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Wireless information and power transfer in full-duplex systems with massive antenna arrays

机译:具有大型天线阵列的全双工系统中的无线信息和功率传输

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We consider a multiuser wireless system with a full-duplex hybrid access point (HAP) that transmits to a set of users in the downlink channel, while receiving data from a set of energy-constrained sensors in the uplink channel. We assume that the HAP is equipped with a massive antenna array, while all users and sensor nodes have a single antenna. We adopt a time-switching protocol where in the first phase, sensors are powered through wireless energy transfer from HAP and HAP estimates the downlink channel of the users. In the second phase, sensors use the harvested energy to transmit to the HAP. The downlink-uplink sum-rate region is obtained by solving downlink sum-rate maximization problem under a constraint on uplink sum-rate. Moreover, assuming perfect and imperfect channel state information, we derive expressions for the achievable uplink and downlink rates in the large-antenna limit and approximate results that hold for any finite number of antennas. Based on these analytical results, we obtain the power-scaling law and analyze the effect of the number of antennas on the cancellation of intra-user interference and the self-interference.
机译:我们考虑一种具有全双工混合接入点(HAP)的多用户无线系统,该系统在下行链路信道中向一组用户发送数据,同时从上行链路信道中一组受能量限制的传感器接收数据。我们假设HAP配备有大型天线阵列,而所有用户和传感器节点都具有单个天线。我们采用时间交换协议,其中在第一阶段,通过来自HAP的无线能量传输为传感器供电,HAP估计用户的下行链路信道。在第二阶段,传感器使用收集的能量传输到HAP。通过在对上行链路总和率的约束下解决下行链路总和率最大化问题,获得了下行链路总和和率区域。此外,假设信道状态信息完美无缺,我们得出大天线范围内可实现的上行链路和下行链路速率的表达式,并得出适用于任何有限数量天线的近似结果。基于这些分析结果,我们获得了功率缩放定律,并分析了天线数量对消除用户内干扰和自干扰的影响。

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