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Dynamic Cognitive Self-Organized TDMA for Medium Access Control in Real-Time Vehicle to Vehicle Communications

机译:动态认知自组织TDMA用于媒体访问控制在实时车辆到车辆通信

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摘要

The emergence of intelligent transport systems has brought out a new set of requirements on wireless communication. To cope with these requirements, several proposals are currently under discussion. In this highly mobile environment, the design of a prompt, efficient, flexible, and reliable medium access control, able to cover the specific constraints of the named real-time communications applications, is still unsolved. This paper presents the original proposal integrating Non-Cooperative Cognitive Time Division Multiple Access (NCC-TDMA) based on Cognitive Radio (CR) techniques to obtain a mechanism which complies with the requirements of real-time communications. Though the proposed MAC uses a slotted channel, it can be adapted to operate on the physical layer of different standards. The authors’ analysis considers the IEEE WAVE and 802.11p as the standards of reference. The mechanism also offers other advantages, such as avoiding signalling and the adaptation capacity to channel conditions and interferences. The solution is applied to the problem of units merging a convoy. Comparison results between NCC-TDMA and Slotted-Aloha are included.
机译:智能运输系统的出现为无线通信提供了一套新的要求。为应对这些要求,目前正在讨论若干提案。在这种高度移动环境中,能够覆盖所命名的实时通信应用程序的特定约束的提示,高效,灵活和可靠的中等访问控制的设计仍未解决。本文介绍了基于认知无线电(CR)技术的非合作认知时分多址(NCC-TDMA)的原始提案,以获得符合实时通信要求的机制。虽然所提出的MAC使用开槽通道,但它可以适用于在不同标准的物理层上操作。作者的分析将IEEE波和802.11p视为参考标准。该机制还提供了其他优点,例如避免信令和适应能力到信道条件和干扰。该解决方案适用于合并车队的单位问题。包括NCC-TDMA和开槽 - Aloha之间的比较结果。

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