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📄 iucampushotspot.anm

📁 无线传感器网络节点定位仿真
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#*
#**************************************************************************
#<BEGIN HEADER>
#
#$MODULE IDENTIFICATION: IUcampusHotSpot.anm $
#
#<BEGIN REVISION>
#
#  $Copyright: International University Horst Hellbr點k $
#  $Device: ANSim $
#  $Header: /data/archiv/ansim/cfgfiles/IUcampusHotSpot.anm,v 1.1 2003/09/24 08:21:26 hellbrht Exp $
#  $Source: /data/archiv/ansim/cfgfiles/IUcampusHotSpot.anm,v $
#  $Revision: 1.1 $
#  $Author: hellbrht $
#  $Date: 2003/09/24 08:21:26 $
#  $State: Exp $
#  $Log: IUcampusHotSpot.anm,v $#  Revision 1.1  2003/09/24 08:21:26  hellbrht#  initial revision#
#
#<END REVISION>
#<END HEADER>
#**************************************************************************
#*/#mode can be "static" or "mobile"
mode=mobile
#The field is defined as a polygon
field=[(-500,1200)];(7.59,-831.80);(0.0,-841.50);(0.73,-1026.37);(8.98,-1030.85);(131.60,-1030.85);(148.83,-1083.6);(166.78,-1083.6);(151.60,-1045.90);(223.94,-1026.63);(219.12,-1016.99);(349.100,-1015.28);(339.70,-957.79);(325.91,-936.94);(313.50,-936.94);(304.52,-822.82);(248.75,-831.80);
#the obstacles
# BA Hall
obstacle1 = [(-500,1200)];(13.20,-906.84);(38.2,-906.84);(38.2,-894.43);(29.77,-894.43);(29.77,-882.2);(33.86,-882.2);(33.86,-869.62);(29.77,-869.62);(29.77,-857.27);(38.2,-857.27);(38.2,-844.87);(13.20,-844.87);(13.20,-857.27);(17.36,-857.27);(17.36,-894.43);(13.20,-894.43);
# Leibniz Hall
obstacle2 = [(-500,1200)];(13.0,-1010.6);(37.82,-1010.6);(37.82,-997.72);(33.73,-997.72);(33.73,-993.56);(29.57,-993.56);(29.57,-985.31);(33.73,-985.31);(33.73,-972.91);(29.57,-972.91);(29.57,-960.50);(37.82,-960.50);(37.82,-948.16);(13.0,-948.16);(13.0,-960.50);(17.16,-960.50);(17.16,-997.72);(13.0,-997.72);


# New Building
obstacle3 = [(-500,1200)];(58.67,-875.49);(75.24,-875.49);(75.24,-871.40);(79.33,-871.40);(79.33,-867.24);(75.24,-867.24);(75.24,-863.8);(79.33,-863.8);(79.33,-854.83);(75.24,-854.83);(75.24,-850.74);(79.33,-850.74);(79.33,-846.58);(75.24,-846.58);(75.24,-842.42);(58.67,-842.42);(58.67,-863.8);(54.52,-863.8);(54.52,-867.24);(58.67,-867.24);
obstacle4 = [(-500,1200)];(89.69,-875.29);(106.19,-875.29);(106.19,-871.20);(110.35,-871.20);(110.35,-867.4);(106.19,-867.4);(106.19,-862.95);(110.35,-862.95);(110.35,-854.70);(106.19,-854.70);(106.19,-850.54);(110.35,-850.54);(110.35,-846.38);(106.19,-846.38);(106.19,-842.29);(89.69,-842.29);(89.69,-862.95);(85.54,-862.95);(85.54,-867.4);(89.69,-867.4);
obstacle5 = [(-500,1200)];(123.9,-874.10);(139.66,-874.10);(139.66,-870.1);(143.75,-870.1);(143.75,-865.85);(139.66,-865.85);(139.66,-861.70);(143.75,-861.70);(143.75,-853.45);(139.66,-853.45);(139.66,-849.35);(143.75,-849.35);(143.75,-845.20);(139.66,-845.20);(139.66,-841.10);(123.9,-841.10);(123.9,-861.70);(118.93,-861.70);(118.93,-865.85);(123.9,-865.85);
obstacle6 = [(-500,1200)];(154.24,-873.77);(170.81,-873.77);(170.81,-869.62);(174.97,-869.62);(174.97,-865.52);(170.81,-865.52);(170.81,-861.37);(174.97,-861.37);(174.97,-853.12);(170.81,-853.12);(170.81,-848.96);(174.97,-848.96);(174.97,-844.87);(170.81,-844.87);(170.81,-840.71);(154.24,-840.71);(154.24,-861.37);(150.15,-861.37);(150.15,-865.52);(154.24,-865.52);
obstacle7 = [(-500,1200)];(184.93,-873.44);(201.50,-873.44);(201.50,-869.29);(205.59,-869.29);(205.59,-865.19);(201.50,-865.19);(201.50,-861.4);(205.59,-861.4);(205.59,-852.79);(201.50,-852.79);(201.50,-848.63);(205.59,-848.63);(205.59,-844.54);(201.50,-844.54);(201.50,-840.38);(184.93,-840.38);(184.93,-861.4);(180.77,-861.4);(180.77,-865.19);(184.93,-865.19);

