Protection System Design of Induction Motor for Industries

IF 0.8 Q3 ENGINEERING, MULTIDISCIPLINARY Modelling and Simulation in Engineering Pub Date : 2022-08-31 DOI:10.1155/2022/7423018
Shoaib Sheikh, Dileep Kumar, Abdul Hakeem, Arsalan Muhammad Soomar
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引用次数: 8

Abstract

The fundamental and durable structures of induction motor, as well as their low manufacturing cost, make them popular components in a wide range of current applications. Providing a safety net for employees is a must-have for businesses. This project’s motivation for improvement is to provide industrial motors, lift motors, pumps, and so on with safety. An induction motor’s primary goal is to protect it from problems, such as single phasing and overheating, as well as other issues. Providing industrial motors, pumps, lift motors, and other similar devices with security is a major motivation behind the emergence of this issue. Any of the three phases missing or the motor temperature above the predetermined threshold causes the motor to stop instantly. Three one-stage transformers are connected to a three-phase power supply in the system. Power will be cut to the transformer circuit if any phase is available. Motors can be turned off by relays sending a signal to the four-pole contactor. As a result, the motor’s three-phase power supply has been cut off. Temperature readings are taken from a thermistor (DHT22) that is attached to the motor. At higher temperatures, the three-phase supply will be cut off by a four-pole contactor, and the motor will shut off. This manuscript resolves the uses transformers to solve the problem of single phasing. Also, our project addresses the issue by using microcontroller. It senses all the three phases and decides whether to supply power to induction motor or to disconnect. It deals with the temperature problem, and it uses a thermistor to disconnect the circuitry, whereas in our project, a microcontroller senses the overwhelming temperature and acts accordingly, i.e., give a signal and then move towards disconnection.
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工业用感应电动机保护系统设计
感应电动机的基本和耐用的结构,以及它们的低制造成本,使它们在广泛的应用中广受欢迎的组件。为员工提供安全网是企业必须具备的。本项目改进的动机是为工业电机、提升电机、泵等提供安全。感应电动机的主要目标是防止它出现问题,如单相和过热,以及其他问题。为工业电机、泵、升降电机和其他类似设备提供安全性是该问题出现背后的主要动机。缺三相或电机温度高于预定阈值中的任何一个都会导致电机立即停止。三个一级变压器连接到系统的三相电源。如果有任何相位可用,将切断变压器电路的电源。通过继电器向四极接触器发送信号,可以关闭电动机。因此,电机的三相电源已被切断。温度读数取自附在电机上的热敏电阻(DHT22)。在较高的温度下,三相电源将被四极接触器切断,电机将关闭。本文解决了用变压器解决单相问题。此外,我们的项目通过使用微控制器解决了这个问题。它感知所有三相并决定是否向感应电动机供电或断开。它处理温度问题,它使用热敏电阻断开电路,而在我们的项目中,微控制器感知压倒性的温度并相应地采取行动,即给出信号,然后走向断开。
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来源期刊
Modelling and Simulation in Engineering
Modelling and Simulation in Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
2.70
自引率
3.10%
发文量
42
审稿时长
18 weeks
期刊介绍: Modelling and Simulation in Engineering aims at providing a forum for the discussion of formalisms, methodologies and simulation tools that are intended to support the new, broader interpretation of Engineering. Competitive pressures of Global Economy have had a profound effect on the manufacturing in Europe, Japan and the USA with much of the production being outsourced. In this context the traditional interpretation of engineering profession linked to the actual manufacturing needs to be broadened to include the integration of outsourced components and the consideration of logistic, economical and human factors in the design of engineering products and services.
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