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Sound Probabilistic Numerical Error Analysis

机译:声音概率数值误差分析

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Numerical software uses floating-point arithmetic to implement real-valued algorithms which inevitably introduces roundoff errors. Additionally, in an effort to reduce energy consumption, approximate hardware introduces further errors. As errors are propagated through a computation, the result of the approximated floating-point program can be vastly different from the real-valued ideal one. Previous work on soundly bounding (roundoff) errors has focused on worst-case absolute error analysis. However, not all inputs and not all errors are equally likely such that these methods can lead to overly pessimistic error bounds. In this paper, we present a sound probabilistic static analysis which takes into account the probability distributions of inputs and propagates roundoff and approximation errors probabilistically through the program. We observe that the computed probability distributions of errors are hard to interpret, and propose an alternative metric and computation of refined error bounds which are valid with some probability.
机译:数值软件使用浮点算法实现实值算法,这不可避免地引入循环误差。另外,为了降低能量消耗,近似硬件引入了进一步的错误。由于错误通过计算传播,近似浮点程序的结果可以与真实的理想之一大不相同。以前的工作界限(圆形OFF)错误集中在最坏情况下的绝对错误分析。但是,并非所有输入而不是所有错误都同样可能导致这些方法可能导致过度悲观的错误界限。在本文中,我们提出了一种声音概率静态分析,其考虑了输入的概率分布,并通过程序传播了概率和近似误差。我们观察到,误差的计算概率分布很难解释,并提出一种替代的度量和计算,其具有一些概率有效的精细误差界限。

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