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Table 4.1 Formalized generalized result of the evaluation
μ
Defuzzification M
M
Scale level
μ
(0,6790;0,7630;0,1750;0,1580)
0,7158
5
1
μ
(0,4380;0,4545;0,1750;0,1750)
0,4462
4
2
μ
(0;0,0457;0;0,0916)
0,0469
1
3
μ
(0,6790;0,7630;0,1750;0,1580)
0,7158
5
4
μ
(0,1798;0,1880;0,01085;0,1250)
0,1893
2
5
μ
(0,5040;0,1580;0,1750)
0,5040
4
6
μ
(0,0623;0,1125;0,0415;0,1250)
0,1127
2
7
μ
(0,9210;1;0,1580;0)
0,9171
6
8
μ
(0,57590;0,6225;0,1750;1830)
0,6047
5
9
μ
(0,2875;0,3290;0,1250;0,1750)
0,3240
3
10
μ
(0,1373;0,1625;0,0916;0,1250)
0,1605
2
11
μ
(0,6790;0,7630;0,1750;0,1580)
0,7158
5
12
μ
(0,9210;1;0,1580;0)
0,9171
6
13
μ
(0,6295;0,7053;0,1750;0,1415)
0,6571
5
14
μ
(0,1803;0,2218;0,0755;0,1584)
0,2267
2
15
μ
(0,5040;0,1580;0,1750)
0,5040
4
16
μ
(012450;0,3035;0,1080;0,1750)
0,2949
3
17
μ
(0,8658;0,9745;0,1665;0,1700)
0,8769
6
18
μ
(0,8658;0,9745;0,1665;0,1700)
0,8769
6
19
μ
(0,2450;0,3035;0,1080;0,1750)
0,2949
3
20
R
Table 4.2 Weight coefficients of expert results within the limits of similarity relation
2
Confidence
level
Weight coefficients
0.684
ω
=
1
/
3
i
=
1
1
ω
=
1
/
6
ω
=
ω
=
5
/
12
0.685
1
2
3
ω
=
1
/
6
ω
=
1
/
2
ω
=
1
/
3
1
1
2
3
Let us define the formalized generalized approach to an evaluation of the
“large-leaved linden” plants state:
. Based on the
values of weight coefficients of expert results, let us define the formalized
generalized approach of experts to an evaluation of the “large-leaved linden”
plants state, which has the following membership functions:
1
/
3
ω
=
1
/
6
,
,
ω
=
1
/
2
3
1
2
 
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