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新手,在看netlogo自带的例子时,有几行程序看不懂,希望高手能够指点。$ J! O; w% `" i( e1 ]+ b
netlogo自带的social science--traffic grid这一例子当中,( E% r0 x$ r, J( c' p- L! ?* c
globals1 L: O1 f4 ?. d
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grid-x-inc ;; the amount of patches in between two roads in the x direction) V+ W5 M+ G' `3 C! ~
grid-y-inc ;; the amount of patches in between two roads in the y direction, E: U( o1 d7 Y# y4 e9 T
acceleration ;; the constant that controls how much a car speeds up or slows down by if
0 |9 M8 y3 F0 U ;; it is to accelerate or decelerate, i6 |7 w& @; G
phase ;; keeps track of the phase; f, z2 @, `5 \1 {1 f. u+ C5 _
num-cars-stopped ;; the number of cars that are stopped during a single pass thru the go procedure4 f: i8 O' k# M( t
current-light ;; the currently selected light" _. [$ f0 V/ b& N' U$ C- O
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;; patch agentsets
" ?- \0 \% i! E intersections ;; agentset containing the patches that are intersections
1 \: K' U5 c( n6 |9 R. x roads ;; agentset containing the patches that are roads+ w* a' H6 V: k! E& w4 G* g3 C7 \; E
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- W4 F# m" Z9 `4 U+ ^turtles-own
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speed ;; the speed of the turtle
3 @9 K) ?; k& P& v1 _ up-car? ;; true if the turtle moves downwards and false if it moves to the right
. _/ C) v/ r8 j8 \: y; h$ L+ a wait-time ;; the amount of time since the last time a turtle has moved
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Y) |! U, n% ?$ Q% v. N1 Apatches-own
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; x+ a: E/ |9 U+ R intersection? ;; true if the patch is at the intersection of two roads: {2 D" z9 Q& d4 j
green-light-up? ;; true if the green light is above the intersection. otherwise, false.# [' W: D8 l' q, u
;; false for a non-intersection patches.$ u( Y L8 R& o1 _* v! r
my-row ;; the row of the intersection counting from the upper left corner of the5 L! I( N$ ?6 N) c- s4 q. \. ~
;; world. -1 for non-intersection patches.
/ d4 A& r% \- Q' r my-column ;; the column of the intersection counting from the upper left corner of the& n, l% E8 y. O: D/ X% _8 x
;; world. -1 for non-intersection patches.
$ F' @8 S9 ^9 T. C# Z* H my-phase ;; the phase for the intersection. -1 for non-intersection patches.
( B G! Z. D( T auto? ;; whether or not this intersection will switch automatically.+ v$ l h4 |9 q3 h/ ~0 u
;; false for non-intersection patches.
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;;;;;;;;;;;;;;;;;;;;;;# K& D% |# {6 R o4 U
;; Setup Procedures ;;
2 E$ [6 F4 F S. a;;;;;;;;;;;;;;;;;;;;;;
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;; Initialize the display by giving the global and patch variables initial values.. G6 o: A# K; X0 b! |
;; Create num-cars of turtles if there are enough road patches for one turtle to
7 _9 M1 y% U1 w5 F;; be created per road patch. Set up the plots.4 ?" x8 k& a0 N7 s! u6 U
to setup k& K& C2 H. b% l$ B: t
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setup-globals9 J+ B; v) p8 h+ F* M* X
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;; First we ask the patches to draw themselves and set up a few variables
1 X! U# D1 V! U0 u0 C setup-patches* L2 Y8 T1 E2 x" {
make-current one-of intersections9 k& B+ v) n) d4 s& Z) \* c
label-current& b& a1 J% m7 X
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set-default-shape turtles "car"
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+ Z0 G; `& n H# j if (num-cars > count roads)
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user-message (word "There are too many cars for the amount of "
- L; ^: ~0 N f. l6 m/ y0 a( d n' q "road. Either increase the amount of roads "' t2 G$ o7 D6 Q$ L3 D
"by increasing the GRID-SIZE-X or "$ {% _+ E9 Y, A8 C; o6 N9 S
"GRID-SIZE-Y sliders, or decrease the "! q$ z1 T+ N1 E1 H9 E
"number of cars by lowering the NUMBER slider.\n"
! b9 m/ r1 u5 t& r "The setup has stopped.")
