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Arithmetic-Based Binary-to-RNS Converter Modulo $k}}$ for $jn$ -bit Dynamic Range

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PROJECT TITLE :

Arithmetic-Based Binary-to-RNS Converter Modulo $k}}$ for $jn$ -bit Dynamic Range

ABSTRACT:

In this brief, a scan-solely-memoryless structure for binary-to-residue variety system (RNS) conversion modulo $2^npm k$ is proposed. This structure relies solely on adders and constant multipliers. This brief is motivated by the present $2^npm k$ binary-to-RNS converters, that are specific inefficient for larger values of $n$ . The experimental results obtained for $4n$ and $8n$ bits of dynamic range counsel that the proposed conversion structures can considerably improve the forward conversion potency, with an AT metric improvement above a hundredpercent, relating to the connected cutting-edge. Delay enhancements of two.seventeen times with only fivepercent area increase can be achieved if a correct choice of the $2^npm k$ moduli is performed.


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Arithmetic-Based Binary-to-RNS Converter Modulo $k}}$ for $jn$ -bit Dynamic Range - 4.8 out of 5 based on 83 votes

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