A new wide-band mobile channel emulator for the CODIT project is designed and implemented. The UMTS code-division testbed (CODIT R2020) is a research project within the European RACE-II program set up by the Commission of the European Community. Our goal is to be able to simulate in the laboratory, in real time, the multipath propagation found in the mobile radio channel. As code-division multiple access (CDMA) is the access technique within the CODIT project, it was realized that the channel emulator must have simultaneously good delay resolution between propagation paths and long duration of the impulse response. These considerations led to a very flexible channel emulator specifically designed to host the new wide-band channel models dev...
Abstract A millimeter-wave (mm-wave) channel emulator (CE) is an essential tool for air-interface t...
Connected autonomous vehicles and industry 4.0 productions scenarios require ultra-reliable low-late...
With the widespread availability of Internet, voice only broadcast in the FM Band will soon be aband...
A new wide-band mobile channel emulator for the CODIT project is designed and implemented. The UMTS ...
Currently, we are involved in the standardisation process to specify the next mobile system generati...
In the vehicular communication channels, the mobility of the receiver (RX) and the transmitter (TX) ...
A mobile channel simulator can be constructed either in the time domain using a tapped delay line fi...
This article describes a methodology to model in real-time the channel quality variations for mobile...
This paper proposes and discusses the architecture for a real-Time vehicular channel emulator capabl...
Arbeit an der Bibliothek noch nicht eingelangt - Daten nicht geprueftAbweichender Titel nach Überset...
Large-scale wireless emulation is gaining momentum nowadays, thanks to its potential in the developm...
International audienceThe aim of the PRIR SIMPAA2 project, which continues the research activities o...
During the design and development of a reliable transceiver, its performance and robustness are eval...
In this paper, the design and implementation of a new high performance hardware channel emulator is ...
WOS: 000417961300025Despite their reliability, on-site measurements are time-consuming and costly ac...
Abstract A millimeter-wave (mm-wave) channel emulator (CE) is an essential tool for air-interface t...
Connected autonomous vehicles and industry 4.0 productions scenarios require ultra-reliable low-late...
With the widespread availability of Internet, voice only broadcast in the FM Band will soon be aband...
A new wide-band mobile channel emulator for the CODIT project is designed and implemented. The UMTS ...
Currently, we are involved in the standardisation process to specify the next mobile system generati...
In the vehicular communication channels, the mobility of the receiver (RX) and the transmitter (TX) ...
A mobile channel simulator can be constructed either in the time domain using a tapped delay line fi...
This article describes a methodology to model in real-time the channel quality variations for mobile...
This paper proposes and discusses the architecture for a real-Time vehicular channel emulator capabl...
Arbeit an der Bibliothek noch nicht eingelangt - Daten nicht geprueftAbweichender Titel nach Überset...
Large-scale wireless emulation is gaining momentum nowadays, thanks to its potential in the developm...
International audienceThe aim of the PRIR SIMPAA2 project, which continues the research activities o...
During the design and development of a reliable transceiver, its performance and robustness are eval...
In this paper, the design and implementation of a new high performance hardware channel emulator is ...
WOS: 000417961300025Despite their reliability, on-site measurements are time-consuming and costly ac...
Abstract A millimeter-wave (mm-wave) channel emulator (CE) is an essential tool for air-interface t...
Connected autonomous vehicles and industry 4.0 productions scenarios require ultra-reliable low-late...
With the widespread availability of Internet, voice only broadcast in the FM Band will soon be aband...