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biased_trust.nlogo
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biased_trust.nlogo
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globals [biasSTD s alpha]
turtles-own [
myjudg ; my judgment (signal + bias + noise)
p ; my estimated probability of response 1
myconf ; my confidence in my percept (always > 0.5)
myconf2; my confidence after interaction
myacc ; my accuracy
mybiasty ; my bias type
mybias ; my bias mean
myslope ; slope of the confidence sigmoid function
n ;; noise
b ;; trial-level bias
interact ;; interacting turtle
]
links-own [
trust
]
patches-own []
to setup
ca
crt npopulation
[
set shape "Person"
set color blue
set heading 0
set size 20 / npopulation
set myslope random-float 1
set mybiasty random 2
ifelse mybiasty = 0
[
set color green
set mybias (- bias)
]
[
set color red
set mybias bias
]
create-links-from other turtles
]
layout-circle sort-on [color] turtles 8
set alpha 0.01
reset-ticks
end
to go
repeat 1000 [
tick
set s (random-float 1) - 0.5
ask turtles [
make-private-decision
]
ask turtles [
update-trust
]
if biased_advisor_sampling [
ask turtles [
sample-advisor]
ask turtles [
update-confidence]
ask turtles [
update-bias
]
]
]
end
to make-private-decision
set n random-normal 0 noise ; noise
set b random-normal mybias 1
set myjudg (s + b + n) ;; my judgment = signal + bias + noise
set p sigmoid myjudg myslope 0 1
set myconf 0.5 + abs(p - 0.5)
ifelse (myjudg > 0) = (s > 0)
[set myacc 1]
[set myacc 0]
end
to update-trust
ask my-out-links [
let outcome pcorr
set trust (trust + (delta outcome trust))
set thickness trust / 2
]
end
to sample-advisor
let ids [] ; initialize ids to an empty list
let weights [] ; initialize weights to an empty list
ask other turtles [
set ids lput who ids
set weights lput [trust] of link [who] of myself who weights
]
;show ids
;show weights
set interact turtle random-weighted ids weights ; choose interacting turtle by probability matching based on trust
end
to update-confidence
let agree (myacc = ([myacc] of interact)); agreement with interacting turtle
ifelse agree
[set myconf2 bayes myconf [myconf] of interact]
[set myconf2 bayes myconf (1 - [myconf] of interact)]
end
to update-bias
;sign(sign([myjudg] of interact) * sign(myjudg)) * abs([myjudg] of interact - myjudg))
let influence myconf2 - myconf
set mybias (mybias + (sign myjudg) * sigmoid influence 10 -0.5 0.5)
end
;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
; delta learning rule
to-report delta [observed expected] ; delta rule
report alpha * (observed - expected)
end
; probability that your partner is correct. For feedback cases this is real partner's accuracy; for no feedback cases this is estimated probability correct
to-report pcorr
ifelse feedback
[report [myacc] of end2] ;; with feedback
[
ifelse (([myacc] of end2) = ([myacc] of end1)); agreement
[report ([myconf] of end1)]
[report (1 - [myconf] of end1)]
] ;; with no feedback
;[
; let p1 [myconf] of end2
; let p2 [myconf] of end1
; bayes p1 p2] ; with no feedback
end
; Bayes theorem given two probabilities
to-report bayes [p1 p2]
report (p1 * p2) / ((p1 * p2) + ((1 - p1) * (1 - p2))) ;; with no feedback
end
; sigmoid function value with a given slope
to-report sigmoid [x slope lo hi]
report lo + ((hi - lo) / (1 + e ^ (- slope * x)))
end
; report the bias of turtle at the end of a given link
to-report end2bias
report [mybias] of end2
end
; select a value in values with probability distribution equal to weights
to-report random-weighted [values weights_raw]
let weights [] ; normalised weights (add up to 1)
foreach weights_raw [ ?1 -> set weights lput (?1 / sum weights_raw) weights ]
let selector (random-float sum weights)
let running-sum 0
(foreach values weights [ [?1 ?2] ->
set running-sum (running-sum + ?2)
if (running-sum > selector) [
report ?1
]
])
end
to-report sign [value]
ifelse value > 0 [report 1]
[ifelse value = 0 [report 0] [report -1]]
end
; make bias on each trial dependent on the previous trial interaction: if you interacted equally with everybody you should see convergence of bias to 0, but if you interact more with your bias population you expect to not converge
; if one person does not change where the final bias converge to?
