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Efficient urban broadcast protocol for V2V communications with Relay Control

机译:具有中继控制功能的V2V通信的高效城市广播协议

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In Vehicle-to-Vehicle (V2V) communications, broadcast is expected to disseminate information to other vehicles efficiently. However, due to shadowing of buildings, especially in urban areas, the V2V communications at an intersection is unreliable. Thus it is difficult to disseminate information to all directions at an intersection. Moreover, most of existing protocols which consider intersections in urban area need to use digital map, which is costly and hard to update frequently. Also, they depend on periodic beacons to judge whether or not nodes rebroadcast. They require a lot of control overheads, especially in urban areas, which prejudice efficiency and reliability of message delivery. In this paper, an efficient urban broadcast scheme is proposed for V2V communications in urban environment, which does not rely on the digital map and periodic beacon exchanges. Without digital map, we identify intersection by the difference of a theoretical RSSI (Received Signal Strength Indicator) value and a measured RSSI value. We decide RAD (Random Assessment Delay) by difference of RSSIs as well as a distance between a sender and a receiver to achieve low end-to-end delay. Also we use angle between vectors and vertical distance to get high reception ratio. Both of them are significant for safety critical services of ITS. Simulation results show that proposal scheme achieves higher reception ratio and shorter delivery time than existing broadcast protocols in different loads and vehicle densities.
机译:在车对车(V2V)通信中,广播有望将信息有效地传播到其他车辆。但是,由于建筑物的阴影,特别是在城市地区,十字路口的V2V通信不可靠。因此,难以在交叉路口向所有方向散布信息。此外,考虑到市区交叉口的大多数现有协议都需要使用数字地图,这既昂贵又难以经常更新。而且,它们依靠周期性的信标来判断节点是否重新广播。它们需要大量的控制开销,尤其是在城市地区,这会影响消息传递的效率和可靠性。本文提出了一种有效的城市广播方案,该方案不依赖于数字地图和周期性信标交换,而用于城市环境中的V2V通信。如果没有数字地图,我们将通过理论RSSI(接收信号强度指示器)值与测量RSSI值之差来识别交叉点。我们通过RSSI的差异以及发送方和接收方之间的距离来确定RAD(随机评估延迟),以实现低端到端延迟。同样,我们使用向量之间的角度和垂直距离来获得高接收率。两者对于ITS的安全关键服务都具有重要意义。仿真结果表明,与现有的广播协议相比,在不同的负载和车辆密度下,该方案具有更高的接收率和更短的交付时间。

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