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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Scalable pathways to net zero carbon in the UK higher education sector: A systematic review of smart energy systems in university campuses
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Scalable pathways to net zero carbon in the UK higher education sector: A systematic review of smart energy systems in university campuses

机译:英国高等教育部门净零碳的可扩展途径:大学校园智能能源系统的系统审查

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The following literature review sets out the state-of-the-art research relating to smart building principles and smart energy systems in UK higher education university campuses. The paper begins by discussing the carbon impact of the sector and the concept of 'smart campuses' applied to the sector in the context of decarbonisation. Opportunities and challenges associated with integrating smart energy systems at the university campus from a policy and technical perspective are then discussed. This is followed by a review of building and campus-scale frameworks supporting a transition to smart energy campuses using the BPIE' Smart Buildings' framework. The paper finds that the complexity of achieving net-zero carbon emissions for new and existing higher education buildings and energy systems can be addressed with the adoption of 'smart building principles' and integrating 'smartness' into their energy systems. Several universities in the UK and worldwide are integrating smart services and Information and Communication Technologies (ICT) in their operations following the smart campus premise. At the building level, existing frameworks often create conceptual roadmaps for the smart building premise or propose technical implementation and assessment methods. At university campus scale, implementation typically comes through single-vector interventions, and only few examples exist that propose a multi-vector approach. Comparisons of the drivers and the decision-making process are made, with carbon and cost reduction being the most prominent from leveraging distributed energy generation. Therefore, this study identified the need for a comprehensive technical or policy framework to drive the uptake of the smart energy campus, aiming to bring together the holistic value of smart energy campuses.
机译:下面的文献综述列出关于智能建筑原则和智能能源系统在英国高等教育大学校园的国家的最先进的研究。本文通过讨论该部门的碳排放的影响,并在低碳化的背景下加在扇形“智能校园”的概念开始。然后在大学校园里从政策和技术角度整合智能能源系统有关的机遇和挑战进行了讨论。其次是配套使用BPIE”智能建筑框架智能能源校区过渡建筑和校园规模的框架进行了审查。文章认为,实现净零碳排放的新的和现有的高等教育建筑和能源系统的复杂性可与采用的“智能建筑原则”和“机灵”纳入其能源系统来解决。在英国和世界各地的几所大学在他们的操作下的智能校园前提整合智能服务,信息和通信技术(ICT)。在建筑层面,现有的框架往往创造了智能建筑概念的前提下发展蓝图或提出技术实施和评估方法。在大学校园规模,实现通常涉及通过单矢量干预,只有几个例子存在即提出了多向量方法。驱动程序和决策过程的比较制成,碳和降低成本是最突出的,从利用分布式能源发电。因此,本研究确定需要进行全面的技术和政策框架,以推动智能能源校园的摄取,旨在汇集智能能源校区的整体价值。

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