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Field Validation of Long-Term Accuracy Model with Phased Array DVLs

机译:相控阵DVL的长期精度模型的现场验证

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A Doppler velocity log sonar measures the relative velocity between an instrument and the bottom of a body of water by estimating the Doppler shift of back-scattered sound in multiple beams that point in different directions. The long-term-velocity accuracy of phased-array Doppler velocity logs contains errors including terrain bias, absorption bias, side-lobe coupling, and element spacing error. In this work we show that the theoretically derived long-term accuracy can be achieved in the field under different operating conditions. Distance traveled is measured by integrating the estimated velocity and it is compared to the distance traveled as measured with GPS. Accuracy measurements of Teledyne RDI Pioneer 300 and 600 instruments were performed on the San Diego Bay and the San Vicente Reservoir. The measured accuracy of the two instruments was within the specified accuracy by a large margin.
机译:多普勒速度对数声纳通过估计在不同方向上的多个光束中的背部散射声音的多普勒偏移来测量仪器和水底之间的相对速度。相控阵多普勒速度日志的长期速度精度包含包括地形偏置,吸收偏置,侧凸耦合和元素间距误差的误差。在这项工作中,我们表明,在不同的操作条件下,可以在该领域实现理论上衍生的长期精度。通过将估计的速度整合来测量行进的距离,并且与用GPS测量的距离进行比较。在San Diego Bay和San Vicente水库进行了Teledyne RDI先锋300和600仪器的精度测量。两种仪器的测量精度在规定的准确性范围内通过大幅度。

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