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buildings-pathloss-test.cc
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1 /* -*- Mode: C++; c-file-style: "gnu"; indent-tabs-mode:nil; -*- */
2 /*
3  * Copyright (c) 2011 Centre Tecnologic de Telecomunicacions de Catalunya (CTTC)
4  *
5  * This program is free software; you can redistribute it and/or modify
6  * it under the terms of the GNU General Public License version 2 as
7  * published by the Free Software Foundation;
8  *
9  * This program is distributed in the hope that it will be useful,
10  * but WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12  * GNU General Public License for more details.
13  *
14  * You should have received a copy of the GNU General Public License
15  * along with this program; if not, write to the Free Software
16  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
17  *
18  * Author: Marco Miozzo <marco.miozzo@cttc.es>
19  * Nicola Baldo <nbaldo@cttc.es>
20  */
21 
22 #include <ns3/simulator.h>
23 
24 #include <ns3/log.h>
25 
26 #include <ns3/buildings-helper.h>
27 #include <ns3/string.h>
28 #include <ns3/double.h>
29 #include <ns3/building.h>
30 #include <ns3/enum.h>
31 #include <ns3/constant-position-mobility-model.h>
32 #include <ns3/mobility-building-info.h>
34 
35 
36 
37 NS_LOG_COMPONENT_DEFINE ("BuildingsPathlossTest");
38 
39 using namespace ns3;
40 
41 
53  : TestSuite ("buildings-pathloss-test", SYSTEM)
54 {
55 
56  LogComponentEnable ("BuildingsPathlossTest", LOG_LEVEL_ALL);
57 
58  double freq = 869e6; // E_UTRA BAND #5 see table 5.5-1 of 36.101
59 
60  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 2, UrbanEnvironment, LargeCity, 137.93, "OH Urban Large city"), TestCase::QUICK);
61 
62  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 2, UrbanEnvironment, SmallCity, 137.88, "OH Urban small city"), TestCase::QUICK);
63 
64  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 2, SubUrbanEnvironment, LargeCity, 128.03, "loss OH SubUrban"), TestCase::QUICK);
65 
66  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 2, OpenAreasEnvironment, LargeCity, 110.21, "loss OH OpenAreas"), TestCase::QUICK);
67 
68  // Test #2 COST231 Model (1500 < freq < 2000~2170 MHz) (Macro<->UE)
69 
70  freq = 2.1140e9; // E_UTRA BAND #1 see table 5.5-1 of 36.101
71 
72  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 2, UrbanEnvironment, LargeCity, 148.55, "COST231 Urban Large city"), TestCase::QUICK);
73 
74  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 2, UrbanEnvironment, SmallCity, 150.64, "COST231 Urban small city and suburban"), TestCase::QUICK);
75 
76  // Test #3 2.6 GHz model (Macro<->UE)
77 
78  freq = 2.620e9; // E_UTRA BAND #7 see table 5.5-1 of 36.101
79 
80  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 2, UrbanEnvironment, SmallCity, 121.83, "2.6GHz model"), TestCase::QUICK);
81 
82  // Test #4 ITU1411 LOS model (Macro<->UE)
83 
84  freq = 2.1140e9; // E_UTRA BAND #1 see table 5.5-1 of 36.101
85  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 3, UrbanEnvironment, LargeCity, 81.00, "ITU1411 LOS"), TestCase::QUICK);
86 
87  // Test #5 ITU1411 NLOS model (Macro<->UE)
88 
89  freq = 2.1140e9; // E_UTRA BAND #1 see table 5.5-1 of 36.101
90 
91  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 4, UrbanEnvironment, LargeCity, 143.69, "ITU1411 NLOS"), TestCase::QUICK);
92 
93  // Test #6 ITUP1238 (HeNB <-> UE)
94 
95  freq = 2.1140e9; // E_UTRA BAND #1 see table 5.5-1 of 36.101
96  AddTestCase (new BuildingsPathlossTestCase (freq, 5, 6, UrbanEnvironment, LargeCity, 88.3855, "ITUP1238"), TestCase::QUICK);
97 
98  // Test #7 Outdoor -> Indoor OkumuraHata (Macro<->UE)
99 
100  freq = 2.1140e9; // E_UTRA BAND #1 see table 5.5-1 of 36.101
101  // The loss is as in test #2 (large city) plus the building penetration loss
