A Discrete-Event Network Simulator
API
 All Classes Namespaces Files Functions Variables Typedefs Enumerations Enumerator Properties Friends Macros Groups Pages
lte-test-phy-error-model.cc
Go to the documentation of this file.
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  */
20 
21 #include <ns3/object.h>
22 #include <ns3/spectrum-interference.h>
23 #include <ns3/spectrum-error-model.h>
24 #include <ns3/log.h>
25 #include <ns3/test.h>
26 #include <ns3/simulator.h>
27 #include <ns3/packet.h>
28 #include <ns3/ptr.h>
29 #include <iostream>
30 #include <ns3/radio-bearer-stats-calculator.h>
31 #include <ns3/buildings-mobility-model.h>
32 #include <ns3/hybrid-buildings-propagation-loss-model.h>
33 #include <ns3/eps-bearer.h>
34 #include <ns3/node-container.h>
35 #include <ns3/mobility-helper.h>
36 #include <ns3/net-device-container.h>
37 #include <ns3/lte-ue-net-device.h>
38 #include <ns3/lte-enb-net-device.h>
39 #include <ns3/lte-ue-rrc.h>
40 #include <ns3/lte-helper.h>
41 #include <ns3/string.h>
42 #include <ns3/double.h>
43 #include <ns3/lte-enb-phy.h>
44 #include <ns3/lte-ue-phy.h>
45 #include <ns3/config.h>
46 #include <ns3/boolean.h>
47 #include <ns3/enum.h>
48 #include <ns3/unused.h>
49 
51 
52 NS_LOG_COMPONENT_DEFINE ("LenaTestPhyErrorModel");
53 
54 namespace ns3 {
55 
56 
58  : TestSuite ("lte-phy-error-model", SYSTEM)
59 {
60  NS_LOG_INFO ("creating LenaTestPhyErrorModelTestCase");
61 
62  // MCS 2 TB size of 256 bits BER 0.33 SINR -5.51
63  AddTestCase (new LenaPhyErrorModelTestCase (4, 1800, 32, 0.35, 50));
64 // MCS 2 TB size of 528 bits BER 0.11 SINR -5.51
65  AddTestCase (new LenaPhyErrorModelTestCase (2, 1800, 66, 0.11, 34));
66 // MCS 2 TB size of 1088 bits BER 0.02 SINR -5.51
67  AddTestCase (new LenaPhyErrorModelTestCase (1, 1800, 136, 0.02, 16));
68  // MCS 12 TB size of 4800 bits BER 0.3 SINR 4.43
69  AddTestCase (new LenaPhyErrorModelTestCase (1, 600, 600, 0.3, 48));
70 // MCS 12 TB size of 1632 bits BER 0.55 SINR 4.43
71  AddTestCase (new LenaPhyErrorModelTestCase (3, 600, 204, 0.55, 52));
72 // MCS 16 TB size of 7272 bits (3648 x 3584) BER 0.14 SINR 8.48
73 // BER 0.14 = 1 - ((1-0.075)*(1-0.075))
74  AddTestCase (new LenaPhyErrorModelTestCase (1, 470, 781, 0.14, 29));
75 
76 
77 
78 }
79 
81 
82 std::string
83 LenaPhyErrorModelTestCase::BuildNameString (uint16_t nUser, uint16_t dist)
84 {
85  std::ostringstream oss;
86  oss << nUser << " UEs, distance " << dist << " m";
87  return oss.str ();
88 }
89 
90 LenaPhyErrorModelTestCase::LenaPhyErrorModelTestCase (uint16_t nUser, uint16_t dist, uint16_t tbSize, double berRef, uint16_t bernQuantile)
91  : TestCase (BuildNameString (nUser, dist)),
92  m_nUser (nUser),
93  m_dist (dist),
94  m_tbSize (tbSize),
95  m_berRef (berRef),
96  m_bernQuantile (bernQuantile)
97 {
98 }
99 
101 {
102 }
103 
104 void
106 {
107 
108  double ber = 0.03;
109  Config::SetDefault ("ns3::LteAmc::Ber", DoubleValue (ber));
110  Config::SetDefault ("ns3::LteAmc::AmcModel", EnumValue (LteAmc::PiroEW2010));
