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Energy-aware wireless sensor network with ambient intelligence for smart LED lighting system control

机译:具有环境智能的能量感知无线传感器网络,用于智能LED照明系统控制

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In a typically commercial or residential building, the indoor lighting system can be considered as one of the largest single consuming units amongst many electrical loads. Saving energy in such a lighting system is utmost important whilst satisfying lighting user's preference as well. This paper presents a controllable LED lighting system embedded with ambient intelligence gathered from a distributed smart wireless sensor network (WSN) to optimize and control the lighting system to be more efficient and user-oriented. In this proposed WSN-based control system, there is an inherent problem with the operational lifetime of its wireless sensor nodes limited by the finite energy capacity of their onboard batteries. To overcome this WSN's problem, an energy-aware communication protocol is introduced to reduce the power consumption of the WSN in order to prolong its operating time. The proposed smart WSN-based LED lighting system has been test-bedded and retrofitted into an existing workplace to conserve up to 10 % of waste light energy without compromising the workplace lighting condition. As for the operational lifetime of the proposed energy-aware WSN-based control system, the experimental results show that the wireless sensor nodes are able to operate for a longer period of time, from 87 days to 102 days, with about 20 % increase in their operational lifetimes.
机译:在典型的商业或住宅建筑中,室内照明系统可以被认为是许多电负载中的最大单个消耗单元之一。在这种照明系统中节省能量非常重要,同时满足照明用户的偏好。本文介绍了一个可控的LED照明系统,嵌入了由分布式智能无线传感器网络(WSN)收集的环境智能,以优化和控制照明系统以更高效和更高效的。在这一提出的基于WSN的控制系统中,存在由其板载电池的有限能量限制的无线传感器节点的操作寿命的固有问题。为了克服这个WSN的问题,引入了一种能量感知通信协议来降低WSN的功耗,以便延长其操作时间。所提出的智能的基于WSN LED照明系统已测试床和改装到现有的工作场所,以节省高达废物光能量的10%而不会损害工作场所的照明条件。至于所提出的能量感知WSN的控制系统的操作寿命,实验结果表明,无线传感器节点能够从87天至102天从87天移动到更长的时间段,增加约20%他们的运作寿命。

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