4.6 Article

Performance tradeoff in a unified system of communications and passive radar: A secrecy capacity approach

Journal

DIGITAL SIGNAL PROCESSING
Volume 82, Issue -, Pages 282-293

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.dsp.2018.06.017

Keywords

Joint passive radar-communications; Secrecy rate; Tradeoff analysis; Semi-analytical approach; Semi-definite relaxation

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In a unified system of passive radar and communication systems of joint transmitter platform, information intended for a communication receiver may be eavesdropped by a passive radar receiver (RR), thereby undermining the security of communications system. To minimize this information security risk, in this paper, we propose a unified passive radar and communications system wherein the signal-to-interference and noise ratio (SINR) at the RR is maximized while ensuring that the information secrecy rate is above a certain threshold value. We consider both scenarios wherein transmissions of the radar waveform and information signals are scheduled with the disjoint (non-overlapping case) as well as with the same set of resources (overlapping case). In both cases, the underlying optimization problems are non-convex. In the former case, we propose alternating optimization (AO) techniques that employ semi-definite programming and computationally efficient semi-analytical approaches. In the latter case, AO method based on semi-definite relaxation approach is proposed to solve the optimization problem. By changing the threshold value of the information secrecy rate, we then characterize the performance tradeoff between passive radar and communication systems with the boundaries of the SINR-secrecy capacity regions. The performance comparison of the proposed optimization methods demonstrate the importance of the semi-analytical approach and the advantage of overlapping case over non-overlapping one. Keywords: Joint passive radar-communications Secrecy rate Tradeoff analysis Semi-analytical approach Semi-definite relaxation (C) 2018 Elsevier Inc. All rights reserved.

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