DocumentCode :
3254720
Title :
Coherent optical neural networks: generalization ability in frequency domain
Author :
Hirose, Akira ; Eckmiller, Rolf
Author_Institution :
Inst. for Neuroinf., Bonn Univ., Germany
Volume :
6
fYear :
1995
fDate :
Nov/Dec 1995
Firstpage :
3204
Abstract :
Frequency-domain generalization ability in coherent optical neural networks is analyzed. The coherent optical neural network system consists of an optical complex-valued neural network, a phase reference path, and coherent detectors with 90-degree optical hybrids for self-homodyne detection. The learning process is realized by adjusting delay time and transparency of neural connections in the complex-valued neural network. Information geometry in the learning process is discussed for obtaining a parameter region where a reasonable generalization is realized in frequency space. It is found that there are error-function minima appear periodically both in delay-time domain and input-signal-frequency domain and, hence, that initial connection delay should be within a certain range for a successful learning. Experiments demonstrate that a stable learning and a reasonable generalization in the frequency domain are realized in a parameter range suggested by the theory
Keywords :
delays; frequency-domain analysis; generalisation (artificial intelligence); learning (artificial intelligence); optical neural nets; transparency; coherent detectors; coherent optical neural networks; delay time; error-function minima; frequency domain; generalization; information geometry; learning process; phase reference path; self-homodyne detection; transparency; Delay; Frequency domain analysis; Information geometry; Intelligent networks; Neural networks; Optical computing; Optical fiber networks; Optical signal processing; Parallel processing; Phase detection;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Neural Networks, 1995. Proceedings., IEEE International Conference on
Conference_Location :
Perth, WA
Print_ISBN :
0-7803-2768-3
Type :
conf
DOI :
10.1109/ICNN.1995.487298
Filename :
487298
Link To Document :
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