DocumentCode
1630453
Title
View estimation learning based on value system
Author
Takahashi, Yasutake ; Shimada, Kouki ; Asada, Minoru
Author_Institution
Dept. of Adaptive Machine Syst., Osaka Univ., Suita, Japan
fYear
2009
Firstpage
939
Lastpage
944
Abstract
Estimation of a caregiver´s view is one of the most important capabilities for a child to understand the behavior demonstrated by the caregiver, that is, to infer the intention of behavior and/or to learn the observed behavior efficiently. We hypothesize that the child develops this ability in the same way as behavior learning motivated by an intrinsic reward, that is, he/she updates the model of the estimated view of his/her own during the behavior imitated from the observation of the behavior demonstrated by the caregiver based on minimizing the estimation error of the reward during the behavior. From this view, this paper shows a method for acquiring such a capability based on a value system from which values can be obtained by reinforcement learning. The parameters of the view estimation are updated based on the temporal difference error (hereafter TD error: estimation error of the state value), analogous to the way such that the parameters of the state value of the behavior are updated based on the TD error. Experiments with simple humanoid robots show the validity of the method, and the developmental process parallel to young children´s estimation of its own view during the imitation of the observed behavior demonstrated by the caregiver is discussed.
Keywords
behavioural sciences; estimation theory; humanoid robots; learning (artificial intelligence); minimisation; TD error; caregiver behavior demonstration; caregivers view estimation; estimation error minimisation; humanoid robot; intrinsic reward; observed behavior learning; reinforcement learning; state value estimation error; temporal difference error; value system; view estimation learning; Adaptive systems; Autism; Error correction; Estimation error; Humanoid robots; Image recognition; Intelligent robots; Learning systems; Neurons; State estimation;
fLanguage
English
Publisher
ieee
Conference_Titel
Fuzzy Systems, 2009. FUZZ-IEEE 2009. IEEE International Conference on
Conference_Location
Jeju Island
ISSN
1098-7584
Print_ISBN
978-1-4244-3596-8
Electronic_ISBN
1098-7584
Type
conf
DOI
10.1109/FUZZY.2009.5277378
Filename
5277378
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