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Battery control algorithm with voltage command for accurate response to imbalance of electricity supply and demand

机译:电池控制算法电压指令,用于准确响应电力供需不平衡

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We developed a battery control algorithm that can accurately respond to imbalances between electricity supply and demand for a direct-current (DC) microgrid. With this algorithm, the state-of-charge (SOC) of a battery system is expressed as the target voltage considering state-of-health (SOH) and resistance. The battery system is controlled by the command value generated from this target voltage, the voltage of the DC bus, and the measured battery voltage. We demonstrated our algorithm with a 10-kW-scale DC microgrid and determined it can accurately respond to SOC commands with 98.4% accuracy.
机译:我们开发了一种电池控制算法,可以准确地响应电力供应与直流(DC)微电网的需求之间的不平衡。 利用该算法,电池系统的充电状态(SOC)表示为考虑健康状态(SOH)和电阻的目标电压。 电池系统由从该目标电压,直流总线的电压和测量的电池电压产生的命令值来控制。 我们用10千瓦级DC微电网证明了我们的算法,并确定它可以准确地响应98.4%的SOC命令。

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