论文标题
一个新型的基于堆的试点分配,用于全双胞胎无细胞的大型MIMO,零效率
A Novel Heap-based Pilot Assignment for Full Duplex Cell-Free Massive MIMO with Zero-Forcing
论文作者
论文摘要
本文研究了全双工(FD)和无细胞的大量多输入多输出(CF-MMIMO)的综合益处,其中具有同时在同一时间频率资源上同时提供了大量具有FD功能的分布式访问点(APS)。为了使FD技术能够在CF-MIMO系统中融合,我们提出了一种新型的基于堆积的试点分配算法,该算法不仅可以减轻试验污染的影响,而且还可以降低所涉及的计算复杂性。然后,我们为光谱效率(SE)最大化制定了强大的设计问题,其中功能控制和AP-EUS结合共同优化,从而导致了困难的混合构成非convex编程。为了解决这个问题,我们在基于内部近似方法的多项式计算复杂性基于内部近似方法开发出非常简单的迭代算法之前提出了一个更容易理解的问题。数值结果表明,我们提出的具有现实参数的方法在渠道估计和SE的质量方面显着优于现有方法。
This paper investigates the combined benefits of full-duplex (FD) and cell-free massive multiple-input multipleoutput (CF-mMIMO), where a large number of distributed access points (APs) having FD capability simultaneously serve numerous uplink and downlink user equipments (UEs) on the same time-frequency resources. To enable the incorporation of FD technology in CF-mMIMO systems, we propose a novel heapbased pilot assignment algorithm, which not only can mitigate the effects of pilot contamination but also reduce the involved computational complexity. Then, we formulate a robust design problem for spectral efficiency (SE) maximization in which the power control and AP-UE association are jointly optimized, resulting in a difficult mixed-integer nonconvex programming. To solve this problem, we derive a more tractable problem before developing a very simple iterative algorithm based on inner approximation method with polynomial computational complexity. Numerical results show that our proposed methods with realistic parameters significantly outperform the existing approaches in terms of the quality of channel estimate and SE.