This paper considers a scenario in which the Terahertz (THz) transmitter equipped with a linear antenna array wishes to focus its beam to a desired spatial region in the array near-field. The goal is to compute the achievable spatial region and determine how the system parameters such as the carrier frequency, the array dimension and the user's location affect its beam focusing performance. First, based on a theorem from analytic geometry, we show that the achievable focusing spatial region constitutes a rotated ellipse, with the x and y coordinates denoting the range and angle, respectively. In this way, the determination of the spatial region is reduced to a problem of deriving the coverage of an ellipse. The achievable coverage is then obtained in closed form, and the construction of carrier frequency offsets that can analytically control the beam focusing performance is provided. Numerical results validate the theoretical findings and demonstrate the performance of the proposed method.
翻译:本文件考虑了一种情景,即配备了线性天线阵列的Terahertz(Thz)发射机希望将其光束聚焦于近场阵列所希望的空间区域,目的是计算可实现的空间区域,并确定系统参数如何影响其光束聚焦性能。首先,根据分析几何的理论,我们表明,可实现的焦点空间区域是一个旋转的椭圆区域,X和Y坐标分别标明了射程和角度。这样,空间区域的确定将缩小到产生椭圆覆盖的问题,然后以封闭的形式获得可实现的覆盖,并提供了能够分析控制波束聚焦性能的承运人频率的计算。数字结果证实了理论结论,并显示了拟议方法的性能。