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Parameter-insensitive kernel in extreme learning for non-linear support vector regression

NeurocomputingPublished 20 May 2011
Benoît Frénay‬, Michel Verleysen
Citations85
SJR quartileQ1
SJR score1.47
SNIP1.94

TL;DR

A new parameter-insensitive kernel inspired from extreme learning is used for non-linear SVR, and it is shown that the proposed kernel has an analytic form which is computationally easier to evaluate.

Abstract

Support vector regression (SVR) is a state-of-the-art method for regression which uses the ε‐sensitive loss and produces sparse models. However, non-linear SVRs are difficult to tune because of the additional kernel parameter. In this paper, a new parameter-insensitive kernel inspired from extreme learning is used for non-linear SVR. Hence, the practitioner has only two meta-parameters to optimise. The proposed approach reduces significantly the computational complexity yet experiments show that it yields performances that are very close from the state-of-the-art. Unlike previous works which rely on Monte-Carlo approximation to estimate the kernel, this work also shows that the proposed kernel has an analytic form which is computationally easier to evaluate.

Keywords

Computer Science