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Stochastic optimization of trigeneration systems for decision-making under long-term uncertainty in energy demands and prices

机译:在能源需求和价格存在长期不确定性的情况下,用于决策的三代发电系统的随机优化

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Combined heating, cooling and power (CHCP) systems, so-called trigeneration, are widely accepted as more energy-efficient and environment-friendly alternatives to traditional separate energy generation. Nevertheless, the tasks of synthesis and optimization of trigeneration systems are strongly hampered by the long-term uncertainties in energy demands and prices. In this work, we introduce a new scenario-based model for the stochastic optimization of CHCP systems under uncertainty in several process design parameters. Energy generation operators are proposed to ensure the optimal sizing and operation of each equipment in each optimization scenario. Our main objective is to enhance energy efficiency by synthesizing the most cost-effective CHCP system able to operate in wide-ranging scenarios of energy demands and prices. For this purpose, uncertain design parameters are modelled as a set of loading and pricing scenarios with given probability of occurrence. The set of scenarios contains correlated energy prices described through a multivariate Normal distribution, which are generated via a Monte Carlo sampling technique with symmetric correlation matrix. The resulting stochastic multiscenario MINLP model is solved to global optimality by minimizing the expected total annualized cost. A thorough economic risk analysis underlines the effectiveness of the proposed methodology. This systematic approach represents a useful tool to support the decision-making process regarding system efficiency and robustness. (C) 2019 Elsevier Ltd. All rights reserved.
机译:供热,制冷和动力(CHCP)组合系统,即所谓的三联发电,已被广泛接受,是传统的独立发电的更节能,更环保的替代方案。然而,三代发电系统的综合和优化任务由于能源需求和价格的长期不确定性而受到严重阻碍。在这项工作中,我们引入了一个新的基于场景的模型,用于在某些过程设计参数不确定的情况下对CHCP系统进行随机优化。提出了发电运营商,以确保每种优化方案中每种设备的最佳尺寸和操作。我们的主要目标是通过合成能够在各种能源需求和价格情况下运行的最具成本效益的CHCP系统来提高能源效率。为此,将不确定的设计参数建模为具有给定发生概率的一组加载和定价方案。场景集包含通过多元正态分布描述的相关能源价格,这些价格是通过具有对称相关矩阵的蒙特卡洛采样技术生成的。通过使预期的年度总成本最小化,将最终的随机多场景MINLP模型求解为全局最优。全面的经济风险分析强调了所提出方法的有效性。这种系统的方法代表了支持系统效率和健壮性决策过程的有用工具。 (C)2019 Elsevier Ltd.保留所有权利。

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