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Frame design for vehicular flex ray network based on transmission reliability

机译:基于传输可靠性的车辆柔性射线网络框架设计

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Flex Ray as a new generation of automotive network protocol, and has been applied to the vehicle safety critical control system. Frame packing is the key problem in vehicular communication design, because it is directly related to communication reliability and network utilization. In this paper, the transmission reliability and time slot utilization of Flex Ray networks are defined and their quantitative calculation formulas are derived, and based on the formulas, the frame packing model is transformed into generalized integer linear programming and optimization model, and a hybrid FFD-FPBOR algorithm for transmission reliability is proposed. Experimental results show that the algorithm can optimize the signal combination and static slot allocation, and reduce the computational complexity. Compared with the existing frame filling methods, this method has more advantages in slot utilization and execution time.
机译:Flex Ray作为新一代汽车网络协议,已应用于车辆安全关键控制系统。框架包装是车辆通信设计中的关键问题,因为它与通信可靠性和网络利用直接相关。在本文中,定义了Flex射线网络的传输可靠性和时隙利用,并导出了它们的定量计算公式,并且基于公式,帧包装模型被转换为广义整数线性编程和优化模型,以及混合FFD - 提出了用于传输可靠性的杂波算法。实验结果表明,该算法可以优化信号组合和静态时隙分配,降低计算复杂性。与现有帧填充方法相比,该方法在插槽利用率和执行时间方面具有更多优点。

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