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On the Secure Spectral-Energy Efficiency Tradeoff in Random Cognitive Radio Networks

机译:随机认知无线电网络中频谱能量效率的安全权衡

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Spectrum efficiency (SE) and energy efficiency (EE) in secure communications have attracted much attention recently due to the fact that future wireless networks need to address the issues of high throughput, low power consumption, and high level of security. However, maximizing EE and SE are conflicting objectives, which can hardly be achieved simultaneously. In this paper, we develop a framework to study the SE and EE for secure transmission in underlay random cognitive radio (CR) networks where the primary, secondary, and eavesdropper nodes are randomly distributed according to Poisson point processes. We first analyze the connection outage probability and the secrecy outage probability of the typical links in the random CR network. Then, we evaluate the secure SE and EE in the secondary network based on the outage probability analysis. It is demonstrated that the scheduling scheme of the secondary network (i.e., the transmission power and the intensity of secondary transmitters arouses a tradeoff between the secure SE and EE. Furthermore, applying a unified secure SE-EE tradeoff metric, which condenses the secure SE and EE into a single utility function with a tradeoff factor, we formulate the joint secure SE and EE optimization problem with respect to the scheduling scheme of the secondary network. An iterative algorithm is proposed based on the separation optimization of the transmission power and the intensity. The analytical and simulation results show the effects of system parameters on the optimal solutions and secure SE-EE tradeoff. We also verify that the optimal scheduling scheme can improve the secure SE-EE tradeoff. Using these results, one can easily understand and make the secure SE-EE tradeoff in random CR networks.
机译:由于未来的无线网络需要解决高吞吐量,低功耗和高安全性的问题,因此安全通信中的频谱效率(SE)和能源效率(EE)最近引起了广泛关注。但是,最大化EE和SE是相互矛盾的目标,很难同时实现。在本文中,我们开发了一个框架,用于研究SE和EE在底层随机认知无线电(CR)网络中进行安全传输的安全性,该网络根据Poisson点过程随机分布了主要,次要和窃听者节点。我们首先分析随机CR网络中典型链路的连接中断概率和保密中断概率。然后,基于中断概率分析,评估辅助网络中的安全SE和EE。证明了次级网络的调度方案(即次级功率的发射功率和强度)引起了安全SE和EE之间的权衡,并且应用了统一的安全SE-EE权衡度量,从而浓缩了安全SE将EE和EE合并为具有折衷因子的单一效用函数,针对次级网络的调度方案,提出了联合安全SE和EE优化问题,提出了基于传输功率和强度分离优化的迭代算法分析和仿真结果表明了系统参数对最优解和安全SE-EE权衡的影响,我们还验证了最优调度方案可以改善安全SE-EE的权衡,利用这些结果,可以轻松地理解和做出随机CR网络中安全的SE-EE折衷。

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