Nnonyelu Chibuzo Joseph, Wong Kainam Thomas, Wu Yue Ivan
Department of Electrical Engineering, University of Nigeria, Nsukka, Nigeria.
School of General Engineering, Beihang University, Beijing, China.
J Acoust Soc Am. 2019 Jan;145(1):575. doi: 10.1121/1.5087697.
Cardioid sensors offer low sidelobes/backlobes compared to figure-8 bi-directional sensors (like velocity-sensors). Three cardioid sensors, in orthogonal orientation and in spatial collocation, have recently been proposed by Wong, Nnonyelu, and Wu [(2018). IEEE Trans. Sign. Process. 66(4), 895-906] and such a cardioid-triad's "spatial matched filter" beam-pattern has been analyzed therein. That beam-pattern, unfortunately, suffers pointing error, i.e., the spatial beam's actual peak direction deviates from the nominal "look direction." Instead, this paper will propose a steerable data-independent beamformer for the above-mentioned cardioidic triad to avoid beam-pointing error. Also analytically derived here (via multivariate calculus) is this beam-pattern's lobes' height ratio, beamwidth, directivity, and array gain.
与八字形双向传感器(如速度传感器)相比,心形传感器具有较低的旁瓣/后瓣。Wong、Nnonyelu和Wu[(2018年)。《IEEE信号处理汇刊》66(4),895 - 906]最近提出了三个呈正交方向且空间配置的心形传感器,并且其中已经分析了这种心形三元组的“空间匹配滤波器”波束图。不幸的是,该波束图存在指向误差,即空间波束的实际峰值方向偏离标称的“视向”。相反,本文将为上述心形三元组提出一种与数据无关的可控波束形成器,以避免波束指向误差。这里还通过多元微积分解析推导了该波束图的波瓣高度比、波束宽度、方向性和阵列增益。