基于电压控制器的微型电网并网运行分析

V. Bhandari, R. Dahal, T. Toftevaag, L. Lindquist, J. Marvik, B. Adhikary, R. Maskey, N. Shrestha
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引用次数: 4

摘要

本文介绍了在SIMPOW®中对一个由0.46 MVA和0.23 MVA两个SEIGs和基于电压的发电机控制器组成的微型电网系统的仿真结果分析。典型的测试用例包括在负载(有功和无功)增加的情况下,采用超前滞后控制器和PI控制器的微电网系统SEIG仿真。结果表明,电导控制器的特性对该系统的运行影响很小。而负载有功功率和无功功率的上升幅度大于电阻并联系统的额定容量,对系统的稳定性影响较大。仿真结果还表明,负载的电压依赖性对系统的动态稳定性有重要影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of parallel operation of seigs with voltage based controller in mini-grid
This paper presents the analysis of simulation-results of a Mini-Grid system consisting of two SEIGs 0.46 MVA and 0.23 MVA and voltage based generator controllers in SIMPOW®. The typical test-cases include simulation of SEIG, with lead-lag controller and PI controller in Mini-Grid system, when subjected to ramping load (both active and reactive). The results show that the characteristics of the conductance controller have very little influence in operation of such system. Whereas, ramping of active and reactive power of the load, more than the rated capacity of the resistive shunt, has significant effect on the stability of the system. The simulations also show that the voltage dependency of the load has a significant influence on the dynamic stability of the system.
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