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Acoustical Direction Finding with Time-Modulated Arrays

机译:时间调制阵列的声学方向寻找

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摘要

Time-Modulated Linear Arrays (TMLAs) offer useful efficiency savings over conventional phased arrays when applied in parameter estimation applications. The present paper considers the application of TMLAs to acoustic systems and proposes an algorithm for efficiently deriving the arrival angle of a signal. The proposed technique is applied in the frequency domain, where the signal and harmonic content is captured. Using a weighted average method on harmonic amplitudes and their respective main beam angles, it is possible to determine an estimate for the signal’s direction of arrival. The method is demonstrated and evaluated using results from both numerical and practical implementations and performance data is provided. The use of Micro-Electromechanical Systems (MEMS) sensors allows time-modulation techniques to be applied at ultrasonic frequencies. Theoretical predictions for an array of five isotropic elements with half-wavelength spacing and 1000 data samples suggest an accuracy of ±1 within an angular range of approximately ±50. In experiments of a 40 kHz five-element microphone array, a Direction of Arrival (DoA) estimation within ±2.5 of the target signal is readily achieved inside a ±45 range using a single switched input stage and a simple hardware setup.
机译:当应用于参数估计应用中时,时间调制线性阵列(TMLA)相对于传统相控阵列可提供有用的效率节省。本文考虑了TMLA在声学系统中的应用,并提出了一种有效推导信号到达角的算法。所提出的技术被应用于频域,在频域中捕获了信号和谐波含量。使用谐波幅度及其各自的主波束角的加权平均方法,可以确定信号到达方向的估计值。使用数值和实际实施的结果对方法进行了演示和评估,并提供了性能数据。使用微机电系统(MEMS)传感器可以将时间调制技术应用于超声频率。对具有半波长间隔的五个各向同性元素和1000个数据样本的阵列的理论预测表明,在大约±50 的角度范围内,精度为±1 。在一个40 kHz五元素麦克风阵列的实验中,可以很容易地在目标信号的±45 范围内实现目标方向±2.5 内的到达方向(DoA)估计。使用单个开关输入级和简单的硬件设置即可实现最大量程。

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