23 #include <ns3/object-factory.h>
28 #include <ns3/simulator.h>
29 #include <ns3/double.h>
40 #include <ns3/lte-common.h>
41 #include <ns3/pointer.h>
42 #include <ns3/boolean.h>
43 #include <ns3/lte-ue-power-control.h>
129 return g_uePhyStateName[s];
148 m_state (CELL_SEARCH),
150 m_rsReceivedPowerUpdated (false),
151 m_rsInterferencePowerUpdated (false),
152 m_dataInterferencePowerUpdated (false),
153 m_pssReceived (false),
156 m_rsrpSinrSampleCounter (0)
158 m_amc = CreateObject <LteAmc> ();
165 "Cannot create UE devices after simulation started");
195 .AddAttribute (
"TxPower",
196 "Transmission power in dBm",
200 MakeDoubleChecker<double> ())
201 .AddAttribute (
"NoiseFigure",
202 "Loss (dB) in the Signal-to-Noise-Ratio due to non-idealities in the receiver."
203 " According to Wikipedia (http://en.wikipedia.org/wiki/Noise_figure), this is "
204 "\"the difference in decibels (dB) between"
205 " the noise output of the actual receiver to the noise output of an "
206 " ideal receiver with the same overall gain and bandwidth when the receivers "
207 " are connected to sources at the standard noise temperature T0.\" "
208 "In this model, we consider T0 = 290K.",
212 MakeDoubleChecker<double> ())
213 .AddAttribute (
"TxMode1Gain",
214 "Transmission mode 1 gain in dB",
217 MakeDoubleChecker<double> ())
218 .AddAttribute (
"TxMode2Gain",
219 "Transmission mode 2 gain in dB",
222 MakeDoubleChecker<double> ())
223 .AddAttribute (
"TxMode3Gain",
224 "Transmission mode 3 gain in dB",
227 MakeDoubleChecker<double> ())
228 .AddAttribute (
"TxMode4Gain",
229 "Transmission mode 4 gain in dB",
232 MakeDoubleChecker<double> ())
233 .AddAttribute (
"TxMode5Gain",
234 "Transmission mode 5 gain in dB",
237 MakeDoubleChecker<double> ())
238 .AddAttribute (
"TxMode6Gain",
239 "Transmission mode 6 gain in dB",
242 MakeDoubleChecker<double> ())
243 .AddAttribute (
"TxMode7Gain",
244 "Transmission mode 7 gain in dB",
247 MakeDoubleChecker<double> ())
248 .AddTraceSource (
"ReportCurrentCellRsrpSinr",
249 "RSRP and SINR statistics.",
251 "ns3::LteUePhy::RsrpSinrTracedCallback")
252 .AddAttribute (
"RsrpSinrSamplePeriod",
253 "The sampling period for reporting RSRP-SINR stats (default value 1)",
256 MakeUintegerChecker<uint16_t> ())
257 .AddTraceSource (
"UlPhyTransmission",
258 "DL transmission PHY layer statistics.",
260 "ns3::PhyTransmissionStatParameters::TracedCallback")
261 .AddAttribute (
"DlSpectrumPhy",
262 "The downlink LteSpectrumPhy associated to this LtePhy",
266 MakePointerChecker <LteSpectrumPhy> ())
267 .AddAttribute (
"UlSpectrumPhy",
268 "The uplink LteSpectrumPhy associated to this LtePhy",
272 MakePointerChecker <LteSpectrumPhy> ())
273 .AddAttribute (
"RsrqUeMeasThreshold",
274 "Receive threshold for PSS on RSRQ [dB]",
277 MakeDoubleChecker<double> ())
278 .AddAttribute (
"UeMeasurementsFilterPeriod",
279 "Time period for reporting UE measurements, i.e., the"
280 "length of layer-1 filtering.",
284 .AddTraceSource (
"ReportUeMeasurements",
285 "Report UE measurements RSRP (dBm) and RSRQ (dB).",
287 "ns3::LteUePhy::RsrpRsrqTracedCallback")
288 .AddTraceSource (
"StateTransition",
289 "Trace fired upon every UE PHY state transition",
291 "ns3::LteUePhy::StateTracedCallback")
292 .AddAttribute (
"EnableUplinkPowerControl",
