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1.
根据多波束测深系统边缘波束采集的异常数据云图,判别分析多波束测深系统的各误差源对边缘波束测深的影响,从理论上探讨声线折射所引起的测深误差与边缘波束角之间的关系,通过多波束测深工程实例的精度验证,结果表明:换能器安装的牢固程度和校准精度、测船定位和姿态改正与测深的时间同步性,对边缘波束的测深精度影响较大;声线剖面误差使得中央波束和边缘波束的测深偏浅或偏深,各波束的测深误差曲线呈现"哭脸"状或"笑脸"状,但对于各波束测深的综合精度,中央波束精度相对较高,两侧边缘波束精度相对较低。  相似文献   

2.
罗君 《海洋测绘》2018,(6):21-24
受声线弯曲的影响,多波束测深的边缘波束的数据质量较低,而单波束测深受声线弯曲的影响比较小。结合多波束覆盖面大和声速剖面误差对单波束影响相对较小的特点,研究了多波束和单波束的测深数据融合方法,利用同一位置单波束和多波束测深数据的差值,拟合一个与坐标位置相关的误差模型,并利用该误差曲面对多波束测深数据进行综合改正,从而提高多波束测深的数据质量。  相似文献   

3.
多波束测深数据质量受声速误差等因素影响较大,针对该情况,利用自适应卡尔曼滤波以相邻条带中央波束作为先验信息,对多波束测深数据进行改正。首先,以相邻条带的中央波束数据构建海底地形大致走向的趋势线作为先验信息,结合观测值与检查线测深值,得到观测值和先验信息的偏差;其次,利用卡尔曼滤波对观测值进行改正并对方法进行分析;最后,利用自适应卡尔曼滤波对多波束测深数据进行优化。实验表明:利用自适应卡尔曼滤波能够对声速整体误差影响的多波束测深数据进行有效改正。  相似文献   

4.
多波束测深数据存在横摇误差、纵摇误差、艏摇误差等,需进行校准。当前主要采用商业软件Caris进行人工手动校准,自动校准主要采用迭代最邻近算法等。针对Caris需要人工干预以及ICP容易陷入局部循环的缺陷,采用3D正态分布变换的配准方式,通过建立联合概率密度函数,采用似然函数建立匹配点云与目标点云之间转换关系。利用Hessian矩阵和梯度向量求最优化转换参数,完成多波束条带的自动校准。本文结合Caris中的人工配准结果,通过对3D-NDT算法匹配效果进行对比分析,验证了文中算法在平坦地区、斜坡区域等多种地形中都取得了更优的匹配效果,为实现多波束自动校准提供了重要的算法依据。  相似文献   

5.
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   

6.
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   

7.
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   

8.
系统总结了多波束测深点的误差源,给出了测深点误差估计模型。通过对Seabat 8101型多波束测深仪单呯测深点的误差影响估计,得出了各误差的传播影响规律及其影响量级,对多波束数据处理和测量成果质量评估具有一定的参考价值。  相似文献   

9.
高精度、全覆盖的多波束测深系统在我国资源调查专项和海洋区域地质调查中都发挥了重要的作用.根据长期对多波束系统的使用经验,分析了多波束测深系统的误差源以及如何减少误差源对多波束系统产生的影响.这些误差源主要包括运动传感器、艏向传感器、定位系统、声速传感器以及潮汐改正.  相似文献   

10.
多波束测深系统换能器的安装校准分析   总被引:3,自引:0,他引:3  
在多波束测深系统的换能器安装与使用过程中,由于无法保证换能器坐标系统与船体坐标系统完全重合,因此必须进行横摇、纵倾以及航向偏差校准与改正,使两者坐标系统相一致.详细分析了多波束测深系统换能器安装校准的原理和方法,以"亚美通道"海底光缆路由调查中,挪威 Simrad EM 3000 多波束测深系统的安装与校准为例,阐述了其安装校准方法及在海底地形测量中的应用.  相似文献   

