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Secure resource allocation for polarization-enabled green cooperative cognitive radio networks with untrusted secondary users

机译:具有不受信任的辅助用户的启用极化的绿色合作认知无线电网络的安全资源分配

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We address secure resource allocation for an OFDMA cooperative cognitive radio network (CRN) with energy harvesting (EH) capability. In the network, one primary user (PU) cooperates with several untrusted secondary users (SUs) with one SU transmitter and several SU receivers, where the SU transmitter and all SU receivers may overhear the PU transmitter's information while all SU receivers may eavesdrop on each other's signals. We consider the scenario when SUs are wireless devices with small physical sizes; therefore to improve system performance we suppose that SUs are equipped with co-located orthogonally dual-polarized antennas (ODPAs). With ODPAs, on one hand, the SU transmitter can first harvest energy from radio frequency (RF) signals emitted by the PU transmitter, and then utilize the harvested energy to simultaneously serve the PU and all SU receivers. On the other hand, by exploiting polarization-based signal processing techniques, both the PU's and SUs' physical-layer security can be enhanced. In particular, to ensure the PU's communication security, the PU receiver also sends jamming signals to degrade the reception performance of SUs, and meanwhile the jamming signals can also become new sources of energy powering the SU transmitter. For the considered scenario, we investigate the joint allocation of subcarriers, powers, and power splitting ratios to maximize the total secrecy rate of all SUs while ensuring the PU's minimum secrecy rate requirement. Finally, we evaluate the performance of our resource allocation scheme through numerical analyses.
机译:我们针对具有能量收集(EH)功能的OFDMA合作认知无线电网络(CRN)解决安全资源分配问题。在网络中,一个主要用户(PU)与具有一个SU发送器和几个SU接收器的几个不受信任的辅助用户(SU)协作,其中SU发送器和所有SU接收器可能会监听PU发送器的信息,而所有SU接收器可能会监听每个别人的信号。我们考虑以下情况:SU是物理尺寸较小的无线设备。因此,为了提高系统性能,我们假设SU配备了位于同一地点的正交双极化天线(ODPA)。一方面,借助ODPA,SU发射机可以首先从PU发射机发射的射频(RF)信号中收集能量,然后利用所收集的能量同时为PU和所有SU接收机提供服务。另一方面,通过利用基于极化的信号处理技术,可以增强PU和SU的物理层安全性。特别地,为了确保PU的通信安全性,PU接收器还发送干扰信号以降低SU的接收性能,同时,干扰信号也可以成为为SU发送器供电的新能源。对于考虑的情况,我们研究了子载波,功率和功率分配比的联合分配,以最大程度地确保所有SU的总保密率,同时确保PU的最低保密率要求。最后,我们通过数值分析评估了资源分配方案的性能。

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