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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。! H2 n+ _9 I1 E. a3 M/ [3 ]
netlogo自带的social science--traffic grid这一例子当中,
& }7 S, k. l) ~$ x Bglobals
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grid-x-inc ;; the amount of patches in between two roads in the x direction6 I$ C t. g8 \2 G
grid-y-inc ;; the amount of patches in between two roads in the y direction
" A; y% u& f# g! O( I9 R! N5 c acceleration ;; the constant that controls how much a car speeds up or slows down by if/ h8 M% ]0 g: J' e! h3 G# E( b/ c: n
;; it is to accelerate or decelerate+ ]# |2 ^/ R" i0 x/ f4 @% K
phase ;; keeps track of the phase; |3 b0 _$ k7 C [% T& ~: j
num-cars-stopped ;; the number of cars that are stopped during a single pass thru the go procedure/ n0 `4 r* i s6 q3 n
current-light ;; the currently selected light
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3 D( G& V& T# L ;; patch agentsets
- R4 H8 ^! i: A6 }& [ intersections ;; agentset containing the patches that are intersections
1 t- H# ~# u) c' A6 t roads ;; agentset containing the patches that are roads$ v: L# r w4 c
]
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. ]% }$ u$ u }turtles-own
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* |2 w W% U9 e- l1 q$ J* P speed ;; the speed of the turtle7 q/ X% y8 U% z4 Q' ~
up-car? ;; true if the turtle moves downwards and false if it moves to the right) u1 H2 @3 l" q3 w
wait-time ;; the amount of time since the last time a turtle has moved
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patches-own
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intersection? ;; true if the patch is at the intersection of two roads# K* D! ?3 k/ q& s5 T
green-light-up? ;; true if the green light is above the intersection. otherwise, false.2 `2 ^$ v3 X& J: b Y8 e4 Q+ _
;; false for a non-intersection patches.
9 ^9 h- ~. U% H4 M# k, K. N my-row ;; the row of the intersection counting from the upper left corner of the
4 N# I2 \9 t- H- k- y ;; world. -1 for non-intersection patches.
% ~4 _8 B3 A6 @: `& G my-column ;; the column of the intersection counting from the upper left corner of the) Y6 B7 U" [% v) a
;; world. -1 for non-intersection patches.& w6 O8 S* \) a$ c
my-phase ;; the phase for the intersection. -1 for non-intersection patches.+ C0 E- z/ u6 ]
auto? ;; whether or not this intersection will switch automatically.$ {1 n9 l* \. |' Q/ t4 _9 c
;; false for non-intersection patches.3 V, Y2 Z# B2 C$ i. [
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;;;;;;;;;;;;;;;;;;;;;;
" t9 U! D7 ~+ \;; Setup Procedures ;;0 C) a& s' t7 E
;;;;;;;;;;;;;;;;;;;;;;
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% t8 p4 ]+ [1 b6 H$ P;; Initialize the display by giving the global and patch variables initial values.7 b! [/ p! P3 j/ l+ t% q
;; Create num-cars of turtles if there are enough road patches for one turtle to* V) `; e5 s$ L3 I, o2 F
;; be created per road patch. Set up the plots.& q7 m$ {; ~+ ]* b
to setup8 X, N8 h4 D5 Q" }: p+ c+ z8 p- z
ca
1 p- @% h7 }, o7 W* h/ J setup-globals! m# y( x' L+ N( j* F6 r
: w- ~( h4 x+ C+ ~ ;; First we ask the patches to draw themselves and set up a few variables
- X7 t- s+ e# K' s2 P3 C setup-patches/ f9 S$ c, G8 J8 G7 S
make-current one-of intersections3 N! Q, [6 R( L% W0 N7 j
label-current& G- Y- ?& n& {$ b3 v7 O7 i, h
) h4 [, g% w |0 ]' D; \% c1 d set-default-shape turtles "car"2 N0 G, s5 C: P$ T
, \: D/ Y) V+ a1 w8 ]& N# u if (num-cars > count roads)
