Title :
Ultra-high-speed six-port frequency-division-multiplexing V-band transceiver
Author :
Mallat, Nazih Khaddaj ; Moldovan, Emilia ; Tatu, Serioja O. ; Wu, Ke
Author_Institution :
Poly-Grames Res. Center, Ecole Polytech. de Montreal, Montréal, QC, Canada
Abstract :
This paper presents a new architecture of ultra-high data rate millimeter-wave transceiver based on six-port technology that is demonstrated for operating over the V-band frequency from 60 GHz to 64 GHz. Since the unlicensed bandwidth allocated in this frequency band is extremely large (around 7 GHz) in the North America, the frequency-division-multiplexing scheme is used by introducing four QPSK channels in the wireless communication link studied in this paper. The data rate reached is 4 Gbit/s. To obtain realistic system simulation results, the proposed millimeter-wave six-port receiver model is based on the measurements results of a fabricated V-band ceramic hybrid coupler circuit. Bit error rate results and comparison between single-carrier and multi-carrier architectures are presented and discussed, thus proving that the proposed wireless system is an excellent and efficient candidate for future high-speed wireless communication systems.
Keywords :
error statistics; frequency division multiplexing; phase shift keying; radio transceivers; QPSK channels; V-band ceramic hybrid coupler circuit; bit error rate; frequency 60 GHz to 64 GHz; frequency-division-multiplexing scheme; high-speed wireless communication systems; millimeter-wave six-port receiver model; multi-carrier architecture; single-carrier architecture; six-port technology; ultra-high data rate millimeter-wave transceiver; ultra-high-speed six-port frequency-division-multiplexing V-band transceiver; wireless communication link; Bit error rate; Frequency division multiplexing; Integrated circuit modeling; Millimeter wave communication; Phase shift keying; Receivers; Wireless communication; Millimeter wave circuits; directional couplers; frequency division multiplexing; millimeter wave measurements;
Conference_Titel :
Microwave Conference Proceedings (APMC), 2011 Asia-Pacific
Conference_Location :
Melbourne, VIC
Print_ISBN :
978-1-4577-2034-5