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Recent Trends in the Condition Monitoring of Transformers [electronic resource] : Theory, Implementation and Analysis / by Sivaji Chakravorti, Debangshu Dey, Biswendu Chatterjee.

By: Contributor(s): Material type: TextTextSeries: Power SystemsPublisher: London : Springer London : Imprint: Springer, 2013Description: XVI, 280 p. 205 illus., 105 illus. in color. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781447155508
Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
  • 333.79 23
  • 338.926 23
LOC classification:
  • HD9502-9502.5
Online resources:
Contents:
Impulse Fault Analysis -- Partial Discharge Measurement and Analysis -- Conventional Diagnostic Techniques -- Time Domain Dielectric Response Measurements -- Frequency Domain Spectroscopy -- Frequency Response Analysis -- Remaining Life Analysis.
In: Springer eBooksSummary: Recent Trends in the Condition Monitoring of Transformers reflects the current interest in replacing traditional techniques used in power transformer condition monitoring with non-invasive measures such as polarization/depolarization current measurement, recovery voltage measurement, frequency domain spectroscopy and frequency response analysis. The book stresses the importance of scrutinizing the condition of transformer insulation which may fail under present day conditions of intensive use with the resulting degradation of dielectric properties causing functional failure of the transformer. The text shows the reader how to overcome the key challenges facing today’s maintenance policies, namely: ·        the selection of appropriate techniques for dealing with each type of failure process accounting for the needs of plant owners, plant users and wider society; and ·        cost-efficiency and durability of effect. Many of the failure-management methods presented rely on the fact that most failures give warning when they are imminent. These potential failures give rise to identifiable physical conditions and the novel approaches described detect them so that action can be taken to avoid degeneration into full-blown functional failure. This “on-condition” maintenance means that equipment can be left in service as long as a specified set of performance standards continue to be met, avoiding the costly downtime imposed by routine and perhaps unnecessary maintenance but without risking equally expensive failure. Recent Trends in the Condition Monitoring of Transformers will be of considerable interest to both academic researchers in power systems and to engineers working in the power generation and distribution industry showing how new and more efficient methods of fault diagnosis and condition management can increase transformer efficiency and cut costs.  .
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Impulse Fault Analysis -- Partial Discharge Measurement and Analysis -- Conventional Diagnostic Techniques -- Time Domain Dielectric Response Measurements -- Frequency Domain Spectroscopy -- Frequency Response Analysis -- Remaining Life Analysis.

Recent Trends in the Condition Monitoring of Transformers reflects the current interest in replacing traditional techniques used in power transformer condition monitoring with non-invasive measures such as polarization/depolarization current measurement, recovery voltage measurement, frequency domain spectroscopy and frequency response analysis. The book stresses the importance of scrutinizing the condition of transformer insulation which may fail under present day conditions of intensive use with the resulting degradation of dielectric properties causing functional failure of the transformer. The text shows the reader how to overcome the key challenges facing today’s maintenance policies, namely: ·        the selection of appropriate techniques for dealing with each type of failure process accounting for the needs of plant owners, plant users and wider society; and ·        cost-efficiency and durability of effect. Many of the failure-management methods presented rely on the fact that most failures give warning when they are imminent. These potential failures give rise to identifiable physical conditions and the novel approaches described detect them so that action can be taken to avoid degeneration into full-blown functional failure. This “on-condition” maintenance means that equipment can be left in service as long as a specified set of performance standards continue to be met, avoiding the costly downtime imposed by routine and perhaps unnecessary maintenance but without risking equally expensive failure. Recent Trends in the Condition Monitoring of Transformers will be of considerable interest to both academic researchers in power systems and to engineers working in the power generation and distribution industry showing how new and more efficient methods of fault diagnosis and condition management can increase transformer efficiency and cut costs.  .

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