102  // which for ConcreteWithWindows is equal to 7 dB -> 148.55 + 7 = 155.55
103  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 7, UrbanEnvironment, LargeCity, 155.55, "Okumura Hata Outdoor -> Indoor"), TestCase::QUICK);
104 
105  // Test #8 Outdoor -> Indoor ITU1411 (Macro<->UE)
106  freq = 2.1140e9; // E_UTRA BAND #1 see table 5.5-1 of 36.101
107  // The loss is as in test #4 plus the building penetration loss
108  // which for ConcreteWithWindows is equal to 7 dB -> 81.000 + 7 = 88.000
109  AddTestCase (new BuildingsPathlossTestCase (freq, 1, 8, UrbanEnvironment, LargeCity, 88.000, "ITU1411 LOS Outdoor -> Indoor"), TestCase::QUICK);
110 
111  // Test #9 Indoor -> Outdoor LOS (HeNB <-> UE)
112 
113  freq = 2.1140e9; // E_UTRA BAND #1 see table 5.5-1 of 36.101
114  // The loss is similar of test #4 plus the building penetration loss
115  // which for ConcreteWithWindows is equal to 7 dB and the height gain
116  // (2 floors x 2 dB/floor = 4) -> 81.838 + 7 - 4 = 84.838
117  AddTestCase (new BuildingsPathlossTestCase (freq, 9, 10, UrbanEnvironment, LargeCity, 84.838, "ITU1411 LOS Indoor -> Outdoor"), TestCase::QUICK);
118 
119  // Test #10 Indoor -> Outdoor NLOS (HeNB <-> UE)
120 
121  freq = 2.1140e9; // E_UTRA BAND #1 see table 5.5-1 of 36.101
122  // The loss is similar as in test #4 plus the building penetration loss
123  // which for ConcreteWithWindows is equal to 7 dB and the height gain
124  // (2 floors x 2 dB/floor = 4) -> 180.90 + 7 - 4 = 183.90
125  AddTestCase (new BuildingsPathlossTestCase (freq, 9, 11, UrbanEnvironment, LargeCity, 183.90, "ITU1411 NLOS Indoor -> Outdoor"), TestCase::QUICK);
126 
127 
128 }
129 
130 
131 
133 
134 
139 BuildingsPathlossTestCase::BuildingsPathlossTestCase (double freq, uint16_t m1, uint16_t m2, EnvironmentType env, CitySize city, double refValue, std::string name)
140  : TestCase ("LOSS calculation: " + name),
141  m_freq (freq),
142  m_mobilityModelIndex1 (m1),
143  m_mobilityModelIndex2 (m2),
144  m_env (env),
145  m_city (city),
146  m_lossRef (refValue)
147 {
148 }
149 
151 {
152 }
153 
154 void
156 {
157  NS_LOG_FUNCTION (this);
158 
159  // the building basically occupies the negative x plane, so any node
160  // in this area will fall in the building
161  Ptr<Building> building1 = CreateObject<Building> ();
162  building1->SetBoundaries (Box (-3000, -1, -4000, 4000.0, 0.0, 12));
163  building1->SetBuildingType (Building::Residential);
164  building1->SetExtWallsType (Building::ConcreteWithWindows);
165  building1->SetNFloors (3);
166 
169 
170  Ptr<HybridBuildingsPropagationLossModel> propagationLossModel = CreateObject<HybridBuildingsPropagationLossModel> ();
171  propagationLossModel->SetAttribute ("Frequency", DoubleValue (m_freq));
172  propagationLossModel->SetAttribute ("Environment", EnumValue (m_env));
173  propagationLossModel->SetAttribute ("CitySize", EnumValue (m_city));
174  // cancel shadowing effect
175  propagationLossModel->SetAttribute ("ShadowSigmaOutdoor", DoubleValue (0.0));
176  propagationLossModel->SetAttribute ("ShadowSigmaIndoor", DoubleValue (0.0));
177  propagationLossModel->SetAttribute ("ShadowSigmaExtWalls", DoubleValue (0.0));
178 
179  double loss = propagationLossModel->GetLoss (mma, mmb);
180 
181  NS_LOG_INFO ("Calculated loss: " << loss);
182  NS_LOG_INFO ("Theoretical loss: " << m_lossRef);
183 
184  NS_TEST_ASSERT_MSG_EQ_TOL (loss, m_lossRef, 0.1, "Wrong loss !");
185  Simulator::Destroy ();
186 }
187 
190 {
191 
192  /*
193  * The purpose of this method is to defer the creation of the
194  * MobilityModel instances to when DoRun() is called. In a previous
195  * version, MobilityModel instances where created directly in the
196  * constructor of the test suite, which caused subtle bugs due to
197  * "static initialization order fiasco". An example of such a subtle
198  * bug is that logging via NS_LOG failed for some modules.
