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Reduced redundancy arrays for detection and direction finding over a wide frequency range

机译:减少了冗余阵列,可在较宽的频率范围内进行检测和测向

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Array design plays a key role in the performance of radio receivers used to detect signals and estimate their direction of arrival. Non-uniform arrays are used to meet conflicting requirements for large aperture and closely spaced elements, but selecting the best array is difficult when a receiver operates over a wide range of look-angles and signal frequencies. Minimum Redundancy Arrays (MRA) have narrow beamwidth, but sidelobe levels are somewhat high for detection using super-resolution array processing techniques. In addition, the MRA is physically large, often exceeding available space. This paper introduces a design called the Reduced Redundancy Array (RRA); a generalization of MRA's with antenna aperture as a design parameter, allowing the designer to trade beamwidth and sidelobe level. Design rules are described, and it is shown by example that MRA's have good performance over a wide range of frequencies and look-angles.
机译:阵列设计在用于检测信号并估计其到达方向的无线电接收机的性能中起着关键作用。非均匀阵列用于满足大孔径和紧密间隔的元素的冲突要求,但是当接收器在较大的视角和信号频率范围内工作时,选择最佳阵列很困难。最小冗余阵列(MRA)的波束宽度很窄,但是旁瓣电平对于使用超分辨率阵列处理技术进行检测来说有些偏高。此外,MRA物理上很大,通常会超出可用空间。本文介绍了一种称为缩减冗余阵列(RRA)的设计。天线孔径作为设计参数的MRA的概括,允许设计者权衡波束宽度和旁瓣电平。描述了设计规则,并通过示例显示了MRA在广泛的频率和视角范围内均具有良好的性能。

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