Secure MIMO Relaying Network: An Artificial Noise Aided Robust Design Approach
Jiaxin Yang, Qiang Li, Benoit Champagne, Yulong Zou, Lajos, Hanzo

TL;DR
This paper develops robust optimization methods for secure MIMO relay networks using artificial noise, enhancing secrecy and robustness against eavesdroppers with imperfect channel knowledge.
Contribution
It introduces a globally optimal bi-level optimization framework and a low-complexity penalized DC algorithm for secure relay design under channel uncertainties.
Findings
Both methods ensure secure transmission and improve robustness.
The penalized DC method performs close to the optimal solution.
Simulations confirm enhanced secrecy and robustness.
Abstract
Owing to the vulnerability of relay-assisted and device-to-device (D2D) communications, improving wireless security from a physical layer signal processing perspective is attracting increasing interest. Hence we address the problem of secure transmission in a relay-assisted network, where a pair of legitimate user equipments (UEs) communicate with the aid of a multiple-input multiple output (MIMO) relay in the presence of multiple eavesdroppers (eves). Assuming imperfect knowledge of the eves' channels, we jointly optimize the power of the source UE, the amplify-and-forward (AF) relaying matrix and the covariance of the artificial noise (AN) transmitted by the relay, in order to maximize the received signal-to-interference-plus-noise ratio (SINR) at the destination, while imposing a set of robust secrecy constraints. To tackle the resultant nonconvex optimization problem, a globally…
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Taxonomy
TopicsWireless Communication Security Techniques · Cooperative Communication and Network Coding · Advanced MIMO Systems Optimization
