公共路灯物联网的实施

Atmi Asri, Moh. Andika Pratama
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引用次数: 0

摘要

目前,仍有许多具有电力资源的路灯照明系统采用全功率系统或时间系统来调节灯具发出的功率,这样就灯具所产生的成本而言,也是相当大的。在维护方面,目前有问题的路灯仍然采用常规的方法,即直接等待现场的损坏报告,因此对损坏灯具的处理非常缓慢。基于这些问题,将设计一种自动控制的路灯,可以通过物联网(IoT)网站在线调节光强并报告灯的状态,该网站可以使用连接到互联网的智能手机或PC访问,以便进行能源使用和处理操作。伤害更有效。在这项研究中,设计了一个自动PJU,其中包含一个被动红外接收器(PIR)传感器,用于检测灯周围是否存在物体,以及一个ESP模块,通过Wi-Fi连接将硬件连接到互联网网络。用于根据阳光的明暗条件自动开关灯的系统,使用包含光相关电阻(LDR)的光电池。通过使用该系统,可以证明使用被动红外接收器(PIR)传感器和Thingspeak网站监测可以简化电力融资支出,并加快处理灯损坏。
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Implementation of The Internet of Things for Public Street Light
Currently, there are still many street lighting systems with electrical resources that use a full power system or a time system to regulate the power issued by the lamp so that in terms of the costs incurred for the lamp, it is also quite large. And in terms of maintenance, for now the problematic street lighting is still using conventional methods, namely waiting for damage reports from the field directly so that the handling of damaged lamps is very slow. Based on these problems, a street lighting lamp with automatic control will be designed that can adjust the light intensity and report the status of the lamp online through the Internet of Things (IoT) website which can be accessed using a smartphone or PC connected to the internet so that energy use and handling actions will be carried out. damage is more efficient. In this study, an automatic PJU was designed with a Passive Infrared Receiver (PIR) sensor to detect the presence or absence of objects around the lamp and an ESP module to connect the hardware to the internet network via a Wi-Fi connection . For the automatic system of turning on and off the lights based on bright and dark conditions of sunlight using a Photocell containing a Light Dependent Resistor (LDR) . With the use of this system, it can be proven that the use of Passive Infrared Receiver (PIR) sensors and Thingspeak website-based monitoring can streamline spending on electricity financing and accelerate the handling of lamp damage.
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