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Signal-modelling methods applied to the free-field calibration of hydrophones and projectors in laboratory test tanks

机译:应用于实验室试验箱中水机和投影仪的自由场校准的信号建模方法

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摘要

In reverberant laboratory tanks, free-field acoustic calibrations using hydrophones and projectors are limited by the arrival of boundary reflections, and by start-up transients caused by the resonant behaviour of the transducers. This paper describes the application of a signal modelling method which enables measurements to be undertaken at acoustic frequencies below the limits imposed by the echo-free time of the test tank. In the approach, the signals obtained during calibration are modelled, initially by a simple model for the steady-state transducer response, and then by an extended model consisting of terms that are used to describe both the steady-state and resonant behaviours of the device(s). This model may be further extended to include terms that describe the response both to the direct signal and to reflections of the signal from the tank boundaries. A non-linear least-squares problem involving data for all discrete frequencies of measurement is then solved to provide improved estimates of the model parameters and echo arrival times. The method is applied to the calibration of low Q-factor transducers such as hydrophones in the frequency range 250 Hz-1 kHz, and to high Q-factor source transducers in the frequency range 1 kHz-5 kHz, using measurements undertaken in a modest-sized tank where the echo-free time does not allow steady-state conditions to be reached. The calibrations were validated by comparison with both pressure calibrations in a small coupler, and free-field calibrations at an open water facility, with the agreement obtained of better than 1 dB, well within expanded uncertainties (which range between 0.5 and 1.2 dB).
机译:在混响实验室罐中,使用流水声和投影仪的自由场声学校准受边界反射到达的限制,并通过换能器的共振行为引起的启动瞬变。本文介绍了信号建模方法的应用,该方法使得能够在低于试验箱的无回波时间施加的限制的声学频率下进行测量。在该方法中,在校准期间获得的信号是最初通过用于稳态换能器响应的简单模型,然后由用于描述设备的稳态和谐振行为的术语组成的扩展模型。 (s)。该模型可以进一步扩展以包括描述对直接信号的响应和来自箱边界的信号的反射的术语。然后解决了涉及用于所有离散频率的数据的数据的非线性最小二乘问题,以提供改进的模型参数和回声到达时间的估计。该方法应用于频率范围250Hz-1kHz中的低Q因子换能器的校准,例如频率范围为1kHz-5kHz的高Q因子源换能器,使用适度的测量值 - 无回声时间不允许达到稳态条件的调整罐。通过与小型耦合器中的压力校准和开放水设施的自由场校准进行验证,验证了校准,该协议优于1 dB,在扩大的不确定性(0.5和1.2 dB之间的范围之间)。

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