A Discrete-Event Network Simulator
API
lte-test-pathloss-model.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  */
20 
21 #include "ns3/simulator.h"
22 
23 #include "ns3/log.h"
24 
25 #include "ns3/spectrum-test.h"
26 
27 #include "ns3/lte-phy-tag.h"
28 #include "ns3/lte-chunk-processor.h"
29 
30 
31 #include <ns3/hybrid-buildings-propagation-loss-model.h>
32 #include <ns3/node-container.h>
33 #include <ns3/mobility-helper.h>
34 #include <ns3/buildings-helper.h>
35 #include <ns3/lte-helper.h>
36 #include <ns3/single-model-spectrum-channel.h>
37 #include "ns3/string.h"
38 #include "ns3/double.h"
39 #include <ns3/boolean.h>
40 #include <ns3/building.h>
41 #include <ns3/enum.h>
42 #include <ns3/net-device-container.h>
43 #include <ns3/lte-ue-net-device.h>
44 #include <ns3/lte-enb-net-device.h>
45 #include <ns3/lte-ue-rrc.h>
46 #include <ns3/lte-helper.h>
47 #include <ns3/lte-enb-phy.h>
48 #include <ns3/lte-ue-phy.h>
49 
50 #include "lte-test-ue-phy.h"
52 
53 using namespace ns3;
54 
55 NS_LOG_COMPONENT_DEFINE ("LtePathlossModelTest");
56 
67 void
69  uint32_t frameNo, uint32_t subframeNo, uint16_t rnti,
70  uint8_t mcsTb1, uint16_t sizeTb1, uint8_t mcsTb2, uint16_t sizeTb2)
71 {
72  testcase->DlScheduling (frameNo, subframeNo, rnti, mcsTb1, sizeTb1, mcsTb2, sizeTb2);
73 }
74 
75 
76 
78  : TestSuite ("lte-pathloss-model", SYSTEM)
79 {
80  // LogLevel logLevel = (LogLevel)(LOG_PREFIX_FUNC | LOG_PREFIX_TIME | LOG_LEVEL_ALL);
81  // LogComponentEnable ("LteHelper", logLevel);
82  // LogComponentEnable ("LtePathlossModelTest", logLevel);
83  // LogComponentEnable ("BuildingsPropagationLossModel", logLevel);
84  // LogComponentEnable ("LteInterference", logLevel);
85  // LogComponentEnable ("LteSpectrumValueHelper", logLevel);
86  // LogComponentEnable ("LteEnbNetDevice", logLevel);
87 
88  struct SnrEfficiencyMcs
89  {
90  double snrDb;
91  double efficiency;
92  int mcsIndex;
93  };
94 
99  SnrEfficiencyMcs snrEfficiencyMcs[] = {
100  { -5.00000, 0.08024, -1},
101  { -4.00000, 0.10030, -1},
102  { -3.00000, 0.12518, -1},
103  { -2.00000, 0.15589, 0},
104  { -1.00000, 0.19365, 0},
105  { 0.00000, 0.23983, 2},
106  { 1.00000, 0.29593, 2},
107  { 2.00000, 0.36360, 2},
108  { 3.00000, 0.44451, 4},
109  { 4.00000, 0.54031, 4},
110  { 5.00000, 0.65251, 6},
111  { 6.00000, 0.78240, 6},
112  { 7.00000, 0.93086, 8},
113  { 8.00000, 1.09835, 8},
114  { 9.00000, 1.28485, 10},
115  { 10.00000, 1.48981, 12},
116  { 11.00000, 1.71229, 12},
117  { 12.00000, 1.95096, 14},
118  { 13.00000, 2.20429, 14},
119  { 14.00000, 2.47062, 16},
120  { 15.00000, 2.74826, 18},
121  { 16.00000, 3.03560, 18},
122  { 17.00000, 3.33115, 20},
123  { 18.00000, 3.63355, 20},
124  { 19.00000, 3.94163, 22},
125  { 20.00000, 4.25439, 22},
126  { 21.00000, 4.57095, 24},
127  { 22.00000, 4.89060, 24},
128  { 23.00000, 5.21276, 26},
129  { 24.00000, 5.53693, 26},
130  { 25.00000, 5.86271, 28},
