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Transmission expansion planning using an efficient version of Benders' decomposition. A case study

机译:使用Benders分解的有效版本进行传输扩展计划。案例研究

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Transmission Expansion Planning (TEP) is a central decision in power systems and is currently receiving increased attention due to the integration of renewable power needed to meet the ambitious European emission reduction targets. The TEPES model (long-term Transmission Expansion Planning for an Electric system) unites some of the latest theoretical developments in the field (with some of them having been designed especially for this model) with a practical application, as TEPES is currently used in several international projects. The model identifies the optimal expansion plan in terms of investment expenses, operation cost and reliability penalties. It considers stochasticity in demand, hydro inflows, fuel prices and renewable energy generation. TEPES is solved using an efficient implementation of Benders' decomposition that incorporates some algorithmic improvements that enhance computational performance. Two case studies (one descriptive test case and one real application) illustrate the model.
机译:传输扩展计划(TEP)是电力系统中的一项核心决策,由于实现了雄心勃勃的欧洲减排目标而需要整合可再生能源,因此,传输扩展计划正在受到越来越多的关注。 TEPES模型(电气系统的长期传输扩展计划)结合了该领域的一些最新理论发展(其中一些是专门为该模型设计的)与实际应用相结合,因为TEPES当前用于多种国际项目。该模型根据投资费用,运营成本和可靠性损失来确定最佳扩张计划。它考虑了需求的随机性,水流入,燃料价格和可再生能源的产生。通过使用Benders分解的有效实现方式解决TEPES,该方法结合了一些可增强计算性能的算法改进。两个案例研究(一个描述性测试案例和一个实际应用)说明了该模型。

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