利用位算法增强光流

Vinay Saxena, A. Reddy, J. Neudorfer, J. Gustafson, Sangeeth Nambiar, R. Leupers, Farhad Merchant
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引用次数: 6

摘要

随着新技术的发明,它们的商业可行性需要仔细审查,以及它们的技术优点和缺点。${posit}^{TM}$数据格式,提议作为IEEE $754 ^{TM}$浮动格式的直接替代品,是这样一种发明,需要广泛的理论和实验研究,以确定可以从特定细分市场的posit优势中受益的产品。在本文中,我们对基于正的算法进行了广泛的实证研究,该算法与-à-vis IEEE 754兼容,用于称为Lucas-Kanade (LuKa)的光流估计方法。首先,我们使用SoftPosit和SoftFloat格式模拟器对LuKa方法进行了经验误差分析。我们的研究表明,使用SoftPosit的LuKa的平均误差比使用SoftFloat的LuKa低一个数量级。然后,我们在RISC-V开源平台上展示了位加法器和乘法器的硬件实现集成。我们提出了一些建议,以及在RISC-V环境下对LuKa的分析,为未来的一代平台提供正算术单元。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Brightening the Optical Flow through Posit Arithmetic
As new technologies are invented, their commercial viability needs to be carefully examined along with their technical merits and demerits. The ${posit}^{TM}$ data format, proposed as a drop-in replacement for IEEE $754 ^{TM}$ float format, is one such invention that requires extensive theoretical and experimental study to identify products that can benefit from the advantages of posits for specific market segments. In this paper, we present an extensive empirical study of posit-based arithmetic vis-à-vis IEEE 754 compliant arithmetic for the optical flow estimation method called Lucas-Kanade (LuKa). First, we use SoftPosit and SoftFloat format emulators to perform an empirical error analysis of the LuKa method. Our study shows that the average error in LuKa with SoftPosit is an order of magnitude lower than LuKa with SoftFloat. We then present the integration of the hardware implementation of a posit adder and multiplier in a RISC-V open-source platform. We make several recommendations, along with the analysis of LuKa in the RISC-V context, for future generation platforms incorporating posit arithmetic units.
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