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首页> 外文期刊>Electric power systems research >Optimal provision of concurrent primary frequency and local voltage control from a BESS considering variable capability curves: Modelling and experimental assessment
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Optimal provision of concurrent primary frequency and local voltage control from a BESS considering variable capability curves: Modelling and experimental assessment

机译:考虑可变能力曲线的BESS最佳地提供来自BESS的并发初级频率和局部电压控制:建模和实验评估

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摘要

This paper proposes a control method for battery energy storage systems (BESSs) to provide concurrent primary frequency and local voltage regulation services. The actual variable active and reactive power capability of the converter, along with the state-of-charge of the BESS, are jointly considered by the optimal operating point calculation process within the real-time operation. The controller optimizes the provision of grid services, considering the measured grid and battery statuses and predicting the battery DC voltage as a function of the current trajectory using a three-time-constant model (TTC). A computationally-efficient algorithm is proposed to solve the formulated optimal control problem. Experimental tests validate the proposed concepts and show the effectiveness of the employed control framework on a commercial utility-scale 720 kVA/560 kWh BESS.
机译:本文提出了一种用于电池储能系统(BESS)的控制方法,提供并行初级频率和局部电压调节服务。通过在实时操作内的最佳操作点计算过程中,转换器的实际变量主动和无功功率能力以及BES的充电共同考虑。控制器优化提供网格服务,考虑测量的电网和电池状态,并使用三次常数模型(TTC)作为电流轨迹的函数预测电池DC电压。提出了一种计算上有效的算法来解决配方的最佳控制问题。实验测试验证了所提出的概念,并展示了所采用的控制框架在商业公用事业范围内720 kVA / 560 kWH贝斯的有效性。

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