Modeling, Analysis and Optimization of Network-on-Chip Communication Architectures (Hardcover, 2013 ed.)

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Traditionally, design space exploration for Systems-on-Chip (SoCs) has focused on the computational aspects of the problem at hand. However, as the number of components on a single chip and their performance continue to increase, the communication architecture plays a major role in the area, performance and energy consumption of the overall system. As a result, a shift from computation-based to communication-based design becomes mandatory. Towards this end, network-on-chip (NoC) communication architectures have emerged recently as a promising alternative to classical bus and point-to-point communication architectures.

In this dissertation, we study outstanding research problems related to modeling, analysis and optimization of NoC communication architectures. More precisely, we present novel design methodologies, software tools and FPGA prototypes to aid the design of application-specific NoCs.


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Product Description

Traditionally, design space exploration for Systems-on-Chip (SoCs) has focused on the computational aspects of the problem at hand. However, as the number of components on a single chip and their performance continue to increase, the communication architecture plays a major role in the area, performance and energy consumption of the overall system. As a result, a shift from computation-based to communication-based design becomes mandatory. Towards this end, network-on-chip (NoC) communication architectures have emerged recently as a promising alternative to classical bus and point-to-point communication architectures.

In this dissertation, we study outstanding research problems related to modeling, analysis and optimization of NoC communication architectures. More precisely, we present novel design methodologies, software tools and FPGA prototypes to aid the design of application-specific NoCs.

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Product Details

General

Imprint

Springer

Country of origin

Netherlands

Series

Lecture Notes in Electrical Engineering, 184

Release date

March 2013

Availability

Expected to ship within 10 - 15 working days

First published

2013

Authors

,

Dimensions

235 x 155 x 16mm (L x W x T)

Format

Hardcover

Pages

174

Edition

2013 ed.

ISBN-13

978-9400739574

Barcode

9789400739574

Categories

LSN

9400739575



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