基于泰勒激励天线阵列的低旁瓣级鲁棒波束形成合成技术

M. A. Sarker, M. S. Hossain, M. S. Masud
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引用次数: 13

摘要

天线阵列是当今通信系统中应用最为广泛的技术之一。低旁瓣电平是阵列处理器的一个重要特点,在生物医学成像、军事通信和雷达系统等许多应用中都有应用。在旁瓣电平(SLL)和阵列的方向性之间存在权衡。设计一种能在SLL和指向性之间实现最佳平衡的天线阵列系统已成为关键问题。为了抑制输出波束方向和信号方向不匹配的高SLL,人们开发了一些值得注意的优化技术。阵列元素的振幅加权是一种众所周知的小波散射控制方法。在天线阵列系统的实时实现中,主波束可能不在假设的方向上,实际信号被视为干扰信号,这是不希望出现的情况。因此,阵列处理器对不确定性的鲁棒性是一个重要的问题。在考虑阵列的不确定性和不完备性的情况下,本文提出了一种方法,使阵列系统在保持期望SLL值的同时,更适合于实时实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust beamforming synthesis technique for low side lobe level using taylor excited antenna array
Antenna array is one of the most useable technologies in present day communication system. There are many applications like biomedical imaging, military communication and radar system where low side lobe level is an essential feature of array processor. There is a trade-off between side lobe level (SLL) and the directivity of the array. Designing an antenna array system with optimum trade-off between SLL and directivity has become a crucial problem. To suppress high SLL of output beam pattern and signal direction mismatches, some notable optimization techniques have been developed. Amplitude weighting of array elements is a well known approach for SLL control. In real-time implementation of antenna array system, the main beam may not be in the assumed direction and the actual signal is treated as an interference signal which is undesirable. Hence the robustness of an array processor against uncertainties is an important issue. In this paper, a method is proposed to keep the SLL at the desired value as well as makes the array system more applicable for real time implementation considering array uncertainties and imperfections.
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