Title :
Performance evaluation of CDMA adaptive interference canceller with RAKE structure using developed testbed in multiuser and multipath fading environment
Author :
Mizuguchi, Hironori ; Yoshida, Shousei ; Ushirokawa, A.
Author_Institution :
C&C Media Res. Labs., NEC Corp., Kawasaki, Japan
Abstract :
We describe the implementation of the proposed single user type CDMA adaptive interference canceller (AIC) with RAKE structure in a base station testbed, and evaluate its performance in the multiuser and multipath fading environment. Laboratory experiments demonstrate that the AIC receiver is much more near-far resistant than a conventional matched filter (MF) receiver in the multiuser case. When the power of the other users is 6 dB larger than that of the desired user, the AIC receiver can achieve a BER of 10-3 at C/PG=33.3% (eight users) in the 2-path fading channel, while the MF receiver cannot achieve the BER at C/PG of more than 20.8% (five users), it can achieve the BER at C/PG=33.3% in the equal power case. Furthermore, we evaluate the effect of transmission power reduction in a mobile station with transmission power control (TPC). Experimental results show that the required transmission power can be greatly reduced by 3.0 dB and 9.2 dB with the AIC receiver at C/PG=29.2% (seven users) and 33.3% (eight users), respectively
Keywords :
adaptive signal processing; code division multiple access; error statistics; fading channels; interference suppression; land mobile radio; multipath channels; multiuser channels; radio receivers; radiofrequency interference; 2-path fading channel; AIC receiver; BER; CDMA adaptive interference canceller; IMT-2000; RAKE structure; base station testbed; experimental results; laboratory experiments; matched filter receiver; mobile station; multipath fading environment; multiuser environment; near-far resistant receiver; performance evaluation; single user interference canceller; testbed; third generation land mobile communication systems; transmission power control; transmission power reduction; Base stations; Bit error rate; Fading; Interference cancellation; Laboratories; Matched filters; Multiaccess communication; Power control; RAKE receivers; Testing;
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 1998. The Ninth IEEE International Symposium on
Conference_Location :
Boston, MA
Print_ISBN :
0-7803-4872-9
DOI :
10.1109/PIMRC.1998.734250