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ROM based logic design for base-2 exponential and logarithm converter using fixed point number representation

机译:基于ROM的基于ROM逻辑设计基本2指数和对数转换器使用固定点数表示

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Logarithm and exponential functions are frequently used in signal processing, communication and information theory. They are primarily used for hardware calculations, handling multiplications, divisions, powers, and roots effectively. This paper presents a ROM based approach for the evaluation of base-2 logarithm and exponential at single precision floating point input. Since the method used is non-iterative, the output of the logic has fixed accuracy. The accuracy has been improved as compared to the existing published non-iterative methods available for computing functions such as logarithms and exponential. The hardware is optimized for fixed point number representation using the suitable logic design. A combined logic to evaluate the logarithm and exponential for sustained input, which is implemented as single cycle and pipelined approach, is also explained. Finally, the error plots, hardware and delay reports are compared for single cycle and pipelined approaches.
机译:对数和指数函数经常用于信号处理,通信和信息理论。它们主要用于硬件计算,处理乘法,分区,权力和根源。本文介绍了一种基于ROM的基于ROM,用于评估单精度浮点输入的基础-2对数和指数。由于使用的方法是非迭代的,因此逻辑的输出具有固定精度。与现有公开的非迭代方法相比,准确性得到了提高,可用于计算诸如对数和指数的函数。使用合适的逻辑设计,硬件针对固定点数表示进行了优化。还解释了一种用于评估持续输入的对数和指数的组合逻辑,其被实现为单周期和流水线方法。最后,将错误图,硬件和延迟报告进行比较,以获取单周期和流水线方法。

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