“ Detection of faults with voice alert in underground cable using IOT” SUBMITTED BY Abhinav Kumar Jha 1DB14EE001 Manjula N 1DB14EE020 Sri Raksha S 1DB14EE035 Anjan Kumar H 1DB08EE400 Under the Guidance of Rajath Shankar P.S Assistant Professor 1
 ABSTRACT  INTRODUCTION  LITERATURE REVIEW  BLOCK DIAGRAM  METHODOLOGY  ADVANTAGE  APPLICATIONS  CONCLUSION  WORK PLAN 2
The electrical cables run in underground instead of overhead lines in Urban areas. The main purpose of the project is to detect the location of fault in the underground cable . This project uses the standard concept of Ohms law. In case of short circuit (Line to Ground), the voltage across series resistors changes accordingly, which is then fed to an ADC to develop precise digital data to a programmed Renesas board that further displays fault location. Location of fault is detected by using IOT. 3
 A variety of technologies and tests are currently available to evaluate underground cable faults.  There is often little correlation between the diagnostic results and the actual deterioration.  The failures of underground power distribution cables represent a serious threat.  Presently diagnostic techniques require cable to be disconnected from the grid, causing service interrupted during locating the fault.  The proposed system, help us to detect the exact fault location of the cable and fix by providing instant information about fault. 4
 Mr. M.R. Hans, Ms. Snehal C. Kor, Ms. A.S. Patil et.al Identification of Underground cable fault location and development determining the exact distance from the base station.  Md Fakrul Islam, Amanullah M T Oo, Salahuddin A. Azad et.al Occurence of underground cable fault in the power transmission and distribution system. In this paper presents some compact and light weight high voltage machines are used to make the task easier and faster.  Dushyant Chandra, Prabhat Singh, Pravash Pratik Rajguru, Mr. Swapnil. A. Namekar et.al Detection of short circuit fault in underground cable using microcontroller. This paper propose that real time calculation of underground distribution system.  C.E.T.G Parker et.al high voltage non persistent fault finding cable and cable fault locating part.  Qinghai Shi. Troeltzsch U, Kanoun O et.al Detection and localization of cable faults by time and frequency domain measurements. 5
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 The project is designed using structured modelling and is able to provide the desired results.  It can be successfully implemented as a Real Time System.  Science is discovering or creating major breakthrough in various fields, and hence technology keeps changing from time to time.  Going further, most of the units can be fabricated on a single along with microcontroller thus making the system compact thereby making the existing system more effective.  To make the system applicable for real time purposes components with greater range needs to be implemented. 8
 Installation and Maintenance cost is less  Economically viable  Times Spent for searching damaged point in cables are reduced.  Easy to find the cable faults. 9
 Used in Industrial Hubs inside Metropolitan Cities.  Used by Electric Power Supply Industries / Company All 10
MONTH WEEKS PLAN FEBRUARY 1 WEEK LITERATURE SURVEY 2 WEEK DATA BASE COLLECTION 3 WEEK ANALYSIS OF HARDWARE COMPONENTS AND PURCHASING THE FURTHER REQUIRED 11
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Fault detection using iot PRESENTATION

  • 1.
    “ Detection offaults with voice alert in underground cable using IOT” SUBMITTED BY Abhinav Kumar Jha 1DB14EE001 Manjula N 1DB14EE020 Sri Raksha S 1DB14EE035 Anjan Kumar H 1DB08EE400 Under the Guidance of Rajath Shankar P.S Assistant Professor 1
  • 2.
     ABSTRACT  INTRODUCTION LITERATURE REVIEW  BLOCK DIAGRAM  METHODOLOGY  ADVANTAGE  APPLICATIONS  CONCLUSION  WORK PLAN 2
  • 3.
    The electrical cablesrun in underground instead of overhead lines in Urban areas. The main purpose of the project is to detect the location of fault in the underground cable . This project uses the standard concept of Ohms law. In case of short circuit (Line to Ground), the voltage across series resistors changes accordingly, which is then fed to an ADC to develop precise digital data to a programmed Renesas board that further displays fault location. Location of fault is detected by using IOT. 3
  • 4.
     A varietyof technologies and tests are currently available to evaluate underground cable faults.  There is often little correlation between the diagnostic results and the actual deterioration.  The failures of underground power distribution cables represent a serious threat.  Presently diagnostic techniques require cable to be disconnected from the grid, causing service interrupted during locating the fault.  The proposed system, help us to detect the exact fault location of the cable and fix by providing instant information about fault. 4
  • 5.
     Mr. M.R.Hans, Ms. Snehal C. Kor, Ms. A.S. Patil et.al Identification of Underground cable fault location and development determining the exact distance from the base station.  Md Fakrul Islam, Amanullah M T Oo, Salahuddin A. Azad et.al Occurence of underground cable fault in the power transmission and distribution system. In this paper presents some compact and light weight high voltage machines are used to make the task easier and faster.  Dushyant Chandra, Prabhat Singh, Pravash Pratik Rajguru, Mr. Swapnil. A. Namekar et.al Detection of short circuit fault in underground cable using microcontroller. This paper propose that real time calculation of underground distribution system.  C.E.T.G Parker et.al high voltage non persistent fault finding cable and cable fault locating part.  Qinghai Shi. Troeltzsch U, Kanoun O et.al Detection and localization of cable faults by time and frequency domain measurements. 5
  • 6.
  • 7.
  • 8.
     The projectis designed using structured modelling and is able to provide the desired results.  It can be successfully implemented as a Real Time System.  Science is discovering or creating major breakthrough in various fields, and hence technology keeps changing from time to time.  Going further, most of the units can be fabricated on a single along with microcontroller thus making the system compact thereby making the existing system more effective.  To make the system applicable for real time purposes components with greater range needs to be implemented. 8
  • 9.
     Installation andMaintenance cost is less  Economically viable  Times Spent for searching damaged point in cables are reduced.  Easy to find the cable faults. 9
  • 10.
     Used inIndustrial Hubs inside Metropolitan Cities.  Used by Electric Power Supply Industries / Company All 10
  • 11.
    MONTH WEEKS PLAN FEBRUARY 1WEEK LITERATURE SURVEY 2 WEEK DATA BASE COLLECTION 3 WEEK ANALYSIS OF HARDWARE COMPONENTS AND PURCHASING THE FURTHER REQUIRED 11
  • 12.