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Optimal electricity interchange schedules via a market-based coordination procedure

机译:通过基于市场的协调程序实现最佳电力交换计划

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The restructuring of the electric power industry in North America introduced the creation of new grid operator entities known as Independent System Operators (ISOs) or Regional Transmission Organizations (RTOs), which are in charge of the management of both the bulk power grid and the associated electricity markets in their footprints. In this paper, we use the generic term Independent Grid Operator (IGO) to refer to any of these organizations. While the power grids may be interconnected, each IGO operates its transmission system and electricity market independently of the interconnected IGO's. Due to absence of specific policy requirements and/or concerted coordination efforts, the associated electricity markets are not harmonized across the borders of interconnected IGOs which fail to harness a substantial fraction of the potential benefits attainable through their common interfaces. In this paper, we propose a coordination scheme which leads to optimal interface schedules for any two neighboring areas. To this end, we formulate the electricity market auction for the entire interconnection and decompose it based on the alternating direction minimization method (ADMM). The proposed methodology is applied to a 4-bus two-area test system. The algorithm converges to the optimal generation and interchange schedules and is applicable to large-scale networks.
机译:北美电力行业的重组引入了新的电网运营商实体的创建,这些实体称为独立系统运营商(ISO)或区域输电组织(RTO),负责大电网和相关电网的管理电力市场的足迹。在本文中,我们使用通用术语“独立网格运营商(IGO)”来指代这些组织中的任何一个。尽管可以将电网互连,但是每个IGO都独立于互连的IGO运作其输电系统和电力市场。由于缺乏具体的政策要求和/或缺乏协调一致的努力,相关的电力市场无法在相互连接的政府间组织的边界上协调统一,这些政府间组织无法利用其共同接口所能获得的大部分潜在利益。在本文中,我们提出了一种协调方案,该方案可为任何两个相邻区域提供最佳接口调度。为此,我们为整个互连制定了电力市场拍卖,并基于交替方向最小化方法(ADMM)对其进行分解。所提出的方法应用于四总线两区域测试系统。该算法收敛于最优的生成和交换时间表,适用于大规模网络。

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