Secure Transmission in Linear Multihop Relaying Networks
Jianping Yao, Xiangyun Zhou, Yuan Liu, and Suili Feng

TL;DR
This paper analyzes the secrecy performance of linear multihop relay networks with randomly distributed eavesdroppers, proposing optimal design strategies for transmission schemes and network parameters to enhance physical layer security.
Contribution
It introduces a comprehensive analysis of secure transmission design in multihop networks considering feedback, optimizing wiretap coding and hop count for improved security.
Findings
Optimal network design parameters derived for high SNR regimes.
Analytical expressions for secure throughput are accurate at practical SNR levels.
Guidelines provided for designing secure multihop relay networks.
Abstract
This paper studies the design and secrecy performance of linear multihop networks, in the presence of randomly distributed eavesdroppers in a large-scale two-dimensional space. Depending on whether there is feedback from the receiver to the transmitter, we study two transmission schemes: on-off transmission (OFT) and non-on-off transmission (NOFT). In the OFT scheme, transmission is suspended if the instantaneous received signal-to-noise ratio (SNR) falls below a given threshold, whereas there is no suspension of transmission in the NOFT scheme. We investigate the optimal design of the linear multiple network in terms of the optimal rate parameters of the wiretap code as well as the optimal number of hops. These design parameters are highly interrelated since more hops reduces the distance of per-hop communication which completely changes the optimal design of the wiretap coding rates.…
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Taxonomy
TopicsWireless Communication Security Techniques · Cooperative Communication and Network Coding · Advanced MIMO Systems Optimization
