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Socio-technical evolution of Decentralized Energy Systems: A critical review and implications for urban planning and policy

机译:权力下放能源系统的社会技术演进:对城市规划和政策的严格审查及其启示

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The growth of Decentralized Energy Systems (DES) signals a new frontier in urban energy planning and design of local energy systems. As affordability of renewable energy technologies (RET) increases, cities and urban regions become the venues, not only for energy consumption but also for generation and distribution, which calls for systemic and paradigmatic change in local energy infrastructure. The decentralizing transitions of urban energy systems, particularly solar photovoltaic and thermal technologies, require a comprehensive assessment of their sociotechnical co-evolution- how technologies and social responses evolve together and how their co-evolution affects urban planning and energy policies. So far, urban planning literature has mainly focused on the impact of physical urban forms on efficiency of energy consumption, overlooking how the dynamics of new energy technologies and associated social responses affect local systems of energy infrastructure, the built environments and their residents. This paper provides an interdisciplinary review on the co-evolving technical and social dynamics of DES focusing on Distributed Generation (DG), MicroGrids (MG), and Smart MicroGrids (SMG), in order to draw insights for their integration in urban planning and policy, in particular reference to climate change mitigation and adaptation planning. (C) 2015 Elsevier Ltd. All rights reserved.
机译:分散式能源系统(DES)的发展标志着城市能源规划和局部能源系统设计的新领域。随着可再生能源技术(RET)的可负担性增加,城市和城市地区成为场所,不仅要消耗能源,还要发电和分配能源,这就要求对本地能源基础设施进行系统的和范式的改变。城市能源系统的分散化过渡,尤其是太阳能光伏和热能技术,需要对其社会技术的共同发展进行全面评估,即技术和社会应对方式如何共同发展以及它们的共同发展如何影响城市规划和能源政策。迄今为止,城市规划文献主要集中在城市物理形态对能源消耗效率的影响上,而忽略了新能源技术的动态变化和相关的社会反应如何影响当地的能源基础设施系统,建筑环境及其居民。本文针对DES的共同发展的技术和社会动态进行了跨学科的综述,重点是分布式发电(DG),微电网(MG)和智能微电网(SMG),以便为将其纳入城市规划和政策中获取见解,尤其是有关缓解和适应气候变化的计划。 (C)2015 Elsevier Ltd.保留所有权利。

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