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Design Reliability and Maintainability of Energy Systems cover

Design Reliability and Maintainability of Energy Systems

by Fausto Pedro Garcia Marquez, René Vinicio Sánchez Loja, Mayorkinos Papaelias

1st Edition

Publisher: Elsevier

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Engineering

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Book Details

Print ISBN9780443452314
eText ISBN9780443452321
PublisherElsevier
Publishing Year2026
Edition1st Edition
LanguageEnglish
Pages630

Design Reliability and Maintainability of Energy Systems, 1st Edition, establishes core principles and technical strategies to strengthen reliability and resilience across modern energy infrastructures. The volume offers advanced undergraduate students, graduate students, and industry engineers systematic frameworks for evaluating infrastructure performance under demanding operational conditions.

Thematic coverage concentrates on grid stability and physical infrastructure protection. Specific topics include weather- and climate-resilient power systems, hybrid energy storage configurations, and ambient backscatter sensing networks used for continuous monitoring of power grids.

Chapters contain explicit learning objectives, worked numerical problems, and detailed case studies designed to support real-world solution-building. This structured pedagogical approach assists higher-level students and energy professionals in translating theoretical concepts into practical design implementations.

Table of Contents

  1. Chapter 1: Application of Electromagnetic Time Reversal for online locating partial discharges in power networks

  2. Chapter 2: Design for Reliability in Induction Heating Applications

  3. Chapter 3: Design considerations for weather- and climate-resilient power systems

  4. Chapter 4: Hybrid Energy Storage System with Uc For PV System: Load Management

  5. Chapter 5: Ambient Backscatter Sensing Networks for Critical Infrastructure Monitoring within Power Systems

  6. Chapter 6: Hardware-In-The-Loop-Based Assessment of Special Protection Schemes for Reliability Enhancement

  7. Chapter 7: Ensuring the Reliability and Resilience of Power Converters for LED Lighting Systems, part I: Capacitors

  8. Chapter 8: Life and Reliability Modelling of High Voltage Cables

  9. Chapter 9: Design of Reliable and Resilient Electric Power Systems for Wide-Body All-Electric Aircraft

  10. Chapter 10: Impact of Remedial Action Schemes on the Reliability and Integrity of Power Electrical Systems

  11. Chapter 11: Ensuring the Reliability and Resilience of Power Converters for LED Lighting Systems, part II: the Role of the PCB, Power Inductors, and Optoelectronics

  12. Chapter 12: Study LVFRT capabilities of microgrids including PV generating units supported by energy storage devices

  13. Chapter 13: The Design for Power Reliability and Resilience on the More Electric Aircraft Systems

  14. Chapter 14: Design for Resilience and Distributed Fixed-Time Control of MTDC Systems Under DoS Attacks

  15. Chapter 15: Signature Reliability Scrutiny of Multiplex Backup Generator Systems Using UGF-with a k-out-of-n:G Configuration

  16. Chapter 16: Measurement methods for the detection and analysis of inter-area oscillations in electrical transmission networks

  17. Chapter 17: System Integrity Protection Deign for Enhanced Transient Stability of Taiwan Power System: A Holistic Approach Involving Reliable Generator Rejection and Multi-Phase Transmission Line Reclosing

  18. Chapter 18: Investigating Load Growth in Distribution Systems for Improved system reliability considering Loadability

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