孤岛交流微电网成网逆变器的自适应虚拟同步发电机控制——实时仿真

A. Tiwari, K. Seethalekshmi
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引用次数: 4

摘要

随着可再生能源在配电系统中的渗透程度不断提高,保持系统的稳定性已成为配电系统运行中的一个重要问题。微电网中使用的分布式发电机(dg)通过电力电子转换器与电网互联,这种转换器不提供任何机械惯性,从而导致电网的稳定性问题。本文主要研究孤岛模式下并网逆变器的控制技术。本文提出了一种用于成网逆变器的自适应虚拟同步发电机(VSG)控制方法,通过在线控制微电网的转动惯量和阻尼系数来改善交流微电网孤岛运行时的频率响应。本文考虑了一个简单的微电网,其中包括一个三相逆变器,其中输入由直流电压供电,并通过LC滤波器耦合到负载上。研究了恒阻抗载荷、恒功率载荷、非线性载荷和动态载荷的不同加载情况。为了验证该方案的有效性,通过TYPHOON hill -402设备进行了实时仿真。实时仿真结果表明,自适应VSG控制优于传统的VSG控制和下垂控制技术。
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Adaptive Virtual Synchronous Generator Control for Grid Forming Inverters in Islanded AC Microgrid - A Real Time Simulation
Due to the increasing penetration of renewable energy resources in distribution power systems, maintaining system stability has grown as a major concern in system operation. The distributed generators (DGs) used in the microgrid are interconnected to the grid through power electronic converters which do not provide any mechanical inertia due to which the stability issues arise in the grid. This paper focuses on control techniques for grid-forming inverters in islanded mode. This paper proposes an adaptive virtual synchronous generator (VSG) control for the grid forming inverter, in which online control of moment of inertia and damping coefficient are exercised to improve the frequency response in the islanded operation of AC microgrid. A simple microgrid including, a three-phase inverter, in which the input is fed by a DC voltage, and coupled to the load via LC filter, is considered for the simulation study. Different loading scenarios are studied with loads of type constant impedance, constant power, non-linear and dynamic load. To check the efficacy of the proposed scheme, real-time simulation is executed through the TYPHOON HIL-402 device. The real-time simulation results demonstrate the superior performance of adaptive VSG control over the conventional VSG control and droop control techniques.
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