustness. In this paper, a robust two degrees-of-freedom single-current control (RTDOF-SCC) strategy is proposed, which mainly includes the synchronous reference frame quasi-proportional-integral (SRFQPI) control and robust grid-current-feedback active damping (RGCFAD) control. The proposed SRFQPI control can compensate the local-loads reactive power, and regulate the instantaneous grid current without steady-state error regardless of the fundamental frequency fluctuation. Simultaneously, the proposed RGCFAD control effectively damps the LCL-resonance peak regardless of the grid-impedance variation, and further improves both transient and steady-state performances. The stability margin and dynamic response of the overall system are analyzed in detail, and the proper parameters are selected without complicated trial. Finally, Simulation and experimental results verify the proposed control and design strategies.
机译:对于LCL型并网分布式发电(DG)系统,电网频率波动和电网阻抗变化分别影响有功/无功功率控制精度和谐振峰值抑制,这会降低系统的鲁棒性。本文提出了一种鲁棒的两自由度单电流控制(RTDOF-SCC)策略,该策略主要包括同步参考系准比例积分(SRFQPI)控制和鲁棒的电网电流反馈有源阻尼。 (RGCFAD)控制。所提出的SRFQPI控制可以补偿本地负载无功功率,并调节瞬时电网电流而无稳态误差,而与基本频率波动无关。同时,无论电网阻抗如何变化,提出的RGCFAD控制都能有效地衰减LCL谐振峰值,并进一步提高了瞬态和稳态性能。详细分析了整个系统的稳定性裕度和动态响应,并选择了适当的参数,而无需进行复杂的试验。最后,仿真和实验结果验证了所提出的控制和设计策略。

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