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Key Technologies, Modeling Approaches, and Challenges for Millimeter-Wave Vehicular Communications

机译:毫米波车载通信的关键技术,建模方法和挑战

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摘要

Millimeter-wave communications have been recently proposed as a promising candidate to fulfill the connectivity requisites imposed over autonomous driving. The need for transmission capabilities of multiple gigabits per second for autonomous vehicles is the main driving factor for millimeter-wave technology. However, there are other paramount requirements, such as short delays, high reliability, security, and support for both unicast and broadcast communications, which must be carefully addressed before this technology becomes a reality. In this article we first review the state-of-the art modeling frameworks that are being considered for vehicular communications. Then we explore the key technologies that will enhance the suitability of millimeter-wave communications for autonomous driving, and we investigate the main challenges that need to be overcome. Finally, we envision that a combination of analog/ hybrid beamforming with a location-based beam search protocol, using full duplex radio and physical layer key generation, has the potential of fulfilling the requirements of autonomous driving technology.
机译:最近已经提出毫米波通信作为有希望的候选者,以满足自动驾驶所施加的连接性要求。毫米波技术的主要驱动因素是自动驾驶汽车对每秒数千兆比特的传输能力的需求。但是,还有其他最重要的要求,例如短延迟,高可靠性,安全性以及对单播和广播通信的支持,在此技术成为现实之前必须仔细解决。在本文中,我们首先回顾了用于车辆通信的最新建模框架。然后,我们探索将增强毫米波通信在自动驾驶中的适用性的关键技术,并研究需要克服的主要挑战。最后,我们设想,使用全双工无线电和物理层密钥生成的模拟/混合波束成形与基于位置的波束搜索协议的组合,有可能满足自动驾驶技术的要求。

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