Learning failure-free PRISM programs

被引:1
|
作者
Alsanie, Waleed [1 ]
Cussens, James [2 ]
机构
[1] King Abdulaziz City Sci & Technol, Commun & Informat Technol Res Inst, Natl Ctr Computat Technol & Appl Math, Riyadh, Saudi Arabia
[2] Univ York, Dept Comp Sci, York YO10 5DD, N Yorkshire, England
关键词
Probabilistic inductive logic programming; Probabilistic logic; PRISM; Structure learning; CONTEXT-FREE GRAMMARS; BAYESIAN NETWORKS; LIKELIHOOD;
D O I
10.1016/j.ijar.2015.06.003
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
PRISM is a probabilistic logic programming formalism which allows defining a probability distribution over possible worlds. This paper investigates learning a class of generative PRISM programs known as failure-free. The aim is to learn recursive PRISM programs which can be used to model stochastic processes. These programs generalise dynamic Bayesian networks by defining a halting distribution over the generative process. Dynamic Bayesian networks model infinite stochastic processes. Sampling from infinite process can only be done by specifying the length of sequences that the process generates. In this case, only observations of a fixed length of sequences can be obtained. On the other hand, the recursive PRISM programs considered in this paper are self-terminating upon some halting conditions. Thus, they generate observations of different lengths of sequences. The direction taken by this paper is to combine ideas from inductive logic programming and learning Bayesian networks to learn PRISM programs. It builds upon the inductive logic programming approach of learning from entailment. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:73 / 110
页数:38
相关论文
共 50 条
  • [1] Failure-free magnetometer
    du Bois, H
    ANNALEN DER PHYSIK, 1903, 11 (07) : 609 - 612
  • [2] Failure-free education?
    Betts, Lucy R.
    BRITISH JOURNAL OF EDUCATIONAL TECHNOLOGY, 2010, 41 (06) : E164 - E164
  • [3] Failure-free differential magnetometers
    du Bois, H
    ANNALEN DER PHYSIK, 1902, 9 (12) : 938 - 945
  • [4] TOWARDS FAILURE-FREE FUEL
    HARBOTTLE, JE
    STRASSER, AA
    NUCLEAR ENGINEERING INTERNATIONAL, 1994, 39 (482): : 28 - 30
  • [5] Failure-free life in reliability modeling
    Tang, Loon-Ching
    International Journal of Industrial Engineering : Theory Applications and Practice, 2003, 10 (04): : 332 - 338
  • [6] Efficient failure-free Foundry Production
    Penya, Yoseba K.
    Bringas, Pablo G.
    Zabala, Argoitz
    2008 IEEE INTERNATIONAL CONFERENCE ON EMERGING TECHNOLOGIES AND FACTORY AUTOMATION, PROCEEDINGS, 2008, : 237 - +
  • [7] FAILURE-FREE PERIOD LIFE TESTS
    ANGUS, JE
    SCHAFER, RE
    VANDENBERG, S
    RUTEMILLER, HC
    TECHNOMETRICS, 1985, 27 (01) : 49 - 56
  • [8] Failure-free life in reliability modeling
    Tang, LC
    INTERNATIONAL JOURNAL OF INDUSTRIAL ENGINEERING-THEORY APPLICATIONS AND PRACTICE, 2003, 10 (04): : 332 - 338
  • [9] Failure-free survival of the Durata defibrillator lead
    Liu, Jeffrey
    Patel, Divyang
    Rattan, Rohit
    Brumberg, Genevieve
    Saini, Aditya
    Vaghasia, Nishit
    Bazaz, Raveen
    Adelstein, Evan
    Jain, Sandeep
    Saba, Samir
    EUROPACE, 2013, 15 (07): : 1002 - 1006
  • [10] Engineering the Failure-Free Lifetime for Cu Vias
    Hall, Gavin D. R.
    Allman, Derryl D. J.
    Eda, Masaichi
    Long, Thomas F., II
    2016 IEEE INTERNATIONAL RELIABILITY PHYSICS SYMPOSIUM (IRPS), 2016,