C++ Neural Networks and Fuzzy Logic: Preface


Network Nodes and Input Patterns



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C neural networks and fuzzy logic

Network Nodes and Input Patterns

Since our network has four neurons in it, it also has four nodes in the directed graph that represents the

network. These are laterally connected because connections are established from node to node. They are

lateral because the nodes are all in the same layer. We started with the patterns A = (1, 0, 1, 0) and B = (0, 1,

0, 1) as the exemplars. If we take any other nonzero pattern that is orthogonal to A, it will have a 1 in a

position where B also has a 1. So the new pattern will not be orthogonal to B. Therefore, the orthogonal set of

patterns that contains A and B can have only those two as its elements. If you remove B from the set, you can

get (at most) two others to join A to form an orthogonal set. They are the patterns (0, 1, 0, 0) and (0, 0, 0, 1).

If you follow the procedure described earlier to get the correlation matrix, you will get the following weight

matrix:


             0     −1      3      −1

W  =   −1      0     −1      −1

             3     −1      0      −1

            −1     −1     −1       0

C++ Neural Networks and Fuzzy Logic:Preface

Autoassociative Network

65



With this matrix, pattern A is recalled, but the zero pattern (0, 0, 0, 0) is obtained for the two patterns (0, 1, 0,

0) and (0, 0, 0, 1). Once the zero pattern is obtained, its own recall will be stable.




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