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Autor(en): 
  • Akash Kumar
  • Zahra Ebrahimi
  • Cross-Layer Approximation and In-Network Acceleration: Enabling the Next Generation of Sustainable and High-Performance Reconfigurable Systems 
     

    (Buch)
    Dieser Artikel gilt, aufgrund seiner Grösse, beim Versand als 3 Artikel!


    Übersicht

    Auf mobile öffnen
     
    Lieferstatus:   Vorankündigung
    Veröffentlichung:  ANGEKÜNDIGT (August 2026)  
    Genre:  Naturwissensch., Medizin, Technik 
     
    Cross-Layer Approximation / Design Space Exploration / Drahtlostechnologie / Eingebettete Systeme / Electronics Design and Verification / Embedded Systems / FPGA / In-Network Computing
    ISBN:  9783032217110 
    EAN-Code: 
    9783032217110 
    Verlag:  Springer International Publishing 
    Einband:  Gebunden  
    Sprache:  English  
    Dimensionen:  H 235 mm / B 155 mm / D  
    Seiten:  218 
    Illustration:  XIX, 218 p. 62 illus., 55 illus. in color., farbige Illustrationen, schwarz-weiss Illustrationen 
    Zus. Info:  EUDR exemption - product or manufacturing materials placed on the market prior to 31.12.2025. 
    Bewertung: Keine Bewertung vor Veröffentlichung möglich.
    Inhalt:
    This book presents a novel Cross-Layer Approximation and Distribution architecture and methodology that advances the design of high-performance, high-throughput, energy-efficient, and sustainable reconfigurable computing systems. By leveraging the error tolerance inherent in modern AI and signal processing workloads, it enables performance and energy gains across hardware and software layers. The authors introduce innovative approximate multipliers, dividers, and coarse-grained processing elements for FPGA and CGRA platforms, coupled with an error-resiliency analysis and a heuristic-driven optimization framework that dynamically balance performance and accuracy. Extending beyond conventional architectures, the methodology described also integrates novel In-Network Computing (INC) techniques to bring computation closer to data sources within 5G/6G infrastructures. The result is a cohesive, scalable approach that redefines how energy-efficient and adaptive computing can be achieved across the edge-to-cloud continuum.

    • Describes a unified perspective on how approximation techniques can be applied across multiple abstraction levels;
    • Discusses how FPGAs, CGRAs and In-Network Computing can enable scalable, distributed, and low-latency computation;
    • Introduces architectural designs such as approximate multipliers, dividers, and hybrid SIMD/MIMD processing elements.
      



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