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Reliability-Constrained Power System Expansion Planning: A Stochastic Risk-Averse Optimization Approach

机译:可靠性约束电力系统扩展规划:随机风险厌恶优化方法

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This work presents a methodology to incorporate reliability constraints in the optimal power systems expansion planning problem. Besides Loss Of Load Probability (LOLP) and Expected Power Not Supplied (EPNS), traditionally used in power systems, this work proposes the use of the risk measures VaR (Value-at-Risk) and CVaR (Conditional Value-at-Risk), widely used in financial markets. The explicit consideration of reliability constraints in the planning problem can be an extremely hard task and, to minimize computational effort, this work applies the Benders decomposition technique splitting the expansion planning problem into an investment problem and two subproblems to evaluate the system's operation cost and the reliability index. The operation subproblem is solved by Stochastic Dual Dynamic Programming (SDDP) and the reliability subproblem by Monte Carlo simulation. The proposed methodology is applied to the real problem of optimal expansion planning of the Bolivian power system.
机译:该工作提供了一种在最佳电力系统扩展规划问题中纳入可靠性限制的方法。除了丢失负载概率(LOLP)和未提​​供的预期功率(EPNS),传统上用于电力系统,这项工作提出了风险措施VAR(价值 - 风险)和CVAR(条件值 - 风险)的使用,广泛用于金融市场。在规划问题中明确考虑可靠性限制可能是一个非常艰巨的任务,并且为了最大限度地减少计算工作,这项工作将弯曲分解技术将扩展规划问题分成投资问题和两个子问题,以评估系统的运营成本和两个子问题。可靠性指数。操作子发布通过随机双动态编程(SDDP)和Monte Carlo仿真通过随机双动脉公司和可靠性子问题解决。所提出的方法应用于玻利维亚电力系统最优膨胀规划的真正问题。

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