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1.
杨彬  何林帮 《海洋学报》2018,40(7):143-149
多波束反向散射强度数据应用广泛,但由于受到角度响应的影响,导致生成的多波束声呐图像质量偏低,且现有角度响应改正方法在复杂海底底质环境下适应性较差。为此本文对散射强度进行分析,给出了两种多波束反向散射强度数据归一化方法,分别为基于高斯拟合以及角度响应的散射强度改正方法,前者主要是基于散射强度的变化规律进行改正,而后者则是基于声波的散射机理进行改正。实验结果表明两种方法较传统改正方法精度均有约30%的提升,并且角度响应方法较高斯拟合方法改正精度更高,但计算效率有所下降。以上实验验证了两种方法的有效性,实现了散射强度数据的归一化,提升了多波束声呐图像的质量。  相似文献   

2.
针对多波束测深条带边缘波束易受到姿态和声速等多种误差影响、相对中央波束数据质量较低的问题,本文提出一种利用相邻测线重叠区域对多波束测深数据边缘波束进行横摇运动残差改正的模型,提高边缘波束测深数据的质量。使用沿航向的测深点匹配插值模型,完成中央波束测深点与边缘波束测深点的匹配,得到边缘波束测深误差值;使用横摇运动残差改正模型,实现顾及姿态角的条件下补偿波束入射角。计算实例表明:本文模型能够较为准确地提取边缘波束测深误差值,改正后的海底地形削弱了误差导致的上下起伏,有效地减少了影响边缘波束的多种误差,具有实际的工程应用价值。  相似文献   

3.
在严格推导常梯度声线跟踪法的基础上,提出了基于常梯度声线跟踪法的多波束声速改正精确模型,并初步推证了CARIS软件的声速改正方法。计算结果表明,精确模型计算结果与CARIS 6.1计算结果一致,并通过声线姿态改正算法比较,给出了声线姿态补偿法和直接法的适用角度范围。  相似文献   

4.
多波束测深及影响精度的主要因素   总被引:9,自引:7,他引:9  
通过多波束测深的基本原理、参数校正和数据改正方法的讨论,阐述了保证多波束测深精度的主要校改正方法,并在模型分析的基础上,探讨了声速剖面的结构及其时空变化对多波束测深精度的影响,指出了三个特征海区声速结构的分布特点,并提出了抑制三海区声速改正误差的可能方法及控制多波束测量中声速改正精度的措施  相似文献   

5.
为提高浅水多波束测深资料处理成果质量,基于澳门海域浅水多波束测深资料,提出应用POS/MV大地高数据计算实时潮汐数据,探讨了浅水多波束测深资料声速校正方法。结果表明,经过潮汐改正和声速改正后资料处理成果质量明显提高,解决了浅水多波束测深资料处理中的难题,本方法可为浅水多波束测深资料处理提供重要指导。  相似文献   

6.
多波束测深数据处理及成图   总被引:2,自引:0,他引:2  
针对多波束测深系统测量的特点,分别分析声速改正技术和潮位改正技术。从声速在海水中的传播出发,阐述海水中声速的测量,对声速的较正方法进行探讨,随后针对潮汐效应的影响,对多波束测深数据进行潮位改正,并利用海上试验实测的多波束测深数据,将处理后的数据绘制成海底地形数字地图。  相似文献   

7.
讨论了声速误差对多波束测深值的影响,在此基础上,建立了自动搜索等效声速剖面的改正方法。该方法利用多波束实测数据搜索等效声速剖面,取代实测声速剖面,可削弱声速误差的影响。实例计算表明,利用多波束实测数据建立的声速剖面自动改正方法,能够有效地消除声速误差的影响,并且在处理过程中不需要人工干预,较大地提高了改正效率。  相似文献   

8.
基于严密波束归位模型的多波束测深点不确定度改进方法   总被引:1,自引:0,他引:1  
利用不确定度可有效对多波束测深成果质量进行评估,针对现有不确定度计算模型因近似或简化导致一定误差的问题,本文提出一种基于严密波束归位模型的多波束测深点不确定度改进方法。首先分析了多波束测深过程中的各项误差源,基于误差传播定律与严密波束归位模型,详细推导了各误差源在波束归位各阶段的误差传播情况,最终得出了多波束测深成果不确定度的计算模型。文中利用实测数据计算了每个测深点的不确定度,绘制了单Ping扇面及条带的不确定度分布图,有利于直观、全面地了解所有测深点的误差变化趋势;计算结果与常用HGM不确定度模型进行了对比,表明本文方法更具合理性,对多波束测深成果的质量评估具有一定的参考价值。  相似文献   

