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Towards guaranteed delivery of safety messages in VANETs

机译:努力确保在VANET中传递安全消息

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摘要

Reliability is a critical concern in disseminating safety messages in vehicular ad-hoc-networks (VANETs). Thus far, redundant broadcast (or next relay broadcast) has been used to ensure reliable transfer of safety messages. However, redundant broadcast fails to meet high-reliability requirement owing to lack of a feedback or acknowledgment (ACK) mechanism. In this work, a power controlled negative-acknowledgment (NACK) mechanism is introduced as a feedback technique to ensure reliable reception of safety messages. Significantly, this work also attempts to cover vehicles present in transmission holes in the broadcast region. Vehicles in the immediate neighborhood detect and recover safety message for a vehicle present in the transmission hole by estimating propagation loss for the vehicle. NACK together with hole detection and recovery mechanism nearly guarantees safety-message delivery in VANETs. Reliability of the proposed technique is formulated mathematically with packet reception ratio (PRR) as the reliability metric. Using theoretical analysis and simulation evaluation in ns-3 we establish that the proposed technique guarantees safety-message reception by mitigating packet loss caused by interference from hidden nodes, and at instances where vehicles are located in the transmission holes.
机译:可靠性是在车载自组织网络(VANET)中传播安全消息的关键问题。迄今为止,冗余广播(或下一个中继广播)已用于确保安全消息的可靠传输。但是,由于缺少反馈或确认(ACK)机制,冗余广播无法满足高可靠性要求。在这项工作中,引入了功率控制否定确认(NACK)机制作为一种反馈技术,以确保安全接收安全消息。重要的是,这项工作还试图掩盖存在于广播区域传输孔中的车辆。邻近邻域中的车辆通过估计车辆的传播损耗来检测并恢复存在于传输孔中的车辆的安全消息。 NACK与漏洞检测和恢复机制一起几乎可以确保VANET中的安全消息传递。提出的技术的可靠性以数据包接收率(PRR)作为可靠性指标进行数学计算。通过在ns-3中使用理论分析和仿真评估,我们确定了所提出的技术可通过减轻隐藏节点的干扰以及车辆位于传输孔中而造成的数据包丢失来保证安全消息接收。

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