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A synchronization controller for grid reconnection of islanded virtual synchronous machines

机译:用于孤岛虚拟同步机的网格重新连接的同步控制器

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The control of power electronic grid interfaces as Virtual Synchronous Machines (VSMs) is emerging as a suitable approach for converters in distributed power systems. VSM implementations including an internal model of a virtual inertia can also inherently allow for both grid-integrated and standalone applications. Thus, such control systems are suitable for Microgrids and other power system configurations designed for operation in both islanded and grid-connected modes. However, a temporarily islanded system must be able to reconnect to the main grid through a smooth and seamless process. This paper presents a control strategy for seamless reconnection of islanded VSM-based grids. The proposed controller is acting on the frequency reference for the VSMs until the frequency and phase differences between the local grid and the main grid are eliminated. The operation is similar to recently proposed algorithms for automatic grid connection of synchronous generators, and is therefore compatible with local grids containing both VSMs and rotating machines. The operation of the proposed control loop is demonstrated by time domain simulations of the resynchronization process for an islanded system with two VSMs operating in parallel, and is verified by laboratory experiments on a single VSM.
机译:作为虚拟同步机(VSM)的电力电子电网接口的控制正在成为分布式电源系统中转换器的一种合适方法。包括虚拟惯性内部模型的VSM实现也可以固有地支持网格集成和独立应用程序。因此,这种控制系统适用于微电网和其他设计为在孤岛和并网模式下运行的电力系统配置。但是,一个临时孤岛的系统必须能够通过平稳无缝的过程重新连接到主电网。本文提出了一种基于孤岛的基于VSM的网格无缝重新连接的控制策略。所提出的控制器作用于VSM的频率参考,直到消除了本地电网和主电网之间的频率和相位差。该操作类似于最近提出的用于同步发电机自动电网连接的算法,因此与既包含VSM又包含旋转电机的本地电网兼容。对于具有两个并行运行的VSM的孤岛系统,通过重新同步过程的时域仿真来证明所提出的控制回路的运行,并通过在单个VSM上进行的实验室实验对其进行了验证。

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