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Secure resource allocation and dynamic spectrum access for polarization-based green cooperative cognitive radio networks

机译:基于极化的绿色协同认知无线电网络的安全资源分配和动态频谱访问

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We address secure communication for energy-harvesting (EH) based cooperative cognitive radio networks (CRNs), in which several EH secondary users (SUs) cooperate with one primary user (PU) for both data transmission and energy harvesting. To increase the amount of energy harvested by SUs while improving spectrum utilization, we suppose that SUs are equipped with orthogonally dual-polarized antennas. On the basis of this assumption, we put forward a polarization-based two-phase cooperative framework, where SU transmitters first harvest energy from the PU's radio frequency (RF) signals by using the power splitting technique, and then utilize the harvested energy to convey their own and the PU's data concurrently. Under this framework, we study secure resource allocation and dynamic spectrum access when SU receivers are untrusted, where each SU receiver may eavesdrop on the other SUs' confidential information. For this scenario, we investigate the joint allocation of relays, power splitting ratios, and powers as well as the dynamic spectrum access of SUs by using the Stackelberg game, with the aim to maximize each cooperative SU's secrecy rate while ensuring the PU's minimum rate requirement. Finally, we evaluate the performance of our proposed framework through numerical analyses.
机译:我们解决了基于能量收集(EH)的协作认知无线电网络(CRN)的安全通信,其中几个EH二次用户(SUS)与一个主用户(PU)配合,以进行数据传输和能量收集。为了提高SUS收获的能量,同时提高频谱利用,我们假设SUS配备正交双极化天线。在此假设的基础上,我们提出了一种基于极化的两相协同框架,其中SU发射器通过使用电源分裂技术首先从PU的射频(RF)信号收获能量,然后利用收获的能量来传达他们自己和pu的数据同时。在此框架下,我们研究SU接收器不受信任时的安全资源分配和动态频谱接入,其中每个SU接收器可以窃听其他SUS的机密信息。对于这种情况,我们通过使用Stackelberg游戏调查继电器,电力分裂比和动力的联合分配以及SUS的动态频谱接入,其目的是最大限度地提高每个合作苏的保密率,同时确保PU的最低速率要求。最后,我们通过数值分析评估我们提出的框架的表现。

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