| Literature DB >> 26131675 |
Zhongwei Si1, Junyang Ma2, Ragnar Thobaben3.
Abstract
Wireless sensor networks have been considered as an enabling technology for constructing smart cities. One important feature of wireless sensor networks is that the sensor nodes collaborate in some manner for communications. In this manuscript, we focus on the model of multiway relaying with full data exchange where each user wants to transmit and receive data to and from all other users in the network. We derive the capacity region for this specific model and propose a coding strategy through coset encoding. To obtain good performance with practical codes, we choose spatially-coupled LDPC (SC-LDPC) codes for the coded cooperation. In particular, for the message broadcasting from the relay, we construct multi-edge-type (MET) SC-LDPC codes by repeatedly applying coset encoding. Due to the capacity-achieving property of the SC-LDPC codes, we prove that the capacity region can theoretically be achieved by the proposed MET SC-LDPC codes. Numerical results with finite node degrees are provided, which show that the achievable rates approach the boundary of the capacity region in both binary erasure channels and additive white Gaussian channels.Entities:
Keywords: capacity region; coset encoding; multi-edge-type LDPC codes; multiway relay channel; spatially-coupled LDPC codes; wireless sensor networks
Year: 2015 PMID: 26131675 PMCID: PMC4541830 DOI: 10.3390/s150715265
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1The two-way relay channel with a common message. (a) The users transmit to the relay in turn; (b) The relay broadcasts to the users.
Figure 2One example of the multiway relay channel with full data exchange. (a) The users transmits to the relay in turn, and the messages may be overheard by other users; (b) The relay broadcasts to all the users.
Figure 3Multi-edge-type LDPC codes.
Belief-propagation (BP) thresholds of {0,1} over binary erasure channels (BECs).
| (3,1) | 0.5921 | 0.4079 | 0.3970 | 0.0109 |
| (3,2) | 0.4902 | 0.5098 | 0.4989 | 0.0109 |
| (3,3) | 0.3882 | 0.6118 | 0.5961 | 0.0157 |
| (3,4) | 0.2862 | 0.7138 | 0.6861 | 0.0277 |
| (3,5) | 0.1883 | 0.8157 | 0.7654 | 0.0503 |
| (3,6) | 0.0823 | 0.9177 | 0.8328 | 0.0849 |
BP thresholds of LDPC block codes over BECs.
| (3,1) | 0.6 | 0.4 | 0.3079 | 0.0921 |
| (3,2) | 0.5 | 0.5 | 0.3415 | 0.1585 |
| (3,3) | 0.4 | 0.6 | 0.3656 | 0.2344 |
| (3,4) | 0.3 | 0.7 | 0.3840 | 0.3160 |
| (3,5) | 0.2 | 0.8 | 0.3990 | 0.4010 |
| (3,6) | 0.1 | 0.9 | 0.4115 | 0.4885 |
BP thresholds of {0,1} over binary-input (BI)-AWGN channels.
| (3,1) | 0.5921 | 0.854 | 0.836 | 0.018 |
| (3,2) | 0.4902 | 0.994 | 0.976 | 0.018 |
| (3,3) | 0.3882 | 1.173 | 1.143 | 0.030 |
| (3,4) | 0.2862 | 1.427 | 1.355 | 0.072 |
| (3,5) | 0.1883 | 1.829 | 1.630 | 0.199 |
| (3,6) | 0.0823 | 2.751 | 1.998 | 0.753 |
BP thresholds of LDPC block codes over BI-AWGN channels.
| (3,1) | 0.6 | 0.844 | 0.748 | 0.096 |
| (3,2) | 0.5 | 0.979 | 0.793 | 0.186 |
| (3,3) | 0.4 | 1.149 | 0.827 | 0.322 |
| (3,4) | 0.3 | 1.386 | 0.853 | 0.533 |
| (3,5) | 0.2 | 1.767 | 0.875 | 0.892 |
| (3,6) | 0.1 | 2.552 | 0.894 | 1.658 |
Figure 4Bit erasure rates of the multi-edge-type (MET) spatially-coupled (SC)-LDPC codes over BECs. The solid curves show the simulation results, and the dotted vertical lines indicate the BP thresholds from density evolution.