293 "If true, Uplink Power Control will be enabled.",
305 bool haveNodeId =
false;
312 nodeId = node->
GetId ();
521 Values::const_iterator it;
527 double powerTxW = ((*it) * 180000.0) / 12.0;
531 double rsrp = (rbNum > 0) ? (sum / rbNum) : DBL_MAX;
540 double avSinr = (rbNum > 0) ? (sum / rbNum) : DBL_MAX;
552 std::list <PssElement>::iterator itPss =
m_pssList.begin ();
556 double rssiSum = 0.0;
566 double interfPlusNoisePowerTxW = ((*itIntN) * 180000.0) / 12.0;
567 double signalPowerTxW = ((*itPj) * 180000.0) / 12.0;
568 rssiSum += (2 * (interfPlusNoisePowerTxW + signalPowerTxW));
572 double rsrq_dB = 10 * log10 ((*itPss).pssPsdSum / rssiSum);
577 <<
" has RSRQ " << rsrq_dB <<
" and RBnum " << rbNum);
579 std::map <uint16_t, UeMeasurementsElement>::iterator itMeasMap;
583 (*itMeasMap).second.rsrqSum += rsrq_dB;
584 (*itMeasMap).second.rsrqNum++;
588 NS_LOG_WARN (
"race condition of bug 2091 occurred");
623 NS_LOG_LOGIC (
"data interf measurement available, SINR = " << mixedSinr);
629 mixedSinr /= (*m_noisePsd);
630 NS_LOG_LOGIC (
"no data interf measurement available, SINR = " << mixedSinr);
640 double avgMixedSinr = 0;
641 uint32_t usedRbgNum = 0;
645 avgMixedSinr+=mixedSinr[i];
647 avgMixedSinr = avgMixedSinr/usedRbgNum;
648 for(uint32_t i = 0; i < modulo; i++)
684 Values::const_iterator it;
687 double powerTxW = ((*it) * 180000);
691 double rsrp = 10 * log10 (sum) + 30;
712 std::vector<int> cqi;
718 int nbSubChannels = cqi.size ();
720 int activeSubChannels = 0;
722 for (
int i = 0; i < nbSubChannels; i++)
724 if (cqi.at (i) != -1)
726 cqiSum += cqi.at (i);
729 NS_LOG_DEBUG (
this <<
" subch " << i <<
" cqi " << cqi.at (i));
736 for (
int i = 0; i < nLayer; i++)
738 if (activeSubChannels > 0)
740 dlcqi.m_wbCqi.push_back ((uint16_t) cqiSum / activeSubChannels);
745 dlcqi.m_wbCqi.push_back (1);
756 int nbSubChannels = cqi.size ();
762 for (
int i = 0; i < nbSubChannels; i++)
764 if (cqi.at (i) != -1)
766 cqiSum += cqi.at (i);
770 if (cqiNum == rbgSize)
776 for (
int i = 0; i < nLayer; i++)
778 hlCqi.
m_sbCqi.push_back ((uint16_t) cqiSum / rbgSize);
790 dlcqi.m_sbMeasResult = rbgMeas;
793 msg->SetDlCqi (dlcqi);
806 std::map <uint16_t, UeMeasurementsElement>::iterator it;
809 double avg_rsrp = (*it).second.rsrpSum / (double)(*it).second.rsrpNum;
810 double avg_rsrq = (*it).second.rsrqSum / (
double)(*it).second.rsrqNum;
817 <<
" RSRP " << avg_rsrp
818 <<
" (nSamples " << (uint16_t)(*it).second.rsrpNum <<
")"
819 <<
" RSRQ " << avg_rsrq
820 <<
" (nSamples " << (uint16_t)(*it).second.rsrqNum <<
")");
854 msg->SetRapId (raPreambleId);
866 std::list<Ptr<LteControlMessage> >::iterator it;
867 for (it = msgList.begin (); it != msgList.end (); it++)
882 if (dci.m_resAlloc != 0)
887 std::vector <int> dlRb;
891 for (
int i = 0; i < 32; i++)
893 if (((dci.m_rbBitmap & mask) >> i) == 1)
897 dlRb.push_back ((i * GetRbgSize ()) + k);
910 NS_LOG_DEBUG (
this <<
" UE " <<
m_rnti <<
" DL-DCI " << dci.m_rnti <<
" bitmap " << dci.m_rbBitmap);
911 for (uint8_t i = 0; i < dci.m_tbsSize.size (); i++)
913 m_downlinkSpectrumPhy->AddExpectedTb (dci.m_rnti, dci.m_ndi.at (i), dci.m_tbsSize.at (i), dci.m_mcs.at (i), dlRb, i, dci.m_harqProcess, dci.m_rv.at (i),
true );
931 std::vector <int> ulRb;
932 for (
int i = 0; i < dci.m_rbLen; i++)
934 ulRb.push_back (i + dci.m_rbStart);
947 params.
