A Discrete-Event Network Simulator
API
ht-wifi-network.cc
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1 /* -*- Mode: C++; c-file-style: "gnu"; indent-tabs-mode:nil; -*- */
2 /*
3  * Copyright (c) 2009 MIRKO BANCHI
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  * Authors: Mirko Banchi <mk.banchi@gmail.com>
19  * Sebastien Deronne <sebastien.deronne@gmail.com>
20  */
21 
22 #include "ns3/core-module.h"
23 #include "ns3/network-module.h"
24 #include "ns3/applications-module.h"
25 #include "ns3/wifi-module.h"
26 #include "ns3/mobility-module.h"
27 #include "ns3/ipv4-global-routing-helper.h"
28 #include "ns3/internet-module.h"
29 
30 // This is a simple example in order to show how to configure an IEEE 802.11n Wi-Fi network.
31 //
32 // It ouputs the UDP or TCP goodput for every VHT bitrate value, which depends on the MCS value (0 to 7), the
33 // channel width (20 or 40 MHz) and the guard interval (long or short). The PHY bitrate is constant over all
34 // the simulation run. The user can also specify the distance between the access point and the station: the
35 // larger the distance the smaller the goodput.
36 //
37 // The simulation assumes a single station in an infrastructure network:
38 //
39 // STA AP
40 // * *
41 // | |
42 // n1 n2
43 //
44 //Packets in this simulation aren't marked with a QosTag so they are considered
45 //belonging to BestEffort Access Class (AC_BE).
46 
47 using namespace ns3;
48 
49 NS_LOG_COMPONENT_DEFINE ("ht-wifi-network");
50 
51 int main (int argc, char *argv[])
52 {
53  bool udp = true;
54  double simulationTime = 10; //seconds
55  double distance = 1.0; //meters
56  double frequency = 5.0; //whether 2.4 or 5.0 GHz
57 
59  cmd.AddValue ("frequency", "Whether working in the 2.4 or 5.0 GHz band (other values gets rejected)", frequency);
60  cmd.AddValue ("distance", "Distance in meters between the station and the access point", distance);
61  cmd.AddValue ("simulationTime", "Simulation time in seconds", simulationTime);
62  cmd.AddValue ("udp", "UDP if set to 1, TCP otherwise", udp);
63  cmd.Parse (argc,argv);
64 
65  std::cout << "MCS value" << "\t\t" << "Channel width" << "\t\t" << "short GI" << "\t\t" << "Throughput" << '\n';
66  for (int i = 0; i <= 7; i++) //MCS
67  {
68  for (int j = 20; j <= 40; ) //channel width
69  {
70  for (int k = 0; k < 2; k++) //GI: 0 and 1
71  {
72  uint32_t payloadSize; //1500 byte IP packet
73  if (udp)
74  {
75  payloadSize = 1472; //bytes
76  }
77  else
78  {
79  payloadSize = 1448; //bytes
80  Config::SetDefault ("ns3::TcpSocket::SegmentSize", UintegerValue (payloadSize));
81  }
82 
83  NodeContainer wifiStaNode;
84  wifiStaNode.Create (1);
86  wifiApNode.Create (1);
87 
90  phy.SetChannel (channel.Create ());
91 
92  // Set guard interval
93  phy.Set ("ShortGuardEnabled", BooleanValue (k));
94 
97  if (frequency == 5.0)
98  {
100  }
101  else if (frequency == 2.4)
102  {
104  Config::SetDefault ("ns3::LogDistancePropagationLossModel::ReferenceLoss", DoubleValue (40.046));
105  }
106  else
107  {
108  std::cout<<"Wrong frequency value!"<<std::endl;
109  return 0;
110  }
111 
112  std::ostringstream oss;
113  oss << "HtMcs" << i;
114  wifi.SetRemoteStationManager ("ns3::ConstantRateWifiManager","DataMode", StringValue (oss.str ()),
115  "ControlMode", StringValue (oss.str ()));
116 
117  Ssid ssid = Ssid ("ns3-80211n");
118 
119  mac.SetType ("ns3::StaWifiMac",
120  "Ssid", SsidValue (ssid),
121  "ActiveProbing", BooleanValue (false));
122 
123  NetDeviceContainer staDevice;
124  staDevice = wifi.Install (phy, mac, wifiStaNode);
125 
126  mac.SetType ("ns3::ApWifiMac",
127  "Ssid", SsidValue (ssid));
128 
129  NetDeviceContainer apDevice;
130  apDevice = wifi.Install (phy, mac, wifiApNode);
131 
132  // Set channel width
133  Config::Set ("/NodeList/*/DeviceList/*/$ns3::WifiNetDevice/Phy/ChannelWidth", UintegerValue (j));
134 
135  // mobility.
