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Proposal of a single-phase synchronous inverter with noninterference performance for power system stability enhancement and emergent microgrid operation

机译:具有非干扰性能的单相同步逆变器,用于电力系统稳定性增强和紧急微电网操作

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摘要

A novel design of a single-phase synchronous inverter (SSI) having noninterference core dynamic performance is proposed, referred to as noninterference core SSI (NIC-SSI) in this paper. The proposed inverter consists of "core" and "shell." This novel design is advantageous for a flexible setting of the core controller to enhance power system stability, which is supported by the shell function for keeping robust synchronizing operation of inverters including microgrid operation. The novel points in this paper are summarized as: (a) the proposed controller enables SSIs to implement directly a desired dynamic characteristic such as a synchronous machine; (b) it can connect any single-phase systems as well as three-phase systems; (c) an islanded single-phase microgrid without rotating machines can be stabilized by multiple SSIs. The proposed controller makes it possible to enhance system stability against increasing uncontrollable renewable energy sources (RESs) and static power conversion devices. The developed SSI realizes flexible use in the demand side operations under normal/faulted grid conditions. Hardware-in-the-loop (HIL) testbed including the proposed digital controller and the real-time simulator validates the effectiveness of the proposed controller in the experimental conditions.
机译:提出了一种具有非干扰核心动态性能的单相同步逆变器(SSI)的新颖设计,在本文中称为不干涉核心SSI(NIC-SSI)。建议的逆变器由“核心”和“壳牌”组成。这种新颖的设计有利于核心控制器的灵活设置,以提高电力系统稳定性,其由壳体功能支持,以保持包括微电网操作的逆变器的稳健同步操作。本文的新型点总结为:(a)所提出的控制器使SSI能够直接实现所需的动态特性,例如同步机; (b)它可以连接任何单相系统以及三相系统; (c)通过多个SSIS可以稳定不具有旋转机器的岛单相微电网。所提出的控制器使得可以提高对增加无法控制的可再生能源(RESS)和静态电力转换装置的系统稳定性。开发的SSI实现了正常/故障网格条件下需求侧操作的灵活性。包括所提出的数字控制器和实时模拟器的硬件循环(HIL)测试平板验证了所提出的控制器在实验条件下的有效性。

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