论文标题

智能运输系统的光谱法规调查

Survey of Spectrum Regulation for Intelligent Transportation Systems

论文作者

Choi, Junsung, Marojevic, Vuk, Dietrich, Carl B., Reed, Jeffrey H., Ahn, Seungyoung

论文摘要

随着5G通信技术的发展,需要高可靠性,低潜伏期和大规模连通性的车辆通信正在引起学术界和行业的兴趣。由于这些发展的技术,车辆通信不限于车辆到车辆(V2V)或车辆到基础设施(V2I)网络的形式的车辆组件,但也已扩展到与其他人(例如行人和蜂窝用户)建立联系。专用的短距离通信(DSRC)是智能运输系统(ITS)的常规车辆通信标准。最近,第三代合作伙伴项目引入了竞争对手DSRC的蜂窝车通行证(C-V2X)。同时,联邦通信委员会(FCC)发出了提议的规则制定通知(NPRM),以考虑在其频段中使用两种干扰方法来部署无牌的国家信息基础设施(U-NII)设备:检测和重新通道(RE-CH)(RE-CH)。通过多种标准选择和干扰方法,可以识别出许多监管分类法,并通知发布的相关技术挑战。但是,这些挑战比所涉及的不同国家所追求的当前和未来监管分类法更为广泛。由于他们的计划有所不同,因此技术和监管挑战各不相同。本文介绍了有关技术挑战,当前和未来的文献调查,其频段使用计划以及美国,欧洲,中国,韩国和日本的主要研究床位。这项调查表明,最可能的部署分类法是(1)DSRC,C-V2X和Wi-Fi,wi-Fi具有RE-CH; (2)互操作的DSRC和C-V2X,仅(3)C-V2X。最困难的技术挑战是类似Wi-Fi的DSRC和4G LTE样C-V2X之间的互操作性。

As 5G communication technology develops, vehicular communications that require high reliability, low latency, and massive connectivity are drawing increasing interest from those in academia and industry. Due to these developing technologies, vehicular communication is not limited to vehicle components in the forms of Vehicle-to-Vehicle (V2V) or Vehicle-to-Infrastructure (V2I) networks, but has also been extended to connect with others, such as pedestrians and cellular users. Dedicated Short-Range Communications (DSRC) is the conventional vehicular communication standard for Intelligent Transportation Systems (ITS). More recently, the 3rd Generation Partnership Project introduced Cellular-Vehicle-to-Everything (C-V2X), a competitor to DSRC. Meanwhile, the Federal Communications Commission (FCC)issued a Notice of Proposed Rulemaking (NPRM) to consider deploying Unlicensed National Information Infrastructure (U-NII)devices in the ITS band with two interference mitigation approaches: Detect-and-Vacate (DAV)and Re-channelization (Re-CH). With multiple standard options and interference mitigation approaches, numerous regulatory taxonomies can be identified and notification of relevant technical challenges issued. However, these challenges are much broader than the current and future regulatory taxonomies pursued by the different countries involved. Because their plans differ, the technical and regulatory challenges vary. This paper presents a literature survey about the technical challenges, the current and future ITS band usage plans, and the major research testbeds for the U.S., Europe, China, Korea, and Japan. This survey shows that the most likely deployment taxonomies are (1) DSRC, C-V2X, and Wi-Fi with Re-CH; (2) DSRC and C-V2X with interoperation, and (3) C-V2X only. The most difficult technical challenge is the interoperability between the Wi-Fi-like DSRC and 4G LTE-like C-V2X.

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