Design of Low Cost and Energy Efficient Smart Energy Meter of Overload Tripping with Recognition and Notification Systems based on Internet of Things

Boniface Ntambara, Ritha Umuhoza
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引用次数: 1

Abstract

Electricity overload endures an enormous loss experienced by electricity utility companies. These drawbacks arise because of actions carried out by most consumers such as metering systems overconsumption, industrial and distribution transformer overloads. Conventionally, the load management systems were proposed to tackle the problems by notifying the utility companies about the consumer load status but these systems are high energy consumption, high cost, and unable to provide the consumer location and accurate information. This paper develops the intelligent system for handling the issues by designing a three-phase smart energy meter perceptively based on Global System for Mobile Communications (GSM) and Global Positioning System (GPS) technologies interfaced by Arduino UNO. This microcontroller measures the three phase’s current and voltage and from these readings, powers were determined. Each phase, the predefined values of load were set, and whenever this threshold load values were exceeded, the consumer and utility got a message from GSM texted: “Dear Consumer, System is overloaded, Please manage it and RESET.”, otherwise the system was disconnected from the supply and GPS module was connected to the microcontroller to provide the location of the consumer. The results indicated that the system accurately has detected and reported the overload condition by tripping the energy meter and localizing the consumer. The IoT with AI technologies can be considered for future works.
基于物联网的低成本节能智能过载跳闸电能表识别与通知系统设计
电力超载给电力公司带来了巨大的损失。这些缺点的产生是由于大多数消费者采取的行动,如计量系统过度消耗,工业和配电变压器过载。传统的负荷管理系统是通过向电力公司通报用户的负荷状态来解决这一问题的,但这些系统能耗高,成本高,并且无法提供用户的位置和准确的信息。本文以Arduino UNO为接口,基于全球移动通信系统(GSM)和全球定位系统(GPS)技术,通过感知式设计一款三相智能电能表,开发了解决这一问题的智能系统。该微控制器测量三相的电流和电压,并从这些读数中确定功率。在每个阶段,设置负载的预定义值,每当超过这个负载阈值时,用户和公用程序就会收到来自GSM的消息:“亲爱的用户,系统过载,请进行管理并复位。”,否则系统将断开与电源的连接,并将GPS模块连接到微控制器以提供消费者的位置。结果表明,该系统通过跳闸电能表和定位用户,准确地检测并报告了过载情况。在未来的工作中可以考虑使用人工智能技术的物联网。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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