论文标题

两组过时计算的同时信号和干扰对齐

Simultaneous Signal-and-Interference Alignment for Two-Cell Over-the-Air Computation

论文作者

Lan, Qiao, Kang, Hyo Seung, Huang, Kaibin

论文摘要

设想下一代无线网络以支持大规模传感和分布式机器学习,从而实现新的智能移动应用程序。一个常见的网络操作将是用于功能计算的分布式数据(例如传感器观测值或AI模型更新)的汇总(例如,平均值),以支持大规模传感和分布式机器学习。一种称为“空中计算”(AIRCOMP)的数据聚合的有效解决方案,将功能计算嵌入了许多边缘设备的同时访问中。此类方案利用多访问通道的波形叠加,以允许接入点接收所需的同时信号函数。在这项工作中,我们旨在实现双电池多端纳系统中的AirComp。为此,提出了一种新型的同时信号和干扰比对(SIA)的方案,该方案建立在经典IA上,以管理对多细胞AirComp的干扰。 SIA的原理是将空间通道空间划分为具有相等尺寸的两个子空间:一个用于AirComp所需的信号比对,另一个用于Inter-Cell IA。结果,每个AP接收到的无空间多路复用功能流的数量是最大化的(等于可用空间自由度的一半)。此外,该数量与每个单元中的设备群体无关。另外,讨论了两个以上细胞的SIA扩展。

The next-generation wireless networks are envisioned to support large-scale sensing and distributed machine learning, thereby enabling new intelligent mobile applications. One common network operation will be the aggregation of distributed data (such as sensor observations or AI-model updates) for functional computation (e.g., averaging) so as to support large-scale sensing and distributed machine learning. An efficient solution for data aggregation, called "over-the-air computation" (AirComp), embeds functional computation into simultaneous access by many edge devices. Such schemes exploit the waveform superposition of a multi-access channel to allow an access point to receive a desired function of simultaneous signals. In this work, we aim at realizing AirComp in a two-cell multi-antenna system. To this end, a novel scheme of simultaneous signal-and-interference alignment (SIA) is proposed that builds on classic IA to manage interference for multi-cell AirComp. The principle of SIA is to divide the spatial channel space into two subspaces with equal dimensions: one for signal alignment required by AirComp and the other for inter-cell IA. As a result, the number of interference-free spatially multiplexed functional streams received by each AP is maximized (equal to half of the available spatial degrees-of-freedom). Furthermore, the number is independent of the population of devices in each cell. In addition, the extension to SIA for more than two cells is discussed.

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