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PLS for Wireless Interference Networks in the Short Blocklength Regime with Strong Wiretap Channels

机译:具有强大窃听通道的短块长度制度的无线干扰网络的PLS

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This paper considers a wireless interference network in which the communication between multiple transmitter-user pairs is overheard by multiple eavesdroppers (EVs). Based on knowledge of the channel distribution, the goal is to maximize the worst users' secrecy rate under both long (infinite) blocklength and short (finite) blocklength transmissions. Under long blocklength transmission, the performance of the existing algorithms is unsatisfactory when the wiretapped channels are sufficiently strong. To address this drawback, we adopt a time-fraction based information and artificial noise (AN) transmission, under which first the information is transmitted within the initial fraction of the time slot and then AN is transmitted within the remaining fraction. Accordingly, the problem of join optimization of the time fractions, transmit power, and AN power to maximize the minimum secrecy rate is proposed and computed by a path-following algorithm, which iterates feasible points and converges at least to a locally optimal solution. A similar problem under short blocklength transmission is also proposed and computed. The provided simulations results clearly show the merits of the proposed approach.
机译:本文考虑了无线干扰网络,其中多个发射器 - 用户对之间的通信由多个窃听器(EVS)无丝。基于对信道分配的知识,目标是在长(无限)块长度和短(有限)块长度传输下最大化最严重的用户的保密率。在长块长度传输下,当窃听信道足够强时,现有算法的性能不令人满意。为了解决该缺点,我们采用基于时间 - 分数的信息和人工噪声(AN)传输,第一信息首先在时隙的初始分数内传输,然后在剩余的分数内传输。因此,提出了时间分数,发射功率和功率来最大化最小保密速率的连接优化问题,并通过路径之后的算法计算,该算法迭代可行点并至少收敛到局部最佳解决方案。还提出和计算了短块长度传输下的类似问题。提供的模拟结果明确显示了所提出的方法的优点。

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