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Performance assessment of L-2LC-L filter (double LC trap)-based grid-connected three-phase voltage source inverter

机译:基于L-2LC-L滤波器(双LC陷阱)的并网三相电压源逆变器的性能评估

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Inverter-Based Distributed Generation (IBDG) units are typically coupled to the grid via three-phase Voltage Source Converters (VSCs). The IBDGs may pollute utility with the injected harmonic currents. In order to meet the standards' requirements, the necessity of grid-integration through passive filters supports a reduction of harmonic currents. This paper presents a performance assessment for the harmonic reduction introduced on the grid-side inductor when using LLCL filter with a single LC-trap, and LLCL filter with a dual LC-trap, named here L-2LC-L filter. Moreover, it can be deduced theoretically, that the higher the number of the LC parallel branches, the lower the grid-side inductor. When connected between the VSC and the grid, these types of filters may introduce resonance. Therefore, a passive or active damping technique may be applied to suppress the resonance. This paper presents also through simulation, analysis, and experiment, an active damping approach for LCL filter as well as for a filter with single trap (LLCL) and for a filter with dual LC trap (L-2LC-L) with grid-interfaced three-phase VSC.
机译:基于逆变器的分布式发电(IBDG)单元通常通过三相电压源转换器(VSC)耦合到电网。 IBDG可能会对注入的谐波电流造成污染。为了满足该标准的要求,通过无源滤波器进行电网集成的必要性可以降低谐波电流。本文介绍了在使用具有单个LC阱的LLCL滤波器和具有双LC阱的LLCL滤波器(此处称为L-2LC-L滤波器)时引入到电网侧电感器上的谐波降低的性能评估。而且,从理论上可以推论出,LC并联支路的数量越多,电网侧电感器越低。当在VSC和电网之间连接时,这些类型的滤波器可能会引起共振。因此,可以应用被动或主动阻尼技术来抑制共振。本文还通过仿真,分析和实验介绍了一种适用于LCL过滤器,单阱过滤器(LLCL)和双LC阱过滤器(L-2LC-L)的有源阻尼方法以及网格接口三相VSC。

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