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user-message (word "There are too many cars for the amount of "- S" y8 C1 q% U. q5 x5 @
"road. Either increase the amount of roads "1 g. S8 \) j- J2 A j% o/ G
"by increasing the GRID-SIZE-X or "
8 R. [7 _. L- G7 U A! } "GRID-SIZE-Y sliders, or decrease the "4 }8 Q* o1 U5 q: y3 h y3 |
"number of cars by lowering the NUMBER slider.\n"4 K: l& G5 W# N$ z6 g* M
"The setup has stopped.")2 T& C. F; z( g* ]" k' c/ i+ B7 B
stop
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8 l; L/ B- |3 k2 K/ ~$ W ;; Now create the turtles and have each created turtle call the functions setup-cars and set-car-color9 W: D0 D1 [# u1 G8 x* x
crt num-cars
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setup-cars
$ q& W6 z7 ?5 @1 |% w- ~. W set-car-color& G; B# T- u7 v* Q* F; `5 Z
record-data
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;; give the turtles an initial speed
: s) p2 \2 g. [( M2 d( s( o ask turtles [ set-car-speed ]
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" {& }$ z! x N- I& W reset-ticks
9 f6 u, t& C( @end
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;; Initialize the global variables to appropriate values
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set current-light nobody ;; just for now, since there are no lights yet4 }1 M% I) }6 h; z' L( Z% I7 k
set phase 0
6 o, P; \- g% c% f set num-cars-stopped 0. g; w; W' c7 _8 m
set grid-x-inc world-width / grid-size-x6 O) |% d- T6 M! T# Z, ~. R
set grid-y-inc world-height / grid-size-y# P) _, F O. q9 f' {- ~5 l: P" X
/ f" Z0 [1 W5 C9 x ;; don't make acceleration 0.1 since we could get a rounding error and end up on a patch boundary
7 }, U& h: E" [- a& x u/ p set acceleration 0.099
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;; Make the patches have appropriate colors, set up the roads and intersections agentsets,
8 r2 | T% M( ?;; and initialize the traffic lights to one setting4 I4 j* W! |" V
to setup-patches
: d- ~% f: ^6 c7 ~5 Y( x ;; initialize the patch-owned variables and color the patches to a base-color
; o# s, \( G7 `( h- X ask patches+ L- J1 z5 k) j1 X. d& A* U
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) D. c( P7 J- X2 |4 q3 d8 c set intersection? false
8 D1 ~1 @8 W% D% n set auto? false2 B) ~9 t2 ^, R% T
set green-light-up? true) g3 f. x; ^" [5 Y
set my-row -13 e6 _) a F3 z+ H' M4 g* ?1 i
set my-column -1
. [8 U0 T( i; N. n: G set my-phase -1
8 ]* a8 n0 _) E set pcolor brown + 3
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;; initialize the global variables that hold patch agentsets5 `0 c2 g) J& m# y
set roads patches with
# ~: D$ S; e2 | [(floor((pxcor + max-pxcor - floor(grid-x-inc - 1)) mod grid-x-inc) = 0) or
+ C& F- p6 T7 R* q4 ] (floor((pycor + max-pycor) mod grid-y-inc) = 0)]2 _' ^9 w% }/ ~& N6 @
set intersections roads with- b F$ E+ f+ @5 v
[(floor((pxcor + max-pxcor - floor(grid-x-inc - 1)) mod grid-x-inc) = 0) and4 r+ e9 R9 I1 i- w8 G. g
(floor((pycor + max-pycor) mod grid-y-inc) = 0)]8 V' Y8 H- F! a! b* W5 u
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ask roads [ set pcolor white ]
& i' r8 ?. I3 ]% p setup-intersections
1 K7 n" h# R$ g$ \& D" M% xend
, a* {8 g( W% c; i: R0 D3 V其中定义道路的句子,如下所示,是什么意思啊?2 J& F; J+ d- M% e9 ~# `1 [, D
set roads patches with
: g" c q( z; O [(floor((pxcor + max-pxcor - floor(grid-x-inc - 1)) mod grid-x-inc) = 0) or
0 h6 N% d$ s" R$ A8 m (floor((pycor + max-pycor) mod grid-y-inc) = 0)]
4 v9 o' s; R T+ g: R# }& H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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