LEARNING AND PREDICTION OF RELATIONAL TIME SERIES
Prediction of events is fundamental to both human and artificial agents. The main problem with previous prediction techniques is that they cannot predict events that have never been experienced before. This dissertation addresses the problem of predicting such novelty by developing algorithms and co...
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ndltd-nps.edu-oai-calhoun.nps.edu-10945-329072014-11-27T16:18:38Z LEARNING AND PREDICTION OF RELATIONAL TIME SERIES Tan, Kian-Moh Terence Darken, Christian Computer Science Prediction of events is fundamental to both human and artificial agents. The main problem with previous prediction techniques is that they cannot predict events that have never been experienced before. This dissertation addresses the problem of predicting such novelty by developing algorithms and computational models inspired from recent cognitive science theories conceptual blending theory and event segmentation theory. We were able to show that prediction accuracy for event or state prediction can be significantly improved using these methods. The main contribution of this dissertation is a new class of prediction techniques inspired by conceptual blending that improves prediction accuracy overall and has the ability to predict even events that have never been experienced before. We also show that event segmentation theory, when integrated with these techniques, results in greater computational efficiency. We implemented the new prediction techniques, and more traditional alternatives such as Markov and Bayesian techniques, and compared their prediction accuracy quantitatively for three domains a role-playing game, intrusion-system alerts, and event prediction of maritime paths in a discrete-event simulator. Other contributions include two new unification algorithms that improve over a nave one, and an exploration of ways to maintain a minimum-size knowledge base without affecting prediction accuracy. 2013-05-08T20:42:54Z 2013-05-08T20:42:54Z 2013-03 http://hdl.handle.net/10945/32907 Approved for public release; distribution is unlimited Monterey, California. Naval Postgraduate School |
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Prediction of events is fundamental to both human and artificial agents. The main problem with previous prediction techniques is that they cannot predict events that have never been experienced before. This dissertation addresses the problem of predicting such novelty by developing algorithms and computational models inspired from recent cognitive science theories conceptual blending theory and event segmentation theory. We were able to show that prediction accuracy for event or state prediction can be significantly improved using these methods. The main contribution of this dissertation is a new class of prediction techniques inspired by conceptual blending that improves prediction accuracy overall and has the ability to predict even events that have never been experienced before. We also show that event segmentation theory, when integrated with these techniques, results in greater computational efficiency. We implemented the new prediction techniques, and more traditional alternatives such as Markov and Bayesian techniques, and compared their prediction accuracy quantitatively for three domains a role-playing game, intrusion-system alerts, and event prediction of maritime paths in a discrete-event simulator. Other contributions include two new unification algorithms that improve over a nave one, and an exploration of ways to maintain a minimum-size knowledge base without affecting prediction accuracy. |
author2 |
Darken, Christian |
author_facet |
Darken, Christian Tan, Kian-Moh Terence |
author |
Tan, Kian-Moh Terence |
spellingShingle |
Tan, Kian-Moh Terence LEARNING AND PREDICTION OF RELATIONAL TIME SERIES |
author_sort |
Tan, Kian-Moh Terence |
title |
LEARNING AND PREDICTION OF RELATIONAL TIME SERIES |
title_short |
LEARNING AND PREDICTION OF RELATIONAL TIME SERIES |
title_full |
LEARNING AND PREDICTION OF RELATIONAL TIME SERIES |
title_fullStr |
LEARNING AND PREDICTION OF RELATIONAL TIME SERIES |
title_full_unstemmed |
LEARNING AND PREDICTION OF RELATIONAL TIME SERIES |
title_sort |
learning and prediction of relational time series |
publisher |
Monterey, California. Naval Postgraduate School |
publishDate |
2013 |
url |
http://hdl.handle.net/10945/32907 |
work_keys_str_mv |
AT tankianmohterence learningandpredictionofrelationaltimeseries |
_version_ |
1716725412237672448 |