60   static TypeId tid = 
TypeId (
"ns3::LteFfrDistributedAlgorithm")
 
   64     .AddAttribute (
"CalculationInterval",
 
   65                    "Time interval between calculation of Edge sub-band, Default value 1 second",
 
   69     .AddAttribute (
"RsrqThreshold",
 
   70                    "If the RSRQ of is worse than this threshold, UE should be served in Edge sub-band",
 
   73                    MakeUintegerChecker<uint8_t> ())
 
   74     .AddAttribute (
"RsrpDifferenceThreshold",
 
   75                    "If the difference between the power of the signal received by UE from " 
   76                    "the serving cell and the power of the signal received from the adjacent cell is less " 
   77                    "than a RsrpDifferenceThreshold value, the cell weight is incremented",
 
   80                    MakeUintegerChecker<uint8_t> ())
 
   81     .AddAttribute (
"CenterPowerOffset",
 
   82                    "PdschConfigDedicated::Pa value for Edge Sub-band, default value dB0",
 
   85                    MakeUintegerChecker<uint8_t> ())
 
   86     .AddAttribute (
"EdgePowerOffset",
 
   87                    "PdschConfigDedicated::Pa value for Edge Sub-band, default value dB0",
 
   90                    MakeUintegerChecker<uint8_t> ())
 
   91     .AddAttribute (
"EdgeRbNum",
 
   92                    "Number of RB that can be used in edge Sub-band",
 
   95                    MakeUintegerChecker<uint8_t> ())
 
   96     .AddAttribute (
"CenterAreaTpc",
 
   97                    "TPC value which will be set in DL-DCI for UEs in center area" 
   98                    "Absolute mode is used, default value 1 is mapped to -1 according to" 
   99                    "TS36.213 Table 5.1.1.1-2",
 
  102                    MakeUintegerChecker<uint8_t> ())
 
  103     .AddAttribute (
"EdgeAreaTpc",
 
  104                    "TPC value which will be set in DL-DCI for UEs in edge area" 
  105                    "Absolute mode is used, default value 1 is mapped to -1 according to" 
  106                    "TS36.213 Table 5.1.1.1-2",
 
  109                    MakeUintegerChecker<uint8_t> ())
 
  159   NS_LOG_LOGIC (
this << 
" requesting Event A1 and A4 measurements" 
  160                      << 
" (threshold = 0" << 
")");
 
  252   std::map< uint16_t, uint8_t >::iterator it = 
m_ues.find (rnti);
 
  253   if (it == 
m_ues.end ())
 
  265   return (edgeRbg && edgeUe) || (!edgeRbg && !edgeUe);
 
  293   std::map< uint16_t, uint8_t >::iterator it = 
m_ues.find (rnti);
 
  294   if (it == 
m_ues.end ())
 
  306   return (edgeRbg && edgeUe) || (!edgeRbg && !edgeUe);
 
  313   NS_LOG_WARN (
"Method should not be called, because it is empty");
 
  320   NS_LOG_WARN (
"Method should not be called, because it is empty");
 
  327   NS_LOG_WARN (
"Method should not be called, because it is empty");
 
  350   std::map< uint16_t, uint8_t >::iterator it = 
m_ues.find (rnti);
 
  351   if (it == 
m_ues.end ())
 
  377       return minContinuousUlBandwidth;
 
  380   minContinuousUlBandwidth =
 
  383   return minContinuousUlBandwidth;
 
  392                           << 
" RSRP: " << (uint16_t)measResults.
rsrpResult 
  393                           << 
" RSRQ: " << (uint16_t)measResults.
rsrqResult);
 
  398       std::map< uint16_t, uint8_t >::iterator it = 
m_ues.find (rnti);
 
  399       if (it == 
m_ues.end ())
 
  404       it = 
m_ues.find (rnti);
 
  409               NS_LOG_INFO (
"UE RNTI: " << rnti << 
" will be served in Center sub-band");
 
  421               NS_LOG_INFO (
"UE RNTI: " << rnti << 
" will be served in Edge sub-band");
 
  432       std::map< uint16_t, uint8_t >::iterator it = 
m_ues.find (rnti);
 
  433       if (it == 
m_ues.end ())
 
  443           for (std::list <LteRrcSap::MeasResultEutra>::iterator it = measResults.
measResultListEutra.begin ();
 
  448                              "RSRP measurement is missing from cellId " << it->physCellId);
 
  450                              "RSRQ measurement is missing from cellId " << it->physCellId);
 
  456                   if ((*ncIt) == it->physCellId)
 
