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A concept review of power line communication in building energy management systems for the small to medium sized non-domestic built environment

机译:中小型非住宅建筑环境建筑能源管理系统中电力线通信的概念回顾

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摘要

To date, building energy management systems (BEMS) have been well established in the large scale non domestic field as an energy saving technology, contributing towards sustainable future cities. They utilise complex control interfaces, with control signals passed through purpose built communication wiring. Estimated end-use energy savings, due to BEMS addition, can reach up to 50%, with associated financial savings for building users. The intelligent control, featured in BEMS, enables buildings to adapt; optimising operation based on up to date weather forecasts. Despite the positive savings for future sustainable cities, the additional wiring required and complex control interfaces have inhibited wide scale up take for small and medium sized commercial buildings. Retrofit installation is often time consuming, whilst efficient operation requires additional training for users. BEMS, based on wireless communication technology, are limited by radio-wave reception and therefore suffer in heavyweight constructions and larger premises (greater than 1000 sqm). Following review of available technologies, this paper investigates a novel strategy utilising power-line communication (PLC) for BEMS communication, for versatile applications in the small to medium sized non-domestic (SMSND) premises that make up future sustainable cities. The PLC strategy intends to send BEMS control signals via the established electrical wiring network. Before implementation of this concept, further work is required to overcome the more challenging aspects of PLC technology. (C) 2016 Elsevier Ltd. All rights reserved.
机译:迄今为止,建筑节能管理系统(BEMS)已在大型非住宅领域中作为节能技术而建立,为可持续的未来城市做出了贡献。它们利用复杂的控制接口,控制信号通过专用通信电缆传递。由于添加了BEMS,最终用户使用的能源节省估计可达50%,并为建筑物用户节省了相关的资金。 BEMS中具有的智能控制功能使建筑物能够适应;根据最新天气预报优化运营。尽管为未来的可持续城市带来了积极的节省,但所需的额外布线和复杂的控制接口却抑制了中小型商业建筑的大规模使用。翻新安装通常很耗时,而有效的操作则需要对用户进行额外的培训。基于无线通信技术的BEMS受无线电波接收的限制,因此在重量较大的建筑物和较大的建筑物(大于1000平方米)中会受到影响。在回顾了可用技术之后,本文研究了一种利用电力线通信(PLC)进行BEMS通信的新颖策略,以在构成未来可持续城市的中小型非住宅(SMSND)场所中实现多功能应用。 PLC策略打算通过已建立的电气布线网络发送BEMS控制信号。在实施此概念之前,需要做进一步的工作来克服PLC技术更具挑战性的方面。 (C)2016 Elsevier Ltd.保留所有权利。

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