Mladenovic et al., 2012 - Google Patents
Artificial aging and diagnostic measurements on medium-voltage, paper-insulated, lead-covered cablesMladenovic et al., 2012
- Document ID
- 6396659145491173383
- Author
- Mladenovic I
- Weindl C
- Publication year
- Publication venue
- IEEE Electrical Insulation Magazine
External Links
Snippet
Present and future condition-based maintenance methods and preventive maintenance strategies will require knowledge of the present condition of the equipment. For cable networks in gen eral, and for PILC cables in particular, our understanding of the physical …
- 230000032683 aging 0 title abstract description 54
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/12—Testing dielectric strength or breakdown voltage; Testing or monitoring effectiveness or level of insulation, e.g. of a cable or of an apparatus, for example using partial discharge measurements; Electrostatic testing
- G01R31/1227—Testing dielectric strength or breakdown voltage; Testing or monitoring effectiveness or level of insulation, e.g. of a cable or of an apparatus, for example using partial discharge measurements; Electrostatic testing of components, parts or materials
- G01R31/1263—Testing dielectric strength or breakdown voltage; Testing or monitoring effectiveness or level of insulation, e.g. of a cable or of an apparatus, for example using partial discharge measurements; Electrostatic testing of components, parts or materials of solid or fluid materials, e.g. insulation films, bulk material; of semiconductors or LV electronic components or parts; of cable, line or wire insulation
- G01R31/1272—Testing dielectric strength or breakdown voltage; Testing or monitoring effectiveness or level of insulation, e.g. of a cable or of an apparatus, for example using partial discharge measurements; Electrostatic testing of components, parts or materials of solid or fluid materials, e.g. insulation films, bulk material; of semiconductors or LV electronic components or parts; of cable, line or wire insulation of cable, line or wire insulation, e.g. using partial discharge measurements
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/02—Testing of electric apparatus, lines or components, for short-circuits, discontinuities, leakage of current, or incorrect line connection
- G01R31/027—Testing of transformers
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/34—Testing dynamo-electric machines
- G01R31/343—Testing dynamo-electric machines in operation
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/02—Testing of electric apparatus, lines or components, for short-circuits, discontinuities, leakage of current, or incorrect line connection
- G01R31/024—Arrangements for indicating continuity or short-circuits in electric apparatus or lines, leakage or ground faults
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/02—Testing of electric apparatus, lines or components, for short-circuits, discontinuities, leakage of current, or incorrect line connection
- G01R31/021—Testing of cables or conductors
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/34—Testing dynamo-electric machines
- G01R31/346—Testing of armature or field windings
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/327—Testing of circuit interrupters, switches or circuit-breakers
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02H—EMERGENCY PROTECTIVE CIRCUIT ARRANGEMENTS
- H02H7/00—Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions
- H02H7/22—Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions for distribution gear, e.g. bus-bar systems; for switching devices
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/08—Locating faults in cables, transmission lines, or networks
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R31/00—Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
- G01R31/40—Testing power supplies
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Zhang et al. | Estimation of the lifetime of the electrical components in distribution networks | |
Mladenovic et al. | Artificial aging and diagnostic measurements on medium-voltage, paper-insulated, lead-covered cables | |
Allan | Practical life-assessment technique for aged transformer insulation | |
Bhide et al. | Analysis of winding inter-turn fault in transformer: A review and transformer models | |
Braunlich et al. | Assessment of insulation condition of large power transformers by on-site electrical diagnostic methods | |
Bagheri et al. | Case study on FRA capability in detection of mechanical defects within a 400MVA transformer | |
Nurmanova et al. | A new transformer FRA test setup for advanced interpretation and winding short-circuit prediction | |
Yasid et al. | Interpretation of sweep frequency response analysis traces on inter-turn short circuit fault | |
Adhikari et al. | Analysis of partial discharge measurements in high voltage XLPE cable | |
Khrennikov | Fault detection of electrical equipment. Diagnostic methods | |
RU2522808C1 (en) | Method of technical state diagnostics for high-voltage transformer in network of power plant generator voltage | |
Panagiotou et al. | Thermal Degradation Profile of Concentrated Stator Winding Insulation by Impedance Spectroscopy | |
Toudji et al. | Predictive diagnostic based on HF modeling of electrical machines windings | |
Syafruddin et al. | Diagnosis of Transformer Isolation Using Dielectric Dissipation Factor (Tan Delta) and Insulation Resistance: A Review Study | |
Zhang et al. | Experimental investigation of localized axial winding displacement in a high frequency range for power transformers | |
Sedding et al. | Assessment of Stator Winding Insulation Condition Based on Absolute Partial Discharge Magnitude | |
Vujovic et al. | Development of an on-line continuous tan (/spl delta/) monitoring system | |
Lee et al. | A condition indexing for assessment management in MV underground power cables | |
Polyakov et al. | Power transmission lines monitoring system | |
Mladenovic et al. | ICAAS—Integrated system for lasting accelerated aging of MV cables, data monitoring and acquisition | |
David et al. | Modeling of the dielectric response of a stator winding insulation from a DC ramp test | |
Stranges et al. | Monitoring Stator Insulation in Critical Motors: Choosing Diagnostic Tests | |
Podkoritnik et al. | Experience in using different diagnostics methods for field testing of medium-voltage cables with extruded insulation in Nuclear Power Plants | |
Mladenovic et al. | Determination of the environmental conditions for the accelerated ageing of MV-PILC cables | |
Omranipour et al. | How critical are IEC 60034-27-3 maximum values for dielectric dissipation factor and tip-up to determine the reliability of motor stator insulation? |