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Centralized vs distributed generation. A model to assess the relevance of some thermal and electric factors. Application to the Spanish case study

机译:集中式与分布式发电。评估某些热和电因素相关性的模型。在西班牙案例研究中的应用

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Deployment of Distributed Energy Resources (DER) is already a reality for electricity supply and the debate whether distributed generation is going to replace almost totally or partially the current centralized generation paradigm is currently in place. Technical and economic advantages of DER have been addressed in the literature although regulation has also played a central role in DER deployment. This paper aims at contributing to that debate. Firstly, the advantages of both paradigms are reviewed and the cost recovery problem of the existing centralized related stranded costs discussed. Secondly, an optimization model, formulated to specifically address the discussion comparing both configuration paradigms. Main factors affecting the debate are identified and represented in the model: investment and operation costs, flexibility system requirements, demand response capabilities, building thermal demands, network investments and losses, and access-fee design, among others. Thirdly, a realistic case study, based on Spain, is presented and some qualitative conclusions extracted. Such kind of model is useful to undertake country specific studies either to perform sensitivity analysis revealing the relevance of the factors involved and the direct and indirect relationships among technologies, or to analyze the more efficient system configuration and align regulatory decisions towards it. (C) 2017 Elsevier Ltd. All rights reserved.
机译:分布式能源资源(DER)的部署已经是电力供应的现实,并且有关分布式发电是否将全部或部分取代当前集中式发电范式的争论已经存在。尽管法规在DER部署中也发挥了核心作用,但文献中已经谈到了DER的技术和经济优势。本文旨在为该辩论做出贡献。首先,回顾了两种范式的优势,并讨论了现有集中式相关滞留成本的成本回收问题。其次,建立了一个优化模型,专门用于比较两个配置范例的讨论。在模型中确定并代表了影响辩论的主要因素:投资和运营成本,灵活性系统要求,需求响应能力,建筑物热需求,网络投资和损失以及访问费设计等。第三,提出了一个基于西班牙的现实案例研究,并得出了定性结论。这种模型可用于进行特定国家的研究,以进行敏感性分析以揭示所涉及因素的相关性以及技术之间的直接和间接关系,或者用于分析更有效的系统配置并使其适应性决策。 (C)2017 Elsevier Ltd.保留所有权利。

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