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Applied Optics

Applied Optics

APPLICATIONS-CENTERED RESEARCH IN OPTICS

  • Vol. 27, Iss. 8 — Apr. 15, 1988
  • pp: 1375–1376

New coding scheme for addition and subtraction using the modified signed-digit number representation in optical computation

S. Mukhopadhyay, A. Basuray, and A. K. Datta  »View Author Affiliations


Applied Optics, Vol. 27, Issue 8, pp. 1375-1376 (1988)
http://dx.doi.org/10.1364/AO.27.001375


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No abstract available.

History
Original Manuscript: August 4, 1987
Published: April 15, 1988

Citation
S. Mukhopadhyay, A. Basuray, and A. K. Datta, "New coding scheme for addition and subtraction using the modified signed-digit number representation in optical computation," Appl. Opt. 27, 1375-1376 (1988)
http://www.opticsinfobase.org/ao/abstract.cfm?URI=ao-27-8-1375


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References

  1. K.-H. Brenner, A. Huang, “An Optical Processor Based on Symbolic Substitution,” in Technical Digest, Topical Meeting on Optical Computing (Optical Society of America, Washington, DC, 1985), paper WA4.
  2. C. Perlee, D. P. Casasent, “Negative Base Encoding in Optical Linear Algebra Processors,” Appl. Opt. 25, 168 (1986). [CrossRef] [PubMed]
  3. N. Takagi, H. Yasuura, S. Yajima, “High Speed VLSI Multiplication Algorithm with a Redundant Binary Addition Tree,” IEEE Trans. Comput. COM-34, 789 (1985). [CrossRef]
  4. A. Avizienis, “Signed-Digit Number Representations for Fast Parallel Arithmetic,” IRE Trans. Electron. Comput. EC-10, 389 (1961). [CrossRef]
  5. M. P. De Regt, “Negative Radix Arithmetic,” Comput. Design 6, 52 (May1967).
  6. S. Zohar, “Negative Radix Conversion,” IEEE Trans. Comput. C-19, 222 (1970). [CrossRef]
  7. R. P. Bocker, B. L. Drake, M. E. Lasher, T. B. Henderson, “Modified Signed-Digit Addition and Subtraction using Optical Symbolic Substitution,” Appl. Opt. 25, 2456 (1986). [CrossRef] [PubMed]

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