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This book covers the physical basis of high-voltage engineering, from insulation stress and strength to lightning attachment and protection and beyond. It presents information critical to the design, selection, testing, maintenance, and operation of high-voltage power equipment, describing current insulation systems and discussing power system overvoltages, electric field calculation, and statistical analysis of ionization and breakdown phenomena. Examining contemporary practices in insulation coordination in association with the latest standards, the text provides a real-world understanding…mehr

Produktbeschreibung
This book covers the physical basis of high-voltage engineering, from insulation stress and strength to lightning attachment and protection and beyond. It presents information critical to the design, selection, testing, maintenance, and operation of high-voltage power equipment, describing current insulation systems and discussing power system overvoltages, electric field calculation, and statistical analysis of ionization and breakdown phenomena. Examining contemporary practices in insulation coordination in association with the latest standards, the text provides a real-world understanding of the factors affecting-and the actual means of evaluating-insulation performance.
Autorenporträt
Farouk A.M. Rizk holds a BS and MS from Cairo University, Egypt; a Ph.D from the Royal Institute of Technology, Stockholm, Sweden; and a doctorate of technology from Chalmers University of Technology, Gothenburg, Sweden. He has worked with ASEA (ABB), Sweden; the Egyptian Electricity Authority; and the Institut de Recherche d'Hydro-Quebec, Varennes, Canada. As international chairman of IEC TC 28: Insulation Coordination, he made major contributions to standardization. An elected IEEE fellow for contributions to the science of high-voltage technology and for technical leadership in the advancement of the electric power industry, many times awarded, and a CIGRE distinguished member, he is currently president of Lightning Electrotechnologies, Inc. and Expodev, Inc., both in Montreal, Quebec, Canada. His research covers many topics in high-voltage and high-power engineering. Giao N. Trinh holds a BS and Ph.D from Laval University, Quebec City, Quebec, Canada. He has worked with the Institut de Recherche d'Hydro-Quebec, Varennes, Canada and Ecole Polytechnique de Montreal, Quebec, Canada. He holds two patents and is the author or co-author of many technical papers in the areas of corona and partial-discharge phenomena, high voltage testing, and liquid, solid, and gaseous power equipment insulation. An elected IEEE fellow for contributions to the understanding of dielectric and arc phenomena in gas-insulated cables and PES, and a DEIS member, he received a Prize Paper Award from the Substation Committee for his work on the assessment of the risk of burn-through of gas-insulated cables.