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Feasible Ranges of Microgrid Parameters Based on Small-signal Stability Analysis

机译:基于小信号稳定性分析的微电网参数可行的范围

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The transition from conventional generation to renewable energy sources (RES) motivated the energy sectors to focus on the microgrid (MG) concept. The stable operation of a microgrid is affected by multiple agents and parameters such as controllers, loads, lines, phase locked loop (PLL), and virtual impedances (VI). The virtual impedances (VI) was introduced to correct the impedance mismatches and subsequent performance characteristics in a MG. The effect of VI on MG stability is significant and should be analyzed thoroughly. This paper firstly draws the MG dynamic model including PLL, VI, current feedback coefficient (F) and induction machinery (IM). Then the non-linear dynamic equations are linearized around an operating point. Finally, the eigenvalues analysis is applied to evaluate the small-signal stability of islanded MG while the induction machinery (IM) and ideal resistive-inductive loads are installed at the MG, simultaneously. The permissible intervals for MG parameters are drawn from the MG stability point of view which is a useful procedure to control the MG effectively and inside a stable region of operation.
机译:从常规生成到可再生能源(RES)的转变激励了能量扇区关注微电网(MG)概念。 MicroGrid的稳定操作受多个代理和参数的影响,例如控制器,负载,线,锁相环(PLL)和虚拟阻抗(VI)。引入虚拟阻抗(VI)以校正MG中的阻抗不匹配和随后的性能特征。 VI对Mg稳定性的影响是显着的,并且应该彻底分析。本文首先绘制了MG动态模型,包括PLL,VI,电流反馈系数(F)和感应机械(IM)。然后,非线性动态方程在操作点周围线性化。最后,应用特征值分析来评估岛MG的小信号稳定性,而感应机械(IM)和理想的电阻感应同时安装在MG。 MG参数的允许间隔来自MG稳定性的观点,是有效地控制MG的有用程序,并且在稳定的操作区域内。

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