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Real Time Energy Management and Bus VoltageDroop Control in Solar Powered Standalone DC Microgrid

机译:太阳能支持的实时能源管理和总线电压控制控制中的控制DC微电网

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In this paper, different energy management techniques are investigated in solar powered standalone DC microgrid to 1) mitigate real time power mismatches and 2)improve DC bus voltage profile. If the battery state of charge (SOC) is between the maximum and minimum limits, the bidirectional DC-DC converter (BDC) connected to the battery is controlled to maintain DC bus voltage and power balance. Thus, the DC bus voltage is kept under stringent limits by adaptive droop control of BDC. The DC bus voltage set point is varied within the limits to account for SOC based battery management.If the battery SOC is unfit for charging/discharging, load management is deployed to serve the purpose. The boost converter connected to the solar panel (PV converter) is either used for optimal power point tracking (OPPT) or for voltage control in the absence of battery. The methods are investigated on the basis of bus voltage profile and utilization of solar PV source for different ranges of generation and loads using simulation and hardware.
机译:在本文中,在太阳能独立DC微电网中研究了不同的能量管理技术,以1)减轻实时功率不匹配和2)改善直流母线电压曲线。如果电池充电状态(SOC)在最大和最小限制之间,则控制连接到电池的双向DC-DC转换器(BDC)以维持直流母线电压和功率平衡。因此,通过BDC的自适应下垂控制,将DC总线电压保持在严格的限制。 DC总线电压设定点在限制范围内变化,以考虑SOC基电池管理。如果电池SOC不适合充电/放电,则部署负载管理以满足该目的。连接到太阳能电池板(PV转换器)的升压转换器用于最佳功率点跟踪(OPPT)或在没有电池的情况下进行电压控制。根据使用仿真和硬件的基于总线电压曲线和利用太阳能光伏源的母线电压曲线和利用不同的发电范围的方法进行研究。

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