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Optimal Sizing of Utility-scaled Battery with Consideration of Battery Installtion Cost and System Power Generation Cost

机译:考虑电池安装成本和系统发电成本的公用事业规模电池的最佳尺寸

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This paper evaluates the BESS size for compensating fluctuating generation of wind and solar. The analysis model is based on the unit commitment and the economic dispatch which considers the cost of system power generation and the cost of expected energy not supplied (EENS). The proposed model is demonstrated by using the power generation data of Thailand's generation system. Moreover, this model uses the genetic algorithm to perform the economic dispatch at significant time periods. In the experimental results, the optimal installation capacity of BESS can reduce the expected power outage cost of the system, the fuel cost of the generation system and the cost of committed power plants.
机译:本文评估了BESS大小,以补偿风能和太阳能的波动产生。该分析模型基于机组承诺和经济调度,其中考虑了系统发电成本和未提供的预期能源成本(EENS)。通过使用泰国发电系统的发电数据演示了该模型。此外,该模型使用遗传算法在重要时段进行经济调度。在实验结果中,BESS的最佳安装容量可以降低系统的预期停电成本,发电系统的燃料成本以及承诺的发电厂成本。

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