Electromagnetic Time Reversal - Application to Electromagnetic Compatibility and Power Systems.pdf

Electromagnetic Time Reversal - Application to Electromagnetic Compatibility and Power Systems PDF

Farhad Rachidi

The aim of this book is to familiarize the reader with the concept of electromagnetic time reversal, and introduce up-to-date applications of the concept found in the areas of electromagnetic compatibility and power systems. It is original in its approach to describing propagation and transient issues in power networks and power line communication, and is the result of the three main editors pioneering research in the area. The time-reversal technique has emerged as a hot topic with many potential applications to engineering, essentially in the field of acoustics, where it was first developed by Professor Matthias Fink (a contributor to this book) and his team in the 1990s. In the past decade, the technique has been applied to electromagnetics and electrical and computer engineering, with particularly successful results in EMC and power systems protection. However, despite this broad application, the technique remains relatively unknown in the wider EE community and, to this end, this book is the first to provide an overview of the technique and ifs applications to EMC and power systems. It provides a theoretical foundation of the electromagnetic time-reversal theory, beginning with an introductory chapter on the theoretical basis, moving on to applications including EMC measurements, EM field focusing and amplification, mitigation of interference in power line communications, lightning location, and fault location in power systems. This innovative book introduces the concept of time reversal in a completely original way. It discusses a pioneering theory with applications to EMC, power systems, power line communications, lightning detection, fault location, and smart grids. The three editors ore renowned international experts in this field

Electromagnetic Time Reversal: Application to Electromagnetic Compatibility and Power Systems, 2017, 10.1002/9781119142119 . hal-01377943 Layane Abboud, Andrea Cozza, Lionel Pichon. Electromagnetic Time Reversal: Application to EMC and ...

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Electromagnetic Time Reversal - Application to Electromagnetic Compatibility and Power Systems.pdf

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Notes actuelles

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Sofya Voigtuh

Electromagnetic Time Reversal: Application to EMC … The aim of this book is to familiarize the reader with the concept of electromagnetic time reversal, and introduce up-to-date applications of the concept found in the areas of electromagnetic compatibility and power systems. It is original in its approach to describing propagation and transient issues in power networks and power line communication, and is the result of the three main editors

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Mattio Müllers

Electromagnetic Time Reversal and its Application … Electromagnetic Time Reversal and its Application to EMC Time reversal has emerged as a very interesting technique with potential applications in various fields of engineering. It has received a great deal of attention in recent years, essentially in the field of acoustics, where it was first developed by Prof. Fink and his team in the 1990s.

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Noels Schulzen

Mar 5, 2020 ... Electromagnetic Compatibility Laboratory, Swiss Federal Institute of ... power transformers play a key role in electrical power system grids.

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Jason Leghmann

Oct 7, 2016 ... netic Time Reversal: Application to Electromagnetic Compatibility and Power Systems, 2017,. 10.1002/9781119142119 . hal-01377943  ... transformation from a system where the parameter t ... equation also conserves the time reversal symmetry. Newton's ... momentum, electric current, and magnetic field. ... Application of Space Reversal ... Compatible with the theory of relativity.

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Jessica Kolhmann

This dissertation focuses on the application and development of time reversal ( TR) ... techniques for UWB electromagnetic waves”, IEEE Geoscience and Remote Sensing. Letters ... 2.2 Snapshots of the forward electric field component (Ez) propagation ... microwave and mm-wave remote sensing systems will likely play an ...