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Robust Resource Allocation for Uplink Sum Rate Maximization in Multi-Cell Heterogeneous Networks

机译:多单元异构网络中上行链路和速率最大化的鲁棒资源分配

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In this paper, we investigate the robust power allocation problem in a two-tier orthogonal frequency division multiplexing (OFDM) access based heterogeneous networks, where the minimal rate requirement of each femtocell user and interference power constraint of macrocell user are properly controlled under channel uncertainties. We formulate an optimization problem to maximize the sum data rate of the femtocell users under the consideration of channel uncertainties of both cross-tier and intra-tier links while guaranteeing the rate requirement of femtocell users and controlling the interference to the macrocell users in terms of probability. According to the distribution models of estimation errors, we transform the original problem into a deterministic one and solve it by the subgradient method and Karush-Kuhn-Tuchker conditions. Simulation results show that our approach can fast converge to the optimal value and well protect the performance of macrocell users under channel uncertainties.
机译:在本文中,我们研究了基于双层正交频分复用(OFDM)的异构网络中的强大功率分配问题,其中每个毫微微小区用户和宏小区用户的干扰功率约束的最小速率要求在信道不确定性下正确控制。我们制定了优化问题,以便在思考跨层和层链路的信道不确定性下最大化毫微微小区用户的和数据速率,同时保证毫微微小区用户的速率要求并控制对宏小区用户的干扰可能性。根据估计误差的分布模型,我们将原始问题转换为确定性的问题,并通过子射频方法和karush-kuhn-tuchker条件来解决。仿真结果表明,我们的方法可以快速收敛到最佳值,并良好地保护宏小区用户在信道不确定性下的性能。

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