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Power Plant Stability Capacitors and Grounding

ISBN10: 0071800085 | ISBN13: 9780071800082

Power Plant Stability Capacitors and Grounding
ISBN10: 0071800085
ISBN13: 9780071800082
By Orlando Acosta

* The estimated amount of time this product will be on the market is based on a number of factors, including faculty input to instructional design and the prior revision cycle and updates to academic research-which typically results in a revision cycle ranging from every two to four years for this product. Pricing subject to change at any time.

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Design and maintain highly stable electrical power systems

Power Plant Stability, Capacitors, and Grounding is filled with numerical solutions of differential equations to help you solve complex electrical problems regarding the stability of powergenerating systems. After an overview of fundamental electrical engineering concepts, the book focuses on power system stability, high-voltage capacitors, safety, and electrical substation grounding systems.

Case studies, problems, and examples are worked out andexplained in great detail. The material presented in this practical guide is essential for the design, installation, operation, and maintenance of the vast network of interconnected electrical power systems.

Coverage includes:
* Power system basic knowledge * Power system stability* Transient stability problem in a simple electrical network * Transient stability problem in a multimachine network * High-voltage AC capacitors • Substation grounding* Dangerous electric currents * Ground grid preliminarydesign • Principles of ground mat design * Ground mat design with nonuniform current distribution

Ch 1. Power System Basic Knowledge
Ch 2. Power System Stability
Ch 3. Transient Stability Problem in a Simple Electrical Network
Ch 4. Transient Stability Problem in a Multi-Machine Network
Ch 5. High-Voltage AC Capacitors
Ch 6. Substation Grounding
Ch 7. Dangerous Electric Currents
Ch 8. Ground Grid Preliminary Design
Ch 9. Principles of Ground Mat Design
Ch 10. Ground Mat Design with Non-Uniform Current Distribution

About the Author

Orlando Acosta

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