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Measurement of 3.5 GHz Band Small Cell Indoor-Outdoor Propagation in Multiple Environments

机译:在多种环境中测量3.5 GHz频段小型小区室内外传播

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Recently, traffic in wireless networks has been increasing rapidly. To deal with this issue, it is important to utilize and coordinate multiple high-throughput small cell systems such as wireless local area networks (WLANs). In order to increase the number of high-throughput small cells easily, we now consider a system which consists of small outdoor cells constructed by access points set up indoors. To corroborate this system, field measurement of indoor-outdoor propagation in multiple environments is necessary. In this paper, we focus on the 3.5 GHz band which is used for small cells of long term evolution advanced (LTE-A) systems and 5G, and show the field measurement results of 3.5 GHz band indoor-outdoor propagation characteristics in multiple environments. The indoor-outdoor propagation characteristics of the 3.5GHz band are compared with the results of the 2.5 GHz band. The measurement results show the received power of the 3.5 GHz band signal to be 10-20 dB less than the results of the 2.5 GHz band signal. Moreover, the 3.5 GHz band extends to about 15-35m cell range while the 2.5 GHz band has about 35-95m when using quadrature phaseshift keying (QPSK) modulation with a 160MHz bandwidth. Hence, we acquired profitable data for a station layout design of 3.5 GHz band small indoor cells.
机译:近来,无线网络中的流量一直在迅速增长。为了解决这个问题,重要的是利用和协调多个高吞吐量的小型小区系统,例如无线局域网(WLAN)。为了轻松增加高通量小型蜂窝小区的数量,我们现在考虑一个系统,该系统由在室内设置的接入点构成的小型室外蜂窝小区组成。为了证实该系统,必须对多种环境下的室内外传播进行现场测量。在本文中,我们将重点放在用于长期演进高级(LTE-A)系统和5G小型小区的3.5 GHz频带上,并显示在多种环境中3.5 GHz频带室内外传播特性的现场测量结果。将3.5 GHz频段的室内外传播特性与2.5 GHz频段的结果进行了比较。测量结果表明,3.5 GHz频带信号的接收功率比2.5 GHz频带信号的结果小10-20 dB。此外,当使用具有160MHz带宽的正交相移键控(QPSK)调制时,3.5 GHz频带扩展到大约15-35m的小区范围,而2.5 GHz频带具有大约35-95m的小区范围。因此,我们获得了用于3.5 GHz频段小型室内小区的站台布局设计的有利数据。

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