111  Config::SetDefault ("ns3::LteSpectrumPhy::PemEnabled", BooleanValue (true));
112 
113 // LogComponentEnable ("LteEnbRrc", LOG_LEVEL_ALL);
114 // LogComponentEnable ("LteUeRrc", LOG_LEVEL_ALL);
115 // LogComponentEnable ("LteEnbMac", LOG_LEVEL_ALL);
116 // LogComponentEnable ("LteUeMac", LOG_LEVEL_ALL);
117 // LogComponentEnable ("LteRlc", LOG_LEVEL_ALL);
118 //
119 // LogComponentEnable ("LtePhy", LOG_LEVEL_ALL);
120 // LogComponentEnable ("LteEnbPhy", LOG_LEVEL_ALL);
121 // LogComponentEnable ("LteUePhy", LOG_LEVEL_ALL);
122 
123 // LogComponentEnable ("LteSpectrumPhy", LOG_LEVEL_ALL);
124 // LogComponentEnable ("LteInterference", LOG_LEVEL_ALL);
125 // LogComponentEnable ("LteSinrChunkProcessor", LOG_LEVEL_ALL);
126 //
127 // LogComponentEnable ("LtePropagationLossModel", LOG_LEVEL_ALL);
128 // LogComponentEnable ("LossModel", LOG_LEVEL_ALL);
129 // LogComponentEnable ("ShadowingLossModel", LOG_LEVEL_ALL);
130 // LogComponentEnable ("PenetrationLossModel", LOG_LEVEL_ALL);
131 // LogComponentEnable ("MultipathLossModel", LOG_LEVEL_ALL);
132 // LogComponentEnable ("PathLossModel", LOG_LEVEL_ALL);
133 //
134 // LogComponentEnable ("LteNetDevice", LOG_LEVEL_ALL);
135 // LogComponentEnable ("LteUeNetDevice", LOG_LEVEL_ALL);
136 // LogComponentEnable ("LteEnbNetDevice", LOG_LEVEL_ALL);
137 
138 // LogComponentEnable ("RrFfMacScheduler", LOG_LEVEL_ALL);
139 // LogComponentEnable ("LenaHelper", LOG_LEVEL_ALL);
140 // LogComponentEnable ("RlcStatsCalculator", LOG_LEVEL_ALL);
141 
142 
143 // LogComponentEnable ("LteSpectrumPhy", LOG_LEVEL_ALL);
144 // LogComponentEnable ("LteEnbMac", LOG_LEVEL_ALL);
145 // LogComponentEnable ("LteEnbPhy", LOG_LEVEL_ALL);
146 // LogComponentEnable ("LteUePhy", LOG_LEVEL_ALL);
147 // LogComponentEnable ("RrFfMacScheduler", LOG_LEVEL_ALL);
148 // LogComponentEnable ("LenaHelper", LOG_LEVEL_ALL);
149 // LogComponentEnable ("BuildingsPropagationLossModel", LOG_LEVEL_ALL);
150 // LogComponentEnable ("LteMiErrorModel", LOG_LEVEL_ALL);
151 // LogComponentEnable ("LteAmc", LOG_LEVEL_ALL);
152 //
154 
155  LogComponentEnable ("LenaTestPhyErrorModel", LOG_LEVEL_ALL);
156 
157 
162  Ptr<LteHelper> lena = CreateObject<LteHelper> ();
163 
164  // Create Nodes: eNodeB and UE
165  NodeContainer enbNodes;
166  NodeContainer ueNodes;
167  enbNodes.Create (1);
168  ueNodes.Create (m_nUser);
169 
170  // Install Mobility Model
171  MobilityHelper mobility;
172  mobility.SetMobilityModel ("ns3::BuildingsMobilityModel");
173  mobility.Install (enbNodes);
174  mobility.SetMobilityModel ("ns3::BuildingsMobilityModel");
175  mobility.Install (ueNodes);
176 
177  // remove random shadowing component
178  lena->SetAttribute ("PathlossModel", StringValue ("ns3::HybridBuildingsPropagationLossModel"));
179  lena->SetPathlossModelAttribute ("ShadowSigmaOutdoor", DoubleValue (0.0));
180  lena->SetPathlossModelAttribute ("ShadowSigmaIndoor", DoubleValue (0.0));
181  lena->SetPathlossModelAttribute ("ShadowSigmaExtWalls", DoubleValue (0.0));
