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Optimal Configuration of the CHP System Using Stochastic Programming

机译:基于随机规划的热电联产系统优化配置

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摘要

This study presents a reliability-constrained optimization approach to determine the number and size of combined heat and power (CHP) system components, including CHP units, auxiliary boilers, and heat-storage tanks. To this end, the loss-of-load expectation and the expected energy not supplied are considered since the reliability indices ensure the security of operation. The load forecasting inaccuracy and the random outages of CHP system components as well as the loss of mains are modeled as a scenario tree using the Monte Carlo sampling approach. The problem is formulated as two-stage stochastic mixed integer linear programming. A scenario reduction technique is also introduced to reduce the computational burden of the scenario-based planning problem. Finally, the proposed model is applied to a large residential complex in Tehran as a case study.
机译:这项研究提出了一种可靠性受限的优化方法,以确定热电联产(CHP)系统组件(包括CHP机组,辅助锅炉和储热罐)的数量和大小。为此,由于可靠性指标确保了操作的安全性,因此考虑了负载损失期望和未提供的期望能量。使用蒙特卡洛采样方法,将负荷预测的不准确性和CHP系统组件的随机中断以及市电损耗建模为方案树。该问题被表述为两阶段随机混合整数线性规划。还引入了一种方案减少技术来减少基于方案的计划问题的计算负担。最后,以案例研究为基础,将所提出的模型应用于德黑兰的大型住宅区。

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