9.
针对Rob Hare提出的多波束测点位置归算精度估计模型的不足,建立了顾及各项改正数之间相关性的改进模型.在多波束测点位置归算模型的基础上,分析了影响测点位置归算的各项误差来源,推导了各误差源对测点位置归算精度估计的影响量,结合算例,分别利用两种模型计算了各误差源对测点位置归算精度的影响量级,绘制了各误差源的误差曲线图与总位置误差曲线图,通过对计算结果的分析比较,得出了两种模型在评估多波束测点位置归算精度时存在的差异,由于顾及到改正数间的相关性,认为改进模型更加科学合理.  相似文献   

10.
声波在水中的传播受水的温度、盐度、深度以及时间等因素的影响,并且受水介质的运动而经常发生复杂变化。不同的声速结构将直接影响波束射线的空间路径,因此声速剖面的改正直接影响着多波束测深的精度。通过实测的几种变形的海底地形,阐明了声速剖面改正对多波束测深精度的影响,以及如何在测量过程中和数据后处理中避免、消除声速剖面改正带来的测深误差,提出了切实可行的方法。  相似文献   

11.
多波束声呐图像是进行海底底质分类的主要数据源之一,由于受海洋噪声、声波散射和混响、仪器设备等因素影响,其经各项常规改正后仍存在明显残差,突出表现在中央波束区和条带重叠区,难以形成高质量的声呐图像。文中分析了多波束声呐图像残差的成因及影响,提出了一种基于多条带最小二乘拟合的多波束声呐图像残差处理方法。首先,得到相邻声脉冲(ping)信号中央区域、重叠区域以及整体趋势的拟合函数;然后,通过拟合函数计算得到中央和重叠区域的残差改正系数;最后,通过改正系数进行残差改正。实验分析表明,该方法在保留原始细节的基础上,有效削弱了残差对声呐图像的影响,对多波束声呐图像处理具有参考和应用价值。  相似文献   

12.
丁继胜  董立峰  唐秋华  李杰 《海洋测绘》2014,34(5):62-64,71
结合近几年出现的高分辨率多波束测深系统的性能特点,通过检测实例,介绍其在海底管道(尤其是裸露管道)检测中的相关技术及及检测成果。结果证实,高分辨率多波束测深系统可以准确检测海底小尺寸目标物,为其新特性的推广应用提供技术参考。  相似文献   

13.
多波束声呐记录的海底后向散射片段(Snippet)数据处理成角度响应曲线和地理编码(Mosaic)图像可以 帮助识别海底底质类型和反映地貌形态,这一过程包括辐射校正、角度响应改正(AVG)和几何地理编码,但不同的多波束系统硬件在辐射校正和角度响应改正方法上存在差异且传统处理方法忽略了声呐系统本身的指向性模型随时间变化的事实。以声呐方程为基础,针对Kongsberg EM 多波束系统提出了一套完整的Snippet数据处理流程,并分析了各步骤中存在的可变性,给出了每一步的处理建议,最后将此方法应用于EM2040浅水多波束实测数据,并验证了该方法的有效性和实用性。  相似文献   

14.
多波束测深系统声速校正   总被引:13,自引:0,他引:13  
海水声速是多波束测深系统进行水深测量的基本参数之一,声速剖面正确与否直接影响测量结果的精度和可靠性。声速校正为多波束测深系统提供了正确的声速剖面,根据声速剖面垂向上的变化规律,对原始声速数据进行科学采点,运用软件方法或实验方法对声速剖面进行编辑获得声速数据,最终取得合理可靠的水深值。这里对南海SA12试验区采集的声速资料进行了分析,以SeaBeam2100多波速测深系统为例,对声速校正的技术方法进行了探讨。  相似文献   

