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Providing ubiquitous communication using road-side units in VANET systems: Unveiling the challenges

机译:在VANET系统中使用路边单元提供无所不在的通信:应对挑战

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Vehicular Ad-Hoc Networks (VANETs) are a long-term solution contributing significantly towards Intelligent Transport Systems (ITS) in providing access to critical life-safety applications and services. Although Vehicular Ad Hoc Networks (VANETs) are attracting greater commercial interest, current research has not adequately captured the real-world constraints in VANET handover techniques. Therefore, in order to have the best practice for VANET services, it is necessary to have seamless connectivity for optimal coverage and ideal channel utilization: this comes at the cost of overlapping signals of adjacent RSUs. This overlapping effect can be investigated using concepts such Network Dwell Time, Time Before Handover and Exit Times. In this simulation study we investigate the feasibility and benefits of providing a ubiquitous communication in VANET under different mobile environments. We also study the impact of beacon frequency and velocity on Network Dwell Time, Time Before Handover and Exit Times, which will help us to predict the handover times and thus make proactive handover possible. Therefore understanding handover issues is critical in supporting life-safety applications and services in VANETs.
机译:车载专用网络(VANET)是一种长期解决方案,可为智能运输系统(ITS)提供重要的生命安全应用程序和服务的访问做出重大贡献。尽管车载自组织网络(VANET)吸引了更大的商业兴趣,但当前的研究尚未充分捕捉到VANET切换技术中的实际限制。因此,为了拥有VANET服务的最佳实践,必须具有无缝连接以实现最佳覆盖范围和理想的信道利用率:这是以相邻RSU的信号重叠为代价的。可以使用诸如网络驻留时间,切换前时间和退出时间之类的概念来研究这种重叠效应。在此仿真研究中,我们研究了在不同移动环境下在VANET中提供无处不在的通信的可行性和好处。我们还研究了信标频率和速度对网络停留时间,切换前的时间和退出时间的影响,这将有助于我们预测切换时间,从而使主动切换成为可能。因此,了解移交问题对于支持VANET中的生命安全应用程序和服务至关重要。

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