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Voltage Sharing of Series Connected Battery Modules in a Plug-and-Play DC Microgrid

机译:即插即用直流微电网中串联电池模块的电压共享

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This paper is focused on output voltage sharing among series-connected battery modules in an active battery management system (BMS) for a plug-and-play (PnP) DC micro-grid where the output voltage may vary in a wide range. In the considered active balancing system, battery cells are interfaced to the bus voltage through series connected step-up DC/DC converters. A cell current sensor is utilized to achieve BMS objectives, including state-of-charge (SOC) regulation, as well as output voltage sharing. To improve microgrid modularity, the battery pack behaves as a current source. A current-dependent droop between the individual output voltages to the input current is used to facilitate voltage sharing, which reduces the overall system cost and complexity by eliminating the need for an output current sensor in each DC/DC converter. Results of experimental validation are reported for a 1.5 kW experimental prototype system consisting of five series-connected modules, each module consisting of three battery cells and three DC/DC converters.
机译:本文着重于有源电池管理系统(BMS)中用于即插即用(PnP)DC微电网的串联电池模块之间的输出电压共享,其中输出电压可能会在较大范围内变化。在所考虑的主动平衡系统中,电池单元通过串联的升压DC / DC转换器与总线电压连接。利用电池电流传感器来实现BMS目标,包括充电状态(SOC)调节以及输出电压共享。为了提高微电网的模块化,电池组充当电流源。各个输出电压与输入电流之间的依赖于电流的压降用于促进电压共享,从而消除了每个DC / DC转换器中对输出电流传感器的需求,从而降低了总体系统成本和复杂性。报告了一个1.5 kW实验原型系统的实验验证结果,该系统由五个串联模块组成,每个模块由三个电池单元和三个DC / DC转换器组成。

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