Numerical function generators using bilinear interpolation

Shinobu Nagayama, Tsutomu Sasao, J. T. Butler
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引用次数: 3

Abstract

Two-variable numerical functions are widely used in various applications, such as computer graphics and digital signal processing. Fast and compact hardware implementations are required. This paper introduces the bilinear interpolation method to produce fast and compact numerical function generators (NFGs) for two-variable functions. This paper also introduces a design method for symmetric two-variable functions. This method can reduce the memory size needed for symmetric functions by nearly half with small speed penalty. Experimental results show that the bilinear interpolation method can significantly reduce the memory size needed for two-variable functions, and the speed of NFGs based on the bilinear method is comparable to that of NFGs based on tangent plane approximation. For a complicated function, our NFG is faster and more compact than a circuit designed using a one-variable NFG.
使用双线性插值的数值函数生成器
双变量数值函数广泛应用于计算机图形学和数字信号处理等各个领域。需要快速和紧凑的硬件实现。本文介绍了用双线性插值方法生成快速紧凑的双变量函数数值函数生成器。本文还介绍了对称双变量函数的一种设计方法。这种方法可以将对称函数所需的内存大小减少近一半,并且速度损失很小。实验结果表明,双线性插值方法可以显著降低双变量函数所需的内存大小,并且基于双线性方法的NFGs的速度与基于切平面近似的NFGs相当。对于复杂的功能,我们的NFG比使用单变量NFG设计的电路更快,更紧凑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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