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Worst case fair beamforming for multiple multicast groups in multicell networks

机译:多小区网络中多个组播组的最坏情况公平波束成形

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摘要

The design problem associated with robust downlink beamforming in multicast, multigroup, multicell wireless systems is addressed. The channel state information (CSI) of users is assumed to be imperfect and the uncertainty of CSI is modelled using the Frobenius norm. The objective is to optimise the signal-to-interference-plus-noise ratio over all users with a constraint on the maximum total transmitted power. This was achieved through a robust solution using the successive convex approximation (SCA) method. The beamforming problem is treated as a bi-convex problem, which is solved using the iterate-alternative convex technique. Here, the CSI uncertainty is addressed using a convex package through the non-monotone spectral projected gradient method and the beamforming vector is extracted using the SCA method. Also, the authors offer the required condition to extract the beamform vector using the SCA method through a suboptimal solution that always addressed before using different beamforming methods. Their simulation results examine all proposed system parameters in order to show convergence and feasibility of the solution. They also compare the solution with a suboptimal solution and the quality of service method for imperfect CSI in downlink beamforming. Numerical results show that the robust solution achieves the best power efficiency for practical solutions.
机译:解决了与多播,多组,多小区无线系统中强大的下行链路波束成形相关的设计问题。假定用户的信道状态信息(CSI)不完美,并且使用Frobenius范数对CSI的不确定性进行建模。目的是在所有最大发射功率的约束下,优化所有用户的信号干扰加噪声比。这是通过使用连续凸逼近(SCA)方法的鲁棒解决方案实现的。波束成形问题被视为双凸问题,使用迭代-交替凸技术解决了该问题。在此,通过非单调频谱投影梯度法使用凸包解决了CSI不确定性,并使用SCA方法提取了波束形成矢量。另外,作者提供了通过次优解决方案使用SCA方法提取波束形成矢量的必要条件,该解决方案在使用不同的波束形成方法之前总是得到解决。他们的仿真结果检查了所有建议的系统参数,以显示该解决方案的收敛性和可行性。他们还将解决方案与次优解决方案以及下行链路波束成形中不完美CSI的服务质量方法进行了比较。数值结果表明,该鲁棒解决方案可以为实际解决方案提供最佳的电源效率。

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