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Detecting unreliable computer simulations of recursive functions with interval extensions

机译:使用间隔扩展检测递归函数的不可靠的计算机模拟

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摘要

This paper presents a procedure to detect unreliable computer simulations of recursive functions. The proposed method calculates a lower bound error which is derived from two different pseudo-orbits based on interval extensions. The interval extensions are generated by taking into account the associative property of multiplication, which keeps the same error bound. We have tested our approach on the logistic map using many different programming languages and simulation packages, including Matlab, Scilab, Octave, Fortran and C. In all cases, the number of iterates is significantly lower than that considered reliable in the existing literature. We have also used the lower bound error on the logistic map and on the polynomial NARMAX for the Rossler equations to estimate the largest Lyapunov exponent, which determines the critical simulation time that guarantees the reliability of the simulation. (C) 2018 Elsevier Inc. All rights reserved.
机译:本文介绍了检测递归函数的不可靠的计算机模拟的过程。 该方法计算出基于间隔扩展的两种不同的伪轨道导出的下限错误。 通过考虑乘法的关联属性来生成间隔扩展,这保持相同的错误绑定。 我们在使用许多不同的编程语言和仿真包中测试了我们的方法,包括Matlab,Scilab,Octave,Fortran和C.在所有情况下,迭代的数量明显低于现有文献中所考虑的次数。 我们还在逻辑图上使用了较低的错误,并在多项式NARMAX上用于Rossler方程,以估计最大的Lyapunov指数,它决定了保证了仿真可靠性的关键模拟时间。 (c)2018年Elsevier Inc.保留所有权利。

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