11.
多波束水深测量中受潮汐因素的影响,测量垂直基准是变化的,具有瞬时性。传统多波束测量,需在测区内设立一个或多个验潮站进行同步水位观测,最终将水深归算到深度基准面上。针对多波束水深测量中垂直基准转换的复杂性问题,文中基于地球重力场模型,结合测区内实测的GNSS/水准数据,通过插值算法建立了测区范围内似大地水准面精化模型,构建了多波束无验潮水深测量的垂直基准转换模型。通过实例表明,该方法有效地消除了潮汐、动态吃水及涌浪等因素影响,直接获取深度基准面的水深值,提高工作效率,可满足近岸多波束水深测量的工作需求。  相似文献   

12.
给出了单波束测深的原理,分析了单波束观测数据预处理模型,提出了采用单波束测深成果检核机载激光数据质量的技术方法,并以我国自行研制的机载激光测深系统为例,给出了该系统在某海区试验数据的外部检核结果.针对两种测深手段之间明显存在系统性偏差的问题,提出了以单波束测深成果为控制,对机载激光测深数据系统偏差进行校正和补偿的处理方...  相似文献   

13.
Vertical errors often present in multibeam swath bathymetric data. They are mainly sourced by sound refraction, internal wave disturbance, imperfect tide correction, transducer mounting, long period heave, static draft change, dynamic squat and dynamic motion residuals, etc. Although they can be partly removed or reduced by specific algorithms, the synthesized depth biases are unavoidable and sometimes have an important influence on high precise utilization of the final bathymetric data. In order to confidently identify the decimeter-level changes in seabed morphology by MBES, we must remove or weaken depth biases and improve the precision of multibeam bathymetry further. The fixed-interval profiles that are perpendicular to the vessel track are generated to adjust depth biases between swaths. We present a kind of postprocessing method to minimize the depth biases by the histogram of cumulative depth biases. The datum line in each profile can be obtained by the maximum value of histogram. The corrections of depth biases can be calculated according to the datum line. And then the quality of final bathymetry can be improved by the corrections. The method is verified by a field test.  相似文献   

14.
Multibeam bathymetric system (MBS) has been widely applied in the marine surveying for providing high-resolution seabed topography. However, some factors degrade the precision of bathymetry, including the sound velocity, the vessel attitude, the misalignment angle of the transducer and so on. Although these factors have been corrected strictly in bathymetric data processing, the final bathymetric result is still affected by their residual errors. In deep water, the result usually cannot meet the requirements of high-precision seabed topography. The combined effect of these residual errors is systematic, and it’s difficult to separate and weaken the effect using traditional single-error correction methods. Therefore, the paper puts forward a new method for weakening the effect of residual errors based on the frequency-spectrum characteristics of seabed topography and multibeam bathymetric data. Four steps, namely the separation of the low-frequency and the high-frequency part of bathymetric data, the reconstruction of the trend of actual seabed topography, the merging of the actual trend and the extracted microtopography, and the accuracy evaluation, are involved in the method. Experiment results prove that the proposed method could weaken the combined effect of residual errors on multibeam bathymetric data and efficiently improve the accuracy of the final post-processing results. We suggest that the method should be widely applied to MBS data processing in deep water.  相似文献   

15.
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   

16.
A new bathymetric model for the central Fram Strait   总被引:1,自引:0,他引:1  
Based on data from R/V Polarstern multibeam sonar surveys between 1984 and 1997 high resolution bathymetry has been generated for the central Fram Strait. The area insonified covers approx. 36,500 km2 between 78–80°N and 0–7.5°E allowing the creation of a Digital Terrain Model (DTM) with 100 m grid spacing. The DTM was utilized for contouring and generation of a new series of bathymetric charts (AWI Bathymetric Charts of the Fram Strait, AWI BCFS) at a scale of 1:100,000. The paper starts with a brief introduction to the regional setting of the study area comprising information on the local links between bathymetry, sea ice transport and water mass exchange. The bathymetric feature names used in this article and how they were chosen is outlined. Next, the input data and processing applied are described. Thereafter the newly created grid and contour data are put into context with existing data sets. Finally the main bathymetric features of the area are characterized and the generated data products available for public disposal are specified.  相似文献   

