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Design and evaluation of a framework for cooperative and adaptive QoS control of DSRC network for road safety applications

机译:道路安全应用DSRC网络的协作和自适应QoS控制框架的设计和评估

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摘要

Dedicated short-range communications (DSRC) are a promising vehicle communication technique for collaborative road safety applications (CSA). However, road safety applications require highly reliable and timely wireless communications, which present big challenges to DSRC based vehicle networks on effective and robust quality of services (QoS) provisioning due to the random channel access method applied in the DSRC technique. In this paper we examine the QoS control problem for CSA in the DSRC based vehicle networks and presented an overview of the research work towards the QoS control problem. After an analysis of the system application requirements and the DSRC vehicle network features, we propose a framework for cooperative and adaptive QoS control, which is believed to be a key for the success of DSRC on supporting effective collaborative road safety applications. A core design in the proposed QoS control framework is that network feedback and cross-layer design are employed to collaboratively achieve targeted QoS. A design example of cooperative and adaptive rate control scheme is implemented and evaluated, with objective of illustrating the key ideas in the framework. Simulation results demonstrate the effectiveness of proposed rate control schemes in providing highly available and reliable channel for emergency safety messages.
机译:专用短程通信(DSRC)是一种用于协作道路安全应用(CSA)的有前途的车辆通信技术。然而,道路安全应用需要高度可靠且及时的无线通信,由于在DSRC技术中应用了随机信道访问方法,因此对于基于DSRC的车辆网络而言,在有效而强大的服务质量(QoS)设置方面提出了巨大挑战。在本文中,我们研究了基于DSRC的车辆网络中CSA的QoS控制问题,并概述了针对QoS控制问题的研究工作。在分析了系统应用需求和DSRC车辆网络特征之后,我们提出了一种用于协作和自适应QoS控制的框架,该框架被认为是DSRC成功支持有效的道路安全协作应用的关键。提出的QoS控制框架中的核心设计是采用网络反馈和跨层设计来共同实现目标QoS。实施和评估了一个协作和自适应速率控制方案的设计示例,目的是说明框架中的关键思想。仿真结果证明了所提出的速率控制方案在为紧急安全消息提供高度可用和可靠的信道方面的有效性。

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