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A multi-period MILP model for the investment and design planning of a national-level complex renewable energy supply system

机译:用于国家级复杂可再生能源供应系统的投资和设计规划的多周期MILP模型

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This study presents a comprehensive approach to plan and analyze strategic investment for the design of an integrated renewable energy source-based energy supply system. Initially, the renewable energy source-based energy supply system superstructure was generated, which included 1) different energy sources (wind, solar, and biomass), 2) various energy facilities (for production, storage, and transportation), and 3) three types of final energy demand (electricity, hydrogen, and liquid fuel). A network optimization model was then developed using a mixed integer linear programming. The optimization model was used to determine the investment timing and allocation to the underlying energy supply system, which includes the type and quantity of utilized renewable sources, in addition to the timing of installation, number and location and of energy facilities installed. The capability of the proposed approach is validated through a case study of future Korea. As a result, we identified the optimal configuration and the investment timing of a complex renewable energy supply system, which was determined by regional resource potentials and cost-effectiveness of the involved technologies. The case study results can be used as a guideline to support decision-making of energy industry stakeholders and government policymakers in the strategic planning of a sustainable energy system. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究提出了一种综合方法,可用于规划和分析战略投资,以设计基于集成可再生能源的能源供应系统。最初,生成了基于可再生能源的能源供应系统上层结构,其中包括1)不同的能源(风能,太阳能和生物质能),2)各种能源设施(用于生产,存储和运输)和3)三个最终能源需求的类型(电力,氢气和液体燃料)。然后使用混合整数线性规划开发了网络优化模型。该优化模型用于确定投资时机和对基础能源供应系统的分配,其中包括安装时机,数量和位置以及所安装能源设施的时间,以及所利用的可再生资源的类型和数量。通过对未来韩国的案例研究验证了该方法的能力。结果,我们确定了复杂可再生能源供应系统的最佳配置和投资时机,这取决于区域资源潜力和所涉及技术的成本效益。案例研究结果可作为指导原则,以支持能源行业利益相关者和政府决策者制定可持续能源系统的战略计划。 (C)2019 Elsevier Ltd.保留所有权利。

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