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lte-test-interference.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: Manuel Requena <manuel.requena@cttc.es>
19  * Nicola Baldo <nbaldo@cttc.es>
20  */
21 
22 #include "ns3/simulator.h"
23 #include "ns3/log.h"
24 #include "ns3/string.h"
25 #include "ns3/double.h"
26 #include <ns3/enum.h>
27 #include "ns3/boolean.h"
28 #include "ns3/mobility-helper.h"
29 #include "ns3/lte-helper.h"
30 #include "ns3/ff-mac-scheduler.h"
31 
32 #include "ns3/lte-enb-phy.h"
33 #include "ns3/lte-enb-net-device.h"
34 
35 #include "ns3/lte-ue-phy.h"
36 #include "ns3/lte-ue-net-device.h"
37 
38 #include "lte-test-interference.h"
39 
41 
42 NS_LOG_COMPONENT_DEFINE ("LteInterferenceTest");
43 
44 namespace ns3 {
45 
46 
47 void
49  uint32_t frameNo, uint32_t subframeNo, uint16_t rnti,
50  uint8_t mcsTb1, uint16_t sizeTb1, uint8_t mcsTb2, uint16_t sizeTb2)
51 {
52  testcase->DlScheduling (frameNo, subframeNo, rnti, mcsTb1, sizeTb1, mcsTb2, sizeTb2);
53 }
54 
55 void
57  uint32_t frameNo, uint32_t subframeNo, uint16_t rnti,
58  uint8_t mcs, uint16_t sizeTb)
59 {
60  testcase->UlScheduling (frameNo, subframeNo, rnti, mcs, sizeTb);
61 }
62 
63 
69  : TestSuite ("lte-interference", SYSTEM)
70 {
71  AddTestCase (new LteInterferenceTestCase ("d1=3000, d2=6000", 3000.000000, 6000.000000, 3.844681, 1.714583, 0.761558, 0.389662, 6, 4), TestCase::QUICK);
72  AddTestCase (new LteInterferenceTestCase ("d1=50, d2=10", 50.000000, 10.000000, 0.040000, 0.040000, 0.010399, 0.010399, 0, 0), TestCase::QUICK);
73  AddTestCase (new LteInterferenceTestCase ("d1=50, d2=20", 50.000000, 20.000000, 0.160000, 0.159998, 0.041154, 0.041153, 0, 0), TestCase::QUICK);
74  AddTestCase (new LteInterferenceTestCase ("d1=50, d2=50", 50.000000, 50.000000, 0.999997, 0.999907, 0.239828, 0.239808, 2, 2), TestCase::QUICK);
75  AddTestCase (new LteInterferenceTestCase ("d1=50, d2=100", 50.000000, 100.000000, 3.999955, 3.998520, 0.785259, 0.785042, 6, 6), TestCase::QUICK);
76  AddTestCase (new LteInterferenceTestCase ("d1=50, d2=200", 50.000000, 200.000000, 15.999282, 15.976339, 1.961072, 1.959533, 14, 14), TestCase::QUICK);
77  AddTestCase (new LteInterferenceTestCase ("d1=50, d2=500", 50.000000, 500.000000, 99.971953, 99.082845, 4.254003, 4.241793, 22, 22), TestCase::QUICK);
78  AddTestCase (new LteInterferenceTestCase ("d1=50, d2=1000", 50.000000, 1000.000000, 399.551632, 385.718468, 6.194952, 6.144825, 28, 28), TestCase::QUICK);
79  AddTestCase (new LteInterferenceTestCase ("d1=50, d2=10000", 50.000000, 10000.000000, 35964.181431, 8505.970614, 12.667381, 10.588084, 28, 28), TestCase::QUICK);
80  AddTestCase (new LteInterferenceTestCase ("d1=50, d2=100000", 50.000000, 100000.000000, 327284.773828, 10774.181090, 15.853097, 10.928917, 28, 28), TestCase::QUICK);
81  AddTestCase (new LteInterferenceTestCase ("d1=50, d2=1000000", 50.000000, 1000000.000000, 356132.574152, 10802.988445, 15.974963, 10.932767, 28, 28), TestCase::QUICK);
82  AddTestCase (new LteInterferenceTestCase ("d1=4500, d2=12600", 4500.000000, 12600.000000, 6.654462, 1.139831, 1.139781, 0.270399, 8, 2), TestCase::QUICK);