m_mcs = dci.m_mcs;
948 params.
m_size = dci.m_tbSize;
949 params.
m_rv = harqInfoList.size ();
950 params.
m_ndi = dci.m_ndi;
958 if (rarMsg->GetRaRnti () ==
m_raRnti)
960 for (std::list<RarLteControlMessage::Rar>::const_iterator it = rarMsg->RarListBegin (); it != rarMsg->RarListEnd (); ++it)
971 std::vector <int> ulRb;
972 for (
int i = 0; i < it->rarPayload.m_grant.m_rbLen; i++)
974 ulRb.push_back (i + it->rarPayload.m_grant.m_rbStart);
1020 Values::const_iterator itPi;
1024 double powerTxW = ((*itPi) * 180000.0) / 12.0;
1030 double rsrp_dBm = 10 * log10 (1000 * (sum / (
double)nRB));
1032 <<
" has RSRP " << rsrp_dBm <<
" and RBnum " << nRB);
1036 std::map <uint16_t, UeMeasurementsElement>::iterator itMeasMap =
m_ueMeasurementsMap.find (cellId);
1049 (*itMeasMap).second.rsrpSum += rsrp_dBm;
1050 (*itMeasMap).second.rsrpNum++;
1079 NS_ASSERT_MSG (frameNo > 0,
"the SRS index check code assumes that frameNo starts at 1");
1102 NS_ASSERT_MSG (subframeNo > 0 && subframeNo <= 10,
"the SRS index check code assumes that subframeNo starts at 1");
1129 if (ctrlMsg.size ()>0)
1131 NS_LOG_LOGIC (
this <<
" UE - start TX PUCCH (NO PUSCH)");
1132 std::vector <int> dlRb;
1154 if (subframeNo > 10)
1171 std::vector <int> dlRb;
1212 std::list<Ptr<LteControlMessage> > l;
1215 std::vector <int> ulRb;
1278 for (
int i = 0; i < 4; i++)
1280 if (dlBandwidth < Type0AllocationRbg[i])
1397 double gainLin = std::pow (10.0, (gain / 10.0));
1402 std::vector <double> temp;
1405 for (uint8_t i = 0; i < temp.size (); i++)
1428 msg->SetDlHarqFeedback (m);
1454 <<
" UePhy " <<
ToString (oldState)
1455 <<
" --> " <<
ToString (newState));
Values::const_iterator ConstValuesEnd() const
See section 4.3.1 dlDciListElement.
double GetNoiseFigure() const
void SetTxPower(double value)
Ptr< LteSpectrumPhy > GetUlSpectrumPhy() const
Simulation virtual time values and global simulation resolution.
uint8_t m_txMode
the transmission Mode
#define NS_LOG_FUNCTION(parameters)
If log level LOG_FUNCTION is enabled, this macro will output all input parameters separated by "...
virtual void ReceiveLteControlMessage(Ptr< LteControlMessage > msg)=0
Receive SendLteControlMessage (PDCCH map, CQI feedbacks) using the ideal control channel.
double m_noiseFigure
Loss (dB) in the Signal-to-Noise-Ratio due to non-idealities in the receiver.
See section 4.3.25 sbMeasResult.
