Eclipse SUMO - Simulation of Urban MObility
MSCFModel_Krauss.h
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21 // Krauss car-following model, with acceleration decrease and faster start
22 /****************************************************************************/
23 #pragma once
24 #include <config.h>
25 
26 #include "MSCFModel_KraussOrig1.h"
28 
29 
30 // ===========================================================================
31 // class definitions
32 // ===========================================================================
38 public:
42  MSCFModel_Krauss(const MSVehicleType* vtype);
43 
44 
47 
51  double patchSpeedBeforeLC(const MSVehicle* veh, double vMin, double vMax) const;
52 
60  double stopSpeed(const MSVehicle* const veh, const double speed, double gap2pred, double decel, const CalcReason usage = CalcReason::CURRENT) const;
61 
62 
72  double followSpeed(const MSVehicle* const veh, double speed, double gap2pred,
73  double predSpeed, double predMaxDecel, const MSVehicle* const pred = 0, const CalcReason usage = CalcReason::CURRENT) const;
74 
75 
80  int getModelID() const {
81  return SUMO_TAG_CF_KRAUSS;
82  }
84 
85 
90  MSCFModel* duplicate(const MSVehicleType* vtype) const;
91 
93  if (myDawdleStep > DELTA_T) {
94  return new VehicleVariables(myDawdleStep);
95  }
96  return 0;
97  }
98 
99 
100 private:
102  public:
103  // no speed update happens in the insertion step
104  VehicleVariables(SUMOTime dawdleStep);
105 
107  double accelDawdle;
109  };
110 
111 protected:
112 
118  double dawdle2(double speed, double sigma, SumoRNG* rng) const;
119 
122 
123 
124 };
long long int SUMOTime
Definition: GUI.h:35
SUMOTime DELTA_T
Definition: SUMOTime.cpp:38
@ SUMO_TAG_CF_KRAUSS
double accelDawdle
the accleration due to dawdling
Krauss car-following model, with acceleration decrease and faster start.
double followSpeed(const MSVehicle *const veh, double speed, double gap2pred, double predSpeed, double predMaxDecel, const MSVehicle *const pred=0, const CalcReason usage=CalcReason::CURRENT) const
Computes the vehicle's safe speed (no dawdling) this uses the maximumSafeFollowSpeed.
MSCFModel * duplicate(const MSVehicleType *vtype) const
Duplicates the car-following model.
double patchSpeedBeforeLC(const MSVehicle *veh, double vMin, double vMax) const
apply custom speed adaptations within the given speed bounds
int getModelID() const
Returns the model's name.
double dawdle2(double speed, double sigma, SumoRNG *rng) const
Applies driver imperfection (dawdling / sigma)
~MSCFModel_Krauss()
Destructor.
MSCFModel_Krauss(const MSVehicleType *vtype)
Constructor.
VehicleVariables * createVehicleVariables() const
Returns model specific values which are stored inside a vehicle and must be used with casting.
double stopSpeed(const MSVehicle *const veh, const double speed, double gap2pred, double decel, const CalcReason usage=CalcReason::CURRENT) const
Computes the vehicle's safe speed for approaching a non-moving obstacle (no dawdling) this uses the m...
SUMOTime myDawdleStep
The vehicle's update period for dawdling.
The original Krauss (1998) car-following model and parameter.
The car-following model abstraction.
Definition: MSCFModel.h:55
CalcReason
What the return value of stop/follow/free-Speed is used for.
Definition: MSCFModel.h:77
Representation of a vehicle in the micro simulation.
Definition: MSVehicle.h:77
The car-following model and parameter.
Definition: MSVehicleType.h:63