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Analysis of an adjustable modified Kaiser weighting function and its application to linear array antenna beamforming

机译:可调修正Kaiser加权函数的分析及其在线性阵列天线波束成形中的应用

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In this paper we propose a novel class of adjustable modified Kaiser weighting functions based on minimizing the sidelobes by definition of a nonconvex problem. The proposed weighting function is rooted in the same way as the Kaiser weighting function, but it has a lower first sidelobe and equiripple form other sidelobes by determined level. Undesired sidelobes minimized by inserting a parameter for extending free degrees. The sidelobes of solving optimization problem will be compare by equal mainlobes. Simulation results show that the proposed weighting function performs better sidelobe ripple ratio than the Kaiser weighting function for the same weighting function length and normalized mainlobe width. The results show that the linear array coefficients designed by the proposed weighting function provide better far end stopband attenuation than the filters designed by the Kaiser weighting function.
机译:在本文中,我们基于非凸问题的定义,基于最小化旁瓣,提出了一类新型的可调修正Kaiser加权函数。提议的加权函数的根基与Kaiser加权函数相同,但是它具有较低的第一旁瓣,并且在确定的水平上等波纹形成其他旁瓣。通过插入用于扩展自由度的参数,将不需要的旁瓣最小化。解决优化问题的旁瓣将由相等的主瓣进行比较。仿真结果表明,在相同的加权函数长度和归一化的主瓣宽度下,所提出的加权函数比Kaiser加权函数具有更好的旁瓣波纹比。结果表明,由提出的加权函数设计的线性阵列系数提供了比由Kaiser加权函数设计的滤波器更好的远端阻带衰减。

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