Harmonic Interpolating Wavelets in Neumann Boundary Value Problem in a Circle

Q3 Mathematics Ural Mathematical Journal Pub Date : 2019-07-25 DOI:10.15826/UMJ.2019.1.009
Dmitry A. Yamkovoi
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Abstract

The Neumann boundary value problem (BVP) in a unit circle is discussed. For the solution of the Neumann BVP, we built a method employing series representation of given \(2 \pi\)-periodic continuous boundary function by interpolating wavelets consisting of trigonometric polynomials. It is convenient to use the method due to the fact that such series is easy to extend to harmonic polynomials inside a circle. Moreover, coefficients of the series have an easy-to-calculate form. The representation by the interpolating wavelets is constructed by using an interpolation projection to subspaces of a multiresolution analysis with basis \(2 \pi\)-periodic scaling functions (more exactly, their binary rational compressions and shifts). That functions were developed by Subbotin and Chernykh on the basis of Meyer-type wavelets. We will use three kinds of such functions, where two out of the three generates systems, which are orthogonal and simultaneous interpolating on uniform grids of the corresponding scale and the last one generates only interpolating on the same uniform grids system. As a result, using the interpolation property of wavelets mentioned above, we obtain the exact representation of the solution for the Neumann BVP by series of that wavelets and numerical bound of the approximation of solution by partial sum of such series.
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圆内Neumann边值问题中的调和插值小波
讨论了单位圆上的Neumann边值问题。对于Neumann BVP的解,我们建立了一种通过插值由三角多项式组成的小波对给定的\(2 \pi\) -周期连续边界函数进行级数表示的方法。这种级数很容易推广到圆内的调和多项式,使用起来很方便。此外,该级数的系数具有易于计算的形式。插值小波的表示是通过使用插值投影到多分辨率分析的子空间来构造的,这些子空间具有基\(2 \pi\) -周期缩放函数(更确切地说,它们的二进制有理压缩和移位)。该函数是由Subbotin和Chernykh在meyer型小波的基础上发展起来的。我们将使用三种这样的函数,其中两种生成系统,一种是在相应尺度的均匀网格上正交且同时插值,另一种只在同一均匀网格系统上生成插值。结果,利用上述小波的插值性质,我们得到了该小波的级数解的精确表示,以及该级数的部分和逼近解的数值界。
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来源期刊
Ural Mathematical Journal
Ural Mathematical Journal Mathematics-Mathematics (all)
CiteScore
1.30
自引率
0.00%
发文量
12
审稿时长
16 weeks
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