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Adaptive Complex-Coefficient 2D FIR Trapezoidal Filters for Broadband Beamforming in Cognitive Radio Systems

机译:认知无线电系统中用于宽带波束成形的自适应复系数二维FIR梯形滤波器

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A novel design method is proposed for an adaptive discrete-domain beam-former for the beamforming of temporally broadband-bandpass signals in cognitive radio (CR) systems. The method is based on a complex-coefficient 2D finite impulse response (FIR) filter having a trapezoidal-shaped passband. The temporally broadband-bandpass signals are received by a ID uniformly distributed antenna array (ID UDAA), where the outputs of the antennas are complex-quadrature sampled by the front end of the CR system. This CR system is based on a software defined radio (SDR) architecture and can be instantly reconfigured by the control system to select the appropriate frequency band and the required sampling rate. The subsequent beamforming enhances the spectral components of the desired temporally broadband-bandpass signals by arranging for the asymmetric trapezoidal-shaped passband of the 2D filter transfer function to closely enclose the region of support (ROS) of the spectrum of the desired signal, whereas the ROSs of the spectral components of the interfering signals are enclosed by the stopband. The proposed novel closed-form design method facilitates instant adaptation of the shape and orientation of the passband of the beamforming 2D FIR trapezoidal filter in order to match the time-varying frequency band and the time-varying bandwidth of the signal, as well as to track and enhance received signals with time-varying directions of arrival (DOAs). Simulated results confirm that, compared with previously reported methods, the proposed method achieves the best overall tradeoff with respect to the instantaneous adaptations of the operating frequency band, the bandwidth, and the time-varying DOAs, the distortion of the desired passband signal, and the stopband attenuation of interfering signals.
机译:针对认知无线电(CR)系统中时间宽带带通信号的波束形成,提出了一种自适应离散域波束形成器的新颖设计方法。该方法基于具有梯形通带的复系数二维有限冲激响应(FIR)滤波器。暂时的宽带通带信号由ID均匀分布的天线阵列(ID UDAA)接收,其中天线的输出由CR系统的前端进行复正交采样。此CR系统基于软件定义的无线电(SDR)架构,并且可以由控制系统立即重新配置,以选择适当的频带和所需的采样率。随后的波束成形通过安排2D滤波器传递函数的不对称梯形通带来紧密包围所需信号频谱的支撑区域(ROS),从而增强了所需时间宽带通带信号的频谱分量。干扰信号频谱成分的ROS被阻带包围。所提出的新颖的封闭形式设计方法有助于立即适应波束成形2D FIR梯形滤波器的通带的形状和方向,以匹配信号的时变频带和时变带宽,以及跟踪和增强具有时变到达方向(DOA)的接收信号。仿真结果证实,与以前报告的方法相比,该方法在工作频段,带宽和时变DOA的瞬时自适应,所需通带信号的失真以及干扰信号的阻带衰减。

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