Patronik et al., 2012 - Google Patents
Design of an RNS reverse converter for a new five-moduli special setPatronik et al., 2012
View PDF- Document ID
- 4598042590416720180
- Author
- Patronik P
- Berezowski K
- Biernat J
- Piestrak S
- Shrivastava A
- Publication year
- Publication venue
- Proceedings of the great lakes symposium on VLSI
External Links
Snippet
In this paper, we present a new residue number system (RNS){2 n-1, 2 n, 2 n+ 1, 2 n+ 1+ 1, 2 n-1+ 1} of five well-balanced moduli that are co-prime for odd n. This new RNS complements the 5-moduli RNS system proposed before for even n {2 n-1, 2 n, 2 n+ 1, 2 n+ …
- 230000000295 complement 0 abstract description 7
Classifications
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- G06F7/52—Multiplying; Dividing
- G06F7/523—Multiplying only
- G06F7/53—Multiplying only in parallel-parallel fashion, i.e. both operands being entered in parallel
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- G06F7/52—Multiplying; Dividing
- G06F7/523—Multiplying only
- G06F7/533—Reduction of the number of iteration steps or stages, e.g. using the Booth algorithm, log-sum, odd-even
- G06F7/5334—Reduction of the number of iteration steps or stages, e.g. using the Booth algorithm, log-sum, odd-even by using multiple bit scanning, i.e. by decoding groups of successive multiplier bits in order to select an appropriate precalculated multiple of the multiplicand as a partial product
- G06F7/5336—Reduction of the number of iteration steps or stages, e.g. using the Booth algorithm, log-sum, odd-even by using multiple bit scanning, i.e. by decoding groups of successive multiplier bits in order to select an appropriate precalculated multiple of the multiplicand as a partial product overlapped, i.e. with successive bitgroups sharing one or more bits being recoded into signed digit representation, e.g. using the Modified Booth Algorithm
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