83  AddTestCase (new LteInterferenceTestCase ("d1=5400, d2=12600", 5400.000000, 12600.000000, 4.621154, 0.791549, 0.876368, 0.193019, 6, 0), TestCase::QUICK);
84 
85 
86 }
87 
89 
90 
95 LteInterferenceTestCase::LteInterferenceTestCase (std::string name, double d1, double d2, double dlSinr, double ulSinr, double dlSe, double ulSe, uint16_t dlMcs, uint16_t ulMcs)
96  : TestCase (name),
97  m_d1 (d1),
98  m_d2 (d2),
99  m_dlSinrDb (10 * std::log10 (dlSinr)),
100  m_ulSinrDb (10 * std::log10 (ulSinr)),
101  m_dlMcs (dlMcs),
102  m_ulMcs (ulMcs)
103 {
104 }
105 
107 {
108 }
109 
110 void
112 {
113  NS_LOG_INFO (this << GetName ());
114 
115  Config::SetDefault ("ns3::LteSpectrumPhy::CtrlErrorModelEnabled", BooleanValue (false));
116  Config::SetDefault ("ns3::LteSpectrumPhy::DataErrorModelEnabled", BooleanValue (false));
117  Config::SetDefault ("ns3::LteAmc::AmcModel", EnumValue (LteAmc::PiroEW2010));
118  Config::SetDefault ("ns3::LteAmc::Ber", DoubleValue (0.00005));
119  Ptr<LteHelper> lteHelper = CreateObject<LteHelper> ();
120  lteHelper->SetAttribute ("PathlossModel", StringValue ("ns3::FriisSpectrumPropagationLossModel"));
121  lteHelper->SetAttribute ("UseIdealRrc", BooleanValue (false));
122 
123  // Create Nodes: eNodeB and UE
124  NodeContainer enbNodes;
125  NodeContainer ueNodes1;
126  NodeContainer ueNodes2;
127  enbNodes.Create (2);
128  ueNodes1.Create (1);
129  ueNodes2.Create (1);
130  NodeContainer allNodes = NodeContainer ( enbNodes, ueNodes1, ueNodes2);
131 
132  // the topology is the following:
133  // d2
134  // UE1-----------eNB2
135  // | |
136  // d1| |d1
137  // | d2 |
138  // eNB1----------UE2
139  //
140  Ptr<ListPositionAllocator> positionAlloc = CreateObject<ListPositionAllocator> ();
141  positionAlloc->Add (Vector (0.0, 0.0, 0.0)); // eNB1
142  positionAlloc->Add (Vector (m_d2, m_d1, 0.0)); // eNB2
143  positionAlloc->Add (Vector (0.0, m_d1, 0.0)); // UE1
144  positionAlloc->Add (Vector (m_d2, 0.0, 0.0)); // UE2
145  MobilityHelper mobility;
146  mobility.SetMobilityModel ("ns3::ConstantPositionMobilityModel");
147  mobility.SetPositionAllocator (positionAlloc);
148  mobility.Install (allNodes);
149 
150  // Create Devices and install them in the Nodes (eNB and UE)
151  NetDeviceContainer enbDevs;
152  NetDeviceContainer ueDevs1;
153  NetDeviceContainer ueDevs2;
154  lteHelper->SetSchedulerType ("ns3::RrFfMacScheduler");
155  lteHelper->SetSchedulerAttribute ("UlCqiFilter", EnumValue (FfMacScheduler::PUSCH_UL_CQI));
156  enbDevs = lteHelper->InstallEnbDevice (enbNodes);
157  ueDevs1 = lteHelper->InstallUeDevice (ueNodes1);
158  ueDevs2 = lteHelper->InstallUeDevice (ueNodes2);
159 
160  lteHelper->Attach (ueDevs1, enbDevs.Get (0));
161  lteHelper->Attach (ueDevs2, enbDevs.Get (1));
162 
163  // Activate an EPS bearer
165  EpsBearer bearer (q);
166  lteHelper->ActivateDataRadioBearer (ueDevs1, bearer);
167  lteHelper->ActivateDataRadioBearer (ueDevs2, bearer);
168 
169  // Use testing chunk processor in the PHY layer
