Title :
MMSE equalization under conditions of soft hand-off
Author :
Krauss, Thomas P. ; Zoltowski, Michael D.
Author_Institution :
Sch. of Electr. Eng., Purdue Univ., West Lafayette, IN, USA
Abstract :
We examine the performance of two equalizers for CDMA downlink over a frequency-selective multipath channel: the traditional RAKE receiver, and a chip-level MMSE (minimum mean square error) equalizer. The mobile-station is assumed to be approximately midway between two base-stations. We examine system performance for normal operation versus soft hand-off mode with two receive antennas. MMSE is confirmed to significantly outperform RAKE. Depending on the target uncoded bit error rate (BER), soft hand-off operation allows at least 3.5 dB less SNR for the MMSE chip-equalizers. The RAKE receiver also may operate at much lower SNR in soft hand-off mode, but a much smaller range of target BERs is available due to the multi-user access interference (MAI) induced BER floor of the RAKE receivers at moderate to high SNR. A closed form expression for the SINR is developed, which when used with a Gaussian approximation for the interference. Very well approximates the average BER
Keywords :
Gaussian processes; cellular radio; code division multiple access; equalisers; error statistics; interference suppression; least mean squares methods; multipath channels; multiuser channels; radio links; radio receivers; radiofrequency interference; spread spectrum communication; CDMA downlink; Gaussian approximation; MMSE chip-equalizers; MMSE equalization; RAKE receiver; RFI; SINR; SNR; average BER; base-stations; cellular radio; chip-level MMSE equalizer; closed form expression; frequency-selective multipath channel; minimum mean square error; mobile-station; multi-user access interference; performance; radiofrequency interference; receive antennas; soft hand-off conditions; system performance; uncoded bit error rate; Bit error rate; Downlink; Equalizers; Fading; Frequency; Interference; Mean square error methods; Multiaccess communication; Multipath channels; System performance;
Conference_Titel :
Spread Spectrum Techniques and Applications, 2000 IEEE Sixth International Symposium on
Conference_Location :
Parsippany, NJ
Print_ISBN :
0-7803-6560-7
DOI :
10.1109/ISSSTA.2000.876492