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IEEE 802.11ad Communication Quality Measurement in In-vehicle Wireless Communication with Real Machines

机译:IEEE 802.11AD与现实机器的车载无线通信中的通信质量测量

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This paper demonstrates the feasibility of IEEE 802.11ad-based in-vehicle communication for a wireless harness. IEEE 802.11ad millimeter-wave (mmWave) communication enables high-speed wireless transmission, and its short communication range prevents harmful interference from other vehicles. However, in an in-vehicle environment, the received power of IEEE 802.11ad-based mmWave communications can be largely and easily attenuated by obstacles such as humans and the vehicle interior. Moreover, mmWave signals from adjacent vehicles can penetrate through vehicle windows and cause harmful interference. In this paper, we report the experimental results of in-vehicle communications using an actual vehicle and IEEE 802.11ad devices in an anechoic chamber. The experimental results demonstrate that IEEE 802.11ad-based in-vehicle communication can achieve a throughput of several hundred megabits per second, which is almost equivalent to that in achieved free space; this throughput can even be achieved when there are multiple obstacles in a vehicle and when adjacent vehicles (i.e., interferers) are in close proximity.
机译:本文展示了基于IEEE 802.11ad的无线线束的车载通信的可行性。 IEEE 802.11AD毫米波(MMWAVE)通信可以实现高速无线传输,其短期通信范围可防止其他车辆的有害干扰。然而,在车载环境中,基于IEEE 802.11ad的MMWave通信的接收功率可以很大程度上并且容易被诸如人类和车辆内部的障碍物衰减。此外,来自相邻车辆的MMWAVE信号可以穿透车辆窗口并导致有害干扰。在本文中,我们通过在一室内的实际车辆和IEEE 802.11ad设备报告车载通信的实验结果。实验结果表明,基于IEEE 802.11ad的车载通信可以实现每秒数百兆比特的吞吐量,这几乎相当于实现的自由空间;当车辆中有多个障碍物以及当相邻的车辆(即干扰源)紧密接近时,这种吞吐量甚至可以实现。

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