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A Unified Control Scheme for a Standalone Solar-PV Low Voltage DC Microgrid System With HESS

机译:具有HESS的独立太阳能光伏电压DC微电网系统的统一控制方案

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摘要

This paper proposes a combined adaptive droop-based load sharing, maximum power point tracking (MPPT), and energy management of photovoltaic (PV)-based dc microgrid system. A proportional droop index (PDI) algorithm is introduced, which is a function of normalized current sharing difference and voltage deviation at the output side of the converter. The proposed method calculates adaptive virtual resistance , which allows the PV converter to operate at MPP or load sharing mode. By fine-tuning values, the proposed method eliminates poor voltage regulation issues of the conventional droop method. The control of the hybrid energy storage system (HESS) with a battery and a supercapacitor (SC) is also discussed to stabilize the dc grid voltage and energy management of the dc microgrid. The detailed analysis and the design procedure of low-voltage (LV) dc microgrid systems are explained, and the effectiveness of the proposed method is verified by simulation and experimental studies.
机译:本文提出了基于组合的基于自适应下垂的负载共享,最大功率点跟踪(MPPT)和基于光伏(PV)的DC微电网系统的能量管理。介绍了比例下垂索引(PDI)算法,其是转换器的输出侧的归一化电流共享差和电压偏差的函数。所提出的方法计算自适应虚拟电阻,允许PV转换器在MPP或负载共享模式下操作。通过微调值,所提出的方法消除了传统下垂方法的差的电压调节问题。还讨论了用电池和超级电容器(SC)的混合能量存储系统(HESS)的控制以稳定DC微电网的DC电网电压和能量管理。解释了低压(LV)DC微电网系统的详细分析和设计步骤,通过模拟和实验研究验证了所提出的方法的有效性。

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