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首页> 外文期刊>IEEE Transactions on Computers >Floating point fault tolerance with backward error assertions
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Floating point fault tolerance with backward error assertions

机译:带有后向错误声明的浮点容错

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The paper introduces an assertion scheme based on the backward error analysis for error detection in algorithms that solve dense systems of linear equations, Ax=b. Unlike previous methods, this backward error assertion model is specifically designed to operate in an environment of floating point arithmetic subject to round-off errors, and it can be easily instrumented in a Watchdog processor environment. The complexity of verifying assertions is O(n/sup 2/), compared to the O(n/sup 3/) complexity of algorithms solving Ax=b. Unlike other proposed error detection methods, this assertion model does not require any encoding of the matrix A. Experimental results under various error models are presented to validate the effectiveness of this assertion scheme.
机译:本文介绍了一种基于向后误差分析的断言方案,用于在求解线性方程组Ax = b的密集系统的算法中进行错误检测。与以前的方法不同,此向后错误声明模型经过专门设计,可在存在舍入错误的浮点运算环境中运行,并且可以轻松地在Watchdog处理器环境中进行检测。与解决Ax = b的算法的O(n / sup 3 /)复杂度相比,验证断言的复杂度为O(n / sup 2 /)。与其他建议的错误检测方法不同,此断言模型不需要对矩阵A进行任何编码。提出了各种错误模型下的实验结果,以验证此断言方案的有效性。

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