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Performance of the European Logarithmic Microprocessor

机译:欧洲对数微处理器的性能

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We have developed a new microprocessor. In contrast to existing devices, which perform real arithmetic using the floating-point system, the European Logarithmic Microprocessor uses the logarithmic number system for this purpose. This paper describes the ELM device, and compares its architecture with that of a conventional floating-point digital signal processor. We then illustrate the operation of both devices using an example from a class of recursive-least-squares algorithms. The results suggest that logarithmic arithmetic may be of particular benefit in applications with less regular processing patterns, e.g. in scalar or short vector code or triangular matrix processing, or where there is a preponderance of multiplications or significant use of division or square-root operations. These criteria appear to point to the more advanced digital adaptive filtering algorithms, and also to graphics applications. Results indicate that the logarithmic number system also offers an improvement in accuracy of around one bit.
机译:我们开发了一个新的微处理器。与使用浮点系统执行实数运算的现有设备相比,欧洲对数微处理器为此目的使用对数系统。本文介绍了ELM设备,并将其架构与常规浮点数字信号处理器的架构进行了比较。然后,我们使用一类递归最小二乘算法的示例来说明这两种设备的操作。结果表明,对数算法在具有较少规则处理模式的应用程序中可能特别有用,例如在标量或简短的矢量代码或三角矩阵处理中,或者存在大量乘法运算或大量使用除法或平方根运算的情况。这些标准似乎指向更高级的数字自适应滤波算法,也指向图形应用程序。结果表明,对数系统还提供了大约一位精度的提高。

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