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A Grid-Forming Multi-Port Converter using Unified Virtual Oscillator Control

机译:使用统一虚拟振荡器控制的网格形成多端口转换器

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A multi-port converter (MPC) consisting of a grid-forming port, a DC port, and a split-phase-AC port is proposed which can be used as building blocks in hybrid AC-DC systems such as community microgrids enabling intra-community and inter-community energy sharing. Commercially available off-the-shelf SiC power modules are used to achieve a modular hardware design for ease of assembly and maintenance. Unified virtual oscillator control (uVOC) is used to enable grid-forming operation. uVOC enables enhanced fault ride-through with fast over-current limiting; furthermore, operation in grid-connected and islanded modes and seamless transition between the two are achieved. Supervisory control and data acquisition (SCADA) with secondary and tertiary level reference dispatch capability is obtained through an integrated cyber node enabled by open-source hardware and software. Experimental results using a full-scale prototype is provided to validate the design. Using a battery energy storage system (BESS) connected at the DC port of the MPC, black-start, islanded and grid-tied operation, unintentional islanding, and grid re-synchronization capabilities are demonstrated.
机译:提出了一种由网格形成端口,DC端口和分相AC端口组成的多端口转换器(MPC),可以将其用作混合AC-DC系统的组成部分,例如社区微电网,从而实现内部社区和社区间的能量共享。商业上可用的现成SiC电源模块用于实现模块化硬件设计,从而简化了组装和维护。统一虚拟振荡器控制(uVOC)用于启用网格形成操作。 uVOC可以通过快速的过流限制来增强故障穿越能力;此外,还实现了并网和孤岛模式下的运行以及两者之间的无缝过渡。具有二级和三级参考调度功能的监督控制和数据采集(SCADA)是通过开源硬件和软件支持的集成网络节点获得的。提供了使用大型原型的实验结果以验证设计。使用连接到MPC直流端口的电池能量存储系统(BESS),演示了黑启动,孤岛和并网运行,无意识孤岛和电网重新同步功能。

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