数字能源网络:智能低能耗照明系统的使用后评估与评价

Anthony Colohan, Joseph Teehan, K. Sunderland, M. Barrett, Jimmy Preston
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引用次数: 1

摘要

LED照明的电力需求的降低和数字技术的同步进步,现在使灯具能够完全通过安全特低电压(SELV)布线系统供电和控制。通过集中式48伏直流低延迟通信网络供电的LED灯具的实施,具有收集实时数据的能力,提供了在建筑物内节省大量电能的潜力。本文将对该技术进行评估,并研究该技术的潜力,以节省电能,提高照明质量,并在建筑环境中实现配电系统的成本节约。智能低压照明系统在受控环境中进行了测试,与系统原始设置相比,现有安装中采用的节能方法在一年多的时间里进一步降低了能耗。此外,该系统在监控空间利用、交通模式和温度方面提高建筑物智能化的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital energy networks: A post occupancy evaluation and appraisal of an Intelligent Low Energy Lighting System
The reduction in the electrical power requirements of LED lighting and the coinciding advancements in digital technology have now enabled luminaires to be powered and controlled exclusively over safety extra low voltage (SELV) wiring systems. The implementation of LED luminaires powered via a centralised 48 Volt DC low-latency communication network, with the capability to gather real-time data, has provided the potential to yield considerable electrical energy savings within a building. This paper will present an appraisal of this technology and will examine the technologies potential to make electrical energy savings, improve the quality of lighting and achieve cost savings on an electrical distribution system within a building environment. The intelligent low voltage lighting system was tested in a controlled environment and the energy reduction methods employed in an existing installation over one year provided a further reduction in energy consumption compared to the system's original settings. Furthermore, the ability of the system to enhance the buildings intelligence, in terms of monitoring space utilisation, traffic patterns and temperature.
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