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Energy-Efficient and Secure Beamforming for Self-Sustainable Relay-Aided Multicast Networks

机译:自我支持的中继广播网络的节能高效波束形成

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The relay-aided multicast network is considered, where an NT -antenna source multicasts confidential messages to N single-antenna legitimate users via a self-sustainable M-antenna regenerative relay. In particular, the relay is powered by the energy harvested from the radio signal of the source, and there are K unauthorized eavesdroppers wiretapping the channel. Assuming the knowledge of statistical channel state information of eavesdroppers, we aim to minimize the source transmission power via energy-efficient beamforming, subject to the signal-to-noise ratios of legitimate users/relay, the power constraint at the relay, and the outage constraints of the eavesdroppers. An efficient algorithm is developed by using the iterative first-order Taylor expansion and successive convex approximation, where the original nonconvex problem is transformed and solved.
机译:考虑了中继辅助的多播网络,其中NT天线源通过自持的M天线再生中继向N个单天线合法用户多播机密消息。特别是,中继器由从源的无线电信号收集的能量供电,并且有K个未经授权的窃听者窃听了该信道。假设了解窃听者的统计信道状态信息,我们的目标是通过节能的波束成形来最大程度地减少源传输功率,但要遵循合法用户/中继的信噪比,中继站的功率限制以及中断的情况窃听者的约束。利用迭代的一阶泰勒展开和逐次凸逼近,开发了一种有效的算法,对原始的非凸问题进行了变换和求解。

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