AttributeValue implementation for Boolean.
double m_txPower
Transmission power in dBm.
std::vector< struct UeMeasurementsElement > m_ueMeasurementsList
uint16_t m_dlEarfcn
The downlink carrier frequency.
virtual void GenerateMixedCqiReport(const SpectrumValue &sinr)
LteUePhySapUser * m_uePhySapUser
void SetTxMode5Gain(double gain)
void SetCellId(uint16_t cellId)
virtual void SendMacPdu(Ptr< Packet > p)
Send the MAC PDU to the channel.
#define NS_OBJECT_ENSURE_REGISTERED(type)
Register an Object subclass with the TypeId system.
virtual void GenerateDataCqiReport(const SpectrumValue &sinr)
generate a CQI report based on the given SINR of Data frame (used for PUSCH CQIs) ...
std::list< PssElement > m_pssList
void SetTxMode2Gain(double gain)
uint8_t GetMacChDelay(void) const
void DoConfigureUplink(uint16_t ulEarfcn, uint8_t ulBandwidth)
std::vector< Ptr< PacketBurst > > m_packetBurstQueue
A queue of packet bursts to be sent.
std::vector< int > GetSubChannelsForTransmission(void)
Get a list of sub channels to use in RX.
virtual void GenerateCtrlCqiReport(const SpectrumValue &sinr)
generate a CQI report based on the given SINR of Ctrl frame
TracedCallback< uint16_t, uint16_t, double, double > m_reportCurrentCellRsrpSinrTrace
The ReportCurrentCellRsrpSinr trace source.
Ptr< const AttributeAccessor > MakeBooleanAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
double GetPuschTxPower(std::vector< int > rb)
void SetSubChannelsForTransmission(std::vector< int > mask)
Set a list of sub channels to use in TX.
uint16_t GetSrsPeriodicity(uint16_t srcCi) const
double GetTti(void) const
LteUePhySapProvider * m_uePhySapProvider
uint8_t rsrqNum
Number of RSRQ samples.
#define NS_ASSERT(condition)
At runtime, in debugging builds, if this condition is not true, the program prints the source file...
void SetTxMode6Gain(double gain)
#define NS_LOG_COMPONENT_DEFINE(name)
Define a Log component with a specific name.
Time MilliSeconds(uint64_t value)
Construct a Time in the indicated unit.
Ptr< LteSpectrumPhy > m_downlinkSpectrumPhy
The downlink LteSpectrumPhy associated to this LtePhy.
See section 4.3.2 ulDciListElement.
Service Access Point (SAP) offered by the UE PHY to the UE RRC for control purposes.
virtual void SendLteControlMessage(Ptr< LteControlMessage > msg)
Send SendLteControlMessage (PDCCH map, CQI feedbacks) using the ideal control channel.
See section 4.3.24 cqiListElement.
std::vector< double > m_txModeGain
#define NS_LOG_INFO(msg)
Use NS_LOG to output a message of level LOG_INFO.
#define NS_FATAL_ERROR(msg)
Fatal error handling.
Summary results of measuring a specific cell. Used for layer-1 filtering.
SpectrumValue m_dataInterferencePower
static EventId Schedule(Time const &time, MEM mem_ptr, OBJ obj)
Schedule an event to expire at the relative time "time" is reached.
void QueueSubChannelsForTransmission(std::vector< int > rbMap)
uint8_t m_rv
the redundancy version (HARQ)
Service Access Point (SAP) offered by the PHY to the MAC.
void SetTxModeGain(uint8_t txMode, double gain)
State
The states of the UE PHY entity.
Ptr< LteUePowerControl > m_powerControl
Pointer to UE Uplink Power Control entity.
virtual void DoSendMacPdu(Ptr< Packet > p)
Queue the MAC PDU to be sent (according to m_macChTtiDelay)
std::vector< int > GetSubChannelsForReception(void)
Get a list of sub channels to use in RX.
This class defines all functions to create spectrum model for lte.
uint8_t m_transmissionMode
void SetHarqPhyModule(Ptr< LteHarqPhy > harq)
Set the HARQ PHY module.
Ptr< LteNetDevice > GetDevice()
Get the device where the phy layer is attached.
uint8_t m_ulBandwidth
The UL bandwidth in number of PRBs.
