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Highly reliable data distribution scheme for location information in vehicular networks using cyclic beacon transmission power patterns

机译:使用循环信标传输功率模式的车载网络中位置信息的高度可靠的数据分发方案

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In driving safety systems for avoiding collision using vehicle to vehicle communication, it is important for each vehicle to know other vehicles' positions and speed data delivered by beacons periodically sent from the vehicles. Each vehicle has to frequently recognize the correct positions of nearby vehicles because the vehicles have a high risk of collision with them. Aiming to make vehicles to obtain the position information of neighboring vehicles at a sufficient frequency risk for avoiding collision, in this paper, we propose a cyclic beacon transmission power control scheme. The scheme is designed so that each vehicle can receive beacons from distant vehicles at low frequency and ones from nearby vehicles at high frequency. We evaluated the effectiveness of the proposed scheme through simulation and compared beacon reception ratios and the length of consecutive failures of beacon reception obtained with the proposed cyclic transmission power control scheme and conventional schemes. The simulation results show that the proposed scheme achieves a higher beacon reception ratio than a scheme that uses constant transmission power and ETSI-DCC that are one of dynamic transmission power control schemes when the vehicle density is high. In addition, the proposed scheme reduces the length of consecutive failures of beacon reception of receiving beacons from distant vehicles.
机译:在使用车辆到车辆的通信来避免碰撞的驾驶安全系统中,重要的是,每个车辆都必须知道从车辆定期发送的信标发送的其他车辆的位置和速度数据。每辆车必须经常识别附近车辆的正确位置,因为这些车辆与它们发生碰撞的风险很高。为了使车辆能够在足够的频率风险下获得相邻车辆的位置信息,从而避免碰撞,本文提出了一种循环信标发射功率控制方案。该方案经过精心设计,以使每辆车都能从远处的车辆接收到低频率的信标,而从附近的车辆得到高频率的信标。我们通过仿真评估了该方案的有效性,并比较了所提出的循环发射功率控制方案和常规方案所获得的信标接收率和信标接收连续失败的长度。仿真结果表明,与在车辆密度较高时使用动态发射功率控制方案之一的恒定发射功率和ETSI-DCC的方案相比,该方案具有更高的信标接收率。另外,提出的方案减少了从远处车辆接收信标的信标接收的连续失败的长度。

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