Existing works on cell-free systems consider either coherent or non-coherent downlink data transmission and a network deployment with a single central processing unit (CPU). While it is known that coherent transmission outperforms noncoherent transmission when assuming unlimited fronthaul links, the former requires a perfect timing synchronization, which is practically not viable over a large network. Furthermore, relying on a single CPU for geographically large cell-free networks is not scalable. Thus, to realize the expected gains of cellfree systems in practice, alternative transmission strategies for realistic multi-CPU cell-free systems are required. Therefore, this paper proposes a novel downlink data transmission scheme that combines and generalizes the existing coherent and non-coherent transmissions. The proposed transmission scheme, named mixed transmission, works based on the realistic assumption that only the access points (APs) controlled by a same CPU are synchronized, and thus transmit in a coherent fashion, while APs from different CPUs require no synchronism and transmit in a non-coherent manner. We also propose extensions of existing clustering algorithms for multi-CPU cell-free systems with mixed transmission. Simulation results show that the combination of the proposed clustering algorithms with mixed transmission have the potential to perform close to the ideal coherent transmission.
翻译:无细胞系统的现有工作考虑的是连贯或不连贯的下链接数据传输,以及单一中央处理器(CPU)的网络部署。虽然已知一致的传输在接受无限制前厅连接时表现为不连贯的不连贯的传输,但前者需要完全的时间同步,这实际上在大型网络上是行不通的。此外,对地理上大型无细胞网络依赖单一的CPU是无法伸缩的。因此,为了实现无细胞系统的实际预期收益,需要现实的多CPU无细胞系统的替代传输战略。因此,本文件建议采用新型的下链接数据传输办法,将现有的一致和非一致的传输结合起来,并概括化现有的不连贯和非一致的传输。拟议的混合传输办法基于现实的假设,即只有同一CPU控制的接入点是同步的,因此无法以连贯的方式传输。不同CPU的AP不需要同步,而是以非一致的方式传输。我们还建议扩大现有的多CPU无细胞系统的现有组合式数据传输算法,将混合传输与混合传输相结合的混合传输系统结合起来。模拟结果显示,与混合传送的混合传输的混合传送组合组合组合的组合。