Fuzzy logic based power-efficient real-time multi-core system

Ahmed, Jameel,

Fuzzy logic based power-efficient real-time multi-core system Jameel Ahmed, Mohammed Yakoob Siyal, Shaheryar Najam, Zohaib Najam. - 1 recurso en línea - SpringerBriefs in applied sciences and technology, Computational intelligence 2191-530X .

SpringerLink

Incluye referencias bibliográficas

Multiprocessors and Cache Memory -- Energy Delay Product and Throughput -- Challenges and Issues in Modern Computer Architectures -- Real-Time Power And Performance Aware System -- Fuzzy Logic Theory.

This book focuses on identifying the performance challenges involved in computer architectures, optimal configuration settings and analysing their impact on the performance of multi-core architectures. Proposing a power and throughput-aware fuzzy-logic-based reconfiguration for Multi-Processor Systems on Chip (MPSoCs) in both simulation and real-time environments, it is divided into two major parts. The first part deals with the simulation-based power and throughput-aware fuzzy logic reconfiguration for multi-core architectures, presenting the results of a detailed analysis on the factors impacting the power consumption and performance of MPSoCs. In turn, the second part highlights the real-time implementation of fuzzy-logic-based power-efficient reconfigurable multi-core architectures for Intel and Leone3 processors.

9789811031205 9811031207


Arquitectura de ordenador

TK7895.E42 / A364 2017 EB