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首页> 外文期刊>IEEE communications letters >Millimeter-Wave Wireless Channel Control Using Spatially Adaptive Antenna Arrays
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Millimeter-Wave Wireless Channel Control Using Spatially Adaptive Antenna Arrays

机译:使用空间自适应天线阵列的毫米波无线信道控制

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A wireless channel control concept based on spatially, i.e., position adaptive antenna arrays is introduced. This technique simultaneously utilizes beam-steering and spatial adaptation to enhance the wireless channel gain and system capacity. The concept is inspired by the microfluidically reconfigurable RF devices as they can enable compact systems with spatial adaptation capability. Specifically, a five element linear 28 GHz mm-wave antenna array design that can achieve beam-steering via phase shifters and spatial adaptation via microfluidics is detailed. Simulated realized gain patterns at various array positions and phase shifter states are subsequently utilized in link and system level simulations to demonstrate the advantages of the proposed concept. It is shown that a wireless communications system can achieve 51% improvement in the mean signal-to-interference ratio due to the spatial adaptation capability.
机译:介绍了基于空间即位置自适应天线阵列的无线信道控制概念。该技术同时利用波束控制和空间自适应来增强无线信道增益和系统容量。该概念受到微流体可重构RF设备的启发,因为它们可以实现具有空间适应能力的紧凑型系统。具体来说,详细介绍了五元素线性28 GHz毫米波天线阵列设计,该设计可以通过移相器实现波束控制,并通过微流体实现空间自适应。随后在链路和系统级仿真中利用在各种阵列位置和移相器状态下的仿真实现增益模式,以证明所提出概念的优点。结果表明,由于空间适应能力的提高,无线通信系统可以将平均信号干扰比提高51%。

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