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Virtual Synchronous Machine Control for Grid Transmission Compliance Studies

机译:用于网格传输合规性研究的虚拟同步机控制

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The increasing penetration levels of renewable energy systems (RES) such as wind and solar could affect the stability threshold of electricity transmission and distribution systems. The power electronic converters used to interface RES to the grid tend to be operated in “grid following” mode (typically acting as controlled current sources) and depend on high quality synchronization to the grid through a phase locked loop (PLL). The behavior of the PLL during grid transients can deteriorate, and this combined with the deterioration voltage reference signal and reduced system inertia can lead to system collapse during abnormal events and under post fault conditions. The virtual synchronous machine (VSM) control strategy has been proposed as a “grid forming” control mode to improve converter behavior from a grid perspective. However, the inverter is controlled as a voltage source and can be susceptible to fast changes in grid state. This paper presents an investigation into the VSM algorithm under abnormal grid conditions including single and three phase faults, frequency changes and grid phase/vector shifts. The paper describes current and power limiting strategies which protect the power converter whilst allowing it to support the grid.
机译:诸如风和太阳器之类的可再生能源系统(RES)的渗透水平增加可能影响电力传输和分配系统的稳定性阈值。用于接口RE的电力电子转换器倾向于以“网格之后”模式(通常用作受控电流源)以“网格”操作,并且通过锁相环(PLL)对网格的高质量同步依赖于高质量同步。在电网瞬变期间PLL的行为可以恶化,并且这种与劣化电压参考信号和减少的系统惯性组合可以导致异常事件和后故障条件下的系统塌陷。已经提出了虚拟同步机(VSM)控制策略作为“网格形成”控制模式,以改善来自网格透视图的转换器行为。然而,逆变器被控制为电压源,并且可以容易受到电网状态的快速变化。本文介绍了在异常网格条件下对VSM算法进行调查,包括单个和三相故障,频率变化和网格相位/矢量移位。本文描述了保护电源转换器,同时允许其支持电网电流和功率限制策略。

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