IEEE 1313.2 1999
$58.50
IEEE Guide for the Application of Insulation Coordination
Published By | Publication Date | Number of Pages |
IEEE | 1999 | 66 |
New IEEE Standard – Active. The calculation method for selection of phase-to-ground and phase-to-phase insulationwithstand votlages for equipment is presented. This guide gives methods for insulation coordinationof different air-insulated systems like transmission lines and substations. The methods of analysisare illustrated by practical examples.
PDF Catalog
PDF Pages | PDF Title |
---|---|
1 | Title Page |
3 | Introduction Participants |
5 | CONTENTS |
7 | 1. Overview 1.1 Scope 1.2 Purpose 2. References |
9 | 3. Voltage stresses 3.1 Origin and classification of voltage stresses |
15 | 3.2 Characteristics of overvoltage protective devices |
17 | 4. Insulation strength 4.1 General |
18 | 4.2 Insulation behavior at power frequency voltages 4.3 Influences of atmospheric conditions on external insulation |
19 | 4.4 Probability of disruptive discharge 4.5 Influence of polarity and overvoltage shape |
20 | 4.6 Phase-phase and longitudinal insulation 5. Performance/reliability criterion 5.1 Transmission lines 5.2 Substations |
21 | 6. Insulation coordination design 6.1 Design procedures for continuous power frequency voltage and temporary overvoltages |
26 | 6.2 Procedures for switching overvoltages (SOV) |
37 | 6.3 Procedures for lightning overvoltages |
64 | 7. Final selection 7.1 Transmission lines 7.2 Substations |
66 | Annex A—Bibliography |