Title
60-Ghz OFDM Systems for Multi-Gigabit Wireless LAN Applications
Abstract
This paper presents the developed 60-GHz OFDM hardware demonstrators and the newly designed 60-GHz system architecture targeting for multi-gigabit wireless LAN applications. The hardware demonstrators developed so far are made up of maximum 1-Gbps OFDM baseband realized on FPGA platform and 60-GHz super-heterodyne transceivers fabricated by SiGe BiCMOS technologies. Wireless transmission in 60-GHz links is successfully demonstrated in indoor office environments. The next generation 60-GHz OFDM systems are designed to provide data rate higher than 3-Gbps utilizing the channel bandwidth of 2.16-GHz. Advanced channel coding schemes including low-density-parity-check (LDPC) coding are applied to have higher coding gain. RF transceivers are based on sliding IF architecture and designed to be compatible to the channel plans defined in the 60-GHz standards.
Year
DOI
Venue
2010
10.1109/CCNC.2010.5421616
Consumer Communications and Networking Conference
Keywords
Field
DocType
60-ghz ofdm system,transceivers,based,channel bandwidth,multigigabit wireless lan applications,telecommunication standards,indoor office environments,multi-gigabit wireless lan application,rf transceivers,60-ghz ofdm hardware demonstrator,higher coding gain,ofdm modulation,low-density-parity-check coding,60-ghz system architecture,channel coding,sliding if architecture,60-ghz standard,bicmos integrated circuits,advanced channel,advanced channel coding,1-gbps ofdm baseband,system architecture,bit rate 1 gbit/s,telecommunication links,wireless transmission,frequency 60 ghz,60-ghz link,ge-si alloys,ofdm systems,bandwidth 2.16 ghz,wireless lan,parity check codes,super-heterodyne transceivers,sige bicmos technologies,60-ghz super-heterodyne,ldpc code,coding gain,low density parity check
Gigabit,Coding gain,Baseband,Transceiver,Computer science,Computer network,Communication channel,Systems architecture,Channel capacity,Orthogonal frequency-division multiplexing
Conference
ISBN
Citations 
PageRank 
978-1-4244-5176-0
9
0.96
References 
Authors
2
7
Name
Order
Citations
PageRank
Changsoon Choi1467.33
Eckhard Grass225539.04
Maxim Piz3337.39
Marcus Ehrig4296.52
Miroslav Marinkovic5163.49
Rolf Kraemer690.96
Christoph Scheytt7265.67