Ptr< const TraceSourceAccessor > MakeTraceSourceAccessor(T a)
Create a TraceSourceAccessor which will control access to the underlying trace source.
void DoSetSrsConfigurationIndex(uint16_t srcCi)
Ptr< const AttributeChecker > MakeTimeChecker(const Time min, const Time max)
Helper to make a Time checker with bounded range.
static const int Type0AllocationRbg[4]
void DoSetTransmissionMode(uint8_t txMode)
The attribute can be read.
UeMemberLteUePhySapProvider(LteUePhy *phy)
Template for the implementation of the LteUeCphySapProvider as a member of an owner class of type C t...
double m_pssReceptionThreshold
The RsrqUeMeasThreshold attribute.
TracedCallback< uint16_t, uint16_t, double, double, bool > m_reportUeMeasurements
The ReportUeMeasurements trace source.
uint16_t GetSrsSubframeOffset(uint16_t srcCi) const
void DoSynchronizeWithEnb(uint16_t cellId)
uint8_t rsrpNum
Number of RSRP samples.
LteUeCphySapUser * m_ueCphySapUser
Ptr< const AttributeAccessor > MakePointerAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
void DoSetDlBandwidth(uint8_t ulBandwidth)
void DoDispose()
Destructor implementation.
AttributeValue implementation for Time.
uint8_t GetRbgSize(void) const
uint16_t m_rsrpSinrSamplePeriod
The RsrpSinrSamplePeriod attribute.
Time NanoSeconds(uint64_t value)
Construct a Time in the indicated unit.
uint64_t m_imsi
IMSI of the scheduled UE.
See section 4.3.27 higherLayerSelected.
Service Access Point (SAP) offered by the UE PHY to the UE RRC for control purposes.
void SetLteUePhySapUser(LteUePhySapUser *s)
Set the PHY SAP User.
Hold an unsigned integer type.
void DoConfigureReferenceSignalPower(int8_t referenceSignalPower)
void SetTxMode3Gain(double gain)
static uint8_t TxMode2LayerNum(uint8_t txMode)
Ptr< DlCqiLteControlMessage > CreateDlCqiFeedbackMessage(const SpectrumValue &sinr)
Create the DL CQI feedback from SINR values perceived at the physical layer with the signal received ...
void SetTxMode4Gain(double gain)
void SwitchToState(State s)
Switch the UE PHY to the given state.
TracedCallback< uint16_t, uint16_t, State, State > m_stateTransitionTrace
The StateTransition trace source.
void SendSrs()
Send the SRS signal in the last symbols of the frame.
uint16_t m_ulEarfcn
The uplink carrier frequency.
bool m_rsInterferencePowerUpdated
virtual void RecvSystemInformationBlockType1(uint16_t cellId, LteRrcSap::SystemInformationBlockType1 sib1)=0
Relay an SIB1 message from the PHY entity to the RRC layer.
static void ScheduleWithContext(uint32_t context, Time const &time, MEM mem_ptr, OBJ obj)
Schedule an event with the given context.
#define NS_LOG_LOGIC(msg)
Use NS_LOG to output a message of level LOG_LOGIC.
std::vector< uint8_t > m_sbCqi
void SetTxMode7Gain(double gain)
Ptr< LteUePowerControl > GetUplinkPowerControl() const
virtual void RecvMasterInformationBlock(uint16_t cellId, LteRrcSap::MasterInformationBlock mib)=0
Relay an MIB message from the PHY entity to the RRC layer.
See section 4.3.23 dlInfoListElement.
double rsrpSum
Sum of RSRP sample values in linear unit.
virtual void DoSendRachPreamble(uint32_t prachId, uint32_t raRnti)
uint8_t m_mcs
MCS for transport block.
virtual void ReportDataInterference(const SpectrumValue &interf)
virtual void ReceiveLteDlHarqFeedback(DlInfoListElement_s mes)
PhySpectrum generated a new DL HARQ feedback.
bool m_enableUplinkPowerControl
The EnableUplinkPowerControl attribute.
uint8_t m_macChTtiDelay
Delay between MAC and channel layer in terms of TTIs.
static const Time UL_DATA_DURATION
Duration of the data portion of a UL subframe.