  469           NS_LOG_WARN (
this << 
" Event A4 received without measurement results from neighbouring cells");
 
  493   MeasurementTable_t::iterator it1;
 
  494   MeasurementRow_t::iterator it2;
 
  498   uint32_t edgeUeNum = 0;
 
  499   std::map< uint16_t, uint8_t >::iterator areaIt;
 
  500   for (areaIt = 
m_ues.begin (); areaIt != 
m_ues.end (); areaIt++)
 
  512           std::map< uint16_t, uint8_t >::iterator areaIt = 
m_ues.find (it1->first);
 
  518           servingCellMeasures = 0;
 
  519           neighbourCellMeasures = 0;
 
  522           if (it2 != it1->second.end ())
 
  524               servingCellMeasures = it2->second;
 
  531           for (it2 = it1->second.begin (); it2 != it1->second.end (); it2++)
 
  535                   neighbourCellMeasures = it2->second;
 
  542               if (servingCellMeasures && neighbourCellMeasures)
 
  544                   int16_t rsrpDifference = servingCellMeasures->
m_rsrp - neighbourCellMeasures->
m_rsrp;
 
  546                                           << 
" NeighborCellId: " << neighbourCellMeasures->
m_cellId 
  547                                           << 
" RSRP Serving: " << (
int)servingCellMeasures->
m_rsrp 
  548                                           << 
" RSRP Neighbor: " << (
int)neighbourCellMeasures->
m_rsrp 
  549                                           << 
" RSRP Difference: " << (
int)rsrpDifference);
 
  559       std::map< uint16_t, uint64_t > metricA;
 
  560       for (uint16_t i = 0; i < rbgNum; i++)
 
  565       std::map<uint16_t, uint32_t>::iterator cellIt;
 
  568           NS_LOG_INFO (
"CellId: " << 
m_cellId << 
" NeighborCellId: " << cellIt->first << 
" Weight: " << cellIt->second);
 
  570           std::map<uint16_t, std::vector <bool> >::iterator rntpIt = 
m_rntp.find (cellIt->first);
 
  571           if (rntpIt == 
m_rntp.end ())
 
  576           for (uint8_t i = 0; i < rbgNum; i++)
 
  578               metricA[i] += cellIt->second * rntpIt->second[i];
 
  582       std::vector<uint16_t> sortedRbgByMetric;
 
  583       std::multimap< uint64_t, uint16_t > sortedMetricA;
 
  584       for (std::map<uint16_t, uint64_t>::const_iterator it = metricA.begin (); it != metricA.end (); ++it)
 
  586           sortedMetricA.insert (std::pair<uint64_t, uint16_t> (it->second, it->first));
 
  589       for (std::multimap< uint64_t, uint16_t >::const_iterator it = sortedMetricA.begin ();
 
  590            it != sortedMetricA.end (); ++it)
 
  592           sortedRbgByMetric.push_back (it->second);
 
  602           uint32_t rbgIndex = sortedRbgByMetric[i];
 
  603           for (
int k = 0; k < rbgSize; k++)
 
  605               uint32_t rbIndex = rbgSize * rbgIndex + k;
 
  622   NS_LOG_INFO (
"SendLoadInformation to CellId : " << targetCellId );
 
  624   std::vector<EpcX2Sap::UlInterferenceOverloadIndicationItem> m_currentUlInterferenceOverloadIndicationList;
 
  625   std::vector <EpcX2Sap::UlHighInterferenceInformationItem>  m_currentUlHighInterferenceInformationList;
 
  648                           << 
" Recv X2 message: LOAD INFORMATION from CellId:" << params.
cellInformationList[0].sourceCellId);
 
  656   std::map<uint16_t, std::vector <bool> >::iterator it = 
m_rntp.find (neighborCellId);
 
  663       m_rntp.insert (std::pair<uint16_t, std::vector <bool> > (neighborCellId, params.
cellInformationList[0].relativeNarrowbandTxBand.rntpPerPrbList));
 
  675   MeasurementTable_t::iterator it1;
 
  682       std::pair<MeasurementTable_t::iterator, bool> ret;
 
  683       ret = 
m_ueMeasures.insert (std::pair<uint16_t, MeasurementRow_t> (rnti, row));
 
  690   std::map<uint16_t, Ptr<UeMeasure> >::iterator it2;
 
  691   it2 = it1->second.find (cellId);
 
  693   if (it2 != it1->second.end ())
 
  695       cellMeasures = it2->second;
 
  696       cellMeasures->m_cellId = cellId;
 
  697       cellMeasures->m_rsrp = rsrp;
 
  698       cellMeasures->m_rsrq = rsrq;
 
  703       cellMeasures = Create<UeMeasure> ();
 
  704       cellMeasures->m_cellId = cellId;
 
  705       cellMeasures->m_rsrp = rsrp;
 
  706       cellMeasures->m_rsrq = rsrq;
 
  707       it1->second[cellId] = cellMeasures;
 
virtual void DoReportUeMeas(uint16_t rnti, LteRrcSap::MeasResults measResults)
Implementation of LteFfrRrcSapProvider::ReportUeMeas. 
 
