A Discrete-Event Network Simulator
API
he-wifi-network.cc
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1 /* -*- Mode: C++; c-file-style: "gnu"; indent-tabs-mode:nil; -*- */
2 /*
3  * Copyright (c) 2016 SEBASTIEN DERONNE
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  *
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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: Sebastien Deronne <sebastien.deronne@gmail.com>
19  */
20 
21 #include "ns3/command-line.h"
22 #include "ns3/config.h"
23 #include "ns3/uinteger.h"
24 #include "ns3/boolean.h"
25 #include "ns3/double.h"
26 #include "ns3/string.h"
27 #include "ns3/log.h"
28 #include "ns3/yans-wifi-helper.h"
29 #include "ns3/ssid.h"
30 #include "ns3/mobility-helper.h"
31 #include "ns3/internet-stack-helper.h"
32 #include "ns3/ipv4-address-helper.h"
33 #include "ns3/udp-client-server-helper.h"
34 #include "ns3/packet-sink-helper.h"
35 #include "ns3/on-off-helper.h"
36 #include "ns3/ipv4-global-routing-helper.h"
37 #include "ns3/packet-sink.h"
38 #include "ns3/yans-wifi-channel.h"
39 
40 // This is a simple example in order to show how to configure an IEEE 802.11ax Wi-Fi network.
41 //
42 // It outputs the UDP or TCP goodput for every HE MCS value, which depends on the MCS value (0 to 11),
43 // the channel width (20, 40, 80 or 160 MHz) and the guard interval (800ns, 1600ns or 3200ns).
44 // The PHY bitrate is constant over all the simulation run. The user can also specify the distance between
45 // the access point and the station: the larger the distance the smaller the goodput.
46 //
47 // The simulation assumes a single station in an infrastructure network:
48 //
49 // STA AP
50 // * *
51 // | |
52 // n1 n2
53 //
54 //Packets in this simulation aren't marked with a QosTag so they are considered
55 //belonging to BestEffort Access Class (AC_BE).
56 
57 using namespace ns3;
58 
59 NS_LOG_COMPONENT_DEFINE ("he-wifi-network");
60 
61 int main (int argc, char *argv[])
62 {
63  bool udp = true;
64  bool useRts = false;
65  bool useExtendedBlockAck = false;
66  double simulationTime = 10; //seconds
67  double distance = 1.0; //meters
68  double frequency = 5.0; //whether 2.4 or 5.0 GHz
69  int mcs = -1; // -1 indicates an unset value
70  double minExpectedThroughput = 0;
71  double maxExpectedThroughput = 0;
72 
74  cmd.AddValue ("frequency", "Whether working in the 2.4 or 5.0 GHz band (other values gets rejected)", frequency);
75  cmd.AddValue ("distance", "Distance in meters between the station and the access point", distance);
76  cmd.AddValue ("simulationTime", "Simulation time in seconds", simulationTime);
77  cmd.AddValue ("udp", "UDP if set to 1, TCP otherwise", udp);
78  cmd.AddValue ("useRts", "Enable/disable RTS/CTS", useRts);
79  cmd.AddValue ("useExtendedBlockAck", "Enable/disable use of extended BACK", useExtendedBlockAck);
80  cmd.AddValue ("mcs", "if set, limit testing to a specific MCS (0-11)", mcs);
81  cmd.AddValue ("minExpectedThroughput", "if set, simulation fails if the lowest throughput is below this value", minExpectedThroughput);
82  cmd.AddValue ("maxExpectedThroughput", "if set, simulation fails if the highest throughput is above this value", maxExpectedThroughput);
83  cmd.Parse (argc,argv);
84 
85  if (useRts)
86  {
87  Config::SetDefault ("ns3::WifiRemoteStationManager::RtsCtsThreshold", StringValue ("0"));
88  }
89 
90  double prevThroughput [12];
91  for (uint32_t l = 0; l < 12; l++)
92  {
