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Redundant logarithmic arithmetic

机译:冗余对数算法

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A number system that offers advantages in some situations over conventional floating point and sign/logarithmic number systems is described. Redundant logarithmic arithmetic, like conventional logarithmic arithmetic, relies on table lookups to make the arithmetic unit simpler than an equivalent floating point unit. The cost of 32 bit subtraction in a redundant logarithmic number system is lower than previously published logarithmic subtraction methods. The total memory requirement for a 29-bit redundant logarithmic unit is 16 K words compared to 22 K words by the best previously published conventional sign logarithm unit, assuming similar addition techniques are employed. A redundant logarithmic number system can be implemented with online arithmetic, which would be impractical for a conventional sign logarithm number system. The disadvantages of redundant arithmetic are typical of redundant number systems. First, the redundancy doubles the storage requirements for data values. Second, the representation can become ill-conditioned, especially as a result of iterated multiplications. Third, division and square root operations are more difficult to implement in redundant logarithmic arithmetic.
机译:描述了一种在某些情况下优于常规浮点数和符号/对数数字系统的数字系统。像常规对数算法一样,冗余对数算法也依赖于表查找,以使算术单元比等效的浮点单元更简单。冗余对数系统中32位减法的成本低于以前发布的对数减法。假设采用类似的加法技术,则一个29位冗余对数单元的总存储需求为16 K个字,而以前最好的常规符号对数单元则为22 K个字。可以通过在线算法来实现冗余对数系统,这对于常规符号对数系统是不切实际的。冗余算术的缺点是冗余数系统的典型缺点。首先,冗余使数据值的存储需求增加了一倍。其次,表示可能会变得病态,尤其是反复乘法的结果。第三,在冗余对数算法中,除法和平方根运算更难实现。

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