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Novel Device Reproduce In-Vehicle Wireless Multipath Radio Channels

机译:新型设备可再现车载无线多径无线电信道

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This paper describes and evaluates a new test facility able to generate different wireless multipath radiocommunication channels. It is used to recreate various electromagnetic (EM) environments, such as those inside vehicles. This test facility, in the form of a moderate volume metallic chamber, contains apertures, left opened or obstructed as required, and a variable quantity of salt water. Both are used to adjust the EM losses and to control smoothly and accurately the delay spread of the communication channel inside the test facility. A frequency range between 2 and 3 GHz is studied. As a first step, the root-mean-square (rms) delay spread is measured inside a vehicle for several locations of the receiving antenna and for different scenarios including different line-of-sight and non-line-of-sight paths. Then, the test facility is introduced, dimensioned, and evaluated, trying to reproduce the rms delay spread of each previous in-vehicle radiocommunication configuration. A comparison between the measurement data performed both in the vehicle and in the configured test facility is presented. This comparison shows a good agreement between these two sets of measurements. It demonstrates that different static wireless in-vehicle multipath channels, corresponding to various transmitting and receiving antenna configurations, can be reproduced inside the proposed prototype test facility.
机译:本文描述并评估了一种能够生成不同无线多径无线电通信信道的新测试设备。它用于重建各种电磁(EM)环境,例如车内环境。该测试设备采用中等容量的金属腔室形式,包含可根据需要保持打开或阻塞状态的孔以及可变数量的盐水。两者均用于调整EM损耗,并平稳,准确地控制测试设备内部通信通道的延迟扩展。研究了2至3 GHz之间的频率范围。第一步,在车辆内部针对接收天线的多个位置以及针对不同场景(包括不同的视线和非视线路径)测量均方根(rms)延迟扩展。然后,对测试设备进行介绍,确定尺寸和评估,以尝试再现每个先前车载无线电通信配置的均方根延迟扩展。给出了在车辆和配置的测试设备中执行的测量数据之间的比较。该比较表明,这两组测量值之间具有良好的一致性。它表明,可以在建议的原型测试设施内复制对应于各种发送和接收天线配置的不同静态无线车载多径信道。

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