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Secure communications via sending artificial noise by both transmitter and receiver: optimum power allocation to minimise the insecure region.

, , , , and . IET Communications, 8 (16): 2858-2862 (2014)

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Jointly Design of Beamforming and AN in SWIPT-Enabled Secure Cognitive Radio Networks., , , , , and . ICCC, page 520-524. IEEE, (2018)A Robust Design for Aperture-Level Simultaneous Transmit and Receive with Digital Phased Array., , , and . Sensors, 22 (1): 109 (2022)Low-complexity beamforming designs of sum secrecy rate maximization for the Gaussian MISO multi-receiver wiretap channel., , , , and . ICASSP, page 2174-2178. IEEE, (2016)Low-complexity beamforming designs of sum secrecy rate maximization for the Gaussian MISO multi-receiver wiretap channel., , , , and . ICASSP, page 2174-2178. IEEE, (2016)Passive Location Resource Scheduling Based on an Improved Genetic Algorithm., , , , and . Sensors, 18 (7): 2093 (2018)Worst-case robust masked beamforming for secure broadcasting., , , , and . WCNC, page 4186-4191. IEEE, (2013)Performance analysis of gain ratio power allocation strategies for non-orthogonal multiple access in indoor visible light communication networks., , , and . EURASIP J. Wireless Comm. and Networking, (2018)Secure communications via sending artificial noise by both transmitter and receiver: optimum power allocation to minimise the insecure region., , , , and . IET Communications, 8 (16): 2858-2862 (2014)Robust Artificial Noise Aided Transmit Design for MISO Wiretap Channels with Channel Uncertainty., , , and . IEEE Communications Letters, 17 (11): 2096-2099 (2013)Secrecy performance analysis of SLNR-based beamforming scheme in MISOME wiretap channels., , , , and . WCSP, page 1-5. IEEE, (2015)