93  prevThroughput[l] = 0;
94  }
95  std::cout << "MCS value" << "\t\t" << "Channel width" << "\t\t" << "GI" << "\t\t\t" << "Throughput" << '\n';
96  int minMcs = 0;
97  int maxMcs = 11;
98  if (mcs >= 0 && mcs <= 11)
99  {
100  minMcs = mcs;
101  maxMcs = mcs;
102  }
103  for (int mcs = minMcs; mcs <= maxMcs; mcs++)
104  {
105  uint8_t index = 0;
106  double previous = 0;
107  uint8_t maxChannelWidth = frequency == 2.4 ? 40 : 160;
108  for (int channelWidth = 20; channelWidth <= maxChannelWidth; ) //MHz
109  {
110  for (int gi = 3200; gi >= 800; ) //Nanoseconds
111  {
112  uint32_t payloadSize; //1500 byte IP packet
113  if (udp)
114  {
115  payloadSize = 1472; //bytes
116  }
117  else
118  {
119  payloadSize = 1448; //bytes
120  Config::SetDefault ("ns3::TcpSocket::SegmentSize", UintegerValue (payloadSize));
121  }
122 
123  NodeContainer wifiStaNode;
124  wifiStaNode.Create (1);
126  wifiApNode.Create (1);
127 
130  phy.SetChannel (channel.Create ());
131 
134  if (frequency == 5.0)
135  {
136  wifi.SetStandard (WIFI_PHY_STANDARD_80211ax_5GHZ);
137  }
138  else if (frequency == 2.4)
139  {
141  Config::SetDefault ("ns3::LogDistancePropagationLossModel::ReferenceLoss", DoubleValue (40.046));
142  }
143  else
144  {
145  std::cout << "Wrong frequency value!" << std::endl;
146  return 0;
147  }
148 
149  std::ostringstream oss;
150  oss << "HeMcs" << mcs;
151  wifi.SetRemoteStationManager ("ns3::ConstantRateWifiManager","DataMode", StringValue (oss.str ()),
152  "ControlMode", StringValue (oss.str ()));
153 
154  Ssid ssid = Ssid ("ns3-80211ax");
155 
156  mac.SetType ("ns3::StaWifiMac",
157  "Ssid", SsidValue (ssid));
158 
159  NetDeviceContainer staDevice;
160  staDevice = wifi.Install (phy, mac, wifiStaNode);
161 
162  mac.SetType ("ns3::ApWifiMac",
163  "EnableBeaconJitter", BooleanValue (false),
164  "Ssid", SsidValue (ssid));
165 
166  NetDeviceContainer apDevice;
167  apDevice = wifi.Install (phy, mac, wifiApNode);
168 
169  // Set channel width, guard interval and MPDU buffer size
170  Config::Set ("/NodeList/*/DeviceList/*/$ns3::WifiNetDevice/Phy/ChannelWidth", UintegerValue (channelWidth));
171  Config::Set ("/NodeList/*/DeviceList/*/$ns3::WifiNetDevice/HeConfiguration/GuardInterval", TimeValue (NanoSeconds (gi)));
172  Config::Set ("/NodeList/*/DeviceList/*/$ns3::WifiNetDevice/HeConfiguration/MpduBufferSize", UintegerValue (useExtendedBlockAck ? 256 : 64));
173 
174  // mobility.
176  Ptr<ListPositionAllocator> positionAlloc = CreateObject<ListPositionAllocator> ();
177 
178  positionAlloc->Add (Vector (0.0, 0.0, 0.0));
179  positionAlloc->Add (Vector (distance, 0.0, 0.0));
180  mobility.SetPositionAllocator (positionAlloc);
181 
182  mobility.SetMobilityModel ("ns3::ConstantPositionMobilityModel");
183 
184  mobility.Install (wifiApNode);
185  mobility.Install (wifiStaNode);
186 
187  /* Internet stack*/
189  stack.Install (wifiApNode);
190  stack.Install (wifiStaNode);
191 
193  address.SetBase ("192.168.1.0", "255.255.255.0");
194  Ipv4InterfaceContainer staNodeInterface;
195  Ipv4InterfaceContainer apNodeInterface;
196 
197  staNodeInterface = address.Assign (staDevice);
198  apNodeInterface = address.Assign (apDevice);
199 
200  /* Setting applications */
201  ApplicationContainer serverApp;
202  if (udp)
203  {
204  //UDP flow
205  uint16_t port = 9;
206  UdpServerHelper server (port);
207  serverApp = server.Install (wifiStaNode.Get (0));
208  serverApp.Start (Seconds (0.0));
