18-hi-2030-ue Overvoltage Protection and Insulation Coordination in Power System

Course offering details

Instructors: Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer

Event type: Exercise

Org-unit: Dept. 18 - Electrical Engineering and Information Technology

Displayed in timetable as: E: UEÜberspann.schu

Subject:

Crediting for:

Hours per week: 1

Language of instruction: Englisch

Min. | Max. participants: - | -

Course Contents:


  • Introduction, basics and overview
  • Determination of representative overvoltages

    • Origin and classification of overvoltages
    • Normal distribution of overvoltage probability and derivated variables
    • Operating voltage and temporary overvoltages
    • Slow front overvoltages
    • Fast front overvoltages
    • Characteristics of overvoltage protective devices
    • Operation and design of metal-oxide surge arresters
    • Travelling wave effect and protective distance of surge arresters
    • Representative voltage and overvoltages in the case of using surge arresters

  • Determination of coordination withstand voltage

    • Insulation strength for different voltage shapes and geometric configurations (gap factors)
    • Performance criterion
    • Insulation coordination procedure

  • Determination of required withstand voltage

    • General remarks
    • Atmospheric correction
    • Safety factor for internal and external insulations

  • Standard withstand voltage and testing procedures

    • General remarks
    • Test conversion factors
    • Determination and verification of insulation withstand by type tests
    • Table of test voltages and required clearances


Literature:
The related IEC standard can be borrowed during the lecture time. Lecture notes (in English) and other helpful materials can be downloaded from HST homepage: www.hst.tu-darmstadt.de.

Preconditions:
High Voltage Technology I and II

Literature
Appointments
Date From To Room Instructors
1 Th, 23. Apr. 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
2 Th, 30. Apr. 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
3 Th, 7. May 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
4 Th, 14. May 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
5 Th, 28. May 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
6 Th, 4. Jun. 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
7 Th, 18. Jun. 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
8 Th, 25. Jun. 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
9 Th, 2. Jul. 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
10 Th, 9. Jul. 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
11 Th, 16. Jul. 2020 16:15 17:05 >Digitaler Veranstaltungstermin Prof. Dr.-Ing. Volker Hinrichsen; Dr.-Ing. Constantin Balzer
Class session overview
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Instructors
Prof. Dr.-Ing. Volker Hinrichsen
Dr.-Ing. Constantin Balzer