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随机逼近两类信息的第n个最小误差之间的关系论文
随机逼近两类信息的第 n 个最小误差之间的关系
Abstract
Multivariate approximation is one of the most popular problems in IBC (In-
formation Based Complexity). It is studied commonly by a lot of mathematicians.
The most important reason is that it is related to continuous problems essentially. For
example, multivariate integration, solutions of partial differential equations, solu-
tions of integral equations and some non-linear problems and so on.
The nth minimal error is one of the most important problems in IBC. It has a lot
to do with corresponding complexity of information and computation. It is the best
possible algorithm among all algorithms using at most n information operations and
ε−complexity is based on it. Then we can focus on the study of tractability of mul-
tivariate integration and approximation which was introduced in 1994 by professor
Woźniakowski from Columbia university in New York, U. S. A. Therefore, it is ne-
cessary to study the nth minimal error.
For the nth minimal error, there are many details in IBC, including the defini-
tion of it in the worst case setting, average setting, and randomized setting, and the
theories of the nth minimal error. According to the theorems of the nth minimal er-
rors and the proof of some theorems, we obtain lots of evidences and methods which
are good for our further study of ε− complexity and the tractability of multivariate
problems. Especially, constructing bump function to get the lower bounds of the nth
minimal errors and ε− complexity is an important way to solve other similar prob-
lems in different settings and spaces.
In this paper, two classes of information are considered. One is linear informa-
tion which consists of all (continuous) linear functionals, denoted by all
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