Long Time Integration for Initial Value Problems of Ordinary Differential Equations Using Power Series Arithmetic(Special Section on Nonlinear Theory and its Applications)
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概要
- 論文の詳細を見る
In this paper, we present a numerical method with guaranteed accuracy to solve initial value problems (IVPs) of normal form simultaneous first order ordinary differential equations (ODEs) which have wide domain. Our method is based on the algorithm proposed by Kashiwagi [1], [2], by which we can obtain inclusions of exact values at several discrete points of the solution curve of ODEs. The method can be regarded as an extension of the Lohner's method [3]. But the algorithm is not efficient for equations which have wide domain, because the error bounds become too wide from a practical point of view. Our purpose is to produce tight bounds even for such equations. We realize it by combining Kashiwagi's algorithm with the mean value form. We also consider the wrapping effects [4] to obtain tighter bounds.
- 社団法人電子情報通信学会の論文
- 2001-09-01
著者
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Kashiwagi M
Waseda Univ. Tokyo Jpn
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MIYATA Takatomi
the Department of Information and Computer Science, School of Science and Engineering, Waseda Univer
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NAGATOMO Yasutaka
the Department of Information and Computer Science, School of Science and Engineering, Waseda Univer
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KASHIWAGI Masahide
the Department of Information and Computer Science, School of Science and Engineering, Waseda Univer
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Miyata Takatomi
The Department Of Information And Computer Science School Of Science And Engineering Waseda Universi
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Nagatomo Yasutaka
The Department Of Information And Computer Science School Of Science And Engineering Waseda Universi
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- A Modified Newton Method with Guaranteed Accuracy Based on Rational Arithmetic (Special Section on Neural Nets, Chaos and Numerics)
- A Sufficient Condition of A Priori Estimation for Computational Complexity of the Homotopy Method (Special Section on Neural Nets, Chaos and Numerics)
- Long Time Integration for Initial Value Problems of Ordinary Differential Equations Using Power Series Arithmetic(Special Section on Nonlinear Theory and its Applications)