基于多参数的车载自组网垂直切换

U. Kumaran, R. Shaji
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引用次数: 10

摘要

在车载自组织网络中,信息传递的可靠性和及时性是人们高度关注的因素。车辆在道路上行驶时,较好的切换机制对车辆节点之间的切换过程起着重要的作用。在车载自组网中,垂直切换是保证业务连续性的关键。与传统的单准则切换决策相比,多准则切换决策方法降低了切换率,有效地利用了网络资源。在车载自组织网络中,由于车辆的速度和网络拓扑结构的不断变化,持续连接是一个巨大的挑战。在VANET中,车辆可以通过车对车通信模式和车对基础设施通信模式进行通信。车辆网络中的用户可以通过V2I在从一个地方到另一个地方的移动中访问互联网。由于异构无线接入,需要垂直切换来保持车辆与基础设施之间的连续连接。本文采用先进的垂直切换决策算法,通过比较多个参数值(如网络流量和车速)来选择最佳可用网络。通过评估切换次数、获得的吞吐量和获得的延迟级别来评估该算法的性能。仿真结果表明,如果考虑车辆速度和网络流量参数进行切换决策,可以在最大吞吐量的前提下减少切换次数和延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vertical handover in Vehicular ad-hoc network using multiple parameters
Reliability and timely information delivery are highly concerned factors in Vehicular ad-hoc network. A better handover mechanism plays an important role in the handover process between the vehicle nodes during the vehicles on the road. Vertical handover is very much essential to ensure service continuity in Vehicular Ad-hoc network. When we compared with conventional handover decision taken by single criteria, multi criteria decision methods reduce handover rate and effectively utilizing the usage of network resources. In Vehicular Ad-hoc Network continuous connectivity is a great challenge, because of vehicles speed and ever changing topology of the network. In VANET vehicles can communicate through Vehicle-to-Vehicle communication mode and Vehicle-to-Infrastructure communication mode. Users in the vehicular network can access internet while on the move from one place to another with V2I. Due to heterogeneous wireless access, vertical handover is needed to maintain continuous connectivity between the vehicles and infrastructures. In this paper advanced methods of vertical handover decision algorithm is used to select best available network by comparing multiple parameter values (such as network traffic and vehicle speed). The algorithm is evaluated by assessing the performance through the number of handoff occurs, throughput gained and level of latency attained. The performance of the simulation shows that the number of handover and latency can be minimized where as throughput can be maximized, if we consider vehicle speed and network traffic parameters for taking handover decision process.
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