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Solar PV-BES Based Microgrid System With Multifunctional VSC

机译:基于太阳能PV-BES的微电网系统,具有多功能VSC

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摘要

A solar photovoltaic (PV)-battery energy storage-based microgrid with a multifunctional voltage source converter (VSC) is presented in this article. The maximum power extraction from a PV array, reactive power compensation, harmonics mitigation, balancing of grid currents and seamless transition from grid connected (GC) mode to standalone (SA) mode and vice versa, are performed in this system. Whenever the grid fails, this system operates in SA mode automatically, thereby without causing any interruption in supplying the load. Similarly, it automatically shifts to the GC mode, when the grid is restored. The VSC functions in current control for GC mode, and it operates in voltage control for SA mode of operation. This system is capable of extracting the maximum power from the solar PV array irrespective it is operating in the GC mode or SA mode. The charging and discharging of the battery are controlled by using a bidirectional dc–dc converter. It regulates the dc-link voltage to the maximum power point voltage of the PV array. If the absence of the battery is detected, then the control is automatically shifted to VSC for performing the extraction of the maximum power of the PV array.
机译:本文提出了一种具有多功能电压源转换器(VSC)的基于太阳能光伏(PV)的基于微电网的微电网。在该系统中,在该系统中执行从PV阵列,无功补偿,谐波缓解,电网电流平衡和从网格连接(GC)模式的无缝转换,并反之亦然,以及反之亦然的最大功率提取。每当网格失败时,该系统会自动在SA模式下运行,从而不会导致任何中断供应负载。同样,当网格恢复时,它会自动转移到GC模式。 VSC在电流控制中为GC模式的功能,它运行在SA操作模式的电压控制中。该系统能够从太阳能光伏阵列中提取最大功率,而无论它在GC模式或SA模式下都运行。通过使用双向DC-DC转换器来控制电池的充电和放电。它将DC-LINK电压调节到PV阵列的最大功率点电压。如果检测到电池的缺失,则控制被自动移位到VSC以执行PV阵列的最大功率的提取。

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