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QoS Driven Power Allocation in Secure Multicarrier Full-Duplex Relay Systems

机译:安全多载波全双工中继系统中QoS驱动的功率分配

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摘要

In this paper, we propose the quality-of-service (QoS) driven robust power allocation policy with channel uncertainty in the secure multicarrier full-duplex (FD) relay communication system, where the statistical delay QoS is given by the secure effective capacity (SEC). To maximize the SEC under the constraints of both the total system power and the residual loopback interference (LI) power of the FD relay, an optimization problem is formulated and the corresponding power allocation strategy has been presented in the case of perfect channel state information (CSI) and imperfect CSI. Specially, considering the imperfect CSI, we propose a robust power allocation scheme, where the channel uncertainty is modeled by a bounded region. Furthermore, the worst-case method and the Bernstein approximations are utilized to deal with the uncertainty. After the Taylor approximation based simplification of the formulated optimization problem, the optimal solution is obtained by subgradient descent algorithm based on Lagrangian dual method and Karush-Kuhn-Tucker (KKT) conditions. With known error range of CSI, numerical results and analysis illustrate that the proposed robust power allocation strategy can satisfy the statistical delay QoS requirement very well. Furthermore, the trade-off between the SEC and the robustness can be achieved with channel uncertainty.
机译:在本文中,我们提出了在安全多载波全双工(FD)中继通信系统中具有信道不确定性的服务质量(QoS)驱动的鲁棒功率分配策略,其中统计延迟QoS由安全有效容量( SEC)。为了在FD中继的总系统功率和残留环回干扰(LI)功率的约束下最大化SEC,提出了一个优化问题,并在信道状态信息完善的情况下提出了相应的功率分配策略( CSI)和不完善的CSI。特别地,考虑到不完美的CSI,我们提出了一种鲁棒的功率分配方案,其中信道不确定性由有界区域来建模。此外,利用最坏情况方法和伯恩斯坦近似法来处理不确定性。在对拟定的优化问题进行基于泰勒逼近的简化之后,通过基于拉格朗日对偶方法和Karush-Kuhn-Tucker(KKT)条件的次梯度下降算法获得最优解。在已知CSI误差范围的情况下,数值结果和分析表明,所提出的鲁棒功率分配策略可以很好地满足统计时延QoS要求。此外,可以在信道不确定的情况下实现SEC与鲁棒性之间的权衡。

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