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An Ensemble Architecture for Learning Complex Problem-Solving Techniques from Demonstration

delete2012-09-01
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PRE
AI
X
Xiaoqin Shelley Zhang *
S
Sung‐Wook Yoon
S
Subbarao Kambhampati
D
Daniel C. McFarlane
E
Elizabeth Whitaker
E
Ethan Trewhitt
L
Li Ding
J
James Michaelis
D
Deborah L. McGuinness
J
James Hendler
J
Janardhan Rao Doppa
C
Charles Parker
T
Thomas G. Dietterich
P
Prasad Tadepalli
W
Weng‐Keen Wong
D
Derek Green
G
Gerald DeJong
S
Santiago Ontañón
A
Ashwin Ram
H
Hala Mostafa
C
Chongjie Zhang
Z
Zhexuan Song
DOI:10.1145/2337542.2337560delete
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Abstract

Abstract

En 中文
We present a novel ensemble architecture for learning problem-solving techniques from a very small number of expert solutions and demonstrate its effectiveness in a complex real-world domain. The key feature of our Generalized Integrated Learning Architecture (GILA) is a set of heterogeneous independent learning and reasoning (ILR) components, coordinated by a central meta-reasoning executive (MRE). The ILRs are weakly coupled in the sense that all coordination during learning and performance happens through the MRE. Each ILR learns independently from a small number of expert demonstrations of a complex task. During performance, each ILR proposes partial solutions to subproblems posed by the MRE, which are then selected from and pieced together by the MRE to produce a complete solution. The heterogeneity of the learner-reasoners allows both learning and problem solving to be more effective because their abilities and biases are complementary and synergistic. We describe the application of this novel learning and problem solving architecture to the domain of airspace management, where multiple requests for the use of airspaces need to be deconflicted, reconciled, and managed automatically. Formal evaluations show that our system performs as well as or better than humans after learning from the same training data. Furthermore, GILA outperforms any individual ILR run in isolation, thus demonstrating the power of the ensemble architecture for learning and problem solving.
Keywords:
Design
Algorithms
Experimentation
Performance
Ensemble architecture
learning from demonstration
complex problem-solving
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ACM Transactions on Intelligent Systems and Technology cover
ACM Transactions on Intelligent Systems and Technology
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