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首页> 外文期刊>International Journal on Communications Antenna and Propagation >Obtaining the Optimal Shape of Planar Antenna Arrays for Direction-of-Arrival Joint Estimation of One and Two Coordinates of Signal Sources on Azimuth
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Obtaining the Optimal Shape of Planar Antenna Arrays for Direction-of-Arrival Joint Estimation of One and Two Coordinates of Signal Sources on Azimuth

机译:获得平面天线阵列的最佳形状,用于到达方向关节估计信号源方位角的一个和两个坐标

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摘要

In this paper, an approach for obtaining optimal planar antenna arrays consisting of omnidirectional sensors for the direction-of-arrival estimation is proposed. Exact expressions of the Cramer-Rao lower bound are used. The obtained formulas describe the influence of the location of antenna elements on the accuracy of the direction-of-arrival non-joint estimation for one arriving signal and joint estimation with two signal sources. It has been shown that the accuracy of the direction-of-arrival non-joint estimation is determined as the sum of the squares of the differences between all the coordinates of omnidirectional elements along x- andy-axis if one signal arrives. If two signals arrive, the accuracy of the direction-of-arrival joint estimation depends on the sum of cosines having the argument with the difference between sensor coordinates and signals radius-vectors. The optimal locations of the antenna elements using the obtained expressions can be calculated very easily in order to reduce the direction-finding errors near particular sectors. In order to confirm the proposed methodology the optimal antenna arrays constructed after minimization of the new formulas are researched. It is found out that the new shapes of antenna arrays based on the analytical expressions have better direction-of-arrival accuracy in comparison with the circular ones.
机译:在本文中,提出了一种用于获得由用于到达方向估计的全向传感器组成的最佳平面天线阵列的方法。使用Cramer-Rao下限的确切表达。所获得的公式描述了天线元件的位置对一个到达信号的到达方向非关节估计的准确性的影响,以及两个信号源的联合估计。已经表明,如果一个信号到达,则确定到达方向非关节估计的准确度被确定为沿x-Andy轴的全部坐标之间的所有坐标之间的差异的平方和。如果两个信号到达,则到达方向关节估计的准确性取决于具有具有传感器坐标和信号半径向量之间的差异的余弦之和。可以非常容易地计算使用所获得的表达式的天线元件的最佳位置,以便减少特定扇区附近的方向查找误差。为了确认所提出的方法,研究了在最小化新公式后构建的最佳天线阵列。发现基于分析表达式的天线阵列的新形状具有更好的到达方向的到达准确性,与圆形圆形相比。

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