Title :
Performance analysis of coded SSB-QPSK in mobile radio channels
Author :
Mujtaba, Syed Aon
Author_Institution :
Lucent Technol., Bell Labs., Murray Hill, NJ, USA
fDate :
29 Sep-2 Oct 1998
Abstract :
A novel modulation scheme for transmitting QPSK as a single sideband (SSB) signal has been presented by Mujtaba (see, Proc. IEEE Globecom, Sydney, Australia, 1998). In this paper, the performance of SSB-QPSK with convolutional encoding (R=1/2 and K=5) and Viterbi decoding is presented for a mobile radio channel. While the theoretical spectral efficiency of the new scheme, SSB-QPSK, is identical to that of QPSK or SSB (i.e. 2 bps/Hz), it was shown by Mujtaba that for a Rayleigh-fading mobile radio channel, uncoded SSB-QPSK is more robust to equalization imperfections than either uncoded QPSK or uncoded SSB. In this paper, we verify similar results for coded SSB-QPSK. For a flat Rayleigh fading channel with a one-tap equalizer, it is found that SSB-QPSK is more robust to equalizer phase errors than either QPSK or SSB. Performance in a frequency-selective Rayleigh-fading channel is evaluated with a linear equalizer, in which case it is found that if the equalizer fails to remove all the ISI, the residual ISI (and hence the BER as Eb/No→∞) is lower for SSB-QPSK compared to QPSK
Keywords :
AWGN channels; Rayleigh channels; Viterbi decoding; convolutional codes; equalisers; error statistics; intersymbol interference; land mobile radio; modulation coding; quadrature phase shift keying; AWGN channel; BER; ISI; Rayleigh-fading mobile radio channel; SSB signal; Viterbi decoding; coded SSB-QPSK; convolutional encoding; equalization imperfections; equalizer phase errors; flat Rayleigh fading channel; frequency-selective fading; linear equalizer; modulation; one-tap equalizer; performance analysis; single sideband signal; spectral efficiency; uncoded QPSK; uncoded SSB; uncoded SSB-QPSK; Amplitude modulation; Australia; Convolutional codes; Equalizers; Intersymbol interference; Land mobile radio; Performance analysis; Quadrature phase shift keying; Rayleigh channels; Robustness;
Conference_Titel :
Signals, Systems, and Electronics, 1998. ISSSE 98. 1998 URSI International Symposium on
Conference_Location :
Pisa
Print_ISBN :
0-7803-4900-8
DOI :
10.1109/ISSSE.1998.738049