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Molahosseini A.S., de Sousa L.S., Chang C.-H. (eds.) Embedded Systems Design with Special Arithmetic and Number Systems

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Molahosseini A.S., de Sousa L.S., Chang C.-H. (eds.) Embedded Systems Design with Special Arithmetic and Number Systems
New York: Springer, 2017. — 390 p.
This book introduces readers to alternative approaches to designing efficient embedded systems using unconventional number systems. The authors describe various systems that can be used for designing efficient embedded and application-specific processors, such as Residue Number System, Logarithmic Number System, Redundant Binary Number System Double-Base Number System, Decimal Floating Point Number System and Continuous Valued Number System. Readers will learn the strategies and trade-offs of using unconventional number systems in application-specific processors and be able to apply and design appropriate arithmetic operations from these number systems to boost the performance of digital systems.
Introduction to Residue Number System: Structure and Teaching Methodology
RNS-Based Embedded Processor Design
Non-Modular Operations of the Residue Number System: Functions for Computing
Fault-Tolerant Computing in Redundant Residue Number System
Decimal Floating Point Number System
Design and Evaluation of Booth-Encoded Multipliers in Redundant Binary Representation
Robust Analog Arithmetic Based on the Continuous Valued Number System
RNS Applications in Digital Signal Processing
RNS-Based Image Processing
Logarithmic Number System and Its Application in FIR Filter Design
Double-Base Number System and Its Application in FIR Filter Design
RNS-Based Public-Key Cryptography (RSA and ECC)
RNS Approach in Lattice-Based Cryptography
RNS Applications in Computer Networks
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