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Multi-Group Multicast Beamformer Design for MIMO-OFDM Transmission

机译:用于MIMO-OFDM传输的多组组播波束成形器设计

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We study the problem of designing multicast precoders for multiple groups with the objective of minimizing total transmit power under certain guaranteed quality-of-service (QoS) requirements. To avail both spatial and frequency diversity, we consider a multiple-input multiple-output (MIMO) orthogonal frequency division multiplexing (OFDM) system. The problem of interest is in fact a nonconvex quadratically constrained quadratic program (QCQP) for which the prevailing semidefinite relaxation (SDR) technique is inefficient for at least two reasons. At first, the relaxed problem cannot be equivalently reformulated as a semidefinite programming (SDP). Secondly, even if the relaxed problem is solved, the so-called randomization procedure should be used to generate a high quality feasible solution to the original QCQP. However, such a randomization procedure is difficult in the considered system model. To overcome these shortcomings, we adopt successive convex approximation (SCA) framework in this paper to find beamformers directly. The proposed method not only avoids the randomization procedure mentioned above but also requires lower computational complexity compared to the SDR approach. Numerical experiments are carried out to demonstrate the effectiveness of the proposed algorithm.
机译:我们研究了为多个组设计多播预编码器的问题,目的是在某些保证的服务质量(QoS)要求下将总发射功率降至最低。为了利用空间和频率分集,我们考虑了多输入多输出(MIMO)正交频分复用(OFDM)系统。感兴趣的问题实际上是非凸二次约束二次程序(QCQP),对于该程序,现行的半确定松弛(SDR)技术至少有两个原因是无效的。首先,松弛问题不能等效地重新定义为半定规划(SDP)。其次,即使解决了松弛问题,也应使用所谓的随机过程为原始QCQP生成高质量可行的解决方案。然而,在所考虑的系统模型中,这样的随机化过程是困难的。为了克服这些缺点,本文采用逐次凸逼近(SCA)框架直接找到波束形成器。与SDR方法相比,所提出的方法不仅避免了上述随机过程,而且还要求较低的计算复杂度。数值实验表明了该算法的有效性。

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