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Locational Pricing and Scheduling for an Integrated Energy-Reserve Market

机译:集成能源储备市场的地方定价和调度

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It is well known that given a network that can become constrained on voltage or real power flows, reserves must also be spatially located in order to handle all credible contingencies. However, to date, there is no credible science-based method for assigning and pricing reserves in this way. Presented in this paper is a new scheduling algorithm incorporating constraints imposed by grid security considerations, which include one base case (intact system) and a list of possible contingencies (line-out, unit-lost, and load-growth) of the system. By following a cost-minimizing co-optimization procedure, both power and reserve are allocated spatially for the combined energy and reserve markets. With the Lagrange multipliers (dual variables) obtained, the scheduling algorithm also reveals the locational shadow prices for the reserve and energy requirements. Unlike other pricing and scheduling methods in use, which are usually ad-hoc and are based on engineering judgment and experience, this proposed formulation is likely to perform better in restructured markets when market power is a potential problem. An illustrative example of a modified IEEE 30-bus system is used to introduce concepts and present results.
机译:众所周知,考虑到可以受到电压或实力流动的网络,储备也必须在空间上定位,以便处理所有可信的突发事件。但是,迄今为止,没有可信的科学的方法,用于以这种方式分配和定价储备。本文呈现的是一种新的调度算法,该调度算法包含电网安全考虑因素所施加的约束,包括一个基本情况(完整系统)和系统的可能的突发事件列表(漏斗,单位丢失和加载 - 增长)。通过遵循成本最小化的共同优化程序,电力和储备都在空间分配了组合的能量和储备市场。使用Lagrange乘法器(双变量)获得,调度算法还揭示了储备和能源要求的位置阴影价格。与使用中的其他定价和调度方法不同,这通常是ad-hoc并且基于工程判断和经验,当市场力量是潜在的问题时,这一制定的配方可能在重组市场中更好地表现。修改的IEEE 30-BUS系统的说明性示例用于介绍概念和当前结果。

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