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Experimental Characterization of Microwave Radio Propagation in ICT Equipment for Wireless Harness Communications

机译:用于线束通信的ICT设备中微波无线电传播的实验表征

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摘要

The wireless harness is a new emerging short-range communication to replace wire harness implemented in devices with wireless communications between internal components. In such an in-device wireless harness, the communication distance is up to a couple of meters at most. Through the challenge to apply this wireless communication technology to information and communication technology (ICT) equipment, we found that the radio channel inside the ICT equipment deeply depends on its internal structure more than we expected. In order to understand the radio propagation characteristics inside such equipment, we propose a new modeling technique with using a frequency- dependent path loss exponent expressing the near- and far-field propagation, which enables us to successfully extract attenuation factors for the frequency and the propagation distance from the measured data. The results shows the path loss characteristics can be divided into three regions; line-of-sight (LOS), non-line-of-sight (NLOS), and a transition range. The transition range, which appears between the LOS and the NLOS, is caused by a blocking due to the densely-packaged internal components. These findings and equations can be criteria to design a wireless harness communication link.
机译:无线线束是一种新兴的短程通信,它使用内部组件之间的无线通信来代替设备中实现的线束。在这种设备内无线线束中,通信距离最多可达几米。通过将这种无线通信技术应用于信息和通信技术(ICT)设备的挑战,我们发现ICT设备内部的无线电信道对内部结构的依赖程度超出了我们的预期。为了了解此类设备内部的无线电传播特性,我们提出了一种新的建模技术,即使用依赖于频率的路径损耗指数来表示近场和远场传播,从而使我们能够成功提取频率和频率的衰减因子。与测量数据的传播距离。结果表明,路径损耗特性可分为三个区域。视线(LOS),非视线(NLOS)和过渡范围。 LOS和NLOS之间出现的过渡范围是由于内部组件密集包装而造成的阻塞。这些发现和等式可以成为设计无线线束通信链路的标准。

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