209  serverApp.Stop (Seconds (simulationTime + 1));
210 
211  UdpClientHelper client (staNodeInterface.GetAddress (0), port);
212  client.SetAttribute ("MaxPackets", UintegerValue (4294967295u));
213  client.SetAttribute ("Interval", TimeValue (Time ("0.00001"))); //packets/s
214  client.SetAttribute ("PacketSize", UintegerValue (payloadSize));
215  ApplicationContainer clientApp = client.Install (wifiApNode.Get (0));
216  clientApp.Start (Seconds (1.0));
217  clientApp.Stop (Seconds (simulationTime + 1));
218  }
219  else
220  {
221  //TCP flow
222  uint16_t port = 50000;
223  Address localAddress (InetSocketAddress (Ipv4Address::GetAny (), port));
224  PacketSinkHelper packetSinkHelper ("ns3::TcpSocketFactory", localAddress);
225  serverApp = packetSinkHelper.Install (wifiStaNode.Get (0));
226  serverApp.Start (Seconds (0.0));
227  serverApp.Stop (Seconds (simulationTime + 1));
228 
229  OnOffHelper onoff ("ns3::TcpSocketFactory", Ipv4Address::GetAny ());
230  onoff.SetAttribute ("OnTime", StringValue ("ns3::ConstantRandomVariable[Constant=1]"));
231  onoff.SetAttribute ("OffTime", StringValue ("ns3::ConstantRandomVariable[Constant=0]"));
232  onoff.SetAttribute ("PacketSize", UintegerValue (payloadSize));
233  onoff.SetAttribute ("DataRate", DataRateValue (1000000000)); //bit/s
234  AddressValue remoteAddress (InetSocketAddress (staNodeInterface.GetAddress (0), port));
235  onoff.SetAttribute ("Remote", remoteAddress);
236  ApplicationContainer clientApp = onoff.Install (wifiApNode.Get (0));
237  clientApp.Start (Seconds (1.0));
238  clientApp.Stop (Seconds (simulationTime + 1));
239  }
240 
242 
243  Simulator::Stop (Seconds (simulationTime + 1));
244  Simulator::Run ();
245 
246  uint64_t rxBytes = 0;
247  if (udp)
248  {
249  rxBytes = payloadSize * DynamicCast<UdpServer> (serverApp.Get (0))->GetReceived ();
250  }
251  else
252  {
253  rxBytes = DynamicCast<PacketSink> (serverApp.Get (0))->GetTotalRx ();
254  }
255  double throughput = (rxBytes * 8) / (simulationTime * 1000000.0); //Mbit/s
256 
258 
259  std::cout << mcs << "\t\t\t" << channelWidth << " MHz\t\t\t" << gi << " ns\t\t\t" << throughput << " Mbit/s" << std::endl;
260 
261  //test first element
262  if (mcs == 0 && channelWidth == 20 && gi == 3200)
263  {
264  if (throughput < minExpectedThroughput)
265  {
266  NS_LOG_ERROR ("Obtained throughput " << throughput << " is not expected!");
267  exit (1);
268  }
269  }
270  //test last element
271  if (mcs == 11 && channelWidth == 160 && gi == 800)
272  {
273  if (maxExpectedThroughput > 0 && throughput > maxExpectedThroughput)
274  {
275  NS_LOG_ERROR ("Obtained throughput " << throughput << " is not expected!");
276  exit (1);
277  }
278  }
279  //test previous throughput is smaller (for the same mcs)
280  if (throughput > previous)
281  {
282  previous = throughput;
283  }
284  else
285  {
286  NS_LOG_ERROR ("Obtained throughput " << throughput << " is not expected!");
287  exit (1);
288  }
289  //test previous throughput is smaller (for the same channel width and GI)
290  if (throughput > prevThroughput [index])
291  {
292  prevThroughput [index] = throughput;
293  }
294  else
295  {
296  NS_LOG_ERROR ("Obtained throughput " << throughput << " is not expected!");
297  exit (1);
298  }
299  index++;
300  gi /= 2;
301  }
302  channelWidth *= 2;
303  }
304  }
305  return 0;
306 }
holds a vector of ns3::Application pointers.
Simulation virtual time values and global simulation resolution.
