C++ Neural Networks and Fuzzy Logic: Preface


C++ Neural Networks and Fuzzy Logic



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C neural networks and fuzzy logic

C++ Neural Networks and Fuzzy Logic

by Valluru B. Rao

MTBooks, IDG Books Worldwide, Inc.



ISBN: 1558515526   Pub Date: 06/01/95

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Sample output from the program is shown below. Our input is in italic; computer output is not. The categories

defined by the graph in Figure 3.2 are entered in this example. Once the categories are set up, the first data

entry of 4.0 gets fuzzified to the accommodative category. Note that the memberships are also presented in

each category. The same value is entered again, and this time it gets fuzzified to the very accommodative

category. For the last data entry of 12.5, you see that only the very tight category holds membership for this

value. In all cases you will note that the memberships add up to 1.0.



fuzzfier

Please type in a category name, e.g. Cool

Enter one word without spaces

When you are done, type `done' :



v.accommodative

Type in the lowval, midval and highval

for each category, separated by spaces

 e.g. 1.0 3.0 5.0 :



0 3 6

Please type in a category name, e.g. Cool

Enter one word without spaces

When you are done, type `done' :



accommodative

Type in the lowval, midval and highval

for each category, separated by spaces

 e.g. 1.0 3.0 5.0 :



3 6 9

Please type in a category name, e.g. Cool

Enter one word without spaces

When you are done, type `done' :



tight

Type in the lowval, midval and highval

for each category, separated by spaces

 e.g. 1.0 3.0 5.0 :



5 8.5 12

Please type in a category name, e.g. Cool

Enter one word without spaces

When you are done, type `done' :



v.tight

C++ Neural Networks and Fuzzy Logic:Preface

Code for the Fuzzifier

48



Type in the lowval, midval and highval

for each category, separated by spaces

 e.g. 1.0 3.0 5.0 :

10 12 14

Please type in a category name, e.g. Cool

Enter one word without spaces

When you are done, type `done' :



done

===================================

==Fuzzifier is ready for data==

===================================

input a data value, type 0 to terminate

4.0

Output fuzzy category is ==> accommodative<==

category   membership

−−−−−−−−−−−−−−−−−−−−−−−−−−−−−

v.accommodative      0.666667

accommodative        0.333333

tight        0

v.tight      0

input a data value, type 0 to terminate

4.0

Output fuzzy category is ==> v.accommodative<==

category   membership

−−−−−−−−−−−−−−−−−−−−−−−−−−−−−

v.accommodative      0.666667

accommodative        0.333333

tight        0

v.tight      0

input a data value, type 0 to terminate

7.5

Output fuzzy category is ==> accommodative<==

category   membership

−−−−−−−−−−−−−−−−−−−−−−−−−−−−−

v.accommodative      0

accommodative        0.411765

tight        0.588235

v.tight      0

input a data value, type 0 to terminate

11.0

       Output fuzzy category is ==> tight<==

category   membership

−−−−−−−−−−−−−−−−−−−−−−−−−−−−−

v.accommodative      0

accommodative        0

tight        0.363636

v.tight      0.636364

input a data value, type 0 to terminate

C++ Neural Networks and Fuzzy Logic:Preface

Code for the Fuzzifier

49



12.5

Output fuzzy category is ==> v.tight<==

category   membership

−−−−−−−−−−−−−−−−−−−−−−−−−−−−−

v.accommodative      0

accommodative        0

tight        0

v.tight      1

input a data value, type 0 to terminate

0

All done. Have a fuzzy day !




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