@#$#@#$#@
GRAPHICS-WINDOW
318
8
859
550
-1
-1
16.152
1
10
1
1
1
0
1
1
1
-16
16
-16
16
1
1
1
ticks
30.0
SLIDER
18
21
190
54
npopulation
npopulation
0
100
10.0
1
1
NIL
HORIZONTAL
BUTTON
883
18
955
51
Setup
setup
NIL
1
T
OBSERVER
NIL
NIL
NIL
NIL
1
SWITCH
19
77
189
110
feedback
feedback
0
1
-1000
BUTTON
884
66
956
99
Go
go
NIL
1
T
OBSERVER
NIL
NIL
NIL
NIL
1
SLIDER
19
130
191
163
bias
bias
0
5
3.0
0.5
1
NIL
HORIZONTAL
SLIDER
20
188
192
221
noise
noise
0.01
5
0.01
0.2
1
NIL
HORIZONTAL
PLOT
988
25
1159
179
mean judgment
time
NIL
0.0
10.0
-10.0
10.0
true
false
"" ""
PENS
"red judgement" 1.0 0 -16777216 true "" "plot mean [myjudg] of turtles with [color = red]"
"green judgment" 1.0 0 -7500403 true "" "plot mean [myjudg] of turtles with [color = green]"
"pen-2" 1.0 0 -2674135 true "" "if ticks = 500 [\n plot-pen-up\n plotxy ticks plot-y-min\n plot-pen-down\n plotxy ticks plot-y-max\n]"
PLOT
987
188
1159
337
mean bias
NIL
NIL
0.0
10.0
-10.0
10.0
true
false
"" ""
PENS
"red bias" 1.0 0 -16777216 true "" "plot mean [mybias] of turtles with [color = red]"
"green bias" 1.0 0 -7500403 true "" "plot mean [mybias] of turtles with [color = green]"
"pen-2" 1.0 0 -2674135 true "" "if ticks = 500 [\n plot-pen-up\n plotxy ticks plot-y-min\n plot-pen-down\n plotxy ticks plot-y-max\n]"
PLOT
1173
24
1340
178
mean confidence
NIL
NIL
0.0
10.0
0.0
1.0
true
false
"" ""
PENS
"red confidence " 1.0 0 -16777216 true "" "plot mean [myconf] of turtles with [color = red]"
"green confidence" 1.0 0 -7500403 true "" "plot mean [myconf] of turtles with [color = green]"
"pen-2" 1.0 0 -2674135 true "" "if ticks = 500 [\n plot-pen-up\n plotxy ticks plot-y-min\n plot-pen-down\n plotxy ticks plot-y-max\n]"
PLOT
1175
188
1341
338
bias STD
time
std bias
0.0
10.0
0.0
10.0
true
false
"" ""
PENS
"default" 1.0 0 -16777216 true "" "plot standard-deviation [mybias] of turtles"
"pen-1" 1.0 0 -2674135 true "" "if ticks = 500 [\n plot-pen-up\n plotxy ticks plot-y-min\n plot-pen-down\n plotxy ticks plot-y-max\n]"
SWITCH
20
237
255
270
biased_advisor_sampling
biased_advisor_sampling
0
1
-1000
@#$#@#$#@
## WHAT IS IT?
(a general understanding of what the model is trying to show or explain)
## HOW IT WORKS
(what rules the agents use to create the overall behavior of the model)
## HOW TO USE IT
(how to use the model, including a description of each of the items in the Interface tab)
## THINGS TO NOTICE
(suggested things for the user to notice while running the model)
## THINGS TO TRY
(suggested things for the user to try to do (move sliders, switches, etc.) with the model)
## EXTENDING THE MODEL
(suggested things to add or change in the Code tab to make the model more complicated, detailed, accurate, etc.)
## NETLOGO FEATURES
(interesting or unusual features of NetLogo that the model uses, particularly in the Code tab; or where workarounds were needed for missing features)
## RELATED MODELS
(models in the NetLogo Models Library and elsewhere which are of related interest)
## CREDITS AND REFERENCES
(a reference to the model's URL on the web if it has one, as well as any other necessary credits, citations, and links)
@#$#@#$#@
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true
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airplane
true
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bug
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butterfly
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car
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circle
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cylinder
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face neutral
false
0
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Circle -16777216 true false 180 75 60
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face sad
false
0
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Circle -16777216 true false 180 75 60
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fish
false
0
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Circle -16777216 true false 215 106 30
flag
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0
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Line -7500403 true 75 135 90 135
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Circle -16777216 true false 113 68 74
Polygon -10899396 true false 189 233 219 188 249 173 279 188 234 218
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house
false
0
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Polygon -7500403 true true 15 120 150 15 285 120
Line -16777216 false 30 120 270 120
leaf
false
0
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Polygon -7500403 true true 135 195 135 240 120 255 105 255 105 285 135 285 165 240 165 195
line
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line half
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pentagon
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person
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Rectangle -7500403 true true 127 79 172 94
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Polygon -7500403 true true 105 90 60 150 75 180 135 105
plant
false
0
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Polygon -7500403 true true 135 255 90 210 45 195 75 255 135 285
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sheep
false
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Circle -7500403 true false 214 72 67
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square
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star
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tree
false
0
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triangle
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