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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。. L' T1 Q c, u' P+ R( L
netlogo自带的social science--traffic grid这一例子当中,$ K# j- m4 [$ a; V
globals
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grid-x-inc ;; the amount of patches in between two roads in the x direction* k) E5 Y9 H+ u. ?
grid-y-inc ;; the amount of patches in between two roads in the y direction1 D) a W( {" S* n5 ?
acceleration ;; the constant that controls how much a car speeds up or slows down by if
' r6 {' ~+ E: t; O. c ;; it is to accelerate or decelerate
$ H. J6 r; {6 Y8 k: b( b phase ;; keeps track of the phase+ b6 G. e4 q+ U6 h! T
num-cars-stopped ;; the number of cars that are stopped during a single pass thru the go procedure% u) d% h9 n1 m7 x) w4 T. C( S
current-light ;; the currently selected light
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0 \. h6 {5 x& ?$ [$ r, O% l ;; patch agentsets
3 M3 z9 {' q* C$ X intersections ;; agentset containing the patches that are intersections: I! D7 r2 A; ]' ]1 `
roads ;; agentset containing the patches that are roads/ H8 w4 [$ G1 W0 i. L! d
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+ }5 S( |0 u: u% {2 L' x1 pturtles-own/ t) J3 f# t) U1 f/ ^' M% ?2 V$ P
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speed ;; the speed of the turtle
/ H. @4 {" i9 _1 N8 F9 [ up-car? ;; true if the turtle moves downwards and false if it moves to the right
" w# k" {/ Q* y$ Y u wait-time ;; the amount of time since the last time a turtle has moved/ e( B. m; B1 T4 r( [/ e
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patches-own6 ]+ e% C" ^/ t: I8 c" S, A9 x. D4 ]
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intersection? ;; true if the patch is at the intersection of two roads
# m0 H; {+ J5 c; g" ? green-light-up? ;; true if the green light is above the intersection. otherwise, false.0 n8 [" c+ B* s/ `) }8 \
;; false for a non-intersection patches.
6 j9 q7 K% k/ w2 T. X, s, A& p my-row ;; the row of the intersection counting from the upper left corner of the3 M% C/ {' I" g- T: }, R
;; world. -1 for non-intersection patches.7 y4 `: S' J7 s; r
my-column ;; the column of the intersection counting from the upper left corner of the9 A# ?% D' u- k4 B
;; world. -1 for non-intersection patches.
7 n7 L' d- @, U- X- R my-phase ;; the phase for the intersection. -1 for non-intersection patches.& q0 T" g; G+ P- X- L( n
auto? ;; whether or not this intersection will switch automatically.) w. ~! X T/ h. p
;; false for non-intersection patches.
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;;;;;;;;;;;;;;;;;;;;;;
E1 {+ B* C% V b6 t' g;; Setup Procedures ;;# }( k" d. q8 I; D! H
;;;;;;;;;;;;;;;;;;;;;;' X) P2 U) }/ `: T9 m% \, e. F
- Q% p$ G) S6 X9 M3 T: ~;; Initialize the display by giving the global and patch variables initial values.
. p2 `2 \7 T0 x5 c2 w5 \;; Create num-cars of turtles if there are enough road patches for one turtle to# e0 ]# }. V- j% h5 t
;; be created per road patch. Set up the plots.