199  *
200  */
201 
202  double hm = 1;
203  double hb = 30;
204  double henbHeight = 10.0;
205 
207 
208  switch (index)
209  {
210  case 1:
211  mm = CreateObject<ConstantPositionMobilityModel> ();
212  mm->SetPosition (Vector (0.0, 0.0, hb));
213  break;
214 
215  case 2:
216  mm = CreateObject<ConstantPositionMobilityModel> ();
217  mm->SetPosition (Vector (2000, 0.0, hm));
218  break;
219 
220  case 3:
221  mm = CreateObject<ConstantPositionMobilityModel> ();
222  mm->SetPosition (Vector (100, 0.0, hm));
223  break;
224 
225  case 4:
226  mm = CreateObject<ConstantPositionMobilityModel> ();
227  mm->SetPosition (Vector (900, 0.0, hm));
228  break;
229 
230  case 5:
231  mm = CreateObject<ConstantPositionMobilityModel> ();
232  mm->SetPosition (Vector (-5, 0.0, hm));
233  break;
234 
235  case 6:
236  mm = CreateObject<ConstantPositionMobilityModel> ();
237  mm->SetPosition (Vector (-5, 30, henbHeight));
238  break;
239 
240  case 7:
241  mm = CreateObject<ConstantPositionMobilityModel> ();
242  mm->SetPosition (Vector (-2000, 0.0, hm));
243  break;
244 
245  case 8:
246  mm = CreateObject<ConstantPositionMobilityModel> ();
247  mm->SetPosition (Vector (-100, 0.0, hm));
248  break;
249 
250  case 9:
251  mm = CreateObject<ConstantPositionMobilityModel> ();
252  mm->SetPosition (Vector (0, 0.0, hm));
253  break;
254 
255  case 10:
256  mm = CreateObject<ConstantPositionMobilityModel> ();
257  mm->SetPosition (Vector (-100, 0.0, henbHeight));
258  break;
259 
260  case 11:
261  mm = CreateObject<ConstantPositionMobilityModel> ();
262  mm->SetPosition (Vector (-500, 0.0, henbHeight));
263  break;
264 
265  default:
266  mm = 0;
267  break;
268  }
269  Ptr<MobilityBuildingInfo> buildingInfo = CreateObject<MobilityBuildingInfo> ();
270  mm->AggregateObject (buildingInfo); // operation usually done by BuildingsHelper::Install
271  BuildingsHelper::MakeConsistent (mm);
272  return mm;
273 }
smart pointer class similar to boost::intrusive_ptr
Definition: ptr.h:60
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by "...
EnvironmentType
The type of propagation environment.
virtual double GetLoss(Ptr< MobilityModel > a, Ptr< MobilityModel > b) const
A suite of tests to run.
Definition: test.h:1105
BuildingsPathlossTestSuite()
Test 1.1 BuildingsPathlossModel Pathloss compound test.
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:170
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
Definition: log.h:223
encapsulates test code
Definition: test.h:929
Ptr< MobilityModel > CreateMobilityModel(uint16_t index)
a 3d vector
Definition: vector.h:31
a 3d box
Definition: box.h:33
hold variables of type 'enum'
Definition: enum.h:37
void SetNFloors(uint16_t nfloors)
Definition: building.cc:160
Test 1.1 pathloss calculation.
BuildingsPathlossTestCase(double freq, uint16_t m1, uint16_t m2, EnvironmentType env, CitySize city, double refValue, std::string name)
TestCase.
void AggregateObject(Ptr< Object > other)
Definition: object.cc:242
#define NS_TEST_ASSERT_MSG_EQ_TOL(actual, limit, tol, msg)
Test that actual and expected (limit) values are equal to plus or minus some tolerance and report and...
Definition: test.h:355
void SetExtWallsType(Building::ExtWallsType_t t)
Definition: building.cc:153
void AddTestCase(TestCase *testCase) NS_DEPRECATED
Add an individual child TestCase case to this TestCase.
Definition: test.cc:184
void SetPosition(const Vector &position)
static BuildingsPathlossTestSuite buildingsPathlossTestSuite
CitySize
The size of the city in which propagation takes place.
virtual void DoRun(void)
Implementation to actually run this TestCase.
Hold a floating point type.
Definition: double.h:41
void SetAttribute(std::string name, const AttributeValue &value)
Definition: object-base.cc:176
void SetBoundaries(Box box)
Set the boundaries of the building.
Definition: building.cc:139
void LogComponentEnable(char const *name, enum LogLevel level)
Enable the logging output associated with that log component.
Definition: log.cc:318
void SetBuildingType(Building::BuildingType_t t)
Definition: building.cc:146