State of the art electronic systems are increasingly adopting progr- mable devices for electronic applications on earthling system. In particular, the Field Programmable Gate Array FPGA devices are becoming very interesting due to their characteristics in terms of performance, dimensions and costNowadays, electronic systems are increasingly used in safety critical applications compared to two decades ago.
Electronic devices are being used in applications where their correct operation is vital to ensure the safety of the human life and the environment. These applications ranging from the anti-lock braking systems in automobiles, to the fly-by-wire aircrafts, to biomedical supports to the human care.
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It is, therefore, vital that electronic designers be aware the safety implications of the systems they develop. It provides a series of new algorithms and techniques for the evaluation and the increase of the dependability when faulty effects such as Single Event Upsets SEUs of Soft-Errors SEs are considered. Particular relevance is given to the radiation phenomena concerning both the physical and the architectural design. The innovation of the analysis and the design flows proposed in this manuscript are a milestone of a complete design methodology solving the industrial designers needs for implementing SAFE electronic systems using SRAM-based FPGAs in critical environments, in particular the space or avionics ones.
Electronics System Design Techniques for Safety Critical Applications gives an investigating overview on side-devices such as Reconfigurable Compute Fabric and depicts the advantages and constraints of the reconfigurable computing based on FPGA for multimedia applications and biomedical applications. Context-aware Pervasive Systems And New Topologies And Modulation Probabilistic-statistical Approaches To The Frontiers In Water-energy-nexusnature-based Solutions, Battery Management Algorithm For This handbook provides a consolidated, comprehensive information resource for engineers working with mission and safety critical systems.
Principles, regulations, and processes common to all critical design projects are introduced in the opening chapters. Expert contributors then offer development models, process templates, and documentation guidelines from their own core critical applications fields: medical, aerospace, and military. Comprehensive coverage of all key concerns for designers of critical systems including standards compliance, verification and validation, and design tradeoffs Real-world case studies contained within these pages provide insight from experience.
Kim Fowler has spent over 30 years in the design, development, and project management of medical, military, and satellite equipment.
His interest is the rigorous development of diverse, mission-critical, embedded systems. Kim co-founded Stimsoft, a medical products company, in and sold it in Kim is a Fellow of the IEEE and lectures internationally on systems engineering and developing real-time embedded products.
- February Theme: In-Field Tests of Safety-Critical Electronic Systems | IEEE Computer Society.
- Electronics System Design Techniques For Safety Critical Applications.
- Henry Sidgwick (Proceedings of the British Academy).
He has published widely and has written three textbooks - this book is his fourth. He has 18 patents - granted, pending, or disclosed. We are always looking for ways to improve customer experience on Elsevier.
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Electronics System Design Techniques for Safety Critical Applications
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Authors: Kim Fowler. Hardcover ISBN: Imprint: Newnes. Published Date: 6th November
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