131  { 26.00000, 6.18980, 28},
132  { 27.00000, 6.51792, 28},
133  { 28.00000, 6.84687, 28},
134  { 29.00000, 7.17649, 28},
135  { 30.00000, 7.50663, 28},
136  };
137 
138 
139  double txPowerDbm = 30; // default eNB TX power over whole bandwidth
140  double txPowerLin = std::pow (10, (txPowerDbm - 30)/10);
141  double ktDbm = -174; // reference LTE noise PSD
142  double noisePowerDbm = ktDbm + 10 * std::log10 (25 * 180000); // corresponds to kT*bandwidth in linear units
143  double receiverNoiseFigureDb = 9.0; // default UE noise figure
144  double noiseLin = std::pow (10, (noisePowerDbm-30+receiverNoiseFigureDb)/10);
145 
146  // reference values obtained with the octave script src/lte/test/reference/lte_pathloss.m
147 
148  double loss[] = {81.062444, 134.078605, 144.259958};
149  double dist[] = {100.0, 500.0, 1500};
150 
151  int numOfTests = sizeof (loss) / sizeof (double);
152  for ( int i = 0 ; i < numOfTests; i++ )
153  {
154  // double lossDb = txPowerDbm - snrEfficiencyMcs[i].snrDb - noisePowerDbm - receiverNoiseFigureDb;
155  double sinrLin = (txPowerLin/(pow(10, loss[i]/10))) / noiseLin;
156  // double sinrDb = txPowerDbm- noisePowerDbm - receiverNoiseFigureDb - loss[i];
157  double sinrDb = 10 * std::log10 (sinrLin);
158  NS_LOG_INFO (" Ptx " << txPowerDbm << " Pn " << noisePowerDbm << " Fn " << receiverNoiseFigureDb << " Pl " << loss[i] << " dist " << dist[i]);
159 
160  int mcs = -1;
161  int numSnrEfficiencyMcsEntries = sizeof (snrEfficiencyMcs) / sizeof (SnrEfficiencyMcs);
162  for (int j = 0; j < numSnrEfficiencyMcsEntries && snrEfficiencyMcs[j].snrDb < sinrDb; ++j)
163  {
164  mcs = snrEfficiencyMcs[j].mcsIndex;
165  }
166 
167  std::ostringstream name;
168  name << " snr= " << sinrDb << " dB, "
169  << " mcs= " << snrEfficiencyMcs[i].mcsIndex;
170  AddTestCase (new LtePathlossModelSystemTestCase (name.str (), sinrDb, dist[i], mcs), TestCase::QUICK);
171  }
172 
173 
174 
175 
176 
177 }
178 
180 
181 
182 
183 
184 LtePathlossModelSystemTestCase::LtePathlossModelSystemTestCase (std::string name, double snrDb, double dist, uint16_t mcsIndex)
185 : TestCase (name),
186 m_snrDb (snrDb),
187 m_distance (dist),
188 m_mcsIndex (mcsIndex)
189 {
190  std::ostringstream sstream1, sstream2;
191  sstream1 << " snr=" << snrDb
192  << " mcs=" << mcsIndex << " distance=" << dist;
193 
194  NS_LOG_INFO ("Creating LtePathlossModelSystemTestCase: " + sstream1.str ());
195 }
196 
198 {
199 }
200 
201 void
203 {
207  //Disable Uplink Power Control
208  Config::SetDefault ("ns3::LteUePhy::EnableUplinkPowerControl", BooleanValue (false));
209 
210  Ptr<LteHelper> lteHelper = CreateObject<LteHelper> ();
211  // lteHelper->EnableLogComponents ();
212  lteHelper->EnableMacTraces ();
213  lteHelper->EnableRlcTraces ();
214  lteHelper->SetAttribute ("PathlossModel", StringValue ("ns3::HybridBuildingsPropagationLossModel"));
215 
216  // set frequency. This is important because it changes the behavior of the path loss model
