Collaborative Relay Beamforming for Secrecy
Junwei Zhang, Mustafa Cenk Gursoy

TL;DR
This paper explores collaborative relay beamforming with perfect CSI to enhance physical-layer security, proposing optimal and suboptimal solutions for maximizing secrecy rate under various power constraints.
Contribution
It introduces new optimization methods for relay beamforming design under power constraints, including closed-form, SDP, SOCP, and a simplified suboptimal technique.
Findings
Closed-form solution for total power constraint case.
Efficient SDP and SOCP algorithms for individual power constraints.
A low-complexity suboptimal beamforming technique.
Abstract
In this paper, collaborative use of relays to form a beamforming system with the aid of perfect channel state information (CSI) and to provide physical-layer security is investigated. In particular, a decode-and-forward-based relay beamforming design subject to total and individual relay power constraints is studied with the goal of maximizing the secrecy rate. It is shown that the total power constraint leads to a closed-form solution. The design under individual relay power constraints is formulated as an optimization problem which is shown to be easily solved using two different approaches, namely semidefinite programming and second-order cone programming. Furthermore, a simplified and suboptimal technique which reduces the computation complexity under individual power constraints is presented.
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Taxonomy
TopicsCooperative Communication and Network Coding · Wireless Communication Security Techniques · Full-Duplex Wireless Communications
