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A Swarming Approach to Optimize the One-Hop Delay in Smart Driving Inter-Platoon Communications

机译:一种优化智能驾驶跨排通信单跳时延的优化方法

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摘要

Multi-platooning is an important management strategy for autonomous driving technology. The backbone vehicles in a multi-platoon adopt the IEEE 802.11 distributed coordination function (DCF) mechanism to transmit vehicles’ kinematics information through inter-platoon communications, and then forward the information to the member vehicles through intra-platoon communications. In this case, each vehicle in a multi-platoon can acquire the kinematics information of other vehicles. The parameters of DCF, the hidden terminal problem and the number of neighbors may incur a long and unbalanced one-hop delay of inter-platoon communications, which would further prolong end-to-end delay of inter-platoon communications. In this case, some vehicles within a multi-platoon cannot acquire the emergency changes of other vehicles’ kinematics within a limited time duration and take prompt action accordingly to keep a multi-platoon formation. Unlike other related works, this paper proposes a swarming approach to optimize the one-hop delay of inter-platoon communications in a multi-platoon scenario. Specifically, the minimum contention window size of each backbone vehicle is adjusted to enable the one-hop delay of each backbone vehicle to get close to the minimum average one-hop delay. The simulation results indicate that, the one-hop delay of the proposed approach is reduced by 12% as compared to the DCF mechanism with the IEEE standard contention window size. Moreover, the end-to-end delay, one-hop throughput, end-to-end throughput and transmission probability have been significantly improved.
机译:多排是自动驾驶技术的重要管理策略。多排骨干车辆采用IEEE 802.11分布式协调功能(DCF)机制,通过排间通信传输车辆的运动学信息,然后通过排内通信将信息转发给成员车辆。在这种情况下,多排中的每个车辆都可以获取其他车辆的运动学信息。 DCF的参数,隐藏终端问题和邻居数可能会导致较长的,不均衡的排间通信单跳延迟,这将进一步延长排间通信的端到端延迟。在这种情况下,多排中的某些车辆无法在有限的时间内获得其他车辆运动学的紧急变化,因此无法采取迅速行动以保持多排编队。与其他相关工作不同,本文提出了一种群集方法,以在多排场景中优化排间通信的单跳延迟。具体地,调整每个骨干车辆的最小竞争窗口大小,以使每个骨干车辆的一跳延迟能够接近最小平均一跳延迟。仿真结果表明,与具有IEEE标准竞争窗口大小的DCF机制相比,该方法的单跳延迟减少了12%。此外,端到端延迟,单跳吞吐量,端到端吞吐量和传输概率也得到了显着提高。

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