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Reliability-constrained dynamic transmission expansion planning considering wind power generation

机译:考虑风力发电的可靠性约束动态传输扩展规划

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摘要

This paper proposes a two-stage framework to solve the long-term transmission network expansion planning (TNEP) problem ensuring user-defined reliability levels and wind curtailment over the planning horizon. In the first stage, the static TNEP (S-TNEP) problem is solved to define where a set of new lines must be installed at the end of planning horizon. In the second stage, a multistage procedure is performed to solve the dynamic TNEP (D-TNEP) in order to determine the moment that each transmission line should be built. Both S-TNEP and D-TNEP are decomposed into investment decision and performance assessment through a bi-level scheme based on Benders decomposition; thus, the reliability is considered and evaluated over the planning process. The reliability and performance indexes are obtained through the non-chronological Monte Carlo simulation considering the random behavior of transmission lines failures, load fluctuations and uncertainties over wind availability. The loss of wind probability performance index is introduced to measure the probability of wind curtailment in each connection point of the system, and it is used to prevent wind farms from being underused. The proposed methodology is tested in modified versions of the 24-bus IEEE reliability test system and the IEEE 118-bus test system.
机译:本文提出了一个两阶段框架,以解决长期传输网络扩展规划(TNEP)问题,确保用户定义的可靠性水平和规划地平线上的风缩减。在第一阶段,解决了静态TNEP(S-TNEP)问题以定义必须在规划地平线结束时安装一组新线的位置。在第二阶段,执行多级过程以解决动态TNEP(D-TNEP)以便确定应建立每个传输线的时刻。 S-TNEP和D-TNEP都通过基于弯道分解的双级方案分解为投资决策和性能评估;因此,通过规划过程考虑和评估可靠性。考虑到传输线路故障,负载波动和不确定性,通过非时刻蒙特卡罗模拟获得可靠性和性能指标。引入了风概率性能指标的损失,以测量系统的每个连接点中的风削减概率,并且用于防止风电场被未被发救。在24总线IEEE可靠性测试系统和IEEE 118总线测试系统的修改版本中测试了所提出的方法。

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