In this paper, we describe measurements and models of 30 x 30 narrowband multiple-input -multiple-output (MIMO) vehicle-to-vehicle (V2V) radio propagation channels at 5.3 GHz. Four environments were considered: a campus, a highway, a suburban area, and an urban area. Since the scattering environment may rapidly change in V2V communications, we first investigate the validity of the wide-sense stationarity (WSS) assumption for such channels using the correlation matrix distance (CMD), which is a metric for the characterization of the MIMO channel non-stationarity. Moreover, statistical channel models were developed for these environments, which take into account the non-stationary behavior of the measured V2V channels. The large-scale fading ...
Vehicle-to-vehicle (V2V) communications have received a lot of attention due to their numerous appli...
To design and evaluate vehicle-to-vehicle (V2V) communication systems in intelligent transportation ...
Measurements of car-to-car (C2C) radio channels with 60 MHz bandwidth at 5.3 GHz have been performed...
In this paper, we describe measurement results of 30 * 30 multiple-input multiple-output (MIMO) car-...
In this paper, we describe a new wideband singleinput– single-output (SISO) channel model for vehicl...
We analyze the nonwide-sense-stationarity (nonWSS) of vehicle-to-vehicle (V2V) radio channels using ...
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...
In vehicular environments, the scattering environment can change very rapidly, owing to the mobility...
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...
In this contribution, we estimate the spatial diversity order and spatial correlations from channel ...
Vehicle-to-vehicle (V2V) communications have received a lot of attention due to their numerous appli...
To design and evaluate vehicle-to-vehicle (V2V) communication systems in intelligent transportation ...
Measurements of car-to-car (C2C) radio channels with 60 MHz bandwidth at 5.3 GHz have been performed...
In this paper, we describe measurement results of 30 * 30 multiple-input multiple-output (MIMO) car-...
In this paper, we describe a new wideband singleinput– single-output (SISO) channel model for vehicl...
We analyze the nonwide-sense-stationarity (nonWSS) of vehicle-to-vehicle (V2V) radio channels using ...
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...
In vehicular environments, the scattering environment can change very rapidly, owing to the mobility...
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...
In this contribution, we estimate the spatial diversity order and spatial correlations from channel ...
Vehicle-to-vehicle (V2V) communications have received a lot of attention due to their numerous appli...
To design and evaluate vehicle-to-vehicle (V2V) communication systems in intelligent transportation ...
Measurements of car-to-car (C2C) radio channels with 60 MHz bandwidth at 5.3 GHz have been performed...