Every class exported by the ns3 library is enclosed in the ns3 namespace.
Ptr< LteHarqPhy > m_harqPhyModule
Hold objects of type Ptr.
void DoStartCellSearch(uint16_t dlEarfcn)
void SetControlMessages(Ptr< LteControlMessage > m)
Ptr< const AttributeChecker > MakeBooleanChecker(void)
uint16_t m_rsrpSinrSampleCounter
SpectrumValue m_rsReceivedPower
double GetTxPower() const
double rsrqSum
Sum of RSRQ sample values in linear unit.
uint16_t m_srsSubframeOffset
uint8_t m_dlBandwidth
The DL bandwidth in number of PRBs.
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...
uint16_t m_size
Size of transport block.
static Time Now(void)
Return the current simulation virtual time.
uint16_t m_cellId
Cell identifier.
uint8_t m_ndi
new data indicator flag
void SubframeIndication(uint32_t frameNo, uint32_t subframeNo)
trigger from eNB the start from a new frame
virtual void DoInitialize(void)
Initialize() implementation.
void SetRnti(uint16_t rnti)
#define NS_ASSERT_MSG(condition, message)
At runtime, in debugging builds, if this condition is not true, the program prints the message to out...
Ptr< const AttributeAccessor > MakeDoubleAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
static Ptr< SpectrumValue > CreateTxPowerSpectralDensity(uint16_t earfcn, uint8_t bandwidth, double powerTx, std::vector< int > activeRbs)
create a spectrum value representing the power spectral density of a signal to be transmitted...
void SetTxMode1Gain(double gain)
std::vector< int > m_subChannelsForTransmission
A list of sub channels to use in TX.
Time m_p10CqiPeriocity
Wideband Periodic CQI. 2, 5, 10, 16, 20, 32, 40, 64, 80 or 160 ms.
Ptr< LteNetDevice > m_netDevice
Pointer to the NetDevice where this PHY layer is attached.
std::vector< std::vector< int > > m_subChannelsForTransmissionQueue
std::list< Ptr< LteControlMessage > > GetControlMessages(void)
static const std::string & ToString(EpcUeNas::State s)
uint32_t GetId(void) const
Time m_a30CqiPeriocity
SubBand Aperiodic CQI.
LteUeCphySapProvider * m_ueCphySapProvider
std::map< uint16_t, UeMeasurementsElement > m_ueMeasurementsMap
Store measurement results during the last layer-1 filtering period.
Ptr< PacketBurst > GetPacketBurst(void)
uint16_t m_cellId
Cell ID of the attached Enb.
static const std::string g_uePhyStateName[LteUePhy::NUM_STATES]
Map each of UE PHY states to its string representation.
#define NS_LOG_WARN(msg)
Use NS_LOG to output a message of level LOG_WARN.
std::vector< int > m_subChannelsForReception
A list of sub channels to use in RX.
Service Access Point (SAP) offered by the UE-PHY to the UE-MAC.
static const Time UL_SRS_DELAY_FROM_SUBFRAME_START
Delay from subframe start to transmission of SRS.
#define NS_LOG_DEBUG(msg)
Use NS_LOG to output a message of level LOG_DEBUG.
uint8_t m_layer
the layer (cw) of the transmission
Time Seconds(double value)
Construct a Time in the indicated unit.
virtual void ReceiveLteControlMessageList(std::list< Ptr< LteControlMessage > >)
void SetTxPower(double pow)
virtual void ReceivePss(uint16_t cellId, Ptr< SpectrumValue > p)
double GetPucchTxPower(std::vector< int > rb)
uint16_t m_srsPeriodicity
LteUePhySapProvider * GetLteUePhySapProvider()
Get the PHY SAP provider.
void Cancel(void)
This method is syntactic sugar for the ns3::Simulator::Cancel method.
virtual void SendRachPreamble(uint32_t prachId, uint32_t raRnti)
send a preamble on the PRACH
uint8_t m_rbgSize
The RB gruop size according to the bandwidth.
void SetLteUeCphySapUser(LteUeCphySapUser *s)
Set the CPHY SAP User.
