Dependable embedded systems / / editors, Jörg Henkel, Nikil Dutt.

This Open Access book introduces readers to many new techniques for enhancing and optimizing reliability in embedded systems, which have emerged particularly within the last five years. This book introduces the most prominent reliability concerns from today’s points of view and roughly recapitulates...

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Bibliographic Details
Superior document:Embedded systems (Springer (Firm))
:
HerausgeberIn:
Place / Publishing House:Cham : : Springer International Publishing :, Imprint: Springer,, 2021.
Year of Publication:2021
Edition:1st edition 2021.
Language:English
Series:Embedded systems (Springer (Firm))
Physical Description:1 online resource (XIII, 608 p. 293 illus., 250 illus. in color.)
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Table of Contents:
  • Introduction
  • Design of efficient, dependable SoCs based on cross-layer-reliability approach with emphasis on wireless communication as application and DRAM memories
  • CRAU: Compositional System-Level Reliability Analysis in the Presence of Uncertainties
  • Semantics-aware Soft Error Handling for Embedded Systems using Compiler-OS Interaction
  • ARES: Self-Adaptive Coarse-Grained Reconfigurable Architectures as Reliability Enhancers in Embedded Systems
  • Cross-Layer Techniques for Dependable Software Execution on Embedded Systems
  • Ambrosia: Cross-layer Modeling and Mitigation of Aging Effects in Embedded Systems
  • Cross-Layer Dependability for Embedded Hardware/Software Systems
  • Fault-Tolerant Computing with Heterogeneous Hardware/Software Hardening Modes
  • Robust Computing for Machine Learning-Based Systems
  • Hardening embedded system software
  • LIFT: Lifting Device-Level Characteristics for Error Resilient System Level Design: A Crosslayer Approach
  • VirTherm-3D: Communication Virtualization Enabling System Management for Dependable 3D MPSoCs
  • OTERA: Online Test Strategies for Reliable Reconfigurable Architectures
  • Variability-Aware Software: Recent Results and Contributions
  • EM Lifetime Constrained Optimization for Multi-Segment Power Grid Networks
  • Lightweight Software-Assisted Memory Error Correction
  • Reliability-Driven Resource Management for Multi-Core Systems-on-Chip
  • Monitor Circuits for Device-Circuit Interaction
  • PERCIES: Providing Efficient Reliability in Critical Embedded Systems.