Recall application of fuzzy logic to the weapon selection implementation. Assume the following fuzzy linguistic variables (FLVs): a) Desirability = {Undesirable, Desirable, VeryDesirable} b) TargetDistance = {TargetClose, TargetMedium, TargetFar} c) AmmoLoad = {AmmoLow, AmmoOkay, AmmoHigh} 4a. Provide a reasonable diagram of 3 superimposed fuzzy set membership functions for FLV AmmoLoad for a shotgun assuming that 40 rounds is a high ammo load (like in the textbook). They should follow the guidelines for a membership function selection. X axis – ammo load; Y axis - membership degree from 0 to 1. (The membership functions for FLV AmmoLoad are AmmoLow, AmmoOkay, AmmoHigh).
Recall application of fuzzy logic to the weapon selection implementation. Assume the following fuzzy linguistic variables (FLVs): a) Desirability = {Undesirable, Desirable, VeryDesirable} b) TargetDistance = {TargetClose, TargetMedium, TargetFar} c) AmmoLoad = {AmmoLow, AmmoOkay, AmmoHigh} 4a. Provide a reasonable diagram of 3 superimposed fuzzy set membership functions for FLV AmmoLoad for a shotgun assuming that 40 rounds is a high ammo load (like in the textbook). They should follow the guidelines for a membership function selection. X axis – ammo load; Y axis - membership degree from 0 to 1. (The membership functions for FLV AmmoLoad are AmmoLow, AmmoOkay, AmmoHigh).
Database System Concepts
7th Edition
ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
Problem 1PE
Related questions
Question
Recall application of fuzzy logic to the weapon selection implementation.
Assume the following fuzzy linguistic variables (FLVs):
a) Desirability = {Undesirable, Desirable, VeryDesirable}
b) TargetDistance = {TargetClose, TargetMedium, TargetFar}
c) AmmoLoad = {AmmoLow, AmmoOkay, AmmoHigh}
4a. Provide a reasonable diagram of 3 superimposed fuzzy set
membership functions for FLV AmmoLoad for a shotgun assuming that 40 rounds is a
high ammo load (like in the textbook). They should follow the guidelines for a
membership function selection. X axis – ammo load; Y axis - membership degree from 0
to 1. (The membership functions for FLV AmmoLoad are AmmoLow, AmmoOkay,
AmmoHigh).
membership functions for FLV AmmoLoad for a shotgun assuming that 40 rounds is a
high ammo load (like in the textbook). They should follow the guidelines for a
membership function selection. X axis – ammo load; Y axis - membership degree from 0
to 1. (The membership functions for FLV AmmoLoad are AmmoLow, AmmoOkay,
AmmoHigh).

Transcribed Image Text:Client
FuzzyModule
-m Variables: map<string, FuzzyVariable>
-m_Rules: vector<FuzzyRule">
-RunRules()
+CreateFLV(): FuzzyVariable&
+AddRule(FuzzyTerm&, FuzzyTerm&)
+Fuzzify(string name, double val)
+Defuzzify(string name): double
*
m Variables
FuzzyVariable
-m_MemberSets: map<string, FuzzySet">
-m_dMinRange
-m_dMaxRange
+GetDOM()
+ClearDOM()
+ORwithDOM(double)
FuzzySet_Triangle
+CalculateDOM(float): double
FzOR
Clone()
GetDOM()
ClearDOM()
ORwithDOM(double val)
+AddTriangularSet(string, double, double, double): FzSet
+AddRightShoulderSet(string, double, double, double): FzSet
+AddLeftShoulderSet(string, double, double, double): FzSet
+AddSingletonSet(string, double, double, double): FzSet
+Fuzzify(double)
+DefuzzifyMaxAv(): float
+DefuzzifyCentroid(): float
m_Rules
*
FuzzySet_RightShoulder
+CalculateDOM(double): double
+GetDOM()
+ClearDOM()
+ORwithDOM(double)
Clone()
GetDOM()
ClearDOM()
ORwithDOM(double val)
FZAND
FuzzyTerm
*Clone()
m_MemberSetsm_dDOM
*
GetDOMO
ClearDOM()
ORwithDOM(double)
2
FuzzyRule
-m_pAntecedent: FuzzyTerm"
-m_pConsequent: FuzzyTerm*
+Calculate()
FuzzySet
m_dRepresentativeValue
+CalculateDOM(double): double
+GetDOM()
+ClearDOM()
+ORwithDOM(double)
FuzzySet_LeftShoulder
+CalculateDOM(double): double
+GetDOM()
+ClearDOM()
+ORwithDOM(double)
FzVery
Clone()
GetDOM()
ClearDOMO
ORwithDOM (double val)
FzSet
Clone()
GetDOM()
ClearDOM()
ORwithDOM (double val)
FzFairly
Clone()
GetDOM()
ClearDOM()
ORwithDOM(double val)
Proxy for
Fuzzy Set_Singleton
+CalculateDOM(double): double
+GetDOM()
+ClearDOM()
+ORwithDOM(double)
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