DocumentCode :
1249056
Title :
Layered Design of Hierarchical Exclusive Codebook and Its Capacity Regions for HDF Strategy in Parametric Wireless 2-WRC
Author :
Sykora, Jan ; Burr, Alister
Author_Institution :
Fac. of Electr. Eng., Czech Tech. Univ. in Prague, Prague, Czech Republic
Volume :
60
Issue :
7
fYear :
2011
Firstpage :
3241
Lastpage :
3252
Abstract :
This paper addresses a hierarchical decode-and-forward (HDF) strategy in the wireless two-way relay channel (2-WRC). This strategy uses a Hierarchical eXclusive Code (HXC) that allows full decoding of the hierarchical symbols at the relay. The HXC represents two data sources only through the exclusive law and requires side information on the complementary data at the destination (which naturally holds for the 2-WRC). The HDF strategy has the advantage over classical medium-access control (MAC) stage relaying with joint decoding in that its rate region extends beyond the classical MAC region. We present a layered design of the HXC codebook, which uses an arbitrary outer state-of-the-art capacity-approaching code [e.g., low density parity check (LDPC)] and an inner layer with an exclusive symbol alphabet. We provide basic theorems, showing that this scheme forms an HXC, and we also evaluate its alphabet-constrained rate regions. The rate regions depend on the relative channel phase parameters. Some channel rotation leads to catastrophic violation of the exclusive law. However, these values appear only in a limited range of phases and have only a mild impact on the mean capacity for some component symbol constellations.
Keywords :
decode and forward communication; decoding; parity check codes; wireless channels; LDPC code; MAC stage relaying; alphabet-constrained rate regions; arbitrary outer capacity-approaching code; channel rotation; classical medium-access control; component symbol constellations; data sources; exclusive symbol alphabet; hierarchical decode-and-forward strategy; hierarchical exclusive codebook layered design; hierarchical symbols; joint decoding; low density parity check code; parametric wireless two-way relay channel; relative channel phase parameters; side information; Decoding; Encoding; Joints; Lattices; Modulation; Relays; Wireless communication; Capacity region; network coded modulation; two-way relay channel; wireless network coding;
fLanguage :
English
Journal_Title :
Vehicular Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9545
Type :
jour
DOI :
10.1109/TVT.2011.2160105
Filename :
5898431
Link To Document :
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