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Electromagnetic compatibility and regulatory compliance issues are
subjects of great importance in electronics engineering. Avoiding
problems regarding an electronic system's operation, while always
important, is especially critical in space missions and satellite
structures. Many problems can be traced to EM field disturbances as
interference from unintended sources and other electromagnetic
phenomena. As a result, stringent requirements are to be met in
terms of electromagnetic emissions levels. The inclusion of this
electromagnetic environment in the design of a multimillion mission
can lead to a system that is able to withstand whatever challenge
the environment throws at it. Failure to do so may lead to
important data corruption or loss, destruction of expensive
instruments, waste of resources, and even a total mission failure.
Research in this area focuses on the studying of the applications
of electromagnetic compatibility and electromagnetic interference
in the space industry. Recent Trends on Electromagnetic
Environmental Effects for Aeronautics and Space Applications will
provide relevant theoretical frameworks and the latest empirical
research findings in electromagnetic compatibility and
electromagnetic interference (EMC/EMI) for the aerospace industry.
This book examines all the necessary information for all matters
that can possibly affect the system design of a spacecraft and can
be a useful reference to space system engineers and more. While
highlighting topics such as artificial intelligence,
electromagnetic testing, environmental shielding, and EMC modelling
techniques, this book is ideal for professionals, spacecraft
designers, science and data processing managers, electrical and
mechanical engineers, EMC testing engineers, and researchers
working in the aerospace industry along with practitioners,
researchers, academicians, and students looking for necessary
information for all the matters that can possibly affect the system
design of a spacecraft.
In the aerospace industry, avoiding operating issues, especially in
regard to space missions and satellite structures, is crucial. The
vast majority of these issues can be traced to disturbances in the
electromagnetic fields used. Electromagnetic Compatibility for
Space Systems Design is a critical scholarly resource that examines
the applications of electromagnetic compatibility and
electromagnetic interference in the space industry. Featuring
coverage on a wide range of topics, such as magnetometers,
electromagnetic environmental effects, and electromagnetic
shielding, this book is geared toward managers, engineers, and
researchers seeking current research on the applications of
electromagnetic technologies in the aerospace field.
Electromagnetic compatibility and regulatory compliance issues are
subjects of great importance in electronics engineering. Avoiding
problems regarding an electronic system's operation, while always
important, is especially critical in space missions and satellite
structures. Many problems can be traced to EM field disturbances as
interference from unintended sources and other electromagnetic
phenomena. As a result, stringent requirements are to be met in
terms of electromagnetic emissions levels. The inclusion of this
electromagnetic environment in the design of a multimillion mission
can lead to a system that is able to withstand whatever challenge
the environment throws at it. Failure to do so may lead to
important data corruption or loss, destruction of expensive
instruments, waste of resources, and even a total mission failure.
Research in this area focuses on the studying of the applications
of electromagnetic compatibility and electromagnetic interference
in the space industry. Recent Trends on Electromagnetic
Environmental Effects for Aeronautics and Space Applications will
provide relevant theoretical frameworks and the latest empirical
research findings in electromagnetic compatibility and
electromagnetic interference (EMC/EMI) for the aerospace industry.
This book examines all the necessary information for all matters
that can possibly affect the system design of a spacecraft and can
be a useful reference to space system engineers and more. While
highlighting topics such as artificial intelligence,
electromagnetic testing, environmental shielding, and EMC modelling
techniques, this book is ideal for professionals, spacecraft
designers, science and data processing managers, electrical and
mechanical engineers, EMC testing engineers, and researchers
working in the aerospace industry along with practitioners,
researchers, academicians, and students looking for necessary
information for all the matters that can possibly affect the system
design of a spacecraft.
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