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首页> 外文期刊>電子情報通信学会技術研究報告. アンテナ·伝播. Antennas and Propagation >Direction-of- Arrival Estimation with a 7-Element Regular-Hexagonal Shaped ESPAR Antenna Employing the ESPRIT Algorithm
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Direction-of- Arrival Estimation with a 7-Element Regular-Hexagonal Shaped ESPAR Antenna Employing the ESPRIT Algorithm

机译:采用ESPRIT算法的7元素正六边形ESPAR天线的到达方向估计

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The electronically steerable parasitic array radiator (ESPAR) antenna is a single-output array antenna. As the output signal of each element of the antenna cannot be observed, direct application of most of the algorithms designed for the conventional array antenna is impractical. In this paper a technique for Direction-of- Arrival (DoA) estimation for the ESPAR antenna based on the ESPRIT (Estimation of Signal Parameters via Rotational Invariance Techniques) algorithm combined with the reactance domain technique is proposed. ESPRIT is a well-known subspace-based approach for high-resolution signal parameters with applications to DoA estimation. Three configurations of lozenge-shaped subarray partition sets were, heuristically, found within the 7-element regular-hexagonal shaped ESPAR antenna. So, by exploiting the displacement invariance provided by these partition sets, DoA estimations can be performed with the ESPRIT algorithm. Simulations show that the performance of the algorithm is linked to the value of the angle of arrival. Because of the subarray division imposed on the ESPAR antenna by the ESPRIT algorithm, DoA estimations are restricted to half of the full azimuthal plane sector. Nevertheless, by employing the proposed method, up to three signals impinging simultaneously can be estimated. Moreover, good results can be obtained: for one signal impinging on the ESPAR antenna, simulations show that there is a probability of more than 80% of achieving DoA estimations within ±2° accuracy for an angle in the range of 50° to 130°.
机译:电子可控寄生阵列辐射器(ESPAR)天线是单输出阵列天线。由于无法观察到天线每个元件的输出信号,因此直接应用为常规阵列天线设计的大多数算法是不切实际的。提出了一种结合ESRRIT算法和电抗域技术的ESPAR天线到达方向估计方法。 ESPRIT是一种众所周知的基于子空间的高分辨率信号参数方法,可应用于DoA估计。启发式地,在7元素正六边形ESPAR天线中发现了菱形子阵列分区集的三种配置。因此,通过利用这些分区集提供的位移不变性,可以使用ESPRIT算法执行DoA估计。仿真表明,算法的性能与到达角的值有关。由于ESPRIT算法在ESPAR天线上施加了子阵列划分,因此DoA估计仅限于整个方位平面扇区的一半。然而,通过采用所提出的方法,可以估计多达三个同时撞击的信号。此外,可以获得良好的结果:对于撞击在ESPAR天线上的一个信号,仿真显示,对于50°至130°范围内的角度,在±2°的精度范围内实现DoA估计的可能性超过80% 。

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