: M- `9 L- B; Z: ~1 ~8 e' ?to setup- [* h5 f* g& n
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setup-globals
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+ c" y; _5 u5 } ;; First we ask the patches to draw themselves and set up a few variables
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make-current one-of intersections: y2 K3 [1 ~% w, t
label-current
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% R. C$ Z$ W# C: L9 W set-default-shape turtles "car"
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if (num-cars > count roads)1 V' Q _% n& P* ~
[
" X7 P2 C$ x& w _+ O user-message (word "There are too many cars for the amount of "
4 C/ ~; _1 k1 o "road. Either increase the amount of roads "# \$ p% o7 k! v- G
"by increasing the GRID-SIZE-X or "
2 c& X+ \6 W9 c5 b "GRID-SIZE-Y sliders, or decrease the "
- t0 d9 G1 O! a% Q- Y) k, L" [7 } "number of cars by lowering the NUMBER slider.\n"
! L4 N3 |& F: @* l! c n "The setup has stopped.")3 o( U/ M, C [ r
stop
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& H5 g2 X7 h7 `$ [ ;; Now create the turtles and have each created turtle call the functions setup-cars and set-car-color/ a: ~( e0 r9 h" l( N! d' o3 ]
crt num-cars' n0 |- d$ F( w( B
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setup-cars
3 t1 o0 T5 T8 |7 X set-car-color
8 O+ K+ `+ ?9 Y: f. p record-data
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1 a1 b# |7 X' j2 }* | ;; give the turtles an initial speed
* Q ~+ _0 W& ~& P7 x8 v' L ask turtles [ set-car-speed ]! H8 s0 o {& u' n i
1 d6 E. \6 ^0 [2 ] reset-ticks
. p4 b# @! x! P& I. b- mend
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$ ]! O' ?7 _/ A& v" ];; Initialize the global variables to appropriate values8 x# {5 L% @- J3 I8 }5 A. l9 u
to setup-globals0 A# C2 h* w7 A* l9 D3 A
set current-light nobody ;; just for now, since there are no lights yet
$ m; P: r6 D1 r7 T set phase 0
- i+ m& @, y; [3 ^; s set num-cars-stopped 0
$ ~0 l. E' |( N# J* S0 t# { set grid-x-inc world-width / grid-size-x
9 D4 E& a* T/ G9 E 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 boundary4 z1 r E/ s7 c$ j7 g! h0 [1 y7 e
set acceleration 0.099
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;; Make the patches have appropriate colors, set up the roads and intersections agentsets,
7 H/ d5 k+ i1 }- ];; and initialize the traffic lights to one setting% K8 H B+ D$ ~1 G x4 g4 P
to setup-patches: C: @" r( `) f2 N
;; initialize the patch-owned variables and color the patches to a base-color
! H1 w, h. f1 F1 \5 a3 o ask patches
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set intersection? false6 t) \# E- D) D- j7 Z, y: p( I# B
set auto? false: V! Y, l: [9 B @+ B( O
set green-light-up? true
5 X: s9 z! C6 O0 M4 U. M8 l set my-row -1
/ N/ s K( n! t. \/ J, w set my-column -1
% m* X5 d4 A7 g9 I- @ set my-phase -1 u' K( S; f/ K0 Q0 a- L
set pcolor brown + 39 Q1 i+ m: W( h' F) s
]
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;; initialize the global variables that hold patch agentsets* v& u* d& Z( P/ ]: u; s
set roads patches with
4 O' n0 t# o, r( r [(floor((pxcor + max-pxcor - floor(grid-x-inc - 1)) mod grid-x-inc) = 0) or
: Y9 q9 I* U- I6 B! w; j (floor((pycor + max-pycor) mod grid-y-inc) = 0)]2 y+ b# ^! w& w1 ^2 y
set intersections roads with2 |2 w9 G1 e9 `/ [. x
[(floor((pxcor + max-pxcor - floor(grid-x-inc - 1)) mod grid-x-inc) = 0) and8 |% Y( c) w: v5 Z( v6 o
(floor((pycor + max-pycor) mod grid-y-inc) = 0)]7 d8 Z; e7 q: _) p1 f/ k
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ask roads [ set pcolor white ]
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其中定义道路的句子,如下所示,是什么意思啊?
" [! z$ C& _* ~# t% M: m set roads patches with6 y6 P7 m& F$ e! I) Q4 y
[(floor((pxcor + max-pxcor - floor(grid-x-inc - 1)) mod grid-x-inc) = 0) or4 V9 m% H- @/ J8 o
(floor((pycor + max-pycor) mod grid-y-inc) = 0)]" w; A: @/ D ~0 d
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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