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On transmission congestion management strategies and forecasting locational marginal prices in a deregulated competitive power market

机译:在放松管制的竞争性电力市场中,研究输电拥堵管理策略和预测边际电价

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To maximize both the social benefits of the customers and the efficiency of the transmission network system, the constraints of the transmission networks and the security level of the power system must be essentially controlled. In a competitive power market, congestion problem becomes an obstacle since it directly influences nodal pricing at various buses in the system. To keep a flat price profile at every node, dispatching of generating units and also load curtailment in a system may be required. Different pricing at every node or LMPs (Locational Marginal Price) are due to congestion of the network. The LMP at any node is the total cost of the incremental outputs of the marginal generators to deliver one unit of energy at that node without increasing the flow of the congested line. This paper presents a novel method to minimize total cost in respect of flow tariff, load costs, generator bids, zero congestion surplus and choosing properly the reference bus in a highly congested power system network. An improved LMP has been defined in this context which takes into account all of the above factors. The LMPs are calculated by incorporating Shift Factor (SF) based DC-Optimal power flow (DC-OPF) model. The proposed method has been applied in a four bus network and the results obtained have been found to be capable of eradicating the local market power monopoly in a system.
机译:为了最大化客户的社会效益和输电网络系统的效率,必须实质上控制输电网络的约束和电力系统的安全级别。在竞争激烈的电力市场中,拥塞问题成为障碍,因为它直接影响系统中各种总线的节点定价。为了使每个节点的价格保持不变,可能需要调度发电机组,并限制系统中的负荷。由于网络拥塞,每个节点或LMP的定价不同(位置边际价格)。在任何节点上的LMP都是在该节点上传递一个单位能量而不增加拥挤线路流量的边际发电机的增量输出的总成本。本文提出了一种新颖的方法,以最小化对于流关税,负载成本,发电机出价,零个堵塞剩余的总成本,并在高度拥挤的电力系统的网络选择正确的参考总线。考虑到上述所有因素,在此情况下定义了一种改进的LMP。 LMP是通过结合基于位移因子(SF)的DC最佳功率流(DC-OPF)模型来计算的。所提出的方法已经应用于四总线网络中,并且所获得的结果已经能够消除系统中的本地市场力量垄断。

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