arrow
返回

Mobile Lattice-Coded Physical-Layer Network Coding with Practical Channel Alignment

delete2018-08-01
delete18
delete
OA
AI
Y
Yihua Tan *
S
Soung Chang Liew
T
Tao Huang
DOI:10.1109/TMC.2018.2790947delete
delete原文链接
delete分享
delete收藏
查看原文
摘要

摘要

En 中文
Physical-layer network coding (PNC) is a communications paradigm that exploits overlapped transmissions to boost the throughput of wireless relay networks. A high point of PNC research was a theoretical proof that PNC that makes use of nested lattice codes could approach the information-theoretic capacity of a two-way relay network (TWRN), where two end nodes communicate via a relay node. The capacity cannot be achieved by conventional methods of time-division or straightforward network coding. Many practical challenges, however, remain to be addressed before the full potential of lattice-coded PNC can be realized. Two major challenges are: (1) for good performance in lattice-coded PNC, channels of simultaneously transmitting nodes must be aligned; (2) for lattice-coded PNC to be practical, the complexity of lattice encoding at the transmitters and lattice decoding at the receiver must be reduced. We address these challenges and implement a first lattice-coded PNC system on a software-defined radio (SDR) platform. Specifically, we design and implement a low-overhead channel precoding system that accurately aligns the channels of distributed nodes. In our implementation, the nodes use low-cost temperature-compensated oscillators (TCXO) only-a consequent challenge is that the channel alignment must be done more frequently and more accurately compared with the use of expensive oscillators. The low overhead and accurate channel alignment are achieved by (1) a channel precoding system implemented over FPGA to realize fast feedback of channel state information; (2) a highly-accurate carrier frequency offset (CFO) estimation method; and (3) a partial-feedback channel estimation method that significantly reduces the amount of feedback information from the receiver to the transmitters for channel precoding at the transmitters. To reduce lattice encoding and decoding complexities, we adapt the low-density lattice code (LDLC) for use in PNC systems. Experiments show that our implemented lattice-coded PNC achieves better bit error rate performance compared with time-division and straightforward network coding systems. It also has good throughput performance in mobile non-LoS scenarios.
Keyword:
Physical-layer network coding
two-way relay network
compute-and-forward
lattice codes
low-density lattice codes
channel alignment
AI总结

AI总结

对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

IEEE Transactions on Mobile Computing 封面图
IEEE Transactions on Mobile Computing
IF:
9.2
论文数:
5.8K
被引数:
1.8W

机构

C
Chinese University of Hong Kong
学者数:
3.4W
论文数: 3.2W
被引数: 5.6W
N
nanjing university
学者数:
7.8W
论文数: 5.6W
被引数: 87
引用论文

引用论文

err2002-01-01
err0
PREAI
errLynn Schreyer Bennethum; John H. Cushman
err分享
err收藏
Guidelines for the Management of Children and Adolescent with COVID-19: protocol for an update
err2021-01-01
err0
errOAAI
errQi Zhou; Weiguo Li; Siya Zhao; Qinyuan Li; Qianling Shi; Zijun Wang; Hui Liu; Xiao Liu; Janne Estill; Zhengxiu Luo; Qiu Li; Kehu Yang; Enmei Liu; Yaolong Chen
err分享
err收藏
An Empirical Investigation Of Trade Diversion And Global Value Chains
err
IF0
err2019-12-19
err0
errOAAI
errFrancois de Soyres; Julien Maire; Guillaume Sublet
err分享
err收藏
Scalable Synchronization and Reciprocity Calibration for Distributed Multiuser MIMO
err2014-04-01
err199
errOAAI
errRogalin, R.; Bursalioglu, O. Y.; Papadopoulos, H.; Caire, G.; Molisch, A. F.; Michaloliakos, A.; Balan, V.; Psounis, K.
err分享
err收藏
AirSync: Enabling Distributed Multiuser MIMO With Full Spatial Multiplexing
err2013-12-01
err109
errOAAI
errBalan, Horia Vlad; Rogalin, Ryan; Michaloliakos, Antonios; Psounis, Konstantinos; Caire, Giuseppe
err分享
err收藏
Cooperative communication in wireless networks
err2004-10-01
err2.2K
PREAI
errNosratinia, A; Hunter, TE; Hedayat, A
err分享
err收藏
学者 查看更多内容