DocumentCode :
1083324
Title :
A Minimum Variance, Time Optimal, Control System Model of Human Lens Accommodation
Author :
O´Neill, William D. ; Sanathanan, C.K. ; Brodkey, Jerald S.
Author_Institution :
Department of Biomedical Engineering, Presbyterian-St. Luke´´s Hospital, Chicago, Ill., and the Systems Engineering Department, University of Illinois, Chicago, Ill.
Volume :
5
Issue :
4
fYear :
1969
Firstpage :
290
Lastpage :
299
Abstract :
Experimental data relating ciliary nerve stimulation and lens motion are used to identify the open-loop plant dynamics of the lens accommodation system via a parameter identication variation of the Kalman filter equations. Using the resultant minimum variance plant model, experimental closed-loop responses of the human accommodative system are predicted by synthesizing the system closed-loop controller. The resultant control signals are shown to minimize the time required to change the refractive state of the eye. The plant dynamic model and the closed-loop model are further verified by comparing their frequency responses to experimental data. The optimal performance of the lens system is compared to analogous performance of another ocular control system, and a possible general theory of optimal control is discussed.
Keywords :
Control system synthesis; Control systems; Equations; Frequency; Humans; Lenses; Open loop systems; Optimal control; Predictive models; Signal synthesis;
fLanguage :
English
Journal_Title :
Systems Science and Cybernetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0536-1567
Type :
jour
DOI :
10.1109/TSSC.1969.300222
Filename :
4082262
Link To Document :
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