globals [ stop-sim g-age g-distance-traveled restriction-kilometers ;; total kilometers of restrictions restriction-count ;; number of restrictions restriction-positions ;; list of restriction start positions delay-ticks-normal delay-ticks-traf delay-time-normal delay-time-traf delay-time-200 ] breed [ trucks truck ] breed [ cars car ] patches-own [ placex placey restricted? bumper? closed? ] cars-own [ driver-type ;; "slow" or "normal" or "aggressive" current-speed ;; speed of the vehicle distance-traveled delay id ] trucks-own [ driver-type ;; "slow" or "normal" or "aggressive" current-speed ;; speed of the vehicle distance-traveled delay id ] ;; Setup procedure to setup clear-all reset-ticks setup-patches set-default-shape cars "car" set-default-shape trucks "truck" setup-cars setup-trucks set stop-sim false set g-distance-traveled 0 resize-world 0 (D-lenght * 50) 0 4 end to go move ask turtles with [id = 1] [ if g-distance-traveled >= max-pxcor[ set stop-sim true ] ] if stop-sim = true [ let delay-t-n ((((D-lenght - Number-of-km-rest) * 50 / 1.3) + (Number-of-km-rest * 50 / 0.8)) - ((D-lenght * 50) / 1.3)) let delay-t-tr (g-age - (((D-lenght - Number-of-km-rest) * 50) / 1.3) - (((Number-of-km-rest) * 50) / 0.8)) set delay-ticks-normal floor delay-t-n set delay-ticks-traf floor delay-t-tr set delay-time-normal ((((D-lenght - Number-of-km-rest) / 1.3) + (Number-of-km-rest / 0.8)) - ((D-lenght) / 1.3)) * 0.6 set delay-time-traf (g-age * (((D-lenght - Number-of-km-rest) / 1.30) + (Number-of-km-rest / 0.80) ) * 0.60) / (g-age - delay-t-tr) - ((((D-lenght - Number-of-km-rest) / 1.30) + (Number-of-km-rest / 0.80) ) * 0.60) if delay-ticks-traf = 0[ set delay-time-traf 0 ] set delay-time-200 (delay-time-traf) * (200 / D-lenght) stop ] set g-age g-age + 1 tick end ;; Setup patches to represent the highway and restrictions to setup-patches ask patches [ set restricted? false set closed? false set bumper? false ] ask patches with [pycor <= 3 and pycor >= 1] [ set pcolor grey ] setup-restritions setup-counting-car end to setup-restritions if Number-of-restrictions = 0 or Number-of-km-rest = 0[ stop ] let maxpatches (D-lenght * 50) let all-rest-lenght (Number-of-km-rest * 50) let rest-lenght (all-rest-lenght / Number-of-restrictions) let counter 1 repeat Number-of-restrictions [ let rest-start (maxpatches * (counter / (Number-of-restrictions + 1))) ask patches with [pxcor <= (rest-start + rest-lenght) and pxcor >= rest-start and (pycor = 1 )] [ set closed? true set pcolor red ] ask patches with [pxcor <= (rest-start + rest-lenght) and pxcor >= rest-start and (pycor = 3 or pycor = 2)] [ set restricted? true set pcolor yellow ] ask patches with [(pycor = 1 ) and pxcor <= (rest-start) and pxcor >= (rest-start - 5)] [ set bumper? true set pcolor blue ] set counter counter + 1 ] end ;Pouze pro fixní omezení (nepoužívá se) to setup-restrictions-fixed ask patches with [pycor <= 3 and pycor >= 1] [ set pcolor green ] ask patches with [pxcor <= 100 and pxcor >= 10 and pycor = 1] [ set closed? true set pcolor red ] ask patches with [pxcor <= 100 and pxcor >= 10 and (pycor = 2 or pycor = 3)] [ set restricted? true set pcolor yellow ] ask patches with [pycor = 1 and pxcor <= 9 and pxcor >= 5] [ set bumper? true set pcolor blue ] end ;Simulované auto (počítací) to setup-counting-car create-cars 1 [ set color violet set heading 90 setxy 1 2 set g-age 0 set driver-type 1 set current-speed (1.3) set id 1 set distance-traveled 0 ] end to setup-cars create-cars All-cars * 0.01 * (100 - Truck-percentage ) [ set color (random 13 + 1) * 10 + 3 set heading 90 setxy random-pxcor random 2 + 2 set current-speed 1 let random-number random 100 ifelse random-number < Agressive-percentage [ set driver-type 2 set current-speed (1.5 + (random-float 0.2)) ] [ifelse random-number >= Agressive-percentage and random-number < 65 [ set driver-type 1 set current-speed (1.2 + (random-float 0.2))] [set driver-type 0 set current-speed (1 + (random-float 0.15))]] ] end to setup-trucks let number-trucks All-cars * 0.01 * Truck-percentage create-trucks number-trucks [ set color (random 13 + 1) * 10 + 3 set heading 90 setxy random-pxcor 1 let random-number random 100 ifelse random-number < Agressive-percentage [ set driver-type 2 set current-speed (1 + (random-float 0.1)) ] [ifelse random-number >= Agressive-percentage and random-number < 65 [ set driver-type 1 set current-speed (0.9 + (random-float 0.1))] [set driver-type 0 set current-speed (0.8 + (random-float 