Using a channel sounder for wideband Car-to-Car 2 x 2 multiple input multiple output (MIMO) radio channel measurements at 5.7 GHz with a bandwidth of 1 GHz, we have investigated typical car-to-car communication scenarios in a variety of environments in and around the city of Berlin in Germany. Apart from the full bandwidth signal, we have additionally evaluated an extracted 10 MHz signal. Among other results, we present delay and Doppler spread statistics and spatial correlation evaluations
Realistic propagation modeling requires a detailed understanding and characterization of the radio c...
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...
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 present a measurement campaign aimed to identify important radio channel parameters...
In this paper we offer a statistical evaluation for car-to-car measurements with a wideband 2 × 2 Mu...
We carried out a car-to-infrastructure (C2I) and car-to-car (C2C) 4x4 multiple-input-multiple-output...
Abstract—In this paper we present an overview of a vehicle-to-vehicle radio channel measurement camp...
Based on static outdoor channel measurements we evaluate the influence of a vehicle on the MIMO radi...
In this paper, we describe measurements and models of 30 x 30 narrowband multiple-input -multiple-ou...
In this paper we present parametrization for pathloss regarding the wideband car-to-car channel at 5...
We present our measurement results of the MIMO propagation channel. They were done in a small urban ...
Abstract—In this contribution we present an overview of a vehicle-to-vehicle radio channel measureme...
Realistic propagation modeling requires a detailed understanding and characterization of the radio c...
Realistic propagation modeling requires a detailed understanding and characterization of the radio c...
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...
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 present a measurement campaign aimed to identify important radio channel parameters...
In this paper we offer a statistical evaluation for car-to-car measurements with a wideband 2 × 2 Mu...
We carried out a car-to-infrastructure (C2I) and car-to-car (C2C) 4x4 multiple-input-multiple-output...
Abstract—In this paper we present an overview of a vehicle-to-vehicle radio channel measurement camp...
Based on static outdoor channel measurements we evaluate the influence of a vehicle on the MIMO radi...
In this paper, we describe measurements and models of 30 x 30 narrowband multiple-input -multiple-ou...
In this paper we present parametrization for pathloss regarding the wideband car-to-car channel at 5...
We present our measurement results of the MIMO propagation channel. They were done in a small urban ...
Abstract—In this contribution we present an overview of a vehicle-to-vehicle radio channel measureme...
Realistic propagation modeling requires a detailed understanding and characterization of the radio c...
Realistic propagation modeling requires a detailed understanding and characterization of the radio c...
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...