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Time-domain nonstationary intra-car channel measurement in 60 GHz band

机译:60 GHz频带中的时域非平稳车内信道测量

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The paper deals with a time varying intra-vehicle channel measurement in the 60 GHz millimeter wave (MMW) band using a unique time-domain channel sounder built from off-the-shelf components and standard measurement devices. The aim of the presented work is to describe the sounder architecture, the primary data processing technique, and preliminary results of measurements aimed at the effect of vehicle vibrations and twisting, and passengers moving in a car cabin. As the amplitude of the car cabin vibration and twisting had been supposed to be comparable with the MMW wavelength, some effect on the channel impulse response (CIR) and consequently on the delay-Doppler spread (DDS) was expected. Preliminary results confirm the correctness of this assumption and allow us to assess the effect of different above-mentioned phenomena. We tested the effect of driving the car on different types of road (bumpy road, flat road, highway, etc.). For comparison purposes we use DDS and statistics of CIR amplitudes calculated using the correlative technique applied to the pseudorandom binary sequence.
机译:该论文使用了一种由现成的组件和标准测量设备构建的独特时域通道测深仪,来处理60 GHz毫米波(MMW)频带中的时变车内通道测量。提出的工作的目的是描述发声器的结构,主要的数据处理技术以及针对车辆振动和扭曲以及乘员在车厢中行驶的影响的测量的初步结果。由于车厢振动和扭曲的幅度被认为与MMW波长相当,因此预期会对信道冲激响应(CIR)产生一定的影响,并因此对延迟多普勒扩展(DDS)产生影响。初步结果证实了这一假设的正确性,并使我们能够评估上述各种现象的影响。我们测试了在不同类型的道路(崎ump不平的道路,平坦的道路,高速公路等)上驾驶汽车的效果。为了进行比较,我们使用DDS和使用应用于伪随机二进制序列的相关技术计算出的CIR幅度的统计数据。

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