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Analytical Approach to Circulating Current Mitigation in Hexagram Converter-Based Grid-Connected Photovoltaic Systems Using Multiwinding Coupled Inductors

机译:基于多绕组耦合电感的基于六卦转换器的并网光伏系统中循环电流缓解的分析方法

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The hexagram multilevel converter (HMC) is composed of six conventional two-level voltage source converters (VSCs), where each VSC module is connected to a string of PV arrays. The VSC modules are connected through inductors, which are essential to minimize the circulating current. Selecting inductors with suitable inductance is no simple process, where the inductance value should be large to minimize the circulating current as well as small to reduce an extra voltage drop. This paper analyzes the utilization of a multiwinding (e.g., two, three, and six windings) coupled inductor to interconnect the six VSC modules instead of six single inductors, to minimize the circulating current inside the HMC. Then, a theoretical relationship between the total impedance to the circulating current, the number of coupled inductor windings, and the magnetizing inductance is derived. Owing to the coupled inductors, the impedance on the circulating current path is a multiple of six times the magnetizing inductance, whereas the terminal voltage is slightly affected by the leakage inductance. The HMC is controlled to work under variable solar radiation, providing active power to the grid. Additional functions such as DSTATCOM, during daytime, are also demonstrated. The controller performance is found to be satisfactory for both active and reactive power supplies.
机译:六边形多电平转换器(HMC)由六个常规的两电平电压源转换器(VSC)组成,其中每个VSC模块都连接到一串PV阵列。 VSC模块通过电感器连接,这对于最大程度地减少循环电流至关重要。选择具有合适电感的电感器并非易事,电感值应大以减小循环电流,而小以减小额外的压降。本文分析了使用多绕组(例如,两个,三个和六个绕组)耦合的电感器来互连六个VSC模块而不是六个单个电感器的方法,以最大程度地减少HMC内部的循环电流。然后,得出与循环电流的总阻抗,耦合电感器绕组的数量和磁化电感之间的理论关系。由于耦合了电感器,循环电流路径上的阻​​抗是励磁电感的六倍,而端子电压受漏感的影响很小。 HMC被控制为在可变的太阳辐射下工作,从而为电网提供有功功率。还演示了白天的其他功能,例如DSTATCOM。发现控制器的性能对于有功和无功电源都令人满意。

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