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Fair resource allocation in multiuser OFDMA downlink with passive eavesdropping

机译:具有无源窃听的多用户OFDMA下行链路中的公平资源分配

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In this paper, we study the problem of resource allocation for a multiuser orthogonal frequency-division multiple access (OFDMA) downlink with eavesdropping. The considered setup consists of a base station, several users and a single eavesdropper that indents to wiretap the transmitted message within each OFDMA subchannel. By taking into consideration the existence of the eavesdropper, the base station aims to assign subchannels and allocate the available power in order to optimize the max-min fairness criterion over the users' secrecy rate. The investigated problem is hard to be solved because of its combinatorial and nonlinear nature. Thus, optimality is discussed for two particular cases where the available power tends to infinity and zero, respectively. The optimal solution is obtained by formulating a mixed integer linear problem in the first case and a series of linear sum assignment problems in the second. In addition, two low-complexity solutions are presented which are based on decoupling the subchannel and the power allocation subproblems. Numerical results are provided to illustrate the performance of the presented solutions.
机译:在本文中,我们研究了具有监听功能的多用户正交频分多址(OFDMA)下行链路的资源分配问题。所考虑的设置包括一个基站,多个用户和一个窃听者,该窃听者缩进以窃听每个OFDMA子信道内的已发送消息。通过考虑窃听者的存在,基站旨在分配子信道并分配可用功率,以便在用户保密率上优化最大-最小公平性标准。由于其组合和非线性的性质,所研究的问题难以解决。因此,针对可用功率分别趋于无穷大和零的两个特定情况讨论了最优性。通过在第一种情况下制定混合整数线性问题,在第二种情况下制定一系列线性和分配问题,可以获得最优解。另外,基于子信道和功率分配子问题的解耦,提出了两种低复杂度的解决方案。提供数值结果以说明所提出解决方案的性能。

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