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Quality of Service and Max-Min Fair Transmit Beamforming to Multiple Cochannel Multicast Groups

机译:服务质量和最大-最小公平传输波束成形到多个同频道组播组

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The problem of transmit beamforming to multiple cochannel multicast groups is considered, when the channel state is known at the transmitter and from two viewpoints: minimizing total transmission power while guaranteeing a prescribed minimum signal-to-interference-plus-noise ratio (SINR) at each receiver; and a fair approach maximizing the overall minimum SINR under a total power budget. The core problem is a multicast generalization of the multiuser downlink beamforming problem; the difference is that each transmitted stream is directed to multiple receivers, each with its own channel. Such generalization is relevant and timely, e.g., in the context of the emerging WiMAX and UMTS-LTE wireless networks. The joint problem also contains single-group multicast beamforming as a special case. The latter (and therefore also the former) is NP-hard. This motivates the pursuit of computationally efficient quasi-optimal solutions. It is shown that Lagrangian relaxation coupled with suitable randomization/cochannel multicast power control yield computationally efficient high-quality approximate solutions. For a significant fraction of problem instances, the solutions generated this way are exactly optimal. Extensive numerical results using both simulated and measured wireless channels are presented to corroborate our main findings.
机译:当在发射机上知道信道状态时,从两个角度考虑发送波束成形到多个同信道多播组的问题:最小化总传输功率,同时保证在规定的最小信噪比(SINR)每个接收者;合理的方法是在总功率预算下使整体最小SINR最大化。核心问题是多用户下行链路波束成形问题的组播泛化。不同之处在于,每个传输流都定​​向到多个接收器,每个接收器都有自己的信道。例如在新兴的WiMAX和UMTS-LTE无线网络的背景下,这种概括是相关且及时的。联合的问题还包括单组多播波束成形作为一种特殊情况。后者(因此也是前者)是NP困难的。这激发了对计算有效的准最优解的追求。结果表明,拉格朗日松弛与适当的随机化/同信道多播功率控制相结合,可产生计算有效的高质量近似解。对于很大一部分问题实例,以这种方式生成的解决方案是最佳的。提出了使用模拟和测量的无线通道的大量数值结果,以证实我们的主要发现。

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