# The old storage building
obstacle8 = [(-500,1200)];(62.37,-893.5);(62.37,-903.14);(95.11,-903.14);(95.11,-904.86);(106.19,-904.86);(106.19,-903.14);(130.22,-903.14);(130.22,-905.19);(141.37,-905.19);(141.37,-903.14);(181.30,-903.14);(181.30,-893.5);(141.37,-893.5);(141.37,-891.33);(130.22,-891.33);(130.22,-893.5);(106.19,-893.5);(106.19,-891.33);(95.11,-891.33);(95.11,-893.5);
# Main Hall complex with Siemens Technic Academy
obstacle9 = [(-500,1200)];(56.89,-909.22);(56.89,-921.95);(55.18,-921.95);(55.18,-934.43);(56.89,-934.43);(56.89,-947.17);(58.61,-947.43);(58.61,-964.72);(63.10,-964.72);(63.10,-967.82);(122.3,-967.82);(122.3,-964.72);(181.30,-964.72);(181.30,-951.92);(112.99,-951.92);(112.99,-954.69);(67.98,-954.69);(67.98,-947.43);(69.37,-947.17);(69.37,-934.43);(71.74,-934.43);(71.74,-925.52);(79.0,-925.52);(79.0,-911.33);(69.37,-911.33);(69.37,-909.22);

obstacle10 = [(-500,1200)];(62.4,-997.72);(62.4,-1008.8);(76.56,-1008.8);(76.56,-997.72);
obstacle11 = [(-500,1200)];(84.41,-997.72);(84.41,-1008.8);(99.0,-1008.8);(99.0,-997.72);
obstacle12 = [(-500,1200)];(106.13,-996.1);(106.13,-1008.48);(116.56,-1008.48);(116.56,-1007.75);(137.81,-1007.75);(137.81,-1008.48);(148.24,-1008.48);(148.24,-996.1);(137.81,-996.1);(137.81,-997.72);(116.56,-997.72);(116.56,-996.1);
obstacle13 = [(-500,1200)];(179.19,-997.72);(179.19,-1008.8);(193.71,-1008.8);(193.71,-997.72);
obstacle14 = [(-500,1200)];(156.75,-997.33);(156.75,-1007.75);(171.34,-1007.75);(171.34,-997.33);

# The blue hall
obstacle15 = [(-500,1200)];(79.93,-909.55);(79.93,-939.97);(93.79,-939.97);(93.79,-909.55);

# The heating building
obstacle16 = [(-500,1200)];(184.14,-952.45);(184.14,-964.39);(195.62,-964.39);(195.62,-952.45);

# The green areas are transparent for the radio waves
obstacle17 = {0.0}[(-500,1200)];(45.47,-1026.96);(45.47,-1014.55);(206.71,-1014.55);(199.12,-1017.32);(166.78,-1024.19);(135.4,-1031.78);(128.17,-1026.96); obstacle
obstacle18 = {0.0}[(-500,1200)];(60.98,-987.23);(60.98,-995.28);(194.24,-995.28);(194.24,-987.23);

# The green in front of LH
obstacle19 = {0.0}[(-500,1200)];(11.42,-924.53);(11.42,-944.33);(40.59,-944.33);(40.59,-924.53);

# The boule yard
obstacle20 = {0.0}[(-500,1200)];(97.15,-910.93);(97.15,-944.79);(180.64,-944.79);(180.64,-910.93);

# The empty area on the right
obstacle21 = {0.0}[(-500,1200)];(219.12,-1016.99);(349.100,-1015.28);(339.70,-957.79);(325.91,-936.94);(313.50,-936.94);(304.52,-822.82);(248.75,-831.80);(219.12,-831.80);

# The hotspots
hotspot1 = {0.1}(-346.0,222.0);10.0;uniform
hotspot2 = {0.1}(-450.12,211.99);10.0;gauss
hotspot3 = {0.1}(-475.0,284.0);10.0;gauss
hotspot4 = {0.1}(-452.12,315.99);10.0;gauss
hotspot5 = {0.1}(-305,275);15.0;gauss
#hotspot2 = {0.2}(-450.12,211.99);10.0;uniform
#hotspot3 = {0.2}(-475.0,284.0);10.0;uniform
#hotspot4 = {0.2}(-452.12,315.99);10.0;uniform
#hotspot5 = {0.2}(-305,275);15.0;uniform

# the range of the nodes in m
range=100
# the number of nodes in the simulation
numberOfNodes=40
# is the source node placed at position 0,0
central=false
# place fixed nodes
#N_0=(50.0,-100.0)
#N_7=(-200.0,300.0)
# the disttribution of the nodes can be uniform, gaussian, elliptic
distribution=uniform
#logging options like none, all,XML,XML_LINKS,-XML,tcon,dist,-dist,tdiscon,general
logging=none
#the fileprefix for the logfiles
logfileprefix=test
# number of scenarios to be investigated just for the static mode -1 for infinity
scenes=-1
# the mobility model 
# rw = "Random Waypoint"
# rwg = "Random Waypoint gaussian distribution"
# rwi = "Random Waypoint Indirect move"
# rd = "Random Direction"
# gm = "Gauss Markov"
model=rwg
# the velocity of the nodes in m/s as interval [2.1:5.0] or single value [5.0]
velocity = [1.0:1.50]
# the moving time for the moves in Randomdirection mobility models in s as interval [300:600] or single value [5.0]
movetime = [10.0:10.0]
# the moving time for the moves in Randomdirection mobility models in s as interval [300:600] or single value [5.0]
stoptime = [0.0:0.0]
# the angle variation for the gauss markov mobility
# uniformly distributed between [gaussmarkovangle:gaussmarkovangle]
gaussmarkovangle=5.0

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