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Sum Spectral Efficiency Optimization for Rate Splitting in Downlink MU-MISO: A Generalized Power Iteration Approach

机译:下行链路MU-MISO速率分裂的总和谱效优化:广义功率迭代方法

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In this paper, we consider a downlink multiple-input multiple-output (MIMO) system, where a rate splitting approach is applied to serve multiple users more efficiently. We formulate a sum spectral efficiency maximization problem with respect to precoders when noisy channel state information is available at the transmitter. Finding even a suboptimal solution is a very challenging task by its non-convexity and non-smoothness. To resolve this challenge, we first approximate the non-smooth minimum function by using a LogSumExp technique, and reformulate the problem as a form of the product of Rayleigh quotients, considering channel estimation error. Then we derive the first-order optimality condition. A key observation of the obtained condition is that it can be cast as a nonlinear eigenvector-dependent eigenvalue problem so that finding a leading eigenvector is equivalent to finding a local optimal solution. To this end, we propose an algorithm inspired by a power iteration method, referred to as a generalized power iteration for rate splitting. Simulation results show that the proposed method enhances the achievable performance when channel acquisition error exists.
机译:在本文中,我们考虑一个下行链路多输入多输出(MIMO)系统,其中速率分裂方法应用于更有效地为多个用户提供服务。当发射机处有噪声信道状态信息时,我们针对预编码器制定了总和谱效率最大化问题。即使是次优解决方案也是一个非常具有挑战性的任务,通过其非凸性和不平衡性。为了解决这一挑战,首先通过使用Logsumexup技术来近似于非平滑的最小功能,并考虑信道估计误差,将问题重构为Rayleigh推版的乘积的形式。然后我们得出了一阶的最优性条件。对所得条件的关键观察是它可以作为非线性特征介质依赖性的特征值来投射,以便找到前导特征向量等同于找​​到局部最佳解决方案。为此,我们提出了一种灵感来自电力迭代方法的算法,称为速率分裂的广义功率迭代。仿真结果表明,当信道采集错误存在时,该方法提高了可实现的性能。

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