DocumentCode
1305463
Title
MILIS: Multiple Instance Learning with Instance Selection
Author
Fu, Zhouyu ; Robles-Kelly, Antonio ; Zhou, Jun
Author_Institution
Gippsland Sch. of IT, Monash Univ., Churchill, VIC, Australia
Volume
33
Issue
5
fYear
2011
fDate
5/1/2011 12:00:00 AM
Firstpage
958
Lastpage
977
Abstract
Multiple instance learning (MIL) is a paradigm in supervised learning that deals with the classification of collections of instances called bags. Each bag contains a number of instances from which features are extracted. The complexity of MIL is largely dependent on the number of instances in the training data set. Since we are usually confronted with a large instance space even for moderately sized real-world data sets applications, it is important to design efficient instance selection techniques to speed up the training process without compromising the performance. In this paper, we address the issue of instance selection in MIL. We propose MILIS, a novel MIL algorithm based on adaptive instance selection. We do this in an alternating optimization framework by intertwining the steps of instance selection and classifier learning in an iterative manner which is guaranteed to converge. Initial instance selection is achieved by a simple yet effective kernel density estimator on the negative instances. Experimental results demonstrate the utility and efficiency of the proposed approach as compared to the state of the art.
Keywords
iterative methods; learning (artificial intelligence); MILIS; instance selection; iterative manner; kernel density estimator; multiple instance learning; real-world data sets application; supervised learning; Algorithm design and analysis; Machine learning; Optimization; Prototypes; Support vector machines; Training; Training data; Multiple instance learning; alternating optimization.; feature selection; support vector machine;
fLanguage
English
Journal_Title
Pattern Analysis and Machine Intelligence, IEEE Transactions on
Publisher
ieee
ISSN
0162-8828
Type
jour
DOI
10.1109/TPAMI.2010.155
Filename
5557878
Link To Document