137  Ptr<ListPositionAllocator> positionAlloc = CreateObject<ListPositionAllocator> ();
138 
139  positionAlloc->Add (Vector (0.0, 0.0, 0.0));
140  positionAlloc->Add (Vector (distance, 0.0, 0.0));
141  mobility.SetPositionAllocator (positionAlloc);
142 
143  mobility.SetMobilityModel ("ns3::ConstantPositionMobilityModel");
144 
145  mobility.Install (wifiApNode);
146  mobility.Install (wifiStaNode);
147 
148  /* Internet stack*/
150  stack.Install (wifiApNode);
151  stack.Install (wifiStaNode);
152 
154 
155  address.SetBase ("192.168.1.0", "255.255.255.0");
156  Ipv4InterfaceContainer staNodeInterface;
157  Ipv4InterfaceContainer apNodeInterface;
158 
159  staNodeInterface = address.Assign (staDevice);
160  apNodeInterface = address.Assign (apDevice);
161 
162  /* Setting applications */
163  ApplicationContainer serverApp, sinkApp;
164  if (udp)
165  {
166  //UDP flow
167  UdpServerHelper myServer (9);
168  serverApp = myServer.Install (wifiStaNode.Get (0));
169  serverApp.Start (Seconds (0.0));
170  serverApp.Stop (Seconds (simulationTime + 1));
171 
172  UdpClientHelper myClient (staNodeInterface.GetAddress (0), 9);
173  myClient.SetAttribute ("MaxPackets", UintegerValue (4294967295u));
174  myClient.SetAttribute ("Interval", TimeValue (Time ("0.00001"))); //packets/s
175  myClient.SetAttribute ("PacketSize", UintegerValue (payloadSize));
176 
177  ApplicationContainer clientApp = myClient.Install (wifiApNode.Get (0));
178  clientApp.Start (Seconds (1.0));
179  clientApp.Stop (Seconds (simulationTime + 1));
180  }
181  else
182  {
183  //TCP flow
184  uint16_t port = 50000;
185  Address apLocalAddress (InetSocketAddress (Ipv4Address::GetAny (), port));
186  PacketSinkHelper packetSinkHelper ("ns3::TcpSocketFactory", apLocalAddress);
187  sinkApp = packetSinkHelper.Install (wifiStaNode.Get (0));
188 
189  sinkApp.Start (Seconds (0.0));
190  sinkApp.Stop (Seconds (simulationTime + 1));
191 
192  OnOffHelper onoff ("ns3::TcpSocketFactory",Ipv4Address::GetAny ());
193  onoff.SetAttribute ("OnTime", StringValue ("ns3::ConstantRandomVariable[Constant=1]"));
194  onoff.SetAttribute ("OffTime", StringValue ("ns3::ConstantRandomVariable[Constant=0]"));
195  onoff.SetAttribute ("PacketSize", UintegerValue (payloadSize));
196  onoff.SetAttribute ("DataRate", DataRateValue (1000000000)); //bit/s
198 
199  AddressValue remoteAddress (InetSocketAddress (staNodeInterface.GetAddress (0), port));
200  onoff.SetAttribute ("Remote", remoteAddress);
201  apps.Add (onoff.Install (wifiApNode.Get (0)));
202  apps.Start (Seconds (1.0));
203  apps.Stop (Seconds (simulationTime + 1));
204  }
205 
207 
208  Simulator::Stop (Seconds (simulationTime + 1));
209  Simulator::Run ();
211 
212  double throughput = 0;
213  if (udp)
214  {
215  //UDP
216  uint32_t totalPacketsThrough = DynamicCast<UdpServer> (serverApp.Get (0))->GetReceived ();
217  throughput = totalPacketsThrough * payloadSize * 8 / (simulationTime * 1000000.0); //Mbit/s
218  }
219  else
220  {
221  //TCP
222  uint32_t totalPacketsThrough = DynamicCast<PacketSink> (sinkApp.Get (0))->GetTotalRx ();
223  throughput = totalPacketsThrough * 8 / (simulationTime * 1000000.0); //Mbit/s
224  }
225  std::cout << i << "\t\t\t" << j << " MHz\t\t\t" << k << "\t\t\t" << throughput << " Mbit/s" << std::endl;
226  }
227  j *= 2;
228  }
229  }
230  return 0;
231 }
tuple channel
Definition: third.py:85
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:34
HT OFDM PHY for the 5 GHz band (clause 20)
holds a vector of std::pair of Ptr and interface index.