* W+ Q& N1 [! I stop
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& N, E$ Z% p% C- [& O ;; Now create the turtles and have each created turtle call the functions setup-cars and set-car-color0 c% ^# j/ Y5 p/ T/ r1 ?
crt num-cars. W& a" u! ~1 Y* |8 B
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6 I0 ?" \4 x9 D I! r1 R, D setup-cars1 @" H7 P* ~ p- P6 z( m) H8 T
set-car-color
/ X" p/ G8 M, d. |% s4 I! R) _ record-data
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;; give the turtles an initial speed5 g0 M+ O6 d2 P2 e
ask turtles [ set-car-speed ]
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@( x* g1 G4 \# @8 W! M2 T" c reset-ticks
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! R0 M/ A$ @( z0 t7 ]! n# j/ I;; Initialize the global variables to appropriate values! ]% p. c$ n/ |9 t+ @
to setup-globals$ a5 N( j# O2 r3 P0 t. R
set current-light nobody ;; just for now, since there are no lights yet8 K1 H W( F6 }3 r/ O: W+ G* @2 i
set phase 0
' P9 q ] v% ?+ _" p+ S set num-cars-stopped 09 M0 | f8 }* X
set grid-x-inc world-width / grid-size-x( n$ R4 A9 O/ a9 w, e' N2 a
set grid-y-inc world-height / grid-size-y
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;; don't make acceleration 0.1 since we could get a rounding error and end up on a patch boundary, I8 F& D/ e* Q0 Z* K a
set acceleration 0.099
& k, W. @+ e& ?0 hend
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5 T, J+ v8 M) x/ {) j;; Make the patches have appropriate colors, set up the roads and intersections agentsets,7 j1 Y5 t8 ?% f2 }" ?7 k
;; and initialize the traffic lights to one setting C% V3 r3 h! z2 f" C
to setup-patches
+ C7 E' \, p- p ;; initialize the patch-owned variables and color the patches to a base-color
& W6 G s! o" u, j; q1 L: D& s$ }: o ask patches
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. N/ o0 Z9 x+ k' } set intersection? false
" b z9 ?+ B0 V) y/ Z set auto? false
v% |' y& e7 [ set green-light-up? true) j7 Z% w0 S5 B/ B# }' M
set my-row -1
4 x( {; |2 C: j3 K; O, T set my-column -1+ H) A7 c& {2 v, U' S( e- M
set my-phase -1
6 X. f, s) W4 f( j! b' z set pcolor brown + 3
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;; initialize the global variables that hold patch agentsets7 M/ u/ D% q0 p
set roads patches with# V G5 F- I) K& t! o
[(floor((pxcor + max-pxcor - floor(grid-x-inc - 1)) mod grid-x-inc) = 0) or
C7 j: y5 J3 y% ~6 j9 M) B (floor((pycor + max-pycor) mod grid-y-inc) = 0)]# A" |1 H6 B) G. v! p
set intersections roads with& x5 E6 D' Z3 n9 B$ B! F
[(floor((pxcor + max-pxcor - floor(grid-x-inc - 1)) mod grid-x-inc) = 0) and
8 a1 M; K9 T: W+ V8 e (floor((pycor + max-pycor) mod grid-y-inc) = 0)], }) s" k& R; \- A
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ask roads [ set pcolor white ]2 m4 O$ ~" X2 p8 U( `, a
setup-intersections+ o3 t* B9 G. E% a& ^0 e' U
end) ^# e1 L+ l- r2 N0 H. L. N' r
其中定义道路的句子,如下所示,是什么意思啊?
* j4 n, g M/ w( u set roads patches with
5 Y1 F( Z6 O4 u: H! C9 q1 c [(floor((pxcor + max-pxcor - floor(grid-x-inc - 1)) mod grid-x-inc) = 0) or6 b- N# ^* b0 z$ b9 X1 N
(floor((pycor + max-pycor) mod grid-y-inc) = 0)]8 s. l! P l+ O V" Q S7 Z
谁能帮我解释一下[(floor((pxcor + max-pxcor - floor(grid-x-inc - 1)) mod grid-x-inc) = 0)是什么意思吗? |
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