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  5. Error-free computation using multiple-modulus residue arithmetic
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Error-free computation using multiple-modulus residue arithmetic

Date Issued
June 1, 1986
Author(s)
Crowell, Deborah Susan
Advisor(s)
D. W. Straight
Additional Advisor(s)
Michael Thomason
Eugene Wachspress
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/35233
Abstract

Multiple-modulus residue arithmetic (MMRA) is a method of performing certain arithmetic computations (+, -, *, /) on the set of order-N Farey fractions (FN) in an environment totally free of machine roundoff error. MMRA provides a method of representing elements in the set Fff on unique ordered n-tuples of integers, called standard residue representations with respect to the base vector. Arithmetic operations on elements in FN are replaced by corresponding operations on the standard residue representations. These computations are performed upon the ordered n-tuples in componentwise fashion with respect to the base vector using residue arithmetic. If the resultant standard residue representation corresponds to an element in FN, the answer is recovered totally free of machine roundoff error.


The theory and implementation of multiple-modulus residue arithmetic is discussed. Then specific aspects of multiple-modulus residue arithmetic are compared and contrasted to single-modulus residue arithmetic, concluding with recommendations for further research.

Degree
Master of Science
Major
Computer Science
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Thesis86C768.pdf

Size

2.51 MB

Format

Unknown

Checksum (MD5)

454f34c2d227daa3a4467444e2bd2478


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