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Research on nodal wind power values and optimal accommodation based on locational marginal price

机译:基于位置边际价格的节点风能值和最优调节研究

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摘要

Under the current grid operation mode, reasonable integration of wind power is conducive to the exertion of its value. In this paper, the line flow transmission margin value considering wind power integration is assimilated into the locational marginal price (LMP). Accordingly, the LMP includes four components: energy consumption, network loss, congestion and line flow transmission margin. Based on the LMP difference of load nodes before and after wind power integration and the idea of power flow tracing, the specific values of different grid-connected wind farms at each node are evaluated, namely, the energy value and the network value of wind power. The load nodes that have a critical impact on wind power accommodation for each wind farm are identified. Moreover, the reserve cost caused by the uncertainty of wind power is considered, in which the maximum total value of all wind farms is set as the optimal objective. Finally, this paper analyses the LMP, value and accommodation of a single wind farm in detail through a microgrid system and an IEEE 118-bus system with multiple wind farms to verify the proposed method.
机译:在当前的电网运行模式下,合理整合风电有利于发挥其价值。在本文中,将考虑风电集成的输电线路边际价值同化为地方边际价格(LMP)。因此,LMP包括四个部分:能耗,网络损耗,拥塞和线路流量传输裕量。基于风电整合前后负荷节点的LMP差异以及潮流追踪的思想,评估了每个节点不同并网风电场的特定值,即风能的能量值和网络值。确定了对每个风电场的风能适应能力有关键影响的负荷节点。此外,考虑了由风力发电的不确定性引起的储备成本,其中将所有风电场的最大总价值设置为最佳目标。最后,本文通过微电网系统和具有多个风场的IEEE 118总线系统,详细分析了单个风场的LMP,价值和适应性,以验证所提出的方法。

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