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Optimal Energy-Efficient Design of Confidential Multiple-Antenna Systems

机译:机密多天线系统的最佳节能设计

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摘要

Energy-efficient resource allocation in multiple-antenna wiretap channels is investigated, subject to maximum power and minimum secrecy capacity/rate constraints. Two energy-efficient metrics are optimized, namely the secrecy energy efficiency, defined as the ratio between the system secrecy capacity and the consumed power, and the secret-key energy efficiency, defined as the ratio between the system secret-key capacity and the consumed power. If the legitimate receiver and the eavesdropper have a single antenna, and the transmitter has multiple antennas, the global solution can be expressed by a simple formula that requires negligible complexity to be computed. Instead, if all nodes have multiple-antennas, provably convergent and computationally-friendly iterative algorithms are provided, which are able to determine the global maximum of the secret-key energy efficiency and candidate solutions of the secrecy energy efficiency maximization problem. Numerical results assess the performance of the proposed methods.
机译:研究了在最大功率和最小保密容量/速率约束下,多天线窃听信道中的节能资源分配。优化了两个节能指标,即保密能源效率(定义为系统保密容量和消耗的功率之间的比)和秘密能源效率(定义为系统秘密容量和消耗的功率之间的比)功率。如果合法的接收者和窃听者具有单个天线,而发送者具有多个天线,则可以通过一个简单的公式来表示全局解决方案,该公式需要计算可忽略的复杂性。相反,如果所有节点都具有多个天线,则提供可证明收敛和计算友好的迭代算法,该算法能够确定密钥能效的全局最大值以及保密能效最大化问题的候选解。数值结果评估了所提出方法的性能。

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