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Grid-Current-Feedback Control for LCL-Filtered Grid Converters With Enhanced Stability

机译:具有增强的稳定性的LCL滤波电网转换器的电网电流反馈控制

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This paper proposes a second-order-generalized-integrator (SOGI)-based time-delay compensation method for extending the stable region of a dual-loop grid-current-feedback (GCF) control system. According to the analysis, stable region of the dual-loop system should be designed below a certain critical frequency, before time-delay compensation method can be applied. To always meet the requirement, relationship between single-loop converter-current-feedback and dual-loop GCF control is clarified, before a robust inner-loop gain for the dual-loop GCF scheme is determined. Enforcing this gain allows the converter to remain in its stable region, regardless of how its LCL -filter parameters and grid impedance vary. The SOGI-based delay compensation method can then be applied for widening the stable region of the dual-loop GCF scheme, as proven through s-domain Bode diagrams and z -domain root loci. These theoretical proofs are eventually validated by experimental results obtained in the laboratory.
机译:本文提出了一种基于二阶广义积分器(SOGI)的时延补偿方法,用于扩展双回路电网电流反馈(GCF)控制系统的稳定区域。根据分析,在可以应用时延补偿方法之前,应将双环系统的稳定区域设计在一定的临界频率以下。为了始终满足要求,在确定双环GCF方案的鲁棒内环增益之前,阐明了单环转换器电流反馈与双环GCF控制之间的关系。强制执行此增益可使转换器保持在其稳定区域内,而不管其LCL滤波器参数和电网阻抗如何变化。然后可以将基于SOGI的延迟补偿方法应用于加宽双环GCF方案的稳定区域,如通过s域Bode图和z域根基因座所证明的。这些理论证明最终被实验室获得的实验结果证实。

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