Service Access Point (SAP) offered by the Frequency Reuse algorithm instance to the eNodeB RRC instan...
 
uint8_t m_edgePowerOffset
 
virtual void DoInitialize(void)
Initialize() implementation. 
 
Template for the implementation of the LteFfrRrcSapProvider as a member of an owner class of type C t...
 
std::vector< bool > m_ulEdgeRbgMap
 
LteFfrDistributedAlgorithm()
 
Smart pointer class similar to boost::intrusive_ptr. 
 
LteFfrSapUser * m_ffrSapUser
 
Service Access Point (SAP) offered by the eNodeB RRC instance to the Frequency Reuse algorithm instan...
 
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by "...
 
uint8_t m_rsrpDifferenceThreshold
 
EventId m_calculationEvent
 
std::vector< bool > m_dlEdgeRbgMap
 
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system. 
 
LteFfrRrcSapUser * m_ffrRrcSapUser
 
enum ns3::LteRrcSap::ReportConfigEutra::@70 eventId
Choice of E-UTRA event triggered reporting criteria. 
 
std::list< MeasResultEutra > measResultListEutra
 
ThresholdEutra threshold1
Threshold for event A1, A2, A4, and A5. 
 
Specifies criteria for triggering of an E-UTRA measurement reporting event. 
 
Distributed Fractional Frequency Reuse algorithm implementation. 
 
uint8_t m_ulBandwidth
uplink bandwidth in RBs 
 
#define NS_ASSERT(condition)
At runtime, in debugging builds, if this condition is not true, the program prints the source file...
 
void SendLoadInformation(uint16_t targetCellId)
 
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name. 
 
MeasurementTable_t m_ueMeasures
 
uint8_t m_egdeSubBandRsrqThreshold
 
std::map< uint16_t, std::vector< bool > > m_rntp
 
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO. 
 
std::vector< uint16_t > m_neigborCell
 
virtual std::vector< bool > DoGetAvailableUlRbg()
Implementation of LteFfrSapProvider::GetAvailableUlRbg. 
 
static TypeId GetTypeId()
 
virtual uint8_t AddUeMeasReportConfigForFfr(LteRrcSap::ReportConfigEutra reportConfig)=0
Request a certain reporting configuration to be fulfilled by the UEs attached to the eNodeB entity...
 
Ptr< const AttributeChecker > MakeTimeChecker(const Time min, const Time max)
Helper to make a Time checker with bounded range. 
 
virtual bool DoIsUlRbgAvailableForUe(int i, uint16_t rnti)
Implementation of LteFfrSapProvider::IsUlRbgAvailableForUe. 
 
virtual void SetPdschConfigDedicated(uint16_t rnti, LteRrcSap::PdschConfigDedicated pdschConfigDedicated)=0
Instruct the eNodeB RRC entity to perform RrcConnectionReconfiguration to inform UE about new PdschCo...
 
Event A4: Neighbour becomes better than absolute threshold. 
 
Template for the implementation of the LteFfrSapProvider as a member of an owner class of type C to w...
 
Reference Signal Received Quality. 
 
static EventId Schedule(Time const &delay, MEM mem_ptr, OBJ obj)
Schedule an event to expire after delay. 
 
AttributeValue implementation for Time. 
 
Event A1: Serving becomes better than absolute threshold. 
 
void InitializeDownlinkRbgMaps()
 
Service Access Point (SAP) offered by the Frequency Reuse algorithm instance to the MAC Scheduler ins...
 
Hold an unsigned integer type. 
 
virtual LteFfrSapProvider * GetLteFfrSapProvider()
Export the "provider" part of the LteFfrSap interface. 
 
virtual void Reconfigure()
Automatic FR reconfiguration. 
 
bool m_enabledInUplink
If true FR algorithm will also work in Uplink. 
 
bool m_needReconfiguration
If true FR algorithm will be reconfigured. 
 
std::map< uint16_t, uint8_t > m_ues
 
uint8_t m_dlBandwidth
downlink bandwidth in RBs 
 
virtual void SendLoadInformation(EpcX2Sap::LoadInformationParams params)=0
SendLoadInformation. 
 
Reference Signal Received Power. 
 
RSRP is used for the threshold. 
 
