Fotopoulou Eleni, Zafeiropoulos Anastasios, Terroso-Sáenz Fernando, Şimşek Umutcan, González-Vidal Aurora, Tsiolis George, Gouvas Panagiotis, Liapis Paris, Fensel Anna, Skarmeta Antonio
Ubitech Ltd. Research and Development Department, Athens 15231, Greece.
Departamento de Ingeniería de la Información y las Comunicaciones, Facultad de Informática, Universidad de Murcia, Murcia 30003, Spain.
Sensors (Basel). 2017 Sep 7;17(9):2054. doi: 10.3390/s17092054.
Considering that the largest part of end-use energy consumption worldwide is associated with the buildings sector, there is an inherent need for the conceptualization, specification, implementation, and instantiation of novel solutions in smart buildings, able to achieve significant reductions in energy consumption through the adoption of energy efficient techniques and the active engagement of the occupants. Towards the design of such solutions, the identification of the main energy consuming factors, trends, and patterns, along with the appropriate modeling and understanding of the occupants' behavior and the potential for the adoption of environmentally-friendly lifestyle changes have to be realized. In the current article, an innovative energy-aware information technology (IT) ecosystem is presented, aiming to support the design and development of novel personalized energy management and awareness services that can lead to occupants' behavioral change towards actions that can have a positive impact on energy efficiency. Novel information and communication technologies (ICT) are exploited towards this direction, related mainly to the evolution of the Internet of Things (IoT), data modeling, management and fusion, big data analytics, and personalized recommendation mechanisms. The combination of such technologies has resulted in an open and extensible architectural approach able to exploit in a homogeneous, efficient and scalable way the vast amount of energy, environmental, and behavioral data collected in energy efficiency campaigns and lead to the design of energy management and awareness services targeted to the occupants' lifestyles. The overall layered architectural approach is detailed, including design and instantiation aspects based on the selection of set of available technologies and tools. Initial results from the usage of the proposed energy aware IT ecosystem in a pilot site at the University of Murcia are presented along with a set of identified open issues for future research.
考虑到全球终端用能消耗的最大部分与建筑部门相关,因此迫切需要在智能建筑中对新颖解决方案进行概念化、规格制定、实施和实例化,这些解决方案能够通过采用节能技术和让居住者积极参与来大幅降低能耗。为了设计此类解决方案,必须识别主要的能源消耗因素、趋势和模式,同时对居住者的行为进行适当建模并理解,以及了解采用环保生活方式改变的潜力。在本文中,提出了一种创新的能源感知信息技术(IT)生态系统,旨在支持新颖的个性化能源管理和意识服务的设计与开发,这些服务可促使居住者的行为发生改变,采取对能源效率有积极影响的行动。朝着这个方向利用了新颖的信息和通信技术(ICT),主要涉及物联网(IoT)的发展、数据建模、管理与融合、大数据分析以及个性化推荐机制。这些技术的结合产生了一种开放且可扩展的架构方法,能够以统一、高效且可扩展的方式利用在能效活动中收集的大量能源、环境和行为数据,并导致针对居住者生活方式设计能源管理和意识服务。详细介绍了整体分层架构方法,包括基于可用技术和工具集的选择的设计和实例化方面。展示了在穆尔西亚大学的一个试点场所使用所提出的能源感知IT生态系统的初步结果以及一组未来研究中确定的开放问题。