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The economical modelling of a distribution system for electricity supply chain

机译:电力供应链配电系统的经济建模

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摘要

We propose an integrated distribution system model for electricity supply chain. The distribution system consists of a power plant, a transmission substation, a distribution substation and multi-customers. The electricity generated by the power plant is transmitted to the submission and distribution substations, and finally consumed by the customers. We apply the inventory theory to the distribution system model and assume the electricity demand is normally distributed. The objective is to minimize the joint total expected cost (JTEC) incurred by the power plant, transmission substation, distribution substation and multi-customers. The JTEC includes the transmission and the distribution costs, the blackout cost, the energy storage cost, setup/ordering cost, and the production cost. We develop a procedure to derive the optimal solution and the decision variables using differential calculus. The model is tested with an artificially generated data. The results in Fig. 5 show that as JTEC increases, the parameters of the average and standard deviation of electricity demand, power supply rate, length of lead time, capacities of power plant and transmission substation increase. The cost decreases as the blackout ratio and distribution substation capacity increase. The cost is insensitive to the changing electricity consumption time.
机译:我们提出了一个电力供应链的集成配电系统模型。配电系统由发电厂,输电变电站,配电变电站和多客户组成。发电厂产生的电力被传输到提交和分配变电站,最终由用户消耗。我们将库存理论应用于配电系统模型,并假设电力需求呈正态分布。目的是最大程度地减少发电厂,输电变电站,配电变电站和多客户的联合预期总成本(JTEC)。 JTEC包括传输和分配成本,停电成本,能量存储成本,设置/订购成本以及生产成本。我们开发了一种使用微分演算导出最佳解和决策变量的程序。使用人工生成的数据对模型进行测试。图5的结果表明,随着JTEC的增加,电力需求,供电率,提前期的长度,发电厂和输电变电站的容量的平均和标准偏差的参数也会增加。随着停电率和配电变电站容量的增加,成本降低。成本对不断变化的用电时间不敏感。

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