15.
The variation of the backscatter strength with the angle of incidence is an intrinsic property of the seafloor, which can be used in methods for acoustic seafloor characterization. Although multibeam sonars acquire backscatter over a wide range of incidence angles, the angular information is normally neglected during standard backscatter processing and mosaicking. An approach called Angular Range Analysis has been developed to preserve the backscatter angular information, and use it for remote estimation of seafloor properties. Angular Range Analysis starts with the beam-by-beam time-series of acoustic backscatter provided by the multibeam sonar and then corrects the backscatter for seafloor slope, beam pattern, time varying and angle varying gains, and area of insonification. Subsequently a series of parameters are calculated from the stacking of consecutive time series over a spatial scale that approximates half of the swath width. Based on these calculated parameters and the inversion of an acoustic backscatter model, we estimate the acoustic impedance and the roughness of the insonified area on the seafloor. In the process of this inversion, the behavior of the model parameters is constrained by established inter-property relationships. The approach has been tested using a 300 kHz Simrad EM3000 multibeam sonar in Little Bay, NH. Impedance estimates are compared to in situ measurements of sound speed. The comparison shows a very good correlation, indicating the potential of this approach for robust seafloor characterization.  相似文献   

16.
为满足多波束声纳量值溯源与传递需求,设计多波束声纳关键参数的计量测试系统。基于大比尺原型深水港池和多维运行控制机构,通过水下横向测距代替垂向测深的方式对多波束声纳进行了测深准确度与有效条带宽度的计量测试。阐述了测试系统的主要组成和测试方法,给出了本测试系统测深结果的扩展不确定度。参考标准值与示值(或标称值)比对结果表明,被检多波束声纳测深示值误差小于0.2%,条带宽度误差小于7%。为规范水下声纳设备技术指标校准,指导多波束声纳计量标准建设提供参考。  相似文献   

17.
A new highly precise source of data has recently become available using multibeam sonar systems in hydrography. Multibeam sonar systems can provide hydrographic quality depth data as well as high-resolution seafloor sonar images. We utilize the seafloor backscatter strength data of each beam from multibeam sonar and the automatic classification technology so that we can get the seafloor type identification maps. In this article, analyzing all kinds of error effects in backscatter strength, data are based on the relationship between backscatter strength and seafloor types. We emphasize particularly analyzing the influences of local bottom slope and near nadir reflection in backscatter strength data. We also give the correction algorithms and results of these two influent factors. After processing the raw backscatter strength data and correcting error effects, we can get processed backscatter strength data which reflect the features of seafloor types only. Applying the processed backscatter strength data and mosaicked seafloor sonar images, we engage in seafloor classification and geomorphy interpretation in future research.  相似文献   

18.
Processing Multibeam Backscatter Data   总被引:1,自引:0,他引:1  
A new highly precise source of data has recently become available using multibeam sonar systems in hydrography. Multibeam sonar systems can provide hydrographic quality depth data as well as high-resolution seafloor sonar images. We utilize the seafloor backscatter strength data of each beam from multibeam sonar and the automatic classification technology so that we can get the seafloor type identification maps. In this article, analyzing all kinds of error effects in backscatter strength, data are based on the relationship between backscatter strength and seafloor types. We emphasize particularly analyzing the influences of local bottom slope and near nadir reflection in backscatter strength data. We also give the correction algorithms and results of these two influent factors. After processing the raw backscatter strength data and correcting error effects, we can get processed backscatter strength data which reflect the features of seafloor types only. Applying the processed backscatter strength data and mosaicked seafloor sonar images, we engage in seafloor classification and geomorphy interpretation in future research.  相似文献   

19.
A common problem in sonar system prediction is that the ocean environment is not well known. Utilizing probabilistic based results from geoacoustic inversions we characterize parameters relevant to sonar performance. This paper describes the estimation of transmission loss and its statistical properties based on posterior parameter probabilities obtained from inversion of ocean acoustic array data. This problem is solved by first finding an ensemble of relevant environmental model parameters and the associated posterior probability using a likelihood based inversion of the acoustic array data. In a second step, each realization of these model parameters is weighted with their posterior probability to map into the transmission loss domain. This approach is illustrated using vertical-array data from a recent benchmark data set and from data acquired during the Asian Seas International Acoustics Experiment (ASIAEX) 2001 in the East China Sea. The environmental parameters are first estimated using a probabilistic-based geoacoustic inversion technique. Based on the posterior probability that each of these environmental models fits the ocean acoustic array data, each model is mapped into transmission loss. This enables us to compute a full probability distribution for the transmission loss at selected frequencies, ranges, and depths, which potentially could be used for sonar performance prediction.  相似文献   

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