We introduce relational information gain, a refinement scoring function measuring the informativeness of newly introduced variables. The gain can be interpreted as a conditional entropy in a well-defined sense and can be efficiently approximately computed. In conjunction with simple greedy general-to-specific search algorithms such as FOIL, it yields an efficient and competitive algorithm in terms of predictive accuracy and compactness of the learned theory. In conjunction with the decision tree learner TILDE, it offers a beneficial alternative to lookahead, achieving similar performance while significantly reducing the number of evaluated literals. © The Author(s) 2010.

Relational information gain / Lippi, Marco; Jaeger, Manfred; Frasconi, Paolo; Passerini, Andrea. - In: MACHINE LEARNING. - ISSN 0885-6125. - 83:2(2011), pp. 219-239. [10.1007/s10994-010-5194-7]

Relational information gain

LIPPI, MARCO;
2011

Abstract

We introduce relational information gain, a refinement scoring function measuring the informativeness of newly introduced variables. The gain can be interpreted as a conditional entropy in a well-defined sense and can be efficiently approximately computed. In conjunction with simple greedy general-to-specific search algorithms such as FOIL, it yields an efficient and competitive algorithm in terms of predictive accuracy and compactness of the learned theory. In conjunction with the decision tree learner TILDE, it offers a beneficial alternative to lookahead, achieving similar performance while significantly reducing the number of evaluated literals. © The Author(s) 2010.
2011
83
2
219
239
Relational information gain / Lippi, Marco; Jaeger, Manfred; Frasconi, Paolo; Passerini, Andrea. - In: MACHINE LEARNING. - ISSN 0885-6125. - 83:2(2011), pp. 219-239. [10.1007/s10994-010-5194-7]
Lippi, Marco; Jaeger, Manfred; Frasconi, Paolo; Passerini, Andrea
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1122698
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