Lim et al., 2001 - Google Patents
Technique for increasing optical spectral efficiency in millimetre-wave WDM fibre-radioLim et al., 2001
- Document ID
- 8632988619038638730
- Author
- Lim C
- Nirmalathas A
- Novak D
- Tucker R
- Waterhouse R
- Publication year
- Publication venue
- Electronics Letters
External Links
Snippet
A novel technique for increasing the spectral efficiency of millimetre-wave fibre-radio systems by employing wavelength interleaving in conjunction with optical single sideband modulation, is proposed and demonstrated. The technique has been demonstrated …
- 230000003287 optical 0 title abstract description 41
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B10/00—Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
- H04B10/50—Transmitters
- H04B10/501—Structural aspects
- H04B10/506—Multi-wavelength transmitters
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B10/00—Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
- H04B10/25—Arrangements specific to fibre transmission
- H04B10/2575—Radio-over-fibre, e.g. radio frequency signal modulated onto an optical carrier
- H04B10/25752—Optical arrangements for wireless networks
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J14/00—Optical multiplex systems
- H04J14/02—Wavelength-division multiplex systems
- H04J14/0227—Operation, administration, maintenance or provisioning [OAMP] of WDM networks, e.g. media access, routing or wavelength allocation
- H04J14/0241—Wavelength allocation for communications one-to-one, e.g. unicasting wavelengths
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04J—MULTIPLEX COMMUNICATION
- H04J14/00—Optical multiplex systems
- H04J14/02—Wavelength-division multiplex systems
- H04J14/0278—WDM optical network architectures
- H04J14/0282—WDM tree architectures
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/14—Relay systems
- H04B7/15—Active relay systems
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B10/00—Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
- H04B10/29—Repeaters
- H04B10/291—Repeaters in which processing or amplification is carried out without conversion of the main signal from optical form
- H04B10/293—Signal power control
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B10/00—Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
- H04B10/07—Arrangements for monitoring or testing transmission systems; Arrangements for fault measurement of transmission systems
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B10/00—Transmission systems employing electromagnetic waves other than radio-waves, e.g. infrared, visible or ultraviolet light, or employing corpuscular radiation, e.g. quantum communication
- H04B10/60—Receivers
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B2210/00—Indexing scheme relating to optical transmission systems
- H04B2210/25—Distortion or dispersion compensation
- H04B2210/258—Distortion or dispersion compensation treating each wavelength or wavelength band separately
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01S—DEVICES USING STIMULATED EMISSION
- H01S3/00—Lasers, i.e. devices for generation, amplification, modulation, demodulation, or frequency-changing, using stimulated emission, of infra-red, visible, or ultra-violet waves
- H01S3/05—Construction or shape of optical resonators; Accomodation of active medium therein; Shape of active medium
- H01S3/06—Construction or shape of active medium
- H01S3/063—Waveguide lasers, i.e. whereby the dimensions of the waveguide are of the order of the light wavelength
- H01S3/067—Fibre lasers
- H01S3/06754—Fibre amplifiers
- H01S3/06762—Fibre amplifiers having a specific amplification band
- H01S3/0677—L-band amplifiers, i.e. amplification in the range of about 1560 nm to 1610 nm
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04Q—SELECTING
- H04Q11/00—Selecting arrangements for multiplex systems
- H04Q11/0001—Selecting arrangements for multiplex systems using optical switching
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Lim et al. | Technique for increasing optical spectral efficiency in millimetre-wave WDM fibre-radio | |
Attygalle et al. | Transmission improvement in fiber wireless links using fiber Bragg gratings | |
Beas et al. | Millimeter-wave frequency radio over fiber systems: a survey | |
Bakaul et al. | Efficient multiplexing scheme for wavelength-interleaved DWDM millimeter-wave fiber-radio systems | |
Yu et al. | Cost-effective optical millimeter technologies and field demonstrations for very high throughput wireless-over-fiber access systems | |
US20070292143A1 (en) | Optical Re-Modulation in DWDM Radio-Over-Fiber Network | |
Lim et al. | On the merging of millimeter-wave fiber-radio backbone with 25-GHz WDM ring networks | |
Schrenk et al. | Demonstration of a remotely dual-pumped long-reach PON for flexible deployment | |
Bakaul et al. | Multifunctional WDM optical interface for millimeter-wave fiber-radio antenna base station | |
EP2404394B1 (en) | Method for data processing in an optical network component and optical network component | |
Schaffer et al. | Increasing the channel number in WDM mm-wave systems by spectral overlap | |
Bakaul et al. | Simultaneous multiplexing and demultiplexing of wavelength-interleaved channels in DWDM millimeter-wave fiber-radio networks | |
Fan et al. | Simultaneous transmission of wireless and wireline services using a single 60-GHz radio-over-fiber channel by coherent subcarrier modulation | |
US20110158644A1 (en) | In or relating to multicarrier communication | |
Chang et al. | Architectures and enabling technologies for super-broadband radio-over-fiber optical-wireless access networks | |
Aragón-Zavala et al. | Radio-over-fiber systems for wireless communications | |
Sarkar et al. | Minimum shift keying based protection mode capable wavelength division multiplexed passive optical network optical overlay system | |
Lim et al. | Wavelength-interleaving technique to improve optical spectral efficiency in millimeter-wave WDM fiber-radio | |
Nirmalathas et al. | Millimeter-wave fiber-wireless access systems incorporating wavelength division multiplexing | |
Rohde et al. | Quantum key distribution integrated into commercial WDM systems | |
Nirmalathas et al. | Optical interfaces without light sources for base-station designs in fiber-wireless systems incorporating WDM | |
Gamage et al. | Optical tandem single-sideband-based WDM interface for millimeter-wave fiber-radio multisector antenna base station | |
Marra et al. | FBG-based optical interface to support a multisector antenna in a spectrally efficient fiber radio system | |
Huang et al. | A simple WDM-PON architecture to simultaneously provide triple-play services by using one single modulator | |
Mitchell | Simultaneous up-conversion of multiple wavelengths to 18GHz and 36GHz using 4-f technique and optical filtering |