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Cost analysis of an electricity supply chain using modification of price based dynamic economic dispatch in wheeling transaction scheme

机译:电力供应链的成本分析使用基于价格的动态经济调度在旋转交易方案中的改变

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Deregulation of the electricity market requires coordination between parties to synchronize the optimization on the production side (power station) and the transport side (transmission). Electricity supply chain presented in this article is designed to facilitate the coordination between the parties. Generally, the production side is optimized with price based dynamic economic dispatch (PBDED) model, while the transmission side is optimized with Multi-echelon distribution model. Both sides optimization are done separately. This article proposes a joint model of PBDED and multi-echelon distribution for the combined optimization of production and transmission. This combined optimization is important because changes in electricity demand on the customer side will cause changes to the production side that automatically also alter the transmission path. The transmission will cause two cost components. First, the cost of losses. Second, the cost of using the transmission network (wheeling transaction). Costs due to losses are calculated based on ohmic losses, while the cost of using transmission lines using the MW - mile method. As a result, this method is able to provide best allocation analysis for electrical transactions, as well as emission levels in power generation and cost analysis. As for the calculation of transmission costs, the Reverse MW-mile method produces a cheaper cost than the Absolute MW-mile method
机译:电力市场的放松管制需要各方之间的协调,以使生产侧(发电站)和运输侧(传输)同步优化。本文提出的电力供应链旨在促进各方之间的协调。通常,通过基于价格的动态经济调度(PBDed)模型进行了优化的生产侧,而传输侧用多梯分布式模型进行了优化。双方优化都是单独完成的。本文提出了一种PBDED和多梯队分布的联合模型,用于组合生产和传输。这种综合优化很重要,因为客户端的电力需求变化将导致生产侧的变化,自动也改变传输路径。传输将导致两个成本组件。首先,损失的成本。其次,使用传输网络(旋转交易)的成本。由于欧姆损耗计算损失导致的成本,而使用MW - 英里方法使用传输线的成本。结果,该方法能够为电气交易提供最佳分配分析,以及发电和成本分析中的发射水平。对于传输成本的计算,反向MW英里方法产生比绝对MW英里方法更便宜的成本

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