DocumentCode
1802842
Title
SPSA Algorithms with Measurement Reuse
Author
Abdulla, Mohammed Shahid ; Bhatnagar, Shalabh
Author_Institution
Dept. of Comput. Sci. & Autom., Indian Inst. of Sci., Bangalore
fYear
2006
fDate
3-6 Dec. 2006
Firstpage
320
Lastpage
328
Abstract
Four algorithms, all variants of simultaneous perturbation stochastic approximation (SPSA), are proposed. The original one-measurement SPSA uses an estimate of the gradient of objective function L containing an additional bias term not seen in two-measurement SPSA. As a result, the asymptotic covariance matrix of the iterate convergence process has a bias term. We propose a one-measurement algorithm that eliminates this bias, and has asymptotic convergence properties making for easier comparison with the two-measurement SPSA. The algorithm, under certain conditions, outperforms both forms of SPSA with the only overhead being the storage of a single measurement. We also propose a similar algorithm that uses perturbations obtained from normalized Hadamard matrices. The convergence w.p. 1 of both algorithms is established. We extend measurement reuse to design two second-order SPSA algorithms and sketch the convergence analysis. Finally, we present simulation results on an illustrative minimization problem
Keywords
Hadamard matrices; approximation theory; convergence; covariance matrices; optimisation; stochastic processes; asymptotic convergence analysis; asymptotic covariance matrix; iterate convergence process; measurement reuse; normalized Hadamard matrices; simultaneous perturbation stochastic approximation; Algorithm design and analysis; Approximation algorithms; Automation; Computational modeling; Computer science; Convergence; Covariance matrix; Error correction; Error correction codes; Stochastic processes;
fLanguage
English
Publisher
ieee
Conference_Titel
Simulation Conference, 2006. WSC 06. Proceedings of the Winter
Conference_Location
Monterey, CA
Print_ISBN
1-4244-0500-9
Electronic_ISBN
1-4244-0501-7
Type
conf
DOI
10.1109/WSC.2006.323089
Filename
4117621
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