V2X通信网络中的碰撞避免

J. Zang, Vahid Towhidlou, M. Shikh-Bahaei
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引用次数: 11

摘要

本文研究了全双工(FD)操作节点的车辆网络中的碰撞检测和避免问题。该网络中的每辆车在传输前和传输过程中都能感知信道的能量水平。将测量的能量与基于目标探测概率、发射机功率、感知时间和车载单元(OBU)自干扰消除能力设定的动态阈值进行比较。检测和虚警的概率,传输前和传输过程中的检测阈值,以及剩余自干扰(SI)对这些指标的影响已经制定。结果表明,该方案具有较短的碰撞持续时间。同时,它也需要一个最小的SIC能力来满足可接受的操作,低于这个能力,系统吞吐量会因为高虚警概率而变差。数值模拟验证了我们分析的准确性。结果表明,该模型的性能优于固定阈值策略。在半双工(HD)和FD之间找到了一种权衡,即使OBUs的SIC能力相对较差,该方案也适用,未来车载通信不需要复杂昂贵的设备。
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Collision Avoidance in V2X Communication Networks
In this paper we investigate collision detection and avoidance in a vehicular network of full duplex (FD) operating nodes. Each vehicle in this network senses the energy level of the channel before and during its transmission. The measured energy is compared against a dynamic threshold which is preset based on the target detection probability, transmitter’s power, sensing time and self-interference cancellation (SIC) capability of the vehicles’ on board units (OBU). Probabilities of detection and false alarm, detection threshold before and during transmission, and effect of residual self interference (SI) on these metrics have been formulated. It is shown that the proposed scheme would experience a shorter collision duration. Meanwhile, it also requires a minimum SIC capability for acceptable operation, below which, system throughput would be poor due to high false alarm probability. Numerical simulations verify the accuracy of our analysis. They also illustrate that the proposed model perform better than the fixed threshold strategy. A trade-off between half duplex (HD) and FD has been found and the scheme would be applicable even if SIC capability of OBUs is relatively poor, with no need for complicated and expensive devices for future vehicular communication.
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