SpectrumValue m_rsInterferencePower
friend class UeMemberLteUePhySapProvider
double GetSrsTxPower(std::vector< int > rb)
void PhyPduReceived(Ptr< Packet > p)
PhySpectrum received a new PHY-PDU.
Values::const_iterator ConstValuesBegin() const
void SetRsrp(double value)
virtual void DoSendLteControlMessage(Ptr< LteControlMessage > msg)
std::vector< std::list< Ptr< LteControlMessage > > > m_controlMessagesQueue
A queue of control messages to be sent.
bool m_rsReceivedPowerUpdated
void ConfigureReferenceSignalPower(int8_t referenceSignalPower)
void GenerateCqiRsrpRsrq(const SpectrumValue &sinr)
internal method that takes care of generating CQI reports, calculating the RSRP and RSRQ metrics...
The LteSpectrumPhy models the physical layer of LTE.
Ptr< LteSpectrumPhy > GetDlSpectrumPhy() const
Ptr< LteSpectrumPhy > m_uplinkSpectrumPhy
The uplink LteSpectrumPhy associated to this LtePhy.
virtual void ReportRsReceivedPower(const SpectrumValue &power)
generate a report based on the linear RS power perceived during CTRL frame NOTE: used only by UE for ...
Parameters of the ReportUeMeasurements primitive: RSRP [dBm] and RSRQ [dB] See section 5...
LteUeCphySapProvider * GetLteUeCphySapProvider()
Get the CPHY SAP provider.
This class can be used to hold variables of floating point type such as 'double' or 'float'...
State m_state
The current UE PHY state.
Set of values corresponding to a given SpectrumModel.
Ptr< const AttributeAccessor > MakeUintegerAccessor(T1 a1)
Create an AttributeAccessor for a class data member, or a lone class get functor or set method...
void SetMacPdu(Ptr< Packet > p)
std::vector< struct HigherLayerSelected_s > m_higherLayerSelected
a unique identifier for an interface.
int64_t GetMilliSeconds(void) const
Get an approximation of the time stored in this instance in the indicated unit.
TypeId SetParent(TypeId tid)
bool m_dataInterferencePowerUpdated
void SetNoiseFigure(double nf)
virtual void DoInitialize(void)
Initialize() implementation.
TracedCallback< PhyTransmissionStatParameters > m_ulPhyTransmission
The UlPhyTransmission trace source.
uint16_t m_rnti
C-RNTI scheduled.
static TypeId GetTypeId(void)
The LtePhy models the physical layer of LTE.
void ReportUeMeasurements()
Layer-1 filtering of RSRP and RSRQ measurements and reporting to the RRC entity.
virtual void ReportInterference(const SpectrumValue &interf)
generate a report based on the linear interference and noise power perceived during DATA frame NOTE: ...
virtual void ReceivePhyPdu(Ptr< Packet > p)=0
Called by the Phy to notify the MAC of the reception of a new PHY-PDU.
static Ptr< SpectrumValue > CreateNoisePowerSpectralDensity(uint16_t earfcn, uint8_t bandwidth, double noiseFigure)
create a SpectrumValue that models the power spectral density of AWGN
virtual Ptr< SpectrumValue > CreateTxPowerSpectralDensity()
Create the PSD for the TX.
void ReportTpc(uint8_t tpc)
#define UL_PUSCH_TTIS_DELAY
Ptr< SpectrumValue > m_noisePsd
Noise power spectral density for the configured bandwidth.
void DoSetRnti(uint16_t rnti)
virtual void SubframeIndication(uint32_t frameNo, uint32_t subframeNo)=0
Trigger the start from a new frame (input from Phy layer)
virtual void ReportUeMeasurements(UeMeasurementsParameters params)=0
Send a report of RSRP and RSRQ values perceived from PSS by the PHY entity (after applying layer-1 fi...
std::vector< HarqProcessInfoElement_t > HarqProcessInfoList_t
void SetSubChannelsForReception(std::vector< int > mask)
Get a list of sub channels to use in RX.
The LteUeNetDevice class implements the UE net device.
virtual void DoDispose(void)
Destructor implementation.
Time m_ueMeasurementsFilterPeriod
The UeMeasurementsFilterPeriod attribute.