数字天线阵无相校准算法的开发

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY Inventions Pub Date : 2023-12-11 DOI:10.3390/inventions8060155
Elena Dobychina, M. Snastin, Vladimir Savchenko, T. Shevgunov
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引用次数: 0

摘要

在本文中,我们将讨论一种数字天线阵的校准算法,它能诊断天线阵的实际性能。该算法可应用于天线系统生命周期的设计、调谐,特别是维护等阶段。本文提出并研究了使用标量法对多波束数字天线阵进行校准的方法。即时校准通过减少接收(发射)通道的内部误差,确保波束指向精度的持续提高。研究的目的是通过实验检验数字波束成形提高到达角估计精度的能力。在消声室中利用平面天线定位器创建了接收天线的仿真模型。演示了利用电子扫描数字波束成形精确估计到达方向的可能性。利用所提出的模拟模型,可以观察到在信号路径存在各种误差以及信噪比不同的情况下,使用所提出的方法进行天线阵列校准过程的收敛性。结果证明,即使在校准算法早期的不利条件下,相位误差检测也能以较高的精度收敛,其值甚至能均匀地减小到零点几角度。
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Development of the Phaseless Calibration Algorithm for a Digital Antenna Array
In this paper, we will discuss a calibration algorithm for a digital antenna array that diagnoses its real performance. It can be applied at such stages of the antenna system life cycle as design, tuning, and especially maintenance. A calibration implementation using a scalar method for a multi-beam digital antenna array is proposed and investigated. On-the-fly calibration ensures a continuous improvement in beam pointing accuracy by reducing internal errors in the receiving (transmitting) channels. The purpose of the study is to experimentally examine the capabilities of digital beamforming to increase the angle-of-arrival estimation accuracy. A simulation model of the receiving antenna was created in an anechoic chamber with a planar antenna positioner. The possibility of precise estimation of the direction of arrival using the digital beamforming with electronic scanning was demonstrated. The proposed simulation model made it possible to observe the convergence of the antenna array calibration process using the proposed method for various errors in the signal paths, as well as different signal-to-noise ratios. It has been proven that even under adverse conditions early in the calibration algorithm, the phase error detection converges with high accuracy, and its value decreases uniformly even to the fractions of an angular degree.
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来源期刊
Inventions
Inventions Engineering-Engineering (all)
CiteScore
4.80
自引率
11.80%
发文量
91
审稿时长
12 weeks
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