Sambandam Raju Preethi, Mahalingam Murugan, Arumugam Rajendran Revathi
Department of Electronics and Communication Engineering, SRM Valliammai Engineering College, Kattankulathur 603203, India.
Research Scholar, Department of Information and Communication Engineering, Anna University, Chennai 600025, India.
Sensors (Basel). 2019 Apr 30;19(9):2032. doi: 10.3390/s19092032.
Nowadays, there is an increasing demand for energy saving techniques in residential, industrial, institutional, clinical and other multipurpose indoor and outdoor applications. Lights play an ubiquitous role around the Earth in all types of structures and outdoor surroundings. Hence, the authors propose a universal lighting control device-named Pervasive Adaptive Resourceful Smart Lighting and Alerting Device-accomplished mainly by the use of Arduino UNO R3. The Pervasive Adaptive Resourceful Smart Lighting and Alerting Device works in two modes, namely, light control and alert, by deploying the perceptive light automation and perceptive light automation with buzzer activation algorithms, respectively. The contributions of the paper are: a common lighting control solution for both incandescent and light emitting diode light bulbs for all indoor and outdoor environments. A profound power consumption analysis, and investigation of the proposed device by estimating the Energy Consumption Ratio (ECR) and Relative Energy Saving Ratio (RESR) through the real time deployment in diverse circumstances with 60 W incandescent, 8 W and 0.5 W LED light bulbs is executed. In addition to the evaluation of RESR and ECR characteristics the power consumption of light bulbs in terms of scalable conditions of number of light bulbs is also analyzed. The proposed model is proved to work efficiently for both incandescent and LED light bulbs.
如今,住宅、工业、机构、临床及其他多用途室内外应用对节能技术的需求日益增长。在地球上,各类建筑结构和户外环境中灯光都起着无处不在的作用。因此,作者提出了一种通用照明控制设备——名为“普适自适应智能照明与警报设备”,主要通过使用Arduino UNO R3来实现。普适自适应智能照明与警报设备通过分别部署感知光自动化算法和带蜂鸣器激活的感知光自动化算法,以两种模式工作,即光控制模式和警报模式。本文的贡献在于:为所有室内外环境中的白炽灯和发光二极管灯泡提供了一种通用照明控制解决方案。进行了深入的功耗分析,并通过在不同环境中实时部署60瓦白炽灯、8瓦和0.5瓦发光二极管灯泡,估计能耗比(ECR)和相对节能比(RESR),对所提出的设备进行了研究。除了评估RESR和ECR特性外,还分析了灯泡数量可扩展条件下灯泡的功耗。结果证明,所提出的模型对白炽灯和发光二极管灯泡均能有效工作。