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Design and Implementation of an Ultra-High Speed, Low-Latency, Short-Range Wireless MAC Protocol for Wearable AR/VR Devices

机译:可穿戴AR / VR设备的超高速,低延迟,短距离无线MAC协议的设计与实现

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摘要

For the application scenario of short-range, high speed wireless communication between consumer AR glasses terminal and smart phones, a customized wireless MAC protocol with ultra-high speed, low power, low latency characteristics is presented. First, based on the requirements of the application scenario, quantitative analysis of specifications such as effective throughput and latency are presented, then the detailed protocol is designed through the specifications above. Compared to the existing ECMA-398 protocol, the effective throughput standard S increased from 71% to 86%. By introducing priority mechanism for various type of data transmission, the maximum transmission latency is reduced by one order of magnitude, which is less than 1mS. This paper completed the construction and simulation of system-level models, RTL-level coding and verification according to the analysis above. Finally, the protocol was tested and verified through the FPGA platform. Simulation and test results show that the customized MAC protocol designed in this paper can fulfill the requirement of the scenario much better.
机译:针对消费者AR眼镜终端与智能手机之间短距离,高速无线通信的应用场景,提出了一种具有超高速,低功耗,低等待时间特性的定制无线MAC协议。首先,根据应用场景的需求,对诸如有效吞吐量和等待时间之类的规范进行定量分析,然后通过上述规范设计详细的协议。与现有ECMA-398协议相比,有效吞吐量标准S从71%增加到86%。通过引入用于各种类型的数据传输的优先级机制,最大传输延迟减少了一个数量级,小于1mS。根据以上分析,本文完成了系统级模型,RTL级编码和验证的构建和仿真。最后,通过FPGA平台对协议进行了测试和验证。仿真和测试结果表明,本文设计的定制MAC协议可以更好地满足场景的要求。

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