17.
We present a large-scale quantitative test of a hyperspectral remote-sensing reflectance algorithm. We show that coastal bathymetry can be adequately derived through model inversions using data from the Airborne Visible-Infrared Imaging Spectrometer instrument. Data are analyzed from a shore-perpendicular transect 5 km offshore Sarasota, Florida at water depths ranging from 10 m to 15.5 m. Derived bottom depths are compared to a high-resolution multibeam bathymetry survey. Model-derived depths are biased 4.9% shallower than the mean of the multibeam depths with an RMS error of 7.83%. These results suggest that the model performs well for retrieving bottom depths from hyperspectral data in subtropical coastal areas in water depths ranging from 10 m to 15.5 m.  相似文献   

18.
A computer code that simulates multibeam echo‐sounding over realistic (three‐dimensional) bathymetry was used to compare available sounding systems. Two‐dimensional modeling dealt with the resolution of seafloor bathymetry and with the effect of postprocessing algorithms for some typical multibeam systems. The 2‐D bathymetric inputs were idealized bottom features. Three‐dimensional modeling dealt with the gross character of the seafloor, as detected by echo‐sounding systems. The 3‐D bathymetric inputs were realizations of terrain generated by a stochastic model of seafloor roughness. Three‐dimensional modeling indicated that the sounding system may slightly shift the location of peaks within the beam footprint. In addition, the simulated measurements were more sensitive to low‐wavenumber features (i.e., large‐scale roughness) than to high‐wavenumber features (i.e., small‐scale roughness). Resolution gradually decreased with increasing distance from centerline, due to the increasing footprint size of beams at increasing angular distance from the vertical. Lineated terrain was also smoothed by simulated echo‐sounding; lineations may indeed remain undetected if sounding system parameters are not properly selected. Inversion of the simulated measurements indicated that echo‐sounding measurements are dependent not only on the characteristics of the sounding system itself, but on other factors such as the character of the roughness and the orientation of the survey relative to the strike of lineations. The modeling technique provides a way to quantify the system response of a multibeam echo‐sounding system. This work resulted in recommendations as to the most appropriate system for an application in an area of rough bathymetry, and it led to the establishment of criteria for comparing multibeam systems in future applications.  相似文献   

19.
针对多波束水深数据中存在的系统性残余误差,提出了基于经验模态分解方法来削弱残余误差的方法:首先利用经验模态分解方法对多波束测深数据作一维分解,将非线性、非平稳的多波束测深数据分解成准线性子波,然后构建水深数据趋势项与残余项,利用中央波束趋势项建立整体数据趋势项,最后加以水深数据残余项还原海底地形,削弱残余误差影响。通过实测多波束测深数据验证方法的有效性。  相似文献   

20.
基于多源水深数据融合的海底高精度地形重建   总被引:2,自引:0,他引:2  
本文在研究多源水深数据构建技术的基础上,分析了张力样条插值算法和“移去-恢复”法的多源水深数据融合处理技术,基于该方法选取实验区,利用多波束、单波束、历史海图等多源水深数据进行高精度海底地形融合试验,并针对多源水深融合技术缺少误差评估的现状,利用split-sample方法对融合结果进行水深不确定性评估,形成融合结果的可靠性空间分布。结果表明该方法无论是在数据稀疏区还是高密度区都达到了较好的融合效果,既保留了高分辨率水深数据的细节信息,又较真实的反映了研究区海底地形特征,且构建的海底地形精度可靠,误差百分比集中在0.5%。本文整套数据融合和结果评估方法可为多源水深数据融合的海底高精度地形构建提供借鉴和参考。  相似文献   

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