Designing Linear FM Active Sonar Waveforms for Continuous Line Source Transducers to Maximize the Fisher Information at a Desired Bearing

M. Tidwell, J. Buck
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引用次数: 1

Abstract

Several authors previously found that echolocating animals aim their sonar beam askew of the target of interest. Analysis found the animals' beam aiming strategy maximized the Fisher Information (FI) about the target bearing encoded in the frequency spectrum of the received echoes by the transmitter's frequency dependent beampatterns. This paper reverses the focus from analysis to synthesis. We present design methods to maximize the FI of the bearing estimate at a desired angle using linear frequency modulated (LFM) waveforms transmitted by a continuous line source (CLS) transducer. If the center frequency of the transmitted chirp is sufficiently larger than the bandwidth, the angle maximizing the bearing FI is solely determined by the center frequency. Numerical simulations confirm the effectiveness of the proposed methods for several bearings and waveforms.
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为连续线源换能器设计线性调频主动声纳波形,以最大限度地提高所需方位的费雪信息
几位作者先前发现,回声定位动物会将声纳光束对准感兴趣的目标。分析发现,动物的波束瞄准策略最大限度地利用发射机频率相关波束模式在接收回波频谱中编码的关于目标方位的费雪信息(FI)。本文将重点从分析转向综合。我们提出了一种设计方法,利用由连续线源(CLS)换能器传输的线性调频(LFM)波形,在期望的角度下最大化方位估计的FI。如果传输的啁啾的中心频率比带宽大得多,则使轴承FI最大化的角度完全由中心频率决定。数值模拟验证了所提方法对几种轴承和波形的有效性。
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