182 
183  // Create Devices and install them in the Nodes (eNB and UE)
184  NetDeviceContainer enbDevs;
185  NetDeviceContainer ueDevs;
186  lena->SetSchedulerType ("ns3::RrFfMacScheduler");
187 
188  enbDevs = lena->InstallEnbDevice (enbNodes);
189  ueDevs = lena->InstallUeDevice (ueNodes);
190 
191  // Attach a UE to a eNB
192  lena->Attach (ueDevs, enbDevs.Get (0));
193 
194  // Activate an EPS bearer
196  EpsBearer bearer (q);
197  lena->ActivateEpsBearer (ueDevs, bearer, EpcTft::Default ());
198 
199 
200  Ptr<LteEnbNetDevice> lteEnbDev = enbDevs.Get (0)->GetObject<LteEnbNetDevice> ();
201  Ptr<LteEnbPhy> enbPhy = lteEnbDev->GetPhy ();
202  enbPhy->SetAttribute ("TxPower", DoubleValue (43.0));
203  enbPhy->SetAttribute ("NoiseFigure", DoubleValue (5.0));
204  // place the HeNB over the default rooftop level (20 mt.)
206  mm->SetPosition (Vector (0.0, 0.0, 30.0));
207 
208  // Set UEs' position and power
209  for (int i = 0; i < m_nUser; i++)
210  {
212  mm->SetPosition (Vector (m_dist, 0.0, 1.0));
213  Ptr<LteUeNetDevice> lteUeDev = ueDevs.Get (i)->GetObject<LteUeNetDevice> ();
214  Ptr<LteUePhy> uePhy = lteUeDev->GetPhy ();
215  uePhy->SetAttribute ("TxPower", DoubleValue (23.0));
216  uePhy->SetAttribute ("NoiseFigure", DoubleValue (9.0));
217  }
218 
219  lena->EnableRlcTraces ();
220  double simulationTime = 1.000;
221  Simulator::Stop (Seconds (simulationTime));
222 
223  Ptr<RadioBearerStatsCalculator> rlcStats = lena->GetRlcStats ();
224  rlcStats->SetAttribute ("EpochDuration", TimeValue (Seconds (simulationTime)));
225 
226 
227  Simulator::Run ();
228 
232  NS_LOG_INFO ("Test with " << m_nUser << " user(s) at distance " << m_dist << " expected BER " << m_berRef);
233  std::vector <uint64_t> dlDataRxed;
234  for (int i = 0; i < m_nUser; i++)
235  {
236  // get the imsi
237  uint64_t imsi = ueDevs.Get (i)->GetObject<LteUeNetDevice> ()->GetImsi ();
238  // get the lcId
239  uint8_t lcId = ueDevs.Get (i)->GetObject<LteUeNetDevice> ()->GetRrc ()->GetLcIdVector ().at (0);
240  dlDataRxed.push_back (rlcStats->GetDlRxData (imsi, lcId));
241  double txed = rlcStats->GetDlTxData (imsi, lcId);
242  int n = txed / m_tbSize;
243  int lambda = (double)dlDataRxed.at (i) / m_tbSize;
244  double ber = 1.0 - ((double)dlDataRxed.at (i)/txed);
245  double np = n-n*m_berRef;
246  NS_LOG_INFO ("\tUser " << i << " imsi " << imsi << " bytes rxed " << (double)dlDataRxed.at (i) << " txed " << txed
247  << " BER " << ber << " Err " << fabs (m_berRef - ber) << " lambda " << lambda
248  << " np " << np << " difference " << abs(lambda - np) << " quantile " << m_bernQuantile);
249  NS_UNUSED (ber);
250  // the quantiles are evaluated offline according to a Bernoulli
251  // ditribution with n equal to the number of packet sent and p equal
252  // to the BER (see /reference/bernuolliDistribution.m for details)
253  NS_TEST_ASSERT_MSG_EQ_TOL (lambda, np, m_bernQuantile, " Unexpected BER distribution!");
254  }
255 
256 
258 }
259 
260 } // namespace ns3
261 
262