1992•Power Engineering JournalRequires access

Tutorial. Electromagnetic compatibility. Part 2: Design principles

C. Christopoulos

Open publisher page 8 citations

Abstract

All types of equipment and systems must be designed to meet electromagnetic compatibility (EMC) specifications. To achieve this aim, special design techniques are necessary. Their effective use in practical applications depends on the understanding of the underlying physical principles. EMC problems involve complex electromagnetic interactions and hence can only be tacked effectively by a combination of experimental and numerical tools. In this tutorial the general principles and techniques underlying all EMC design are described

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All types of equipment and systems must be designed to meet electromagnetic compatibility (EMC) specifications. To achieve this aim, special design techniques are necessary. Their effective use in practical applications depends on the understanding of the underlying physical principles. EMC problems involve complex electromagnetic interactions and hence can only be tacked effectively by a combination of experimental and numerical tools. In this tutorial the general principles and techniques underlying all EMC design are described

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Available abstract

All types of equipment and systems must be designed to meet electromagnetic compatibility (EMC) specifications. To achieve this aim, special design techniques are necessary. Their effective use in practical applications depends on the understanding of the underlying physical principles. EMC problems involve complex electromagnetic interactions and hence can only be tacked effectively by a combination of experimental and numerical tools. In this tutorial the general principles and techniques underlying all EMC design are described

Key concepts: Electromagnetic compatibility, Compatibility (geochemistry), Computer science, Design elements and principles, Electromagnetic simulation, Systems engineering, Engineering, Electronic engineering

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