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lte-hex-grid-enb-topology-helper.cc
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1 /* -*- Mode: C++; c-file-style: "gnu"; indent-tabs-mode:nil; -*- */
2 /*
3  * Copyright 2012 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: Nicola Baldo <nbaldo@cttc.es>
19  */
20 
21 
23 #include <ns3/double.h>
24 #include <ns3/log.h>
25 #include <ns3/abort.h>
26 #include <ns3/pointer.h>
27 #include <ns3/epc-helper.h>
28 #include <iostream>
29 
30 
31 NS_LOG_COMPONENT_DEFINE ("LteHexGridEnbTopologyHelper");
32 
33 namespace ns3 {
34 
35 NS_OBJECT_ENSURE_REGISTERED (LteHexGridEnbTopologyHelper);
36 
38 {
39  NS_LOG_FUNCTION (this);
40 }
41 
43 {
44  NS_LOG_FUNCTION (this);
45 }
46 
48 {
49  static TypeId
50  tid =
51  TypeId ("ns3::LteHexGridEnbTopologyHelper")
52  .SetParent<Object> ()
53  .AddConstructor<LteHexGridEnbTopologyHelper> ()
54  .AddAttribute ("InterSiteDistance",
55  "The distance [m] between nearby sites",
56  DoubleValue (500),
57  MakeDoubleAccessor (&LteHexGridEnbTopologyHelper::m_d),
58  MakeDoubleChecker<double> ())
59  .AddAttribute ("SectorOffset",
60  "The offset [m] in the position for the node of each sector with respect "
61  "to the center of the three-sector site",
62  DoubleValue (0.5),
63  MakeDoubleAccessor (&LteHexGridEnbTopologyHelper::m_offset),
64  MakeDoubleChecker<double> ())
65  .AddAttribute ("SiteHeight",
66  "The height [m] of each site",
67  DoubleValue (30),
68  MakeDoubleAccessor (&LteHexGridEnbTopologyHelper::m_siteHeight),
69  MakeDoubleChecker<double> ())
70  .AddAttribute ("MinX", "The x coordinate where the hex grid starts.",
71  DoubleValue (0.0),
72  MakeDoubleAccessor (&LteHexGridEnbTopologyHelper::m_xMin),
73  MakeDoubleChecker<double> ())
74  .AddAttribute ("MinY", "The y coordinate where the hex grid starts.",
75  DoubleValue (0.0),
76  MakeDoubleAccessor (&LteHexGridEnbTopologyHelper::m_yMin),
77  MakeDoubleChecker<double> ())
78  .AddAttribute ("GridWidth", "The number of sites in even rows (odd rows will have one additional site).",
79  UintegerValue (1),
80  MakeUintegerAccessor (&LteHexGridEnbTopologyHelper::m_gridWidth),
81  MakeUintegerChecker<uint32_t> ())
82  ;
83  return tid;
84 }
85 
86 void
88 {
89  NS_LOG_FUNCTION (this);
91 }
92 
93 
94 void
96 {
97  NS_LOG_FUNCTION (this << h);
98  m_lteHelper = h;
99 }
100 
103 {
104  NS_LOG_FUNCTION (this);
105  NetDeviceContainer enbDevs;
106  const double xydfactor = sqrt (0.75);
107  double yd = xydfactor*m_d;
108  for (uint32_t n = 0; n < c.GetN (); ++n)
109  {
110  uint32_t currentSite = n / 3;
111  uint32_t biRowIndex = (currentSite / (m_gridWidth + m_gridWidth + 1));
112  uint32_t biRowRemainder = currentSite % (m_gridWidth + m_gridWidth + 1);
113  uint32_t rowIndex = biRowIndex*2;
114  uint32_t colIndex = biRowRemainder;
115  if (biRowRemainder >= m_gridWidth)
116  {
117  ++rowIndex;
118  colIndex -= m_gridWidth;
119  }
120  NS_LOG_LOGIC ("node " << n << " site " << currentSite
121  << " rowIndex " << rowIndex
122  << " colIndex " << colIndex
123  << " biRowIndex " << biRowIndex
124  << " biRowRemainder " << biRowRemainder);
125  double y = m_yMin + yd * rowIndex;
126  double x;
127  double antennaOrientation;
128  if ((rowIndex % 2) == 0)
129  {
130  x = m_xMin + m_d * colIndex;
131  }
132  else // row is odd
133  {
134  x = m_xMin -(0.5*m_d) + m_d * colIndex;
135  }
136 
137  switch (n%3)
138  {
139  case 0:
140  antennaOrientation = 0;
141  x += m_offset;
142  break;
143 
144  case 1:
145  antennaOrientation = 120;
146  x -= m_offset/2.0;
147  y += m_offset*xydfactor;
148  break;
149 
150  case 2:
151  antennaOrientation = -120;
152  x -= m_offset/2.0;
153  y -= m_offset*xydfactor;
154  break;
155 
156  default:
157  break;
158  }
159  Ptr<Node> node = c.Get (n);
161  Vector pos (x, y, m_siteHeight);
162  NS_LOG_LOGIC ("node " << n << " at " << pos << " antennaOrientation " << antennaOrientation);
163  mm->SetPosition (Vector (x, y, m_siteHeight));
164  m_lteHelper->SetEnbAntennaModelAttribute ("Orientation", DoubleValue (antennaOrientation));
165  enbDevs.Add (m_lteHelper->InstallEnbDevice (node));
166  }
167  return enbDevs;
168 }
169 
170 } // namespace ns3
171