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首页> 外文期刊>IEEE Journal of Solid-State Circuits >Antenna Preprocessing and Element-Pattern Shaping for Multi-Band mmWave Arrays: Multi-Port Receivers and Antennas
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Antenna Preprocessing and Element-Pattern Shaping for Multi-Band mmWave Arrays: Multi-Port Receivers and Antennas

机译:用于多频带MMWAVE阵列的天线预处理和元素图案整形:多端口接收器和天线

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摘要

The ability to pre-process incident RF signals on a single-antenna aperture in a multi-port antenna/receiver architecture with reconfigurable element patterns can allow unique functionalities, that are distinct from traditional transceivers with single-port antennas. The multiple ports allow reconfigurable passive spatial signal processing before the transceiver through element-pattern synthesis including element maxima and notch control. In this article, we show that when combined in an MIMO array, tailoring of element patterns through such multi-port receiver-antenna architectures can allow periodic arrays to operate over a wide frequency range, even at element spacings approaching one wavelength long. Such a frequency-reconfigurable operation of scalable arrays is important for future multi-band 5G systems and beyond. When operated at high frequencies in the spatially undersampled regime, array grating lobes can be suppressed by orienting the element-pattern notches toward the grating maxima in a reconfigurable fashion. In addition, the multi-port electromagnetic (EM)-circuit interface can allow spatial signal processing before the transceivers including the passive suppression of a spatial interferer at the antenna interface. Through a codesign methodology between the EM interface and the multi-port receiver architecture, we present an architecture with a bandwidth across 37-73 GHz for broadside incidence, reconfigurable element patterns that allow antenna-level signal processing, spatial, frequency, and partial polarization diversity.
机译:具有可重新配置元素图案的多端口天线/接收器架构中的单天天线孔的预处理RF信号的能力可以允许独特的功能,其与具有单端口天线的传统收发器不同。多个端口通过包括元素最大和缺口控制的元素模式合成允许在收发器之前允许可重新配置的被动空间信号处理。在本文中,我们表明,当在MIMO阵列中组合时,通过这种多端口接收器 - 天线架构定制元素图案可以允许周期性阵列在宽频范围内操作,即使在接近一个波长长的元素间距。这种可伸缩阵列的这种频率可重新配置操作对于未来的多频带5G系统和超越来说是重要的。当在空间欠采样状态下的高频率下操作时,可以通过以可重新配置的方式使元件图案凹口向光栅最大值定向来抑制阵列光栅凸杆。另外,多端口电磁(EM)-Circuit接口可以允许在收发器之前的空间信号处理,包括在天线接口处的空间干扰器的被动抑制。通过EM接口和多端口接收器架构之间的代码符号方法,我们呈现一个带宽的架构,横跨37-73 GHz的带宽,用于宽边发射,可重新配置的元件模式,允许天线级信号处理,空间,频率和部分极化多样性。

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