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A survey on vehicle-to-vehicle propagation channels

机译:车对车传播渠道调查

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摘要

Traffic telematics applications are currently under intense research and development for making transportation safer, more efficient, and more environmentally friendly. Reliable traffic telematics applications and services require vehicle-to-vehicle wireless communications that can provide robust connectivity, typically at data rates between 1 and 10 Mb/s. The development of such VTV communications systems and standards require, in turn, accurate models for the VTV propagation channel. A key characteristic of VTV channels is their temporal variability and inherent non-stationarity, which has major impact on data packet transmission reliability and latency. This article provides an overview of existing VTV channel measurement campaigns in a variety of important environments, and the channel characteristics (such as delay spreads and Doppler spreads) therein. We also describe the most commonly used channel modeling approaches for VTV channels: statistical as well as geometry-based channel models have been developed based on measurements and intuitive insights. Extensive references are provided.
机译:当前,交通远程信息处理应用正在深入研究和开发中,以使交通更安全,更高效,更环保。可靠的交通远程信息处理应用程序和服务需要车辆到车辆的无线通信,这些通信通常可以以1到10 Mb / s的数据速率提供强大的连接性。这样的VTV通信系统和标准的发展又需要用于VTV传播信道的准确模型。 VTV频道的关键特性是它们的时间可变性和固有的非平稳性,这对数据包传输的可靠性和等待时间具有重大影响。本文概述了各种重要环境中现有的VTV频道测量活动,以及其中的频道特性(例如延迟扩展和多普勒扩展)。我们还介绍了VTV频道最常用的频道建模方法:基于测量和直观洞察力,开发了统计以及基于几何的频道模型。提供了广泛的参考。

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