0.1))]] if [closed?] of patch xcor ycor = true or [bumper?] of patch xcor ycor = true [ set ycor 2 ] ] end to-report free_road [t d] let t-x [xcor] of t let t-y [ycor] of t ; Zkontrolujeme želvy okolo let turtles-in-distance turtles with [ distancexy t-x t-y <= d and self != t and ycor = t-y ] ;; Zkontrolujeme, jestli je některá z těchto želv ve směru "před" report not any? turtles-in-distance with [ xcor > [xcor] of t and ycor = [ycor] of t ] end to-report free_road_up [t d] let t-x [xcor] of t let t-y [ycor] of t let turtles-in-distance turtles with [ distancexy t-x t-y + 1 <= d and self != t ] ;; Zkontrolujeme, jestli je některá z těchto želv ve směru "před" a nahoře report not any? turtles-in-distance with [ xcor > [xcor] of t and ycor = t-y + 1] end to move ask cars [ let speed current-speed let can-move false let myxcor xcor let myycor ycor let freeRoad? true let s self ;Zkontrolujeme zda je volna cesta před náma a nejedná se o bumper ifelse patch-ahead speed != nobody and bumper? = false and free_road s speed[ ;Pokud se jedná o omezení, pojedeme pomaleji if [restricted?] of patch-here = true [ jump 0.8 if id = 1 [ set g-distance-traveled g-distance-traveled + 0.8 ] stop] ;Zkontrolujeme jestli se náhodou nemůžeme posunout do "pomalejšího" pruhu ifelse ycor = 3 and not any? turtles with [xcor >= myxcor and xcor <= myxcor + 5 and ycor = (myycor - 1)] [ right 90 jump 1 left 90 jump speed ] [ jump speed ] if id = 1 [ set g-distance-traveled g-distance-traveled + speed ] ] [ ; Zjištění, jestli nemůžeme překážku objet if (patch-ahead speed != nobody) and ((bumper? = true) or not free_road s speed) and free_road_up s speed [ if patch-left-and-ahead 90 1 != nobody and not any? turtles-on patch-left-and-ahead 90 1 and (ycor <= 2) [ left 90 jump 1 right 90 jump speed if id = 1 [ set g-distance-traveled g-distance-traveled + speed ] ] ] ] ] ask trucks [ let speed current-speed let can-move false let s self ;Zkontrolujeme zda je volna cesta před náma a nejedná se o bumper ifelse patch-ahead speed != nobody and bumper? = false and free_road s speed [ let myxcor xcor let myycor ycor ;Pokud se jedná o omezení, pojedeme pomaleji if restricted? = true [ jump 0.65 stop ] ;Zkontrolujeme jestli se náhodou nemůžeme posunout do "pomalejšího" pruhu ifelse ycor = 2 and not any? turtles with [xcor > myxcor and xcor <= myxcor + 5 and ycor = (myycor - 1)] and [bumper?] of patch myxcor (myycor - 1) = false and [closed?] of patch myxcor (myycor - 1) = false [ right 90 jump 1 left 90 jump speed ] [ jump speed ] ] [ ; Zjištění, jestli nemůžeme překážku objet if (patch-ahead speed != nobody) and (bumper? = true or not free_road s speed ) and free_road_up s speed [ if patch-left-and-ahead 90 1 != nobody and not any? turtles-on patch-left-and-ahead 90 1 and (pycor <= 1) [ left 90 jump 1 right 90 jump speed ] ] ] ] end ;; Place a restriction on the highway @#$#@#$#@ GRAPHICS-WINDOW 210 10 1531 84 -1 -1 13.0 1 10 1 1 1 0 1 1 1 0 100 0 4 0 0 1 ticks 30.0 BUTTON 134 10 198 43 Setup setup NIL 1 T OBSERVER NIL NIL NIL NIL 1 BUTTON 133 59 196 92 Go go T 1 T OBSERVER NIL NIL NIL NIL 1 INPUTBOX 236 115 465 175 All-cars 10.0 1 0 Number INPUTBOX 506 114 661 174 Truck-percentage 28.0 1 0 Number INPUTBOX 682 113 837 173 Agressive-percentage 5.0 1 0 Number INPUTBOX 856 112 1089 172 D-lenght 2.0 1 0 Number INPUTBOX 236 198 391 258 Number-of-restrictions 1.0 1 0 Number INPUTBOX 415 198 570 258 Number-of-km-rest 0.5 1 0 Number MONITOR 239 271 314 316 Time (ticks) g-age 17 1 11 MONITOR 329 273 402 318 Sim stoped stop-sim 17 1 11 MONITOR 415 274 536 319 Distance traveled g-distance-traveled 17 1 11 BUTTON 132 107 195 140 NIL Go NIL 1 T OBSERVER NIL NIL NIL NIL 1 MONITOR 590 196 808 241 Delay (ticks) because of only restrictions delay-ticks-normal 17 1 11 MONITOR 858 195 1093 240 Delay (ticks) because of only traffic delay-ticks-traf 17 1 11 MONITOR 590 257 820 302 Delay (minutes) because of only restrictions delay-time-normal 17 1 11 MONITOR 860 257 1114 302 Delay (minutes) because of only traffic delay-time-traf 17 1 11 BUTTON 8933 112 8996 145 NIL Go NIL 1 T OBSERVER NIL NIL NIL NIL 1 BUTTON 9026 119 9089 152 NIL Go T 1 T OBSERVER NIL NIL NIL NIL 1 BUTTON 8793 111 8857 144 NIL Setup NIL 1 T OBSERVER NIL NIL NIL NIL 1 MONITOR 655 327 1037 372 Delay time on 200 km based on calculated delay of simulated chunk delay-time-200 17 1 11 @#$#@#$#@ ## 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, 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