关于科洛夫金均值的一个极值性质

Q4 Mathematics Researches in Mathematics Pub Date : 2021-10-06 DOI:10.15421/247702
V. Babenko, S. Pichugov
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引用次数: 0

摘要

指出$$\inf\limits_{L \in L_n} \sup\limits_{\substack{f \in C_{2\pi}\\f \ne const}} \frac{\max \| f(x) - L(f, x) \|}{\omega^*_2(f, \pi/n + 1)} = \frac{1}{2}$$,其中$C_{2\pi}$是实数域上周期连续函数的空间,$L_n$是将$C_{2\pi}$映射到阶数不大于$n$ ($n = 0,1,\ldots$)的三角多项式集合的线性算子的集合,$\omega_2(f, t) = \sup\limits_{x, |h| \leqslant t} |f(x-h) - 2f(x) + f(x+h)|$, $\omega^*_2(f, t)$是函数$\omega_2(f, t)$的凹壳。在这个等式中,科罗夫金的平均数达到了极限值。
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On one extremal property of Korovkin's means
We point out that$$\inf\limits_{L \in L_n} \sup\limits_{\substack{f \in C_{2\pi}\\f \ne const}} \frac{\max \| f(x) - L(f, x) \|}{\omega^*_2(f, \pi/n + 1)} = \frac{1}{2}$$where $C_{2\pi}$ is the space of periodic continuous functions on real domain, $L_n$ is the set of linear operators that map $C_{2\pi}$ to the set of trigonometric polynomials of order no greater than $n$ ($n = 0,1,\ldots$), $\omega_2(f, t) = \sup\limits_{x, |h| \leqslant t} |f(x-h) - 2f(x) + f(x+h)|$, $\omega^*_2(f, t)$ is the concave hull of the function $\omega_2(f, t)$. In this equality, the infimum is attained for Korovkin's means.
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来源期刊
CiteScore
0.50
自引率
0.00%
发文量
8
审稿时长
16 weeks
期刊最新文献
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