217  lteHelper->SetEnbDeviceAttribute ("DlEarfcn", UintegerValue (200));
218  lteHelper->SetUeDeviceAttribute ("DlEarfcn", UintegerValue (200));
219 
220  // remove shadowing component
221  lteHelper->SetPathlossModelAttribute ("ShadowSigmaOutdoor", DoubleValue (0.0));
222  lteHelper->SetPathlossModelAttribute ("ShadowSigmaIndoor", DoubleValue (0.0));
223  lteHelper->SetPathlossModelAttribute ("ShadowSigmaExtWalls", DoubleValue (0.0));
224 
225  // Create Nodes: eNodeB and UE
226  NodeContainer enbNodes;
227  NodeContainer ueNodes;
228  enbNodes.Create (1);
229  ueNodes.Create (1);
230  NodeContainer allNodes = NodeContainer ( enbNodes, ueNodes );
231 
232  // Install Mobility Model
234  mobility.SetMobilityModel ("ns3::ConstantPositionMobilityModel");
235  mobility.Install (allNodes);
236  BuildingsHelper::Install (allNodes);
237 
238 
239  // Create Devices and install them in the Nodes (eNB and UE)
240  NetDeviceContainer enbDevs;
241  NetDeviceContainer ueDevs;
242  lteHelper->SetSchedulerType ("ns3::RrFfMacScheduler");
243  enbDevs = lteHelper->InstallEnbDevice (enbNodes);
244  ueDevs = lteHelper->InstallUeDevice (ueNodes);
245 
246  Ptr<MobilityModel> mm_enb = enbNodes.Get (0)->GetObject<MobilityModel> ();
247  mm_enb->SetPosition (Vector (0.0, 0.0, 30.0));
248  Ptr<MobilityModel> mm_ue = ueNodes.Get (0)->GetObject<MobilityModel> ();
249  mm_ue->SetPosition (Vector (m_distance, 0.0, 1.0));
250 
251  Ptr<LteEnbNetDevice> lteEnbDev = enbDevs.Get (0)->GetObject<LteEnbNetDevice> ();
252  Ptr<LteEnbPhy> enbPhy = lteEnbDev->GetPhy ();
253  enbPhy->SetAttribute ("TxPower", DoubleValue (30.0));
254  enbPhy->SetAttribute ("NoiseFigure", DoubleValue (5.0));
255 
256  Ptr<LteUeNetDevice> lteUeDev = ueDevs.Get (0)->GetObject<LteUeNetDevice> ();
257  Ptr<LteUePhy> uePhy = lteUeDev->GetPhy ();
258  uePhy->SetAttribute ("TxPower", DoubleValue (23.0));
259  uePhy->SetAttribute ("NoiseFigure", DoubleValue (9.0));
260 
261 
262  // Attach a UE to a eNB
263  lteHelper->Attach (ueDevs, enbDevs.Get (0));
264 
265  // Activate an EPS bearer
266  enum EpsBearer::Qci q = EpsBearer::GBR_CONV_VOICE;
267  EpsBearer bearer (q);
268  lteHelper->ActivateDataRadioBearer (ueDevs, bearer);
269 
270  // Use testing chunk processor in the PHY layer
271  // It will be used to test that the SNR is as intended
272  //Ptr<LtePhy> uePhy = ueDevs.Get (0)->GetObject<LteUeNetDevice> ()->GetPhy ()->GetObject<LtePhy> ();
273  Ptr<LteChunkProcessor> testSinr = Create<LteChunkProcessor> ();
274  LteSpectrumValueCatcher sinrCatcher;
275  testSinr->AddCallback (MakeCallback (&LteSpectrumValueCatcher::ReportValue, &sinrCatcher));
276  uePhy->GetDownlinkSpectrumPhy ()->AddCtrlSinrChunkProcessor (testSinr);
277 
278 // Config::Connect ("/NodeList/0/DeviceList/0/LteEnbMac/DlScheduling",
279 // MakeBoundCallback (&LteTestPathlossDlSchedCallback, this));
280 
