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    •   BracU IR
    • School of Engineering (SoE)
    • Department of Electrical and Electronic Engineering (EEE)
    • Thesis & Report, BSc (Electrical and Electronic Engineering)
    • View Item
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    Estimation of open & short circuit fault detected distance in the underground transmission cable using Arduino & GSM module

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    16221007, 16221036, 17321018, 16321164_EEE.pdf (4.722Mb)
    Date
    2021-06
    Publisher
    Brac University
    Author
    Rahman, Md. Rashidur
    Ullah, Md. Arafat
    Sakib, Nazmul Hasan
    Arnab, Johaor Kowsar
    Metadata
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    URI
    http://hdl.handle.net/10361/15724
    Abstract
    The purpose of this paper is to develop an IOT based prototype that can detect both the open and short circuit fault location for underground cables by using an Arduino and GSM module. Identification of Short circuit faults can be done by using the concept of OHM’S law. For this purpose, we use the row scanning technique in a three-phase system that continuously scans the three-phase system. We divide the cable into multiple segments where every segment has a particular known resistance value. Depending on the fault location there will be a change in cable voltage which will be detected by the microcontroller and it will display the fault on the LCD and send an SMS through GSM. For open-circuit fault detection, we use a capacitor for each segment of the cable which has a particular time constant for each capacitor. When an open circuit fault occurs in a particular segment, the time constant will change, which will be detected by the Arduino and display the corresponding fault location.
    Keywords
    Short circuit; Open circuit; IOT; GSM; OHM’S law; Time constant; Arduino
     
    LC Subject Headings
    Arduino (Programmable controller); Global system for mobile communications.
     
    Description
    This thesis is submitted in partial fulfillment of the requirements for the degree of Bachelor of Science in Electrical and Electronic Engineering, 2021.
     
    Cataloged from PDF version of thesis.
     
    Includes bibliographical references (pages 51-52).
    Department
    Department of Electrical and Electronic Engineering, Brac University
    Collections
    • Thesis & Report, BSc (Electrical and Electronic Engineering)

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