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Small-Signal Stability Analysis and Active Damping Control of DC Microgrids Integrated With Distributed Electric Springs

机译:与分布式电弹簧一体化DC微电网的小信号稳定性分析和主动阻尼控制

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摘要

Series DC electric springs (DCESs) are a state-of-the-art demand-side management (DSM) technology with the capability to reduce energy storage requirements of DC microgrids by manipulating the power of non-critical loads (NCLs). As the stability of DC microgrids is highly prone to dynamic interactions between the system active and passive components, this study intends to conduct a comprehensive small-signal stability analysis of a community DC microgrid integrated with distributed DCESs considering the effect of destabilizing constant power loads (CPLs). For this purpose, after deriving the small-signal model of a DCES-integrated microgrid, the sensitivity of the system dominant frequency modes to variations of various physical and control parameters is evaluated by means of eigenvalue analysis. Next, an active damping control method based on virtual RC parallel impedance is proposed for series DCESs to compensate for their slow dynamic response and to provide a dynamic stabilization function within the microgrid. Furthermore, impedance-based stability analysis is utilized to study the DC microgrid expandability in terms of integration with multiple DCESs. Finally, several case studies are presented to verify analytical findings of the paper and to evaluate the dynamic performance of the DC microgrid.
机译:DC电动弹簧(DCESS)是一种最先进的需求侧管理(DSM)技术,通过操纵非关键负载(NCLS)的功率来降低DC微电网的能量存储要求。随着DC微电网的稳定性高度容易受到系统主动和无源元件之间的动态相互作用,本研究旨在考虑与分布式DCES集成的群落DC微电网进行全面的小小信号稳定性分析,考虑到稳定恒大功率负载的效果( CPLS)。为此目的,在导出DCES-集成的微电网的小信号模型之后,通过特征值分析评估系统主导频率模式对各种物理和控制参数变化的敏感性。接下来,提出了一种基于虚拟RC并行阻抗的有源阻尼控制方法,用于DCESS以补偿它们的动态响应缓慢,并在微电网中提供动态稳定功能。此外,利用基于阻抗的稳定性分析来研究与多个Dcess的集成方面的DC微电网可扩展性。最后,提出了几种案例研究以验证纸张的分析结果,并评估DC微电网的动态性能。

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