281  Simulator::Stop (Seconds (0.035));
282  Simulator::Run ();
283 
284  double calculatedSinrDb = 10.0 * std::log10 (sinrCatcher.GetValue ()->operator[] (0));
285  NS_LOG_INFO ("Distance " << m_distance << " Calculated SINR " << calculatedSinrDb << " ref " << m_snrDb);
286  Simulator::Destroy ();
287  NS_TEST_ASSERT_MSG_EQ_TOL (calculatedSinrDb, m_snrDb, 0.001, "Wrong SINR !");
288 }
289 
290 
291 void
292 LtePathlossModelSystemTestCase::DlScheduling (uint32_t frameNo, uint32_t subframeNo, uint16_t rnti,
293  uint8_t mcsTb1, uint16_t sizeTb1, uint8_t mcsTb2, uint16_t sizeTb2)
294 {
295  static bool firstTime = true;
296 
297  if ( firstTime )
298  {
299  firstTime = false;
300  NS_LOG_INFO ("SNR\tRef_MCS\tCalc_MCS");
301  }
302 
303 
304  // need to allow for RRC connection establishment + SRS transmission
305  if (Simulator::Now () > MilliSeconds (21))
306  {
307  NS_LOG_INFO (m_snrDb << "\t" << m_mcsIndex << "\t" << (uint16_t)mcsTb1);
308 
309  NS_TEST_ASSERT_MSG_EQ ((uint16_t)mcsTb1, m_mcsIndex, "Wrong MCS index");
310  }
311 }
void SetPathlossModelAttribute(std::string n, const AttributeValue &v)
Set an attribute for the path loss models to be created.
Definition: lte-helper.cc:299
AttributeValue implementation for Boolean.
Definition: boolean.h:34
NetDeviceContainer InstallEnbDevice(NodeContainer c)
Create a set of eNodeB devices.
Definition: lte-helper.cc:382
Ptr< T > GetObject(void) const
Get a pointer to the requested aggregated Object.
Definition: object.h:462
Hold variables of type string.
Definition: string.h:41
Ptr< NetDevice > Get(uint32_t i) const
Get the Ptr stored in this container at a given index.
A suite of tests to run.
Definition: test.h:1333
Ptr< LteEnbPhy > GetPhy(void) const
void Attach(NetDeviceContainer ueDevices)
Enables automatic attachment of a set of UE devices to a suitable cell using Idle mode initial cell s...
Definition: lte-helper.cc:716
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:201
Time MilliSeconds(uint64_t value)
Construct a Time in the indicated unit.
Definition: nstime.h:903
void EnableRlcTraces(void)
Enable trace sinks for RLC layer.
Definition: lte-helper.cc:1102
void SetUeDeviceAttribute(std::string n, const AttributeValue &v)
Set an attribute for the UE devices (LteUeNetDevice) to be created.
Definition: lte-helper.cc:329
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
Definition: log.h:244
encapsulates test code
Definition: test.h:1147
void ActivateDataRadioBearer(NetDeviceContainer ueDevices, EpsBearer bearer)
Activate a Data Radio Bearer on a given UE devices (for LTE-only simulation).
Definition: lte-helper.cc:1046
static LtePathlossModelTestSuite ltePathlossModelTestSuite
void DlScheduling(uint32_t frameNo, uint32_t subframeNo, uint16_t rnti, uint8_t mcsTb1, uint16_t sizeTb1, uint8_t mcsTb2, uint16_t sizeTb2)
void SetSchedulerType(std::string type)
Set the type of scheduler to be used by eNodeB devices.
