DocumentCode :
1505933
Title :
A comparison of passband and baseband transmission schemes for HDSL
Author :
Sistanizadeh, Kamran ; Kerpez, Kenneth J.
Author_Institution :
Bellcore, Morristown, NJ, USA
Volume :
9
Issue :
6
fYear :
1991
fDate :
8/1/1991 12:00:00 AM
Firstpage :
885
Lastpage :
894
Abstract :
Using an ideal decision feedback equalizer (DFE), the SNR of quadrature amplitude modulation (QAM) and baseband pulse amplitude modulation (PAM) in the presence of self near-end crosstalk is computed for a large sample of loops within a carrier serving area (CSA). When baud-space feedforward filters are used, PAM has 1-2 dB more SNR than QAM, where the type of PAM is the 2B1Q line code. However, when using fractionally spaced feedforward equalizers (FSEs), the SNRs of 2B1Q and QAM are almost equal for loops at the extreme range of a CSA. Four- and 16-state trellis-coded modulation is applied to PAM and QAM. Coded and uncoded PAM and QAM are simulated with parallel decision feedback estimation. Viterbi receivers and coding gains are computed. QAM has up to 1 dB higher coding gains that PAM. However, the higher coding gains of QAM do not compensate for the lower SNR of uncoded QAM, and coded QAM has worse performance than coded PAM in the presence of self near-end crosstalk. The error rates of PAM and QAM with impulse noise are computed using a collection of measured impulse noise events. Results indicate that QAM has a lower error rate than PAM in the presence of impulse noise
Keywords :
amplitude modulation; codes; crosstalk; equalisers; feedback; pulse amplitude modulation; subscriber loops; 16-state trellis-coded modulation; 2B1Q line code; 4-state trellis coded modulation; DFE; HDSL; SNR; Viterbi receivers; baseband pulse amplitude modulation; baseband transmission; baud-space feedforward filters; carrier serving area; coded PAM; coded QAM; coding gains; decision feedback equalizer; error rates; fractionally spaced feedforward equalizers; high bit rate digital subscriber line; impulse noise; parallel decision feedback estimation; quadrature amplitude modulation; self near-end crosstalk; uncoded PAM; uncoded QAM; Amplitude modulation; Baseband; Computational modeling; Crosstalk; Decision feedback equalizers; Error analysis; Filters; Passband; Pulse modulation; Quadrature amplitude modulation;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/49.93099
Filename :
93099
Link To Document :
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