In this paper, we describe a new wideband singleinput– single-output (SISO) channel model for vehicle-to-vehicle (V2V) channels, based on an extensive measurement campaign carried out at 5.2 GHz around Helsinki, Finland, in August 2007. Both the currently well-known non-stationary behavior and the measured characteristics of the V2V channel motivate the use of a geometry-based stochastic channel modeling (GSCM) approach rather than a classical tapped delay line (TDL) approach. For the time-variant contributions stemming from discrete scatterers, the propagation distance can be deterministically estimated (i.e., geometrically), whereas the fading can be modeled as the combination of a distance-decaying process and two stochastic small- and l...
In vehicular environments, the scattering environment can change very rapidly, owing to the mobility...
To design and evaluate vehicle-to-vehicle (V2V) communication systems in intelligent transportation ...
This paper compares our non-stationary geometric stochastic channel model for vehicle-to-vehicle sca...
Vehicle-to-vehicle (VTV) communications are of interest for applications within traffic safety and c...
Vehicle-to-vehicle (VTV) wireless communications have many envisioned applications in traffic safety...
In this paper, we describe the results of a channel measurement and modeling campaign for the vehicl...
In this paper, we describe the results of a channel measurement and modeling campaign for the vehicl...
In this paper, we describe the results of a channel measurement and modeling campaign for the vehicl...
This article presents a vehicle-to-pedestrian (V2P) channel model based on an extensive measurement ...
In this paper, we describe measurements and models of 30 x 30 narrowband multiple-input -multiple-ou...
Vehicle-to-vehicle (V2V) communications have received a lot of attention due to their numerous appli...
In this paper, a geometry-based stochastic channel model (GSCM) for vehicle-to-vehicle (V2V) wireles...
In vehicular environments, the scattering environment can change very rapidly, owing to the mobility...
Abstract—In this paper, we propose a new regular-shaped geometry-based stochastic model (RS-GBSM) fo...
In vehicular environments, the scattering environment can change very rapidly, owing to the mobility...
In vehicular environments, the scattering environment can change very rapidly, owing to the mobility...
To design and evaluate vehicle-to-vehicle (V2V) communication systems in intelligent transportation ...
This paper compares our non-stationary geometric stochastic channel model for vehicle-to-vehicle sca...
Vehicle-to-vehicle (VTV) communications are of interest for applications within traffic safety and c...
Vehicle-to-vehicle (VTV) wireless communications have many envisioned applications in traffic safety...
In this paper, we describe the results of a channel measurement and modeling campaign for the vehicl...
In this paper, we describe the results of a channel measurement and modeling campaign for the vehicl...
In this paper, we describe the results of a channel measurement and modeling campaign for the vehicl...
This article presents a vehicle-to-pedestrian (V2P) channel model based on an extensive measurement ...
In this paper, we describe measurements and models of 30 x 30 narrowband multiple-input -multiple-ou...
Vehicle-to-vehicle (V2V) communications have received a lot of attention due to their numerous appli...
In this paper, a geometry-based stochastic channel model (GSCM) for vehicle-to-vehicle (V2V) wireles...
In vehicular environments, the scattering environment can change very rapidly, owing to the mobility...
Abstract—In this paper, we propose a new regular-shaped geometry-based stochastic model (RS-GBSM) fo...
In vehicular environments, the scattering environment can change very rapidly, owing to the mobility...
In vehicular environments, the scattering environment can change very rapidly, owing to the mobility...
To design and evaluate vehicle-to-vehicle (V2V) communication systems in intelligent transportation ...
This paper compares our non-stationary geometric stochastic channel model for vehicle-to-vehicle sca...