170  // It will be used to test that the SNR is as intended
171  // we plug in two instances, one for DL and one for UL
172 
173  Ptr<LtePhy> ue1Phy = ueDevs1.Get (0)->GetObject<LteUeNetDevice> ()->GetPhy ()->GetObject<LtePhy> ();
174  Ptr<LteTestSinrChunkProcessor> testDlSinr1 = Create<LteTestSinrChunkProcessor> (ue1Phy);
175  ue1Phy->GetDownlinkSpectrumPhy ()->AddDataSinrChunkProcessor (testDlSinr1);
176 
177  Ptr<LtePhy> enb1phy = enbDevs.Get (0)->GetObject<LteEnbNetDevice> ()->GetPhy ()->GetObject<LtePhy> ();
178  Ptr<LteTestSinrChunkProcessor> testUlSinr1 = Create<LteTestSinrChunkProcessor> (enb1phy);
179  enb1phy->GetUplinkSpectrumPhy ()->AddDataSinrChunkProcessor (testUlSinr1);
180 
181  Config::Connect ("/NodeList/0/DeviceList/0/LteEnbMac/DlScheduling",
183 
184  Config::Connect ("/NodeList/0/DeviceList/0/LteEnbMac/UlScheduling",
186 
187 
188  // same as above for eNB2 and UE2
189 
190  Ptr<LtePhy> ue2Phy = ueDevs2.Get (0)->GetObject<LteUeNetDevice> ()->GetPhy ()->GetObject<LtePhy> ();
191  Ptr<LteTestSinrChunkProcessor> testDlSinr2 = Create<LteTestSinrChunkProcessor> (ue2Phy);
192  ue2Phy->GetDownlinkSpectrumPhy ()->AddDataSinrChunkProcessor (testDlSinr2);
193 
194  Ptr<LtePhy> enb2phy = enbDevs.Get (1)->GetObject<LteEnbNetDevice> ()->GetPhy ()->GetObject<LtePhy> ();
195  Ptr<LteTestSinrChunkProcessor> testUlSinr2 = Create<LteTestSinrChunkProcessor> (enb2phy);
196  enb1phy->GetUplinkSpectrumPhy ()->AddDataSinrChunkProcessor (testUlSinr2);
197 
198  Config::Connect ("/NodeList/1/DeviceList/0/LteEnbMac/DlScheduling",
200 
201  Config::Connect ("/NodeList/1/DeviceList/0/LteEnbMac/UlScheduling",
203 
204 // need to allow for RRC connection establishment + SRS
205  Simulator::Stop (Seconds (0.100));
206  Simulator::Run ();
207 
208  if (m_dlMcs > 0)
209  {
210  double dlSinr1Db = 10.0 * std::log10 (testDlSinr1->GetSinr ()->operator[] (0));
211  NS_TEST_ASSERT_MSG_EQ_TOL (dlSinr1Db, m_dlSinrDb, 0.01, "Wrong SINR in DL! (eNB1 --> UE1)");
212 
213  double dlSinr2Db = 10.0 * std::log10 (testDlSinr2->GetSinr ()->operator[] (0));
214  NS_TEST_ASSERT_MSG_EQ_TOL (dlSinr2Db, m_dlSinrDb, 0.01, "Wrong SINR in DL! (eNB2 --> UE2)");
215  }
216  if (m_ulMcs > 0)
217  {
218  double ulSinr1Db = 10.0 * std::log10 (testUlSinr1->GetSinr ()->operator[] (0));
219  NS_TEST_ASSERT_MSG_EQ_TOL (ulSinr1Db, m_ulSinrDb, 0.01, "Wrong SINR in UL! (UE1 --> eNB1)");
220 
221  double ulSinr2Db = 10.0 * std::log10 (testUlSinr2->GetSinr ()->operator[] (0));
222  NS_TEST_ASSERT_MSG_EQ_TOL (ulSinr2Db, m_ulSinrDb, 0.01, "Wrong SINR in UL! (UE2 --> eNB2)");
223  }
224 
226 
227 }
228 
229 
230 void
231 LteInterferenceTestCase::DlScheduling (uint32_t frameNo, uint32_t subframeNo, uint16_t rnti,
232  uint8_t mcsTb1, uint16_t sizeTb1, uint8_t mcsTb2, uint16_t sizeTb2)
233 {
234  // need to allow for RRC connection establishment + CQI feedback reception
235  if (Simulator::Now () > MilliSeconds (35))
236  {
237  NS_TEST_ASSERT_MSG_EQ ((uint32_t)mcsTb1, (uint32_t)m_dlMcs, "Wrong DL MCS ");
238  }
239 }
240 
241 void
