A multicarrier-division duplex (MDD)-based cell-free (CF) scheme, namely MDD-CF, is proposed, which enables downlink (DL) data and uplink (UL) data or pilots to be concurrently transmitted on mutually orthogonal subcarriers in distributed CF massive MIMO (mMIMO) systems. To demonstrate the advantages of MDD-CF, we firstly study the spectral-efficiency (SE) performance in terms of one coherence interval (CT) associated with access point (AP)-selection, power- and subcarrier-allocation. Since the formulated SE optimization is a mixed-integer non-convex problem that is NP-hard to solve, we leverage the inherent association between involved variables to transform it into a continuous-integer convex-concave problem. Then, a quadratic transform (QT)-assisted iterative algorithm is proposed to achieve SE maximization. Next, we extend our study to the case of one radio frame consisting of several CT intervals. In this regard, a novel two-phase CT interval (TPCT) scheme is designed to not only improve the SE in radio frame but also provide consistent data transmissions over fast time-varying channels. Correspondingly, to facilitate the optimization, we propose a two-step iterative algorithm by building the connections between two phases in TPCT through an iteration factor. Simulation results show that, MDD-CF can significantly outperform in-band full duplex (IBFD)-CF due to the efficient interference management. Furthermore, compared with time-division duplex (TDD)-CF, MDD-CF is more robust to high-mobility scenarios and achieves better SE performance.
翻译:提议了一个基于多carrier-division diplex(MDD-DD-CF)的无细胞(CF)机制(MDD-CF),它使下链(DL)数据和上链(UL)数据或试点项目能够同时在分布式 CF 大型MIM(MMIMO)系统中的双向子容器中同时传输。为了展示MDD-CF的优点,我们首先研究光谱效率(SE)在连接点的选择、电力和下链-CF(MDD-CF)之间一个一致性间隔(CT)的(CT)机制。由于SE优化的SE优化是一个混合内联(DL)数据数据和上链(ULL)问题,我们利用相关变量之间的内在关联将数据转换成一个连续的内联(MT-DF)调(QT) 辅助的迭代算法,以便实现最大化。接下来,我们将我们的研究扩大到一个由多个CT间隔组成的无线电框架(IB-C),在这方面,一个新的是双级的SEFDF-de-deal-de-deal-deal-modalation(TP)在SDMDLDLDMDMDMDMDMDMDMDMDMDMD 计划上显示一个不连续的双级数据传输系统。