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Security-Aware Cross-Layer Resource Allocation for Heterogeneous Wireless Networks

机译:异构无线网络的安全意识型跨层资源分配

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摘要

In this paper, a security-aware energy-efficient resource allocation is modeled as a fractional programming problem for heterogeneous multi-homing networks. The security-aware resource allocation is formulated as a secrecy energy efficiency maximization problem subject to the average packet delay, the average packet dropping probability, and the total available power consumption. In order to guarantee the packet-level quality of service (QoS), first, the average packet delay and the average packet dropping probability requirement for each mobile terminal at the link layer are transformed into a minimum secrecy rate constraint at the physical layer. Then, the non-convex secrecy energy efficiency maximization problem is approximated by a convex problem through epigraph representation. A security-aware energy-efficient resource allocation algorithm is then proposed leveraging dual-decomposition method and bi-section search method. Finally, a heuristic security-aware resource allocation algorithm is proposed to serve as a benchmark. Simulation results demonstrate that the proposed security-aware energy-efficient resource allocation algorithm not only improves the secrecy energy efficiency and throughput, but also guarantees the packet-level QoS.
机译:在本文中,将针对安全性的节能资源分配建模为异构多归属网络的分数规划问题。将安全意识资源分配公式化为一个保密的能效最大化问题,该问题取决于平均分组延迟,平均分组丢弃概率和总可用功耗。为了保证分组级服务质量(QoS),首先,将在链路层的每个移动终端的平均分组延迟和平均分组丢弃概率要求转换为物理层的最小保密率约束。然后,通过凸题表达将非凸保密能量效率最大化问题近似为凸问题。然后,利用双分解法和二分搜索法,提出了一种具有安全意识的节能资源分配算法。最后,提出了一种启发式安全感知资源分配算法作为基准。仿真结果表明,所提出的安全感知节能资源分配算法不仅提高了保密的能源效率和吞吐量,而且还保证了分组级的QoS。

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