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System Level Analysis for ITS-G5 and LTE-V2X Performance Comparison

机译:其-G5和LTE-V2X性能比较的系统级分析

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Vehicular communications, known under the name of V2X (Vehicle to Everything) are expected to grow fast in the next years, bringing for example safer driving conditions, optimized traffic management, energy reduction, etc.. Currently two short range-based technologies (ITS-G5, standardized in Europe by ETSI and derived from WiFi communications IEEE standards and LTE based Vehicle to Everything or LTE-V2X developed by 3GPP and derived from LTE) consider the use of 5.9 GHz ITS band for their deployment. While different countries are more or less advanced in terms of regulation definition for Intelligent Transport System (ITS), it seems clear that the same solution will not be necessarily worldwide deployed. This study compares performances of both technologies by means of system level simulation, in particular considering the European ITS-G5 protocol stack specification. In order to analyze system level performance, physical layer simulation is used to provide Packet Delivery Rate (PDR) versus Signal to Noise plus Interference Ratio (SINR). Then PDR curves are exploited to feed system level simulation aimed at providing statistics about Cooperative Awareness Message (CAM) transmission reliability, in typical urban scenario. The paper provides a brief description of the systems together with the definition of the assumptions and the key results related to the physical layer analysis; it follows with the description of the NS-3 simulator models used for system level simulation (with particular emphasis on PC5 Mode 4) and the discussion about the results which provide insight about the expected and the simulated behavior of both technologies, in particular comparative statistics with regards to CAM success ratio versus maximum communication distance are provided in order to compare the performance.
机译:车载通讯,V2X(车辆的一切)的已知的名义下,预计在未来几年的快速增长,带来例如更安全的驾驶条件,优化交通管理,节能减排等。目前两个短基于范围的技术(ITS -G5,由欧洲的ETSI标准和WiFi通信衍生IEEE标准和基于LTE车辆的一切或LTE-V2X开发由3GPP和LTE派生)考虑使用5.9 GHz的其带为他们的部署。尽管不同的国家都在为智能交通系统(ITS)调节清晰度方面或多或少先进的,它似乎很清楚,相同的解决方案将不必然在全球部署。这项研究由系统级仿真的手段比较这两种技术的表演,特别是考虑到欧洲ITS-G5协议栈规范。为了分析的系统级性能,物理层仿真用于提供数据包传输率(PDR)与信噪比和干扰比(SINR)。然后PDR曲线利用来进料系统级仿真旨在提供关于协同感知消息(CAM)传输的可靠性的统计,在典型的城市场景。本文提供了与相关的物理层分析的假设和主要结果的定义一起系统的简短描述;它与用于系统级仿真的NS-3模拟器模型的描述(特别着重于PC5模式4)和围绕其提供深入了解有关预期这两种技术的模拟行为的结果的讨论如下,特别是比较统计与关于CAM成功率与最大通信距离,以比较性能被设置。

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