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Rapid estimation of true Direction Of Arrival for dielectric lens based adaptive array antennas

机译:基于介电透镜的自适应阵列天线的真实到达方向的快速估计

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Smart antenna involves array processing to manipulate the signals induced on various antenna elements to accomplish beam steering and improve interference rejection. To improve directivity a shaped dielectric lens is used to further collimate the rays in a specified direction and help reduce interference. Direction Of Arrival (DOA) estimation algorithms specifically Multiple SIgnal Classification (MUSIC) and Minimum Variance Distortionless Response (MVDR) are employed for a planar array - shaped dielectric lens combination to locate a desired user. Refractive effect of the lens has to be compensated for in these algorithms rapidly in real time to extract the true arrival angles. Geometrical optics is employed to trace the rays from an aperture in front of the lens through the shaped lens boundaries to the individual antenna elements to determine the DOA of the user signal. Angle dependent modifications for the DOA of the signal in both elevation and azimuth planes have been introduced to correct for the refractive effects of the lens and extract the correct angle of arrival using a new mapped column peak search technique.
机译:智能天线涉及阵列处理,以操纵在各种天线元件上感应的信号,以完成波束控制并改善干扰抑制。为了改善方向性,使用了成形的介电透镜来进一步准直指定方向上的光线并帮助减少干扰。到达方向(DOA)估计算法,特别是多重信号分类(MUSIC)和最小方差无失真响应(MVDR),用于平面阵列形状的介电透镜组合,以定位所需的用户。在这些算法中,必须实时快速补偿镜片的屈光效果,以提取出真实的入射角。采用几何光学器件来跟踪光线,该光线从透镜前面的孔经过成形透镜边界到各个天线元件,以确定用户信号的DOA。已经引入了在仰角平面和方位平面中信号的DOA的角度相关修改,以校正透镜的折射效果,并使用新的映射列峰值搜索技术提取正确的到达角。

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