Ptr< YansWifiChannel > Create(void) const
void SetRemoteStationManager(std::string type, std::string n0="", const AttributeValue &v0=EmptyAttributeValue(), 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())
Definition: wifi-helper.cc:71
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:769
void Add(ApplicationContainer other)
Append the contents of another ApplicationContainer to the end of this container. ...
static void Run(void)
Run the simulation.
Definition: simulator.cc:200
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Definition: log.h:201
aggregate IP/TCP/UDP functionality to existing Nodes.
A helper to make it easier to instantiate an ns3::PacketSinkApplication on a set of nodes...
void Set(std::string name, const AttributeValue &v)
HT OFDM PHY for the 2.4 GHz band (clause 20)
static YansWifiPhyHelper Default(void)
Create a phy helper in a default working state.
helps to create WifiNetDevice objects
Definition: wifi-helper.h:76
A helper to make it easier to instantiate an ns3::OnOffApplication on a set of nodes.
Definition: on-off-helper.h:42
tuple cmd
Definition: second.py:35
virtual NetDeviceContainer Install(const WifiPhyHelper &phy, const WifiMacHelper &mac, NodeContainer c) const
Definition: wifi-helper.cc:100
uint16_t port
Definition: dsdv-manet.cc:44
a polymophic address class
Definition: address.h:90
void SetChannel(Ptr< YansWifiChannel > channel)
void Install(Ptr< Node > node) const
"Layout" a single node according to the current position allocator type.
tuple mobility
Definition: third.py:101
tuple phy
Definition: third.py:86
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:957
Hold an unsigned integer type.
Definition: uinteger.h:44
holds a vector of ns3::NetDevice pointers
virtual void SetStandard(enum WifiPhyStandard standard)
Definition: wifi-helper.cc:94
Create a server application which waits for input UDP packets and uses the information carried into t...
tuple mac
Definition: third.py:92
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:201
static void Destroy(void)
Execute the events scheduled with ScheduleDestroy().
Definition: simulator.cc:164
tuple wifiApNode
Definition: third.py:83
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.
Ptr< Application > Get(uint32_t i) const
Get the Ptr stored in this container at a given index.
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 Install(std::string nodeName) const
Aggregate implementations of the ns3::Ipv4, ns3::Ipv6, ns3::Udp, and ns3::Tcp classes onto the provid...
tuple ssid
Definition: third.py:93
manage and create wifi channel objects for the yans model.
create MAC layers for a ns3::WifiNetDevice.
tuple stack
Definition: first.py:34
The IEEE 802.11 SSID Information Element.
Definition: ssid.h:38
virtual void SetType(std::string type, std::string n0="", const AttributeValue &v0=EmptyAttributeValue(), 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(), std::string n10="", const AttributeValue &v10=EmptyAttributeValue())
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...
Ipv4InterfaceContainer Assign(const NetDeviceContainer &c)
Assign IP addresses to the net devices specified in the container based on the current network prefix...
AttributeValue implementation for DataRate.
Definition: data-rate.h:241
void AddValue(const std::string &name, const std::string &help, T &value)
Add a program argument, assigning to POD.
Definition: command-line.h:491
static void Stop(void)
Tell the Simulator the calling event should be the last one executed.
Definition: simulator.cc:208
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
AttributeValue implementation for Ssid.
Definition: ssid.h:95
void SetDefault(std::string name, const AttributeValue &value)
Definition: config.cc:774
void Add(Vector v)
Add a position to the list of positions.
void Parse(int argc, char *argv[])
Parse the program arguments.
A helper class to make life easier while doing simple IPv4 address assignment in scripts.
tuple wifi
Definition: third.py:89
void Create(uint32_t n)
Create n nodes and append pointers to them to the end of this NodeContainer.
tuple address
Definition: first.py:37
void SetPositionAllocator(Ptr< PositionAllocator > allocator)
Set the position allocator which will be used to allocate the initial position of every node initiali...
This class can be used to hold variables of floating point type such as 'double' or 'float'...
Definition: double.h:41
void SetBase(Ipv4Address network, Ipv4Mask mask, Ipv4Address base="0.0.0.1")
Set the base network number, network mask and base address.
Ipv4Address GetAddress(uint32_t i, uint32_t j=0) const