The radio-over-fiber (RoF) system is one of the potential schemes for the future broadband wireless communication systems such as mobile communications, hotspots and suburban areas. In this paper, we present 16 channels of RF carrier modulation of the Sub Carrier Multiplexing (SCM), which then integrated, with Wavelength Division Multiplexing (WDM) for the Radio over Fibre Link. The integration of the two systems is responding to the demands for high data rate applications and reasonable mobility for broadband communication. The work also investigates the performance of EDFA for the optical fiber length up to 200km. The EDFA introduced as the optical amplifier in the designed system model to encounter the effects of attenuation, distortion ...
International audienceNext generation wireless networks must provide high ...
The greatest advantages of optical fibers are the possibility of extending data rate transmission an...
The proliferation of wireless LANs and other wireless devices coupled with increased demand for broa...
Radio over fiber (RoF) techniques are good candidates to create the backbone of the next generation ...
Communication that combines the methodologies of the two communications can be considered as communi...
Radio over fiber (RoF) can be assessed as a system of most convenient combination of optical fiber a...
This paper presents a detailed study of N-channels Wavelength Division Multiplexing (WDM) Optical tr...
Radio over fiber (RoF) techniques are good candidates to create the backbone of the next generation ...
Abstract: Radio over Fiber (RoF) is a technology where light is modulated with radio frequency signa...
Radio-over-Fiber (RoF) technology is an integration of microwave and optical networks [1]. RoF techn...
Radio over fiber (ROF) is an hybrid system that having both a fiber optic link and free-space radio ...
Radio over fiber (RoF) has found to be one of the most effective communication techniques. It has th...
A radio over fibre (RoF) system is designed to be in an integrated fiber-wireless access network us...
A radio over fibre (RoF) system is designed to be in an integrated fiber-wireless access network us...
In this paper, we investigate a calculating model of WDM Milimeter-Wave (MMW) Radio-over-Fiber Commu...
International audienceNext generation wireless networks must provide high ...
The greatest advantages of optical fibers are the possibility of extending data rate transmission an...
The proliferation of wireless LANs and other wireless devices coupled with increased demand for broa...
Radio over fiber (RoF) techniques are good candidates to create the backbone of the next generation ...
Communication that combines the methodologies of the two communications can be considered as communi...
Radio over fiber (RoF) can be assessed as a system of most convenient combination of optical fiber a...
This paper presents a detailed study of N-channels Wavelength Division Multiplexing (WDM) Optical tr...
Radio over fiber (RoF) techniques are good candidates to create the backbone of the next generation ...
Abstract: Radio over Fiber (RoF) is a technology where light is modulated with radio frequency signa...
Radio-over-Fiber (RoF) technology is an integration of microwave and optical networks [1]. RoF techn...
Radio over fiber (ROF) is an hybrid system that having both a fiber optic link and free-space radio ...
Radio over fiber (RoF) has found to be one of the most effective communication techniques. It has th...
A radio over fibre (RoF) system is designed to be in an integrated fiber-wireless access network us...
A radio over fibre (RoF) system is designed to be in an integrated fiber-wireless access network us...
In this paper, we investigate a calculating model of WDM Milimeter-Wave (MMW) Radio-over-Fiber Commu...
International audienceNext generation wireless networks must provide high ...
The greatest advantages of optical fibers are the possibility of extending data rate transmission an...
The proliferation of wireless LANs and other wireless devices coupled with increased demand for broa...