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Transmission Network Expansion Planning Based on Chronological Evaluation Considering Wind Power Uncertainties

机译:考虑风电不确定性的基于时间评估的输电网络扩展规划

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Transmission network expansion planning (TNEP) is expected to cope with the power transmission inadequacy problem resulting from rapid growth of wind generation in power systems. However, due to significant uncertainties on the generation side, TNEP based solely on one snapshot or a limited number of scenarios cannot capture the time-variant characteristics of wind power and may be suboptimal. In this paper, a new heuristic methodology for TNEP based on chronological evaluation is presented. First, to assess the transmission adequacy, the multiperiod DC optimal power flow considering the generators’ ramping limits is employed for a system production simulation covering an entire year. Second, two sensitivity factors derived from Lagrange multipliers, i.e., the sensitivity factors of the branch capacity and the branch admittance, are applied to determine the initial set of the transmission network expansion plan (I-STNEP). Finally, the cost-benefit incremental relationship index and a degressive method are used to identify the best subset of the transmission network expansion plan within the I-STNEP. Simulation results based on a 3000-bus real-world network in northern China validate the effectiveness of the proposed TNEP method.
机译:输电网络扩展计划(TNEP)有望解决由于电力系统中风力发电的快速增长而导致的输电不足问题。但是,由于发电方面存在很大的不确定性,仅基于一个快照或有限数量的方案的TNEP无法捕获风能的时变特征,因此可能不是最优的。本文提出了一种基于时间评估的TNEP启发式方法。首先,为了评估传输的充分性,考虑了发电机的爬升极限的多周期直流最优功率流被用于整个一年的系统生产模拟。其次,从拉格朗日乘数得到的两个敏感度因子,即分支容量和分支导纳的敏感度因子,被用于确定传输网络扩展计划(I-STNEP)的初始集合。最后,使用成本效益增量关系指数和递减方法来确定I-STNEP中传输网络扩展计划的最佳子集。基于中国北方地区3000辆公交车的真实世界网络的仿真结果验证了所提出的TNEP方法的有效性。

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