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Multi-resolution model correction for improving the accuracy of flying laser ranging sensor

机译:多分辨率模型校正可提高飞行激光测距传感器的精度

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More and more unexpected incidents come out currently. Static sensor networks can not satisfy the increasing need for emergency response due to lack of adaptivity and limited coverage, thus mobile sensor networks become the research focus for overcoming above drawbacks. With excellent performances including autonomy, flexibility, stability and low-cost, micro-unmanned air vehicles (MUAVs) play a greater pole in mobile sensor networks. Ranging is one of the most critical sensing functions for mobile sensor networks. In this paper, a flying laser ranging sensor is proposed, essentially, an airborne pulsed time-of-flight (TOF) laser rangefinder (LRF) is realized. Because of the influence from walk error, time jitter, temperature drift and other factors, there is still room to improve the measurement precision of pulsed TOF LRFs. So the more important contribution of the paper is to present a novel interval time amendment approach for higher ranging precision. Based on leading-edge time discrimination, this method first employs wavelet multi-resolution analysis to compute compensation time values, which are computed mainly from local modulus maxima (LMMs) position differences. With approximations signals similarity and measurement relative error (MRE), a fusion evaluation is built to select the best wavelet parameters, and optimal corrected measurement model is obtained. Results show that MRE of the improved model is reduced by 73.41%. Therefore, the performance of flying laser ranging sensor is improved significantly with multi-resolution model correction. (C) 2016 Elsevier GmbH. All rights reserved.
机译:当前,越来越多的突发事件出来。由于缺乏适应性和覆盖范围有限,静态传感器网络无法满足对紧急响应的日益增长的需求,因此移动传感器网络成为克服上述缺陷的研究重点。微型无人飞行器(MUAV)具有出色的性能,包括自治性,灵活性,稳定性和低成本,在移动传感器网络中发挥了更大的作用。测距是移动传感器网络最关键的传感功能之一。本文提出了一种飞行激光测距传感器,从本质上讲,是实现了机载脉冲飞行时间(TOF)激光测距仪(LRF)。由于步行误差,时间抖动,温度漂移和其他因素的影响,脉冲TOF LRF的测量精度仍有提高的空间。因此,本文更重要的贡献是提出一种新颖的间隔时间修正方法,以实现更高的测距精度。该方法基于前沿时间判别,首先采用小波多分辨率分析来计算补偿时间值,该补偿时间值主要是根据局部模极大值(LMM)位置差计算得出的。利用近似信号相似性和测量相对误差(MRE),建立融合评估以选择最佳小波参数,并获得最佳校正测量模型。结果表明,改进模型的MRE降低了73.41%。因此,通过多分辨率模型校正,可大大提高飞行激光测距传感器的性能。 (C)2016 Elsevier GmbH。版权所有。

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