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IS AN INTERVAL THE RIGHT RESULT OF ARITHMETIC OPERATIONS ON INTERVALS?

机译:间隔是对间隔进行算术运算的正确结果吗?

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For many scientists interval arithmetic (IA, I arithmetic) seems to be easy and simple. However, this is not true. Interval arithmetic is complicated. This is confirmed by the fact that, for years, new, alternative versions of this arithmetic have been created and published. These new versions tried to remove shortcomings and weaknesses of previously proposed options of the arithmetic, which decreased the prestige not only of interval arithmetic itself, but also of fuzzy arithmetic, which, to a great extent, is based on it. In our opinion, the main reason for the observed shortcomings of the present IA is the assumption that the direct result of arithmetic operations on intervals is also an interval. However, the interval is not a direct result but only a simplified representative (indicator) of the result. This hypothesis seems surprising, but investigations prove that it is true. The paper shows what conditions should be satisfied by the result of interval arithmetic operations to call it a "result", how great its dimensionality is, how to perform arithmetic operations and solve equations. Examples illustrate the proposed method of interval computations.
机译:对于许多科学家而言,区间算术(IA,I算术)似乎很简单。但是,事实并非如此。间隔算法很复杂。多年来,已经创建并发布了该算法的新的替代版本,这一事实得到了证实。这些新版本试图消除以前提出的算术选择的缺点和弱点,这不仅降低了区间算术本身的声誉,而且降低了很大程度上基于该算法的模糊算术的声誉。我们认为,导致当前IA出现缺陷的主要原因是假设间隔上算术运算的直接结果也是间隔。但是,间隔不是直接结果,而只是结果的简化表示(指示符)。这个假设似乎令人惊讶,但是研究证明它是正确的。本文显示了区间算术运算的结果称为“结果”应满足的条件,其维数大,如何执行算术运算和求解方程。实例说明了提出的区间计算方法。

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