User-centric (UC) based cell-free (CF) structures can provide the benefits of coverage enhancement for millimeter wave (mmWave) multiple input multiple output (MIMO) systems, which is regarded as the key technology of the reliable and high-rate services. In this paper, we propose a new beam selection scheme and precoding algorithm for the UC CF mmWave MIMO system, where a weighted sum-rate maximization problem is formulated. Since the joint design of beam selection and precoding is non-convex and tractable with high complexity, this paper designs the beam selection and precoding separately. Particularly, the proposed beam selection aims at reducing the inter-cluster inter-beam interference, then we also propose a precoding algorithm based on the weighted sum mean-square error (WSMSE) framework, where the precoding matrix can be updated in a distributed manner. We further employ the low-rank decomposition and Neumann series expansion (NSE) to reduce the computational complexity of the precoding. Simulations and complexity analysis verify the effectiveness of the proposed algorithm with a considerable reduction in computational complexity.
翻译:基于用户中心(UC)的无细胞结构可以为毫米波(mmWave)多输入多重输出(MIMO)系统提供增强覆盖的好处,该系统被视为可靠和高率服务的关键技术。在本文件中,我们提议为UC CF mm Wave MIMO系统制定新的光束选择计划和预编码算法,在这个系统中,加权总和率最大化问题已经形成。由于光束选择和预编码的联合设计是不可调和的,而且非常复杂,本文单独设计了光束选择和预编码。特别是,拟议的光束选择旨在减少集群间干涉,然后我们又提议根据加权和平均差(WSMSE)框架进行预编码算法,使预编码矩阵能够以分布方式更新。我们进一步使用低级解剖和Neumann序列扩展(NSE)来降低预编码的计算复杂性。模拟和复杂程度分析证实了拟议算法的有效性,在计算复杂性方面大幅降低。