2000IEEE Transactions on Circuits and Systems II Analog and Digital Signal ProcessingRequires access

Comments on "Residue-to-binary converters based on new Chinese remainder theorems"

P. V. Ananda Mohan

Open publisher page 7 citations

Abstract

For pt. I see ibid., vol. 47, p. 197-205, (2000). It has been shown that Wang's implementation technique of residue number system to binary conversion using a new Chinese remainder theorem formulation (CRT1) is the same as the well-known CRT. It has also been shown that his approach of using mixed radix digits to reduce the hardware requirements is no different from that described by Huang earlier and needs some corrections.

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What this paper is about

For pt. I see ibid., vol. 47, p. 197-205, (2000). It has been shown that Wang's implementation technique of residue number system to binary conversion using a new Chinese remainder theorem formulation (CRT1) is the same as the well-known CRT. It has also been shown that his approach of using mixed radix digits to reduce the hardware requirements is no different from that described by Huang earlier and needs some corrections.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

For pt. I see ibid., vol. 47, p. 197-205, (2000). It has been shown that Wang's implementation technique of residue number system to binary conversion using a new Chinese remainder theorem formulation (CRT1) is the same as the well-known CRT. It has also been shown that his approach of using mixed radix digits to reduce the hardware requirements is no different from that described by Huang earlier and needs some corrections.

Key concepts: Remainder, Chinese remainder theorem, Binary number, Converters, Arithmetic, Residue number system, Residue (chemistry), Computer science

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