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Application of Digital Polarity Correlators in a Sonar Ranging System

机译:数字极性相关器在声纳测距系统中的应用

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In robotics applications, ultrasonic transducers are frequently used as rangefinders, due to their low cost and small size. The pulse compression techniques were adopted to locate multiple objects at the same time and to eliminate frequent misreadings caused by crosstalk or external ultrasound sources. However, a few problems become apparent when implementing the pulse compression techniques. First, each transducer must be equipped with a processing system for the implementation of correlation functions. This may significantly increase the complexity of the total system, cutting down one of the advantages of ultrasonic systems. Second, the majority of transducers for use in air are based on piezoelectric design, which is usually used over a narrow bandwidth. Among digital correlators, significant reductions of the processing cost can be achieved with a polarity correlator. However, this polarity correlation adds quantization noise to the signals and leads to a degradation of the output signal-to-noise ratio. This paper presents an analysis of the polarity correlator applied to a sonar ranging system, consisting of piezoelectric transducers and a chirp filter. A numerical evaluation of the output signal shows that the signal-to-noise ratio degrades only a small amount comparable with that obtained by direct digital correlators.
机译:在机器人应用中,由于超声波传感器的低成本和小尺寸,它们经常被用作测距仪。采用脉冲压缩技术可同时定位多个物体,并消除了由于串扰或外部超声源而引起的频繁误读。然而,当实施脉冲压缩技术时,一些问题变得显而易见。首先,每个换能器必须配备一个处理系统以实现相关功能。这可能会大大增加整个系统的复杂性,从而降低超声系统的优势之一。其次,空气中使用的大多数换能器都是基于压电设计的,通常在狭窄的带宽上使用。在数字相关器中,使用极性相关器可以显着降低处理成本。但是,这种极性相关性将量化噪声添加到信号中,并导致输出信噪比下降。本文介绍了应用于声纳测距系统的极性相关器的分析,该系统由压​​电换能器和线性调频滤波器组成。对输出信号的数值评估表明,与直接数字相关器获得的信噪比相比,其信噪比仅降低了少量。

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