Definition: nstime.h:102
an Inet address class
static Ipv4Address GetAny(void)
Smart pointer class similar to boost::intrusive_ptr.
Definition: ptr.h:73
AttributeValue implementation for Boolean.
Definition: boolean.h:36
holds a vector of std::pair of Ptr<Ipv4> and interface index.
static void PopulateRoutingTables(void)
Build a routing database and initialize the routing tables of the nodes in the simulation.
Hold variables of type string.
Definition: string.h:41
Make it easy to create and manage PHY objects for the yans model.
static YansWifiChannelHelper Default(void)
Create a channel helper in a default working state.
void Set(std::string path, const AttributeValue &value)
Definition: config.cc:805
static void Run(void)
Run the simulation.
Definition: simulator.cc:170
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:204
HE PHY for the 2.4 GHz band (clause 26)
aggregate IP/TCP/UDP functionality to existing Nodes.
A helper to make it easier to instantiate an ns3::PacketSinkApplication on a set of nodes...
cmd
Definition: second.py:35
static YansWifiPhyHelper Default(void)
Create a phy helper in a default working state.
helps to create WifiNetDevice objects
Definition: wifi-helper.h:299
A helper to make it easier to instantiate an ns3::OnOffApplication on a set of nodes.
Definition: on-off-helper.h:42
stack
Definition: first.py:34
uint16_t port
Definition: dsdv-manet.cc:45
a polymophic address class
Definition: address.h:90
channel
Definition: third.py:85
mobility
Definition: third.py:101
phy
Definition: third.py:86
HE PHY for the 5 GHz band (clause 26)
Create a client application which sends UDP packets carrying a 32bit sequence number and a 64 bit tim...
AttributeValue implementation for Time.
Definition: nstime.h:1124
Ipv4Address GetAddress(uint32_t i, uint32_t j=0) const
Time NanoSeconds(uint64_t value)
Construct a Time in the indicated unit.
Definition: nstime.h:1086
Hold an unsigned integer type.
Definition: uinteger.h:44
ssid
Definition: third.py:93
holds a vector of ns3::NetDevice pointers
mac
Definition: third.py:92
Create a server application which waits for input UDP packets and uses the information carried into t...
wifiApNode
Definition: third.py:83
void Start(Time start)
Arrange for all of the Applications in this container to Start() at the Time given as a parameter...
Parse command-line arguments.
Definition: command-line.h:213
static void Destroy(void)
Execute the events scheduled with ScheduleDestroy().
Definition: simulator.cc:134
void SetAttribute(std::string name, const AttributeValue &value)
Record an attribute to be set in each Application after it is is created.
Every class exported by the ns3 library is enclosed in the ns3 namespace.
keep track of a set of node pointers.
address
Definition: first.py:37
manage and create wifi channel objects for the yans model.
create MAC layers for a ns3::WifiNetDevice.
The IEEE 802.11 SSID Information Element.
Definition: ssid.h:35
wifi
Definition: third.py:89
Helper class used to assign positions and mobility models to nodes.
AttributeValue implementation for Address.
Definition: address.h:278
void Stop(Time stop)
Arrange for all of the Applications in this container to Stop() at the Time given as a parameter...
AttributeValue implementation for DataRate.
Definition: data-rate.h:242
static void Stop(void)
Tell the Simulator the calling event should be the last one executed.
Definition: simulator.cc:178
Time Seconds(double value)
Construct a Time in the indicated unit.
Definition: nstime.h:1062
AttributeValue implementation for Ssid.
Definition: ssid.h:110
void SetDefault(std::string name, const AttributeValue &value)
Definition: config.cc:810
void Add(Vector v)
Add a position to the list of positions.
Ptr< Node > Get(uint32_t i) const
Get the Ptr<Node> stored in this container at a given index.
A helper class to make life easier while doing simple IPv4 address assignment in scripts.
#define NS_LOG_ERROR(msg)
Use NS_LOG to output a message of level LOG_ERROR.
Definition: log.h:256
void Create(uint32_t n)
Create n nodes and append pointers to them to the end of this NodeContainer.
This class can be used to hold variables of floating point type such as &#39;double&#39; or &#39;float&#39;...
Definition: double.h:41
Ptr< Application > Get(uint32_t i) const
Get the Ptr<Application> stored in this container at a given index.