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A Control Structure for Smooth Transfer From Grid-Connected to Islanded Operation of Distributed Synchronous Generators

机译:一种控制结构,用于从网格连接到分布式同步发电机的孤岛操作

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Paulo The possibility of operating distributed generation (DG) in islanded mode brings several benefits but still faces some problems, especially related to the transition from a grid-connected to an islanded operating condition. When connected to the main grid, DG units operate in PQ mode. During this transition, their controls must be changed to regulate frequency and voltage. The delay for islanding detection, associated with abrupt changes in the control references, may result in large and detrimental transients. This paper proposes a new control structure for a distributed synchronous generator (DSG) to allow a smooth transition from the grid-connected to the islanded operation mode. The proposed control structure uses a compensation loop that was conceived based on the main ideas of the anti-windup bumpless transfer (AWBT) theory (although it is not, strictly speaking, an AWBT controller). The results show that the proposed structure ensures smaller excursions of the DSG variables during the transition and, therefore, the possibility of a successful formation of the islanded system is extended to a wider range of operating conditions. Moreover, with the proposed control, the success of this transition does not depend on the islanding detection time, which is the main contribution of this paper.
机译:圣保罗在孤岛模式操作分布式发电(DG)的可能性有以下几个优点,但仍然面临着一些问题,特别是有关从过渡网格连接到孤岛操作条件。当连接到主​​电网,DG单位PQ模式下操作。在这个过渡期间,他们的控制必须改变,以调节频率和电压。与对照引用的突然变化相关联,用于孤岛检测的延迟,可能导致大的和有害的瞬变。本文提出了一种分布式同步发电机(DSG)的新的控制结构,以允许从电网连接到孤岛运行模式的平滑过渡。所提出的控制结构采用了补偿循环,是基于抗饱和无扰动切换(AWBT)理论的主要观点构想(尽管它不是,严格来说,一个AWBT控制器)。结果表明,所提出的结构的转变过程中确保了DSG变量的较小偏移的,因此,一个成功形成孤岛系统的可能性被扩展到更广泛的操作条件。此外,与所提出的控制,这种转变的成功并不取决于孤岛检测时间,这是本文的主要贡献。

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