Future mobile communication systems have to meet the demands of broadband services. The 60 GHz-range is proposed for the radio link frequency in these cellular systems. The combination of optical techniques and millimeter-wave techniques at these frequencies is a promising approach for cost-effective network implementation. Besides the low-loss fiber-based data transmission, this combination allows simple millimeter-wave generation in low-cost base stations. In this paper different techniques of optical millimeter-wave generation are briefly reviewed and some experiments on the optical generation of low-phase noise millimeter-wave signals and offset quadrature phase shift keying (OQPSK) 140 Mbit/s-data transmission are reported. Quartz stab...
We present a novel, simple and cost effective system for optical millimeter-wave generation and tran...
We present a novel, simple and cost effective system for optical millimeter-wave generation and tran...
With the use of higher and higher frequencies in a number of current and future wireless millimeter-...
The optical generation of low-phase noise millimeter-wave signals and OQPSK 140 Mbit/s-data transmis...
Experiments on the optical generation of low-phase noise millimeter-wave signals and 140 Mbit/s-data...
The success of future broadband mobile cellular communication systems rely to a great extent on reli...
Error-free 140 Mbit/s transmission experiments with optically generated millimeter-waves at frequenc...
For the first time error-free 140 Mbit/s transmissions with optically generated millimeter-waves up ...
The optical generation and transmission of millimeter-waves is promising for future cellular broadba...
The 60-GHz band is proposed for the radio link frequency in broad-band cellular systems. 140-155-Mb/...
Experiments on the optical generation and transmission of millimeter-wave radio signals are reported...
Bidirectional and 2-channel 155 Mbit/s transmission experiments in the OQPSK format are reported usi...
Future mobile communication systems must permit the use of broadband services. For the broadcast cha...
We present a novel, simple and cost effective system for optical millimeter-wave generation and tran...
Two different optical techniques for the generation of low-phase noise millimetre-wave signals have ...
We present a novel, simple and cost effective system for optical millimeter-wave generation and tran...
We present a novel, simple and cost effective system for optical millimeter-wave generation and tran...
With the use of higher and higher frequencies in a number of current and future wireless millimeter-...
The optical generation of low-phase noise millimeter-wave signals and OQPSK 140 Mbit/s-data transmis...
Experiments on the optical generation of low-phase noise millimeter-wave signals and 140 Mbit/s-data...
The success of future broadband mobile cellular communication systems rely to a great extent on reli...
Error-free 140 Mbit/s transmission experiments with optically generated millimeter-waves at frequenc...
For the first time error-free 140 Mbit/s transmissions with optically generated millimeter-waves up ...
The optical generation and transmission of millimeter-waves is promising for future cellular broadba...
The 60-GHz band is proposed for the radio link frequency in broad-band cellular systems. 140-155-Mb/...
Experiments on the optical generation and transmission of millimeter-wave radio signals are reported...
Bidirectional and 2-channel 155 Mbit/s transmission experiments in the OQPSK format are reported usi...
Future mobile communication systems must permit the use of broadband services. For the broadcast cha...
We present a novel, simple and cost effective system for optical millimeter-wave generation and tran...
Two different optical techniques for the generation of low-phase noise millimetre-wave signals have ...
We present a novel, simple and cost effective system for optical millimeter-wave generation and tran...
We present a novel, simple and cost effective system for optical millimeter-wave generation and tran...
With the use of higher and higher frequencies in a number of current and future wireless millimeter-...