DocumentCode
1818029
Title
Silicon implementation of an artificial dendritic tree
Author
Elias, John G. ; Chu, Hsu-Hua ; Meshreki, Samer M.
Author_Institution
Dept. of Electr. Eng., Delaware Univ., Newark, DE, USA
Volume
1
fYear
1992
fDate
7-11 Jun 1992
Firstpage
154
Abstract
The silicon implementation of an artificial passive dendritic tree which can be used to process and classify dynamic signals is described. The electrical circuit architecture is modeled after complex neurons in the vertebrate brain which have spatially extensive dendritic tree structures that support large numbers of synapses. The circuit is primarily analog and, as in the biological model system, is virtually immune to process variations and other factors which often plague more conventional circuits. The nonlinear circuit is sensitive to both temporal and spatial signal characteristics but does not make use of the conventional neural network concept of weights, and as such does not use multipliers, adders, or other complex computational devices. As in biological neuronal circuits, a high degree of local connectivity is required. However, unlike biology, multiplexing of connections is done to reduce the number of conductors to a reasonable level for standard packages
Keywords
analogue computer circuits; neural chips; trees (mathematics); Si; analogue circuit; artificial passive dendritic tree; complex neurons; connections multiplexing; dynamic signals; electrical circuit architecture; local connectivity; multiplexing of connections; neural network; nonlinear circuit; pin out reduction; process variation immunity; signal classification; silicon; synapses; vertebrate brain; Biological neural networks; Biological system modeling; Brain modeling; Classification tree analysis; Immune system; Neurons; Nonlinear circuits; Signal processing; Silicon; Tree data structures;
fLanguage
English
Publisher
ieee
Conference_Titel
Neural Networks, 1992. IJCNN., International Joint Conference on
Conference_Location
Baltimore, MD
Print_ISBN
0-7803-0559-0
Type
conf
DOI
10.1109/IJCNN.1992.287143
Filename
287143
Link To Document