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Significance of a Low Noise Preamplifier and Filter Stage for Under Water Imaging Applications

机译:水下成像应用中低噪声前置放大器和滤波器级的意义

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High frequencies of the order of hundreds of kHz to MHz are employed for underwater imaging applications. Signal to noise ratios encountered for the front end receiver sections are seen to be very much reduced for these applications. Hence a low noise preamplifier and filter stage is very essential prior to the conventional antialiasing and digitization functionalities of the front end receivers. In this paper, an attempt is made to design and develop a low noise pre amplifier and filter to achieve a better SNR for the system. The pre amplifier stage designed is interfaced with hydrophones directly for gain and impedance matching purposes. The noise reduction is further achieved by means of a filter following the preamplifier stage which rejects the out of the band noise to an optimum level. Thorough study and analysis is carried out in this paper for the selection of low noise opamps, associated passive components and configuration of the preamplifier sections. Acoustic measurements are carried out for a sensor array of 150 kHz for evaluating the preamplifier and filter performance in the real scenario.
机译:水下成像应用采用了数百kHz至MHz的高频。在这些应用中,前端接收器部分遇到的信噪比被认为大大降低。因此,在前端接收器的常规抗混叠和数字化功能之前,低噪声前置放大器和滤波器级非常重要。本文尝试设计和开发一种低噪声的前置放大器和滤波器,以实现更好的系统信噪比。设计的前置放大器级直接与水听器接口,以实现增益和阻抗匹配。通过前置放大器级之后的滤波器进一步实现降噪,该滤波器将带外噪声抑制到最佳水平。本文针对低噪声运算放大器的选择,相关的无源元件和前置放大器部分的配置进行了深入的研究和分析。对150 kHz的传感器阵列进行声学测量,以评估实际场景中的前置放大器和滤波器性能。

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