DocumentCode
1325151
Title
On BICM Receivers for TCM Transmission
Author
Alvarado, Alex ; Szczecinski, Leszek ; Agrell, Erik
Author_Institution
Dept. of Signals & Syst., Chalmers Univ. of Technol., Gothenburg, Sweden
Volume
59
Issue
10
fYear
2011
fDate
10/1/2011 12:00:00 AM
Firstpage
2692
Lastpage
2702
Abstract
Recent results have shown that the performance of bit-interleaved coded modulation (BICM) using convolutional codes in nonfading channels can be significantly improved when the interleaver takes a trivial form (BICM-T), i.e., when it does not interleave the bits at all. In this paper, we give a formal explanation for these results and show that BICM-T is, in fact, the combination of a TCM transmitter and a BICM receiver. To predict the performance of BICM-T, a new type of distance spectrum for convolutional codes is introduced, analytical bounds based on this spectrum are developed, and asymptotic approximations are presented. It is shown that the free Hamming distance of the code is not the relevant optimization criterion for BICM-T. Asymptotically optimal convolutional codes for different constraint lengths are tabulated and BICM-T is shown to offer asymptotic gains of about 2 dB over traditional BICM designs based on random interleavers. The asymptotic gains over uncoded transmission are found to be the same as those obtained by Ungerboeck´s one-dimensional trellis-coded modulation (1D-TCM), and therefore, in nonfading channels, BICM-T is shown to be as good as 1D-TCM.
Keywords
Hamming codes; approximation theory; channel coding; convolutional codes; fading channels; interleaved codes; radio receivers; trellis coded modulation; 1D-TCM; BICM receivers; Hamming distance; TCM transmission; TCM transmitter; Ungerboeck one-dimensional trellis-coded modulation; analytical bounds; asymptotic approximations; bit-interleaved coded modulation; convolutional codes; nonfading channels; random interleavers; Convolutional codes; Decoding; Hamming weight; Measurement; Modulation; Receivers; Transmitters; Binary Reflected Gray Code; Bit-interleaved Coded Modulation; Coded Modulation; Convolutional Codes; Interleaver; Pulse Amplitude Modulation; Quadrature Amplitude Modulation; Set Partitioning; Trellis Coded Modulation;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2011.091411.100505
Filename
6024422
Link To Document