DocumentCode :
757060
Title :
Signal shaping for peak-power and dynamics reduction in transmission schemes employing precoding
Author :
Fischer, Robert F H ; Tzschoppe, Roman ; Huber, Johannes B.
Author_Institution :
Lehrstuhl fur Informationsubertragung, Erlangen-Nurnberg Univ., Erlangen, Germany
Volume :
50
Issue :
5
fYear :
2002
fDate :
5/1/2002 12:00:00 AM
Firstpage :
735
Lastpage :
741
Abstract :
Precoding, i.e., nonlinear pre-equalization, at the transmitter side has been proved to be a very efficient strategy for channel equalization in single-carrier digital transmission schemes. It enables the application of coded modulation in a seamless fashion. A drawback of precoding is that the signal at the input of the decision device exhibits a huge dynamic range. Based on dynamics shaping, a combined precoding/shaping technique introduced in the paper by Fischer et al. (1995), a new shaping strategy is developed in this paper. This technique enables a flexible tradeoff among: (1) reduction of the average transmit power; (2) avoidance of peaks in the transmit signal in order to facilitate line driver implementation; and (3) restriction of the maximum amplitude at the receiver side to a prescribed value. Over a wide range, all three demands can be met simultaneously. As the scheme is fully compatible with Tomlinson-Harashima (1971, 1972) precoding, it can replace the precoder even in existing and standardized schemes. Simulation results for a typical digital subscriber line scenario show the achievable gains
Keywords :
digital subscriber lines; encoding; equalisers; modulation coding; DSL; Viterbi algorithm; average transmit power reduction; channel equalization; coded modulation; digital subscriber line; digital subscriber lines; dynamic range; dynamics reduction; dynamics shaping; line driver; nonlinear pre-equalization; peak-power reduction; precoding; precoding/shaping technique; signal shaping; simulation results; single-carrier digital transmission; transmitter; Channel capacity; Clocks; DSL; Distortion; Dynamic range; Intersymbol interference; Jitter; Modulation coding; Peak to average power ratio; Transmitters;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2002.1006555
Filename :
1006555
Link To Document :
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