论文标题

使用模拟多光束天线阵列的绿色关节通信和传感

Green Joint Communications and Sensing Employing Analog Multi-Beam Antenna Arrays

论文作者

Wu, Kai, Zhang, J. Andrew, Huang, Xiaojing, Heath Jr., Robert W., Guo, Y. Jay

论文摘要

联合通信和传感(JCAS)可能是第六代移动网络(6G)的标志性技术。大多数现有的JCAS设计都是基于数字阵列,具有可调相位变速器或混合阵列的模拟阵列,这些阵列有效,但通常对设计和效率低的功率很复杂。本文介绍了JCAS的节能且易于设计的多光束天线阵列(MBAA)。使用预定的和固定的模拟设备(例如镜头或管家矩阵),MBAA可以同时引导多个光束,但与其他技术相比,使用可忽略的功耗。此外,MBAA可实现柔性梁的合成,准确的到达角度估计以及轻松处理/利用梁斜视效果。 JACS社区还没有很好地捕获所有这些功能。为了提高人们的意识,我们直观地说明它们,并利用它们来构建多光束JCAS框架。最后,讨论了挑战和机遇,以促进绿色JCAS系统的发展。

Joint communications and sensing (JCAS) is potentially a hallmark technology for the sixth generation mobile network (6G). Most existing JCAS designs are based on digital arrays, analog arrays with tunable phase shifters, or hybrid arrays, which are effective but are generally complicated to design and power inefficient. This article introduces the energy-efficient and easy-to-design multi-beam antenna arrays (MBAAs) for JCAS. Using pre-designed and fixed analog devices, such as lens or Butler matrix, MBAA can simultaneously steer multiple beams yet with negligible power consumption compared with other techniques. Moreover, MBAAs enable flexible beam synthesis, accurate angle-of-arrival estimation, and easy handling/utilization of the beam squint effect. All these features have not been well captured by the JACS community yet. To promote the awareness of them, we intuitively illustrate them and also exploit them for constructing a multi-beam JCAS framework. Finally, the challenges and opportunities are discussed to foster the development of green JCAS systems.

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