A 60-GHz point-to-multipoint millimeter-wave fiber-radio communication system

Точечно-многоточечная система миллиметроволновой fiber-radio связи на частоте 60 ГГц
Yong‐Hoon Kim, Sung Tae Choi, Ki Seok Yang, Seiji Nishi, Shimpei Shimizu, Kiyohito Tokuda
2006-05-01

60-GHz point-to-multipoint millimeter-wave60-GHz transceiver module with planar antennasfiber-radio access linkfull-duplex fiber-optic millimeter-wave transmissiontree coupler and dense wavelength division multiplexing (DWDM)
A 60-GHz point-to-multipoint wireless access link with data rate of 156 Mb/s incorporating 60-GHz transceiver modules and full-duplex fiber-optic millimeter-wave transmission is developed for short-range applications such as indoor wireless local area networks and intelligent transport systems. For compact system configuration, a small-size millimeter-wave transceiver module with planar antennas is developed. The transceiver module is based on broadband planar integration and packaging of millimeter-wave circuits. The RF output power is +10 dBm and the measured 3-dB antenna beamwidth is 30/spl deg/. The total size of the developed 60-GHz transceiver module, except input and output connectors, is 50 mm /spl times/ 75 mm /spl times/ 35 mm. A point-to-point full duplex fiber-optic configuration is extended to the scheme with multiple access points (APs) by using a tree coupler and a dense wavelength division multiplexing multiplexer. The AP has a simple configuration without frequency conversion. The bit error rate and packet error rate performances of the 60-GHz fiber-radio access link are evaluated. Furthermore, the effect of the extension to the scheme with multiple APs is investigated.
1
Designed a compact millimeter-wave transceiver module with planar antennas based on broadband planar integration and packaging of millimeter-wave circuits.
2
Developed a 60-GHz point-to-multipoint wireless access link achieving 156 Mb/s using 60-GHz transceiver modules and full-duplex fiber-optic millimeter-wave transmission.
3
Evaluated bit error rate and packet error rate performances of the 60-GHz fiber-radio access link and investigated effects of extension to multiple APs.
4
Extended a point-to-point full-duplex fiber-optic configuration to multiple access points using a tree coupler and dense wavelength division multiplexing, allowing APs without frequency conversion.
5
The physical size of the transceiver module (excluding connectors) is 50 mm × 75 mm × 35 mm, enabling compact system configuration.
6
The transceiver module delivers RF output power of +10 dBm and a measured 3-dB antenna beamwidth of 30°.

A 60-GHz point-to-multipoint millimeter-wave fiber-radio communication system (including 60-GHz transceiver modules, planar antennas, and full-duplex fiber-optic millimeter-wave transmission linking multiple access points)

Design, implementation, and performance (data rate, RF output power, antenna beamwidth, module size, bit-error-rate and packet-error-rate) of the 60-GHz point-to-multipoint fiber-radio access link and the effects of extending the point-to-point full-duplex fiber-optic configuration to multiple access points using tree coupler and DWDM

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Publication Date
2006-05-01
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Yong‐Hoon Kim
Sung Tae Choi
Ki Seok Yang
Seiji Nishi
Shimpei Shimizu
Kiyohito Tokuda
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