Optimal Multi Energy Supply for Regions with Increasing Use of Renewable Resources

F. Adamek
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引用次数: 13

Abstract

This paper presents a hierarchical multiple-level model approach for the examination of the optimal power supply strategy for a larger (geographical) region, such as a city, or a county. The multiple-level model consists of hierarchically ordered parts of the region, forming the levels. The levels exchange energy. Variations on load demand or technology infrastructure of one part of the region affect other parts. The aim of this paper is to develop a methodology to analyze the optimal power supply of the region for different scenarios. Bottom-up optimization is proposed to allow the comparison of different power supply scenarios with respect to their costs. The use of decentralized (renewable) energy plants can be compared to the operation of centralized plants. The performance of small and large storages can be analyzed and differentiated. The cost optimal positioning of storages and conversion technologies and the optimal assignment of a new technology to a level can be studied. Also, the demand for centralized conventional power plants can be minimized using the multiple-level model. The examination and comparison of different supply scenarios allows to elaborate recommendations for action and investment for the analyzed region.
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可再生资源增长区的最优多元能源供给
本文提出了一种分层多层模型方法,用于检查更大(地理)区域(如城市或县)的最优供电策略。多层模型由区域中按层次顺序排列的部分组成,形成层次。能级交换能量。一个地区的负荷需求或技术基础设施的变化会影响其他地区。本文的目的是发展一种方法来分析不同情况下该地区的最优电力供应。提出了自下而上的优化,以便比较不同的供电方案的成本。分散式(可再生)能源工厂的使用可以与集中式工厂的运行进行比较。可以对小型和大型存储的性能进行分析和区分。可以研究存储和转换技术的成本最优定位以及新技术对某一水平的最优分配。同时,多级模型可以使集中式常规电厂的需求最小化。通过对不同供应情况的审查和比较,可以为所分析的区域拟订行动和投资建议。
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