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In [8], authors aimed to design the optimal jamming vector that maximizes the secrecy rate and mitigates loop interference.
The optimal selection maximizes the secrecy capacity and is given as {R}^{ast }= arg underset{R_i,i=1,dots, M}{ max}left{frac{gamma_{R_iD}}{gamma_{R_iE}}right}.
In the optimal relay selection scheme for cooperative multi-relay system [22, 29], the relay that maximizes the secrecy capacity of system is selected to forward the source data.
Similar(57)
The centralized solution is found by maximizing the secrecy capacity only.
The resulting scalar problem (7) aims to maximize the secrecy rate and meanwhile maintain the QoMS above a given threshold.
Specifically, [25] investigated the AF-based relay beamforming scheme in the presence of multiple eavesdroppers to maximize the secrecy rate.
When deriving achievable rate, we will focus on a specific sequence of schedules, and maximize the secrecy rate over.
Also, centralized approaches targeting at maximizing the secrecy sum rate in a NOMA system have been proposed [12].
In the proposed ACA-A model, we try to maximize the secrecy rate on each subcarrier, and finally the system sum secrecy rate is maximized.
In addition, the objective of the aforementioned works is to improve the secrecy rate or maximize the secrecy capacity, while seldom works consider the fairness among the sources.
Aiming at this problem,[32] presents the AF- and DF-based optimal relay selection to maximize the secrecy rate, without using artificial noise.
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