#define NS_LOG_LOGIC(msg)
Use NS_LOG to output a message of level LOG_LOGIC. 
 
virtual void DoDispose()
Destructor implementation. 
 
virtual std::vector< bool > DoGetAvailableDlRbg()
Implementation of LteFfrSapProvider::GetAvailableDlRbg. 
 
virtual bool DoIsDlRbgAvailableForUe(int i, uint16_t rnti)
Implementation of LteFfrSapProvider::IsDlRbgAvailableForUe. 
 
virtual void DoReportUlCqiInfo(const struct FfMacSchedSapProvider::SchedUlCqiInfoReqParameters ¶ms)
DoReportUlCqiInfo. 
 
Every class exported by the ns3 library is enclosed in the ns3 namespace. 
 
The abstract base class of a Frequency Reuse algorithm. 
 
virtual void SetLteFfrRrcSapUser(LteFfrRrcSapUser *s)
Set the "user" part of the LteFfrRrcSap interface that this frequency reuse algorithm instance will i...
 
void SetUplinkConfiguration(uint16_t cellId, uint8_t bandwidth)
 
bool haveMeasResultNeighCells
 
uint8_t range
Value range used in RSRP/RSRQ threshold. 
 
std::vector< bool > m_dlRbgMap
 
void SetDownlinkConfiguration(uint16_t cellId, uint8_t bandwidth)
 
static EventId ScheduleNow(MEM mem_ptr, OBJ obj)
Schedule an event to expire Now. 
 
Ptr< const AttributeAccessor > MakeTimeAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
 
Service Access Point (SAP) offered by the eNodeB RRC instance to the Frequency Reuse algorithm instan...
 
enum ns3::LteRrcSap::ReportConfigEutra::@72 triggerQuantity
The quantities used to evaluate the triggering condition for the event, see 3GPP TS 36...
 
std::vector< bool > rntpPerPrbList
 
#define NS_ASSERT_MSG(condition, message)
At runtime, in debugging builds, if this condition is not true, the program prints the message to out...
 
Parameters of the SCHED_DL_CQI_INFO_REQ primitive. 
 
uint8_t m_frCellTypeId
FFR cell type ID for automatic configuration. 
 
void UpdateNeighbourMeasurements(uint16_t rnti, uint16_t cellId, uint8_t rsrp, uint8_t rsrq)
 
Parameters of the SCHED_UL_CQI_INFO_REQ primitive. 
 
virtual ~LteFfrDistributedAlgorithm()
 
Time m_calculationInterval
 
#define NS_LOG_WARN(msg)
Use NS_LOG to output a message of level LOG_WARN. 
 
enum ns3::LteRrcSap::ThresholdEutra::@68 choice
 
LteFfrRrcSapProvider * m_ffrRrcSapProvider
 
virtual void DoRecvLoadInformation(EpcX2Sap::LoadInformationParams params)
DoRecvLoadInformation. 
 
Time Seconds(double value)
Construct a Time in the indicated unit. 
 
int GetRbgSize(int dlbandwidth)
Get RBG size for DL Bandwidth according to table 7.1.6.1-1 of 36.213. 
 
enum ns3::LteRrcSap::ReportConfigEutra::@74 reportInterval
Indicates the interval between periodical reports. 
 
std::map< uint16_t, uint32_t > m_cellWeightMap
 
std::map< uint16_t, Ptr< UeMeasure > > MeasurementRow_t
 
LteFfrSapProvider * m_ffrSapProvider
 
Relative Narrowband Tx Power (RNTP) as it is used in the LOAD INFORMATION message. 
 
uint8_t m_centerPowerOffset
 
RSRQ is used for the threshold. 
 
virtual void DoInitialize()
Initialize() implementation. 
 
virtual void SetLteFfrSapUser(LteFfrSapUser *s)
Set the "user" part of the LteFfrSap interface that this frequency reuse algorithm instance will inte...
 
std::vector< bool > m_ulRbgMap
 
Ptr< const AttributeAccessor > MakeUintegerAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
 
virtual void DoReportDlCqiInfo(const struct FfMacSchedSapProvider::SchedDlCqiInfoReqParameters ¶ms)
DoReportDlCqiInfo. 
 
a unique identifier for an interface. 
 
virtual uint8_t DoGetTpc(uint16_t rnti)
DoGetTpc for UE. 
 
TypeId SetParent(TypeId tid)
Set the parent TypeId. 
 
virtual uint8_t DoGetMinContinuousUlBandwidth()
DoGetMinContinuousUlBandwidth in number of RB. 
 
virtual LteFfrRrcSapProvider * GetLteFfrRrcSapProvider()
Export the "provider" part of the LteFfrRrcSap interface. 
 
void InitializeUplinkRbgMaps()