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Grid-connected converters with virtual electromechanical characteristics: experimental verification

机译:具有虚拟机电特性的并网转换器:实验验证

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Grid-connected power converters, which are frequently used to link renewable generation plants with the grid, are required to provide a better functionality for large scale integration of renewables. They are expected to be gridfriendly, or even grid-supportive, instead of simply grid-feeding or grid-demanding. This paper designs a synchronous power controller for grid-connected converters in detail, emulating the electromechanical characteristics of synchronous machines and improving even its actual performance, as it is based on a virtual approach. Based on this design, the grid-interfacing units are capable of showing inertia, damping, and droop characteristics as synchronous machines and presenting thus a grid-supporting behavior. The detailed control design and experimental validation on a 10 kW laboratory setup acts as the main contribution of this paper, compared with the existing studies on generator emulation controls.
机译:电网连接的电源转换器通常用于将可再生能源发电厂与电网连接在一起,因此需要为大规模集成可再生能源提供更好的功能。期望它们对网格友好,甚至支持网格,而不是简单的网格馈送或网格需求。本文基于虚拟方法,详细设计了用于并网转换器的同步功率控制器,模拟了同步电机的机电特性,甚至改善了其实际性能。基于此设计,电网接口单元能够显示出惯性,阻尼和下垂特性,作为同步电机,从而表现出电网支撑性能。与现有的发电机仿真控制研究相比,在10 kW实验室设置上进行详细的控制设计和实验验证是本文的主要贡献。

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