242 LteInterferenceTestCase::UlScheduling (uint32_t frameNo, uint32_t subframeNo, uint16_t rnti,
243  uint8_t mcs, uint16_t sizeTb)
244 {
245  // need to allow for RRC connection establishment + SRS transmission
246  if (Simulator::Now () > MilliSeconds (50))
247  {
248  NS_TEST_ASSERT_MSG_EQ ((uint32_t)mcs, (uint32_t)m_ulMcs, "Wrong UL MCS");
249  }
250 }
251 
252 } // namespace ns3
253 
void LteTestUlSchedulingCallback(LteInterferenceTestCase *testcase, std::string path, uint32_t frameNo, uint32_t subframeNo, uint16_t rnti, uint8_t mcs, uint16_t sizeTb)
smart pointer class similar to boost::intrusive_ptr
Definition: ptr.h:59
Hold a bool native type.
Definition: boolean.h:38
void LteTestDlSchedulingCallback(LteInterferenceTestCase *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)
hold variables of type string
Definition: string.h:19
Ptr< NetDevice > Get(uint32_t i) const
Get the Ptr stored in this container at a given index.
#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:326
A suite of tests to run.
Definition: test.h:1025
Callback< R > MakeBoundCallback(R(*fnPtr)(TX), ARG a1)
Definition: callback.h:1463
static LteInterferenceTestSuite lteLinkAdaptationWithInterferenceTestSuite
void DlScheduling(uint32_t frameNo, uint32_t subframeNo, uint16_t rnti, uint8_t mcsTb1, uint16_t sizeTb1, uint8_t mcsTb2, uint16_t sizeTb2)
virtual void DoRun(void)
Implementation to actually run this TestCase.
static void Run(void)
Definition: simulator.cc:157
#define NS_LOG_INFO(msg)
Definition: log.h:264
encapsulates test code
Definition: test.h:849
void Connect(std::string path, const CallbackBase &cb)
Definition: config.cc:728
a 3d vector
Definition: vector.h:31
LteInterferenceTestCase(std::string name, double d1, double d2, double dlSinr, double ulSinr, double dlSe, double ulSe, uint16_t dlMcs, uint16_t ulMcs)
void Install(Ptr< Node > node) const
"Layout" a single node according to the current position allocator type.
hold variables of type 'enum'
Definition: enum.h:37
holds a vector of ns3::NetDevice pointers
NS_LOG_COMPONENT_DEFINE("LteInterferenceTest")
static void Destroy(void)
Definition: simulator.cc:121
void SetDefault(std::string name, const AttributeValue &value)
Definition: config.cc:667
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())
static Time Now(void)
Definition: simulator.cc:180
void AddTestCase(TestCase *testCase) NS_DEPRECATED
Add an individual child TestCase case to this TestCase.
Definition: test.cc:172
void UlScheduling(uint32_t frameNo, uint32_t subframeNo, uint16_t rnti, uint8_t mcs, uint16_t sizeTb)
Fast test.
Definition: test.h:857
Helper class used to assign positions and mobility models to nodes.
static void Stop(void)
Definition: simulator.cc:165
std::string GetName(void) const
Definition: test.cc:241
void Create(uint32_t n)
Create n nodes and append pointers to them to the end of this NodeContainer.
void SetPositionAllocator(Ptr< PositionAllocator > allocator)
Hold an floating point type.
Definition: double.h:41
Ptr< T > GetObject(void) const
Definition: object.h:360
#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:137