DocumentCode
2771531
Title
Stacked Gaussian Process Learning
Author
Neumann, Marion ; Kersting, Kristian ; Xu, Zhao ; Schulz, Daniel
fYear
2009
fDate
6-9 Dec. 2009
Firstpage
387
Lastpage
396
Abstract
Triggered by a market relevant application that involves making joint predictions of pedestrian and public transit flows in urban areas, we address the question of how to utilize hidden common cause relations among variables of interest in order to improve performance in the two related regression tasks. Specifically, we propose stacked Gaussian process learning, a meta-learning scheme in which a base Gaussian process is enhanced by adding the posterior covariance functions of other related tasks to its covariance function in a stage-wise optimization. The idea is that the stacked posterior covariances encode the hidden common causes among variables of interest that are shared across the related regression tasks. Stacked Gaussian process learning is efficient, capable of capturing shared common causes, and can be implemented with any kind of standard Gaussian process regression model such as sparse approximations and relational variants. Our experimental results on real-world data from the market relevant application show that stacked Gaussian processes learning can significantly improve prediction performance of a standard Gaussian process.
Keywords
Gaussian processes; learning (artificial intelligence); optimisation; traffic engineering computing; transportation; market relevant application; meta-learning scheme; pedestrian flows; public transit flows; stacked Gaussian process learning; stage-wise optimization; urban areas; Advertising; Bayesian methods; Business; Companies; Data mining; Gaussian processes; Information processing; Mining industry; Pricing; Urban areas; Bayesian Regression; Gaussian Processes; Stacked Learning; Statistical Relational Learning;
fLanguage
English
Publisher
ieee
Conference_Titel
Data Mining, 2009. ICDM '09. Ninth IEEE International Conference on
Conference_Location
Miami, FL
ISSN
1550-4786
Print_ISBN
978-1-4244-5242-2
Electronic_ISBN
1550-4786
Type
conf
DOI
10.1109/ICDM.2009.56
Filename
5360264
Link To Document