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Jammer-Assisted Resource Allocation in Secure OFDMA With Untrusted Users

机译:与不受信任的用户一起在安全OFDMA中的干扰源辅助资源分配

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In this paper, we consider the problem of resource allocation in the orthogonal frequency division multiple access system with single source and untrusted users in presence of a friendly jammer. The jammer is used to improve either the weighted sum secure rate or the overall system fairness. The formulated optimization problem in both the cases is a mixed integer non-linear programming problem, belonging to the class of NP-hard. In the sum secure rate maximization scenario, we decouple the problem and first obtain the subcarrier allocation at source and the decision for jammer power utilization on a per-subcarrier basis. Then, we do joint source and jammer power allocation using primal decomposition and alternating optimization framework. Next, we consider fair resource allocation by introducing a novel concept of subcarrier snatching with the help of jammer. We propose two schemes for jammer power utilization, called proactively fair allocation (PFA) and on-demand allocation (ODA). PFA considers equitable distribution of jammer power among the subcarriers, while ODA distributes jammer power based on the user demand. In both cases of jammer usage, we also present suboptimal solutions that solve the power allocation at a highly reduced complexity. Asymptotically optimal solutions are derived to benchmark optimality of the proposed schemes. We compare the performance of our proposed schemes with equal power allocation at source and jammer. Our simulation results demonstrate that the jammer can indeed help in improving either the sum secure rate or the overall system fairness.
机译:在本文中,我们考虑了在存在友好干扰源的情况下具有单源和不受信任用户的正交频分多址系统中的资源分配问题。干扰器用于提高加权和安全率或整个系统的公平性。在两种情况下,制定的优化问题都是混合整数非线性规划问题,属于NP-hard类。在总和安全率最大化的情况下,我们将问题解耦,首先在源头获得子载波分配,并在每个子载波的基础上确定干扰功率的利用决策。然后,我们使用原始分解和交替优化框架进行联合源和干扰功率分配。接下来,我们通过介绍一种在干扰器的帮助下进行子载波抢夺的新概念,来考虑公平的资源分配。我们提出了两种用于干扰功率利用的方案,称为主动公平分配(PFA)和按需分配(ODA)。 PFA考虑在子载波之间合理分配干扰功率,而ODA根据用户需求分配干扰功率。在两种干扰源使用情况下,我们还提出了次优解决方案,这些解决方案以大大降低的复杂度解决了功率分配问题。渐近最优解被导出到所提出方案的基准最优性。我们将所提出的方案的性能与源和干扰处的相等功率分配进行比较。我们的仿真结果表明,干扰器确实可以帮助提高总安全率或整个系统的公平性。

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