Definition: lte-helper.cc:225
Keep track of the current position and velocity of an object.
Test 1.1 pathloss calculation.
This class contains the specification of EPS Bearers.
Definition: eps-bearer.h:71
void Install(Ptr< Node > node) const
"Layout" a single node according to the current position allocator type.
tuple mobility
Definition: third.py:101
virtual void AddCallback(LteChunkProcessorCallback c)
Add callback to list.
void AddTestCase(TestCase *testCase, enum TestDuration duration)
Add an individual child TestCase to this test suite.
Definition: test.cc:298
Hold an unsigned integer type.
Definition: uinteger.h:44
#define NS_TEST_ASSERT_MSG_EQ(actual, limit, msg)
Test that an actual and expected (limit) value are equal and report and abort if not.
Definition: test.h:161
holds a vector of ns3::NetDevice pointers
Callback< R > MakeCallback(R(T::*memPtr)(void), OBJ objPtr)
Definition: callback.h:1489
A sink to be plugged to the callback of LteChunkProcessor allowing to save and later retrieve the lat...
#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:373
Every class exported by the ns3 library is enclosed in the ns3 namespace.
keep track of a set of node pointers.
void SetMobilityModel(std::string type, std::string n1="", const AttributeValue &v1=EmptyAttributeValue(), std::string n2="", const AttributeValue &v2=EmptyAttributeValue(), std::string n3="", const AttributeValue &v3=EmptyAttributeValue(), std::string n4="", const AttributeValue &v4=EmptyAttributeValue(), std::string n5="", const AttributeValue &v5=EmptyAttributeValue(), std::string n6="", const AttributeValue &v6=EmptyAttributeValue(), std::string n7="", const AttributeValue &v7=EmptyAttributeValue(), std::string n8="", const AttributeValue &v8=EmptyAttributeValue(), std::string n9="", const AttributeValue &v9=EmptyAttributeValue())
void LteTestPathlossDlSchedCallback(LtePathlossModelSystemTestCase *testcase, std::string path, uint32_t frameNo, uint32_t subframeNo, uint16_t rnti, uint8_t mcsTb1, uint16_t sizeTb1, uint8_t mcsTb2, uint16_t sizeTb2)
Test 1.1 Pathloss compound test.
void SetPosition(const Vector &position)
NetDeviceContainer InstallUeDevice(NodeContainer c)
Create a set of UE devices.
Definition: lte-helper.cc:397
Helper class used to assign positions and mobility models to nodes.
Ptr< Node > Get(uint32_t i) const
Get the Ptr stored in this container at a given index.
Time Seconds(double value)
Construct a Time in the indicated unit.
Definition: nstime.h:895
void SetDefault(std::string name, const AttributeValue &value)
Definition: config.cc:774
virtual void DoRun(void)
Implementation to actually run this TestCase.
Time Now(void)
create an ns3::Time instance which contains the current simulation time.
Definition: simulator.cc:340
void Create(uint32_t n)
Create n nodes and append pointers to them to the end of this NodeContainer.
void EnableMacTraces(void)
Enable trace sinks for MAC layer.
Definition: lte-helper.cc:1190
Ptr< LteUePhy > GetPhy(void) const
This class can be used to hold variables of floating point type such as 'double' or 'float'...
Definition: double.h:41
void SetAttribute(std::string name, const AttributeValue &value)
Set a single attribute, raising fatal errors if unsuccessful.
Definition: object-base.cc:191
The eNodeB device implementation.
Qci
QoS Class Indicator.
Definition: eps-bearer.h:77
void SetEnbDeviceAttribute(std::string n, const AttributeValue &v)
Set an attribute for the eNodeB devices (LteEnbNetDevice) to be created.
Definition: lte-helper.cc:307
The LteUeNetDevice class implements the UE net device.