Microgrid Frequency & Voltage Adjustment Applying Virtual Synchronous Generator

Bahram Pournazarian, E. Pouresmaeil, Meysam Saeedian, M. Lehtonen, Ricky Chan, S. Taheri
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引用次数: 7

Abstract

The distributed generations (DG) are linked to microgrids (MGs) by power converters regularly and the MG will be in mutual interconnection with conventional power systems. The more the participation level of the converter-based DGs in the MG, the more the stability issues are seen in the MG. Unlike conventional synchronous generators (SGs) which have considerable inertia, the converter-based DG units lack this intrinsic inertia; therefore, they potentially make the MG prone to stability issues. The idea to emulate the behavior of SGs in the control loop of interfaced converters to maintain the MGs stability is a newly-growing idea. This paper tends to propose an improved voltage and frequency control strategy for island MGs consisting several converter-based DGs. The proposed control structure uses an advanced Virtual Synchronous Generator (VSG) model and aimed at implementing the primary frequency and voltage control of MGs. The designed model considers both resistive and inductive parameters of lines in MGs. Since the suggested control structure is a local one, doesn't require communication links between DG units. The simulation results verify the potency of the recommended control structure to preserve the frequency and voltage stability of an island MG even in severe events.
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应用虚拟同步发电机进行微电网频率电压调整
分布式发电机组通过电力变流器定期接入微电网,实现微电网与传统电力系统的互联互通。基于转炉的dg在MG中的参与程度越高,MG中的稳定性问题就越明显。与具有相当大惯性的传统同步发电机(SGs)不同,基于变流器的DG单元缺乏这种固有惯性;因此,它们可能使MG容易出现稳定性问题。在接口变换器的控制回路中模拟磁流变体的行为以保持磁流变体的稳定性是一个新兴的思想。本文提出了一种改进的电压和频率控制策略,用于由多个基于变换器的DGs组成的岛式MGs。所提出的控制结构采用一种先进的虚拟同步发电机(VSG)模型,旨在实现永磁电机的一次频率和电压控制。所设计的模型同时考虑了mggs中线路的电阻和电感参数。由于建议的控制结构是本地控制结构,不需要DG单元之间的通信链路。仿真结果验证了所推荐的控制结构的有效性,即使在严重的事件中也能保持孤岛MG的频率和电压稳定性。
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