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This text combines the fundamentals of electromagnetics with numerical modeling to tackle a broad range of current electromagnetic compatibility (EMC) problems, including problems with lightning, transmission lines, and grounding systems. It sets forth a solid foundation in the basics before advancing to specialized topics, and allows readers to develop their own EMC computational models for applications in both research and industry.
This text combines the fundamentals of electromagnetics with numerical modeling to tackle a broad range of current electromagnetic compatibility (EMC) problems, including problems with lightning, transmission lines, and grounding systems. It sets forth a solid foundation in the basics before advancing to specialized topics, and allows readers to develop their own EMC computational models for applications in both research and industry.
DRAGAN POLJAK, PhD, is Professor in the Department of Electronics at the University of Split, Croatia, and Adjunct Professor at Wessex Institute of Technology, United Kingdom. He has developed more than 60,000 lines of research code for the solution of many electromagnetic compatibility problems, with an emphasis on problems involving modeling of wire structures. Dr. Poljak has also written over 200 journal and conference papers.
Inhaltsangabe
PART I: FUNDAMENTAL CONCEPTS IN COMPUTATIONAL ELECTROMAGNETIC COMPATIBILITY. 1. Introduction to Computational Electromagnetics and Electromagnetic Compatibility. 2. Fundamentals of Electromagnetic Theory. 3 Introduction to Numerical Methods in Electromagnetics. 4 Static Field Analysis. 5 Quasistatic Field Analysis. 6 Electromagnetic Scattering Analysis. PART II: ANALYSIS OF THIN WIRE ANTENNAS AND SCATTERERS. 7 Wire Antennas and Scatterers: General Considerations. 8 Wire Antennas and Scatterers: Frequency Domain Analysis. 9 Wire Antennas and Scatterers: Time Domain Analysis. PART III: COMPUTATIONAL MODELS IN ELECTROMAGNETIC COMPATIBILITY. 10 Transmission Lines of Finite Length: General Considerations. 11 Electromagnetic Field Coupling to Overhead Lines: Frequency Domain and Time Domain Analysis. 12 The Electromagnetic Field Coupling to Buried Cables: Frequency- and Time-Domain Analysis. 13 Simple Grounding Systems. 14 Human Exposure to Electromagnetic Fields. Index.
PART I: FUNDAMENTAL CONCEPTS IN COMPUTATIONAL ELECTROMAGNETIC COMPATIBILITY. 1. Introduction to Computational Electromagnetics and Electromagnetic Compatibility. 2. Fundamentals of Electromagnetic Theory. 3 Introduction to Numerical Methods in Electromagnetics. 4 Static Field Analysis. 5 Quasistatic Field Analysis. 6 Electromagnetic Scattering Analysis. PART II: ANALYSIS OF THIN WIRE ANTENNAS AND SCATTERERS. 7 Wire Antennas and Scatterers: General Considerations. 8 Wire Antennas and Scatterers: Frequency Domain Analysis. 9 Wire Antennas and Scatterers: Time Domain Analysis. PART III: COMPUTATIONAL MODELS IN ELECTROMAGNETIC COMPATIBILITY. 10 Transmission Lines of Finite Length: General Considerations. 11 Electromagnetic Field Coupling to Overhead Lines: Frequency Domain and Time Domain Analysis. 12 The Electromagnetic Field Coupling to Buried Cables: Frequency- and Time-Domain Analysis. 13 Simple Grounding Systems. 14 Human Exposure to Electromagnetic Fields. Index.
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