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Wearable Devices Downlink and Uplink Transmission in Multi-hop HetNet with Full-Duplex Relay

机译:具有全双工继电器的多跳HetNet中的可穿戴设备下行链路和上行链路传输

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This paper we provide a tractable system for 2-tier users, wearable device terminals (WTDs) are in tier 2 and under the control of tier 1 users. Tier 1 user works as full-duplex relay to charge the WTDs on the downlink (DL) based on wireless power transfer (WPT), then help WTDs to transmit the information on the uplink (UL). Both of the users and picocell base stations (BS) are randomly distributed based on homogeneous poison point process (HPPP). We only considered the user association for the tier 1 users that tier 1 users always connect to the closest BS on UL since WTDs tier 2 users are close enough to tier 1 users. In this paper, we analyzed the processes of wireless power transfer on DL and information transmission on UL. We derived analysis of the average harvested energy on DL for both 2-tier users, the average ergodic rate and outage probability on UL for WTDs tier 2 users. According to the analytical results, it is observed that with the density of the picocell base stations increased, the average harvested energy increased, but the average ergodic rate and UL outage probability degraded significantly because of the UL performance decreased.
机译:本文中,我们为2层用户提供易处理的系统,可穿戴式设备终端(WTDS)是在第2级和第1级的用户的控制下。方法1用户作品作为全双工中继基于无线电力传输(WPT)的WTDS充电在下行链路(DL),然后帮助WTDS发送在上行链路(UL)中的信息。两个用户和微微小区基站(BS)的随机分布基于齐次毒点处理(HPPP)。我们只考虑第一级用户用户协会,1个用户始终连接到最近的BS的UL因为WTDS二线用户足够接近1个用户。在本文中,我们分析了在DL无线电力传送和信息传输UL上的处理。我们的DL两个2级用户获得的平均收获能源的分析,对UL平均遍历速率和中断概率WTDS第2级的用户。根据分析结果,可以观察到,与超微蜂窝基站的密度增大时,平均收集的能量增加了,但平均遍历速率和UL中断概率由于UL性能降低显著降低。

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