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1.
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   

2.
船载低频多波束测深声纳、侧扫声纳可以对深海海底地形地貌进行快速、高效、大面积探测,但其测量精度有限,难以满足深海科学考察、资源勘探开发对高精度海底地形地貌的需求。随着各类大深度水下移动载体(如深海拖体、水下机器人、遥控潜器和载人潜水器)的涌现,特别是各类耐高压测绘声纳的商业化,使大深度近海底精细地形地貌探测成为可能。首先分析了多波束测深声纳、侧扫声纳和测深侧扫声纳等3种测绘声纳的基本原理,然后分别介绍了各类测绘声纳的国内外典型商业化产品,并通过典型实例分析了其在大深度近海底精细测绘中的应用情况。  相似文献   

3.
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   

4.
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   

5.
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   

6.
多波束测深质量评价方法分析   总被引:1,自引:0,他引:1  
肖波  盛堰  刘胜旋 《海洋测绘》2013,33(3):56-58
利用Caris多波束处理软件、Global Mapper图形处理和Surfer处理软件中三角网网格化的方法来处理多波束水深数据,从整个测量范围来做水深准确度检验,由传统的水深数据处理线统计发展到面统计,能更有效的评价多波束资料的质量,提高质量控制的水平。  相似文献   

7.
介绍了投弃式温盐深测量仪(XCTD)的原理和特点,利用它获得的声速剖面数据与声速剖面仪测量的声速剖面数据进行了精度对比,论述了在特殊环境下,利用多波束测深系统进行海底地形测量时,使用XCTD进行声速剖面测量的优势,解决了测量船停车才能进行声速剖面测量的弊端,显著提高了多波束测深系统作业的效率。  相似文献   

8.
台湾岛西南海域福尔摩沙海脊冷泉区地形地貌特征分析   总被引:2,自引:0,他引:2  
利用水深数据和ROV近海底影像资料,对福尔摩沙海脊冷泉区的海底地形地貌和冷泉系统的海底表征进行了描述和分析,并讨论了二者之间的响应关系。结果表明,相对于船载多波束数据而言,近海底多波束测深系统所获得的数据能更高精度地反映冷泉区海底地形地貌特征,是研究冷泉系统不可或缺的基础资料。基于ROV近海底观测影像资料,福尔摩沙海脊冷泉系统整体表现为局部被化能自养生物群落覆盖并有流体喷口零星分布的巨大自生碳酸盐岩岩丘,海底表征主要包括形态各异的自生碳酸盐岩结壳或岩体、化能自养生物群落、流体喷口、还原性沉积物等几种形式。研究表明,福尔摩沙海脊冷泉区的地形地貌特征与冷泉系统海底表征具有良好的响应关系,并且该区的地形地貌特征主要受控于出露于海底的自生碳酸盐岩的形态特征及规模。首次揭示了福尔摩沙海脊冷泉区地形地貌特征与其海底表征之间的响应关系,以期为后续的冷泉研究提供必要的背景资料支持。  相似文献   

9.
The filtering and compressing of outer beams to multibeam bathymetric data   总被引:1,自引:0,他引:1  
Some errors and noises are often present in multibeam swath bathymetric data. Echo detection error (EDE) is one of the main errors. It causes the depth error to become bigger in outer beams and looks like sound refraction. But depth errors due to EDEs have a trumpet-shaped appearance, instead of a curved appearance that is caused by the sound refraction errors. EDEs, including systematic acoustic signal detection errors and internal noises, cannot be removed during the correction of sound refraction. It causes depth inconsistencies between adjacent swaths and degrades precision of outer beams. Sometimes, the bathymetric errors caused by EDEs do not even meet the requirements of IHO (International Hydrographic Organization). Therefore, a post-processing method is presented to minimize the EDEs by filtering outliers and compressing outer beams of multibeam bathymetric data. The outliers caused by internal noises are removed by an automatic filter algorithm first. Then the outer beams are compressed to reduce systematic acoustic signal detection errors according to their depths, the calculated depth line and standard deviations (SDs). The automatic filter process is important for calculating the depth line. The selection of inner beams to calculate the average SD of beam depths is crucial to achieving compressing goals. The quality of final bathymetric data in outer beams can be improved by these steps. The method is verified by a field test.  相似文献   

10.
莱州湾东部沙波地貌分布特征及其形成演化   总被引:1,自引:0,他引:1  
由2009年海底地形地貌调查资料,对莱州湾东部海底沙波的分布和形成进行探讨研究。结果发现:该地区发育大面积海底沙波地形,沙波主要为二维直线型沙波,陡峭度为0.001,对称指数为1.2,对称指数较好。沙波的形成和海底坡度以及水深有密切关系,在平坦海底易于形成,且与水深有一定的负相关关系。莱州湾东部沙波是10m等深线的古海...  相似文献   

11.
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   

12.
Hydrographic quality bathymetry and quantitative acoustic backscatter data are now being acquired in shallow water on a routine basis using high frequency multibeam sonars. The data provided by these systems produce hitherto unobtainable information about geomorphology and seafloor geologic processes in the coastal zone and on the continental shelf.Before one can use the multibeam data for hydrography or quantitative acoustic backscatter studies, however, it is essential to be able to correct for systematic errors in the data. For bathymetric data, artifacts common to deep-water systems (roll, refraction, positioning) need to be corrected. In addition, the potentially far greater effects of tides, heave, vessel lift/squat, antenna motion and internal time delays become of increasing importance in shallower water. Such artifacts now cause greater errors in hydrographic data quality than bottom detection. Many of these artifacts are a result of imperfect motion sensing, however, new methods such as differential GPS hold great potential for resolving such limitations. For backscatter data, while the system response is well characterised, significant post processing is required to remove residual effects of imaging geometry, gain adjustments and water column effects. With the removal of these system artifacts and the establishment of a calibrated test site in intertidal regions (where the seabed may be intimately examined by eye) one can build up a sediment classification scheme for routine regional seafloor identification.When properly processed, high frequency multibeam sonar data can provide a view of seafloor geology and geomorphology at resolutions of as little as a few decimetres. Specific applications include quantitative estimation of sediment transport rates in large-scale sediment waves, volume effects of iceberg scouring, extent and style of seafloor mass-wasting and delineation of structural trends in bedrock. In addition, the imagery potentially provides a means of quantitative classification of seafloor lithology, allowing sedimentologists the ability to examine spatial distributions of seabed sediment type without resorting to subjective estimation or prohibitively expensive bottom-sampling programs. Using Simrad EM100 and EM1000 sonars as an example, this paper illustrates the nature and scale of possible artifacts, the necessary post-processing steps and shows specific applications of these sonars.  相似文献   

13.
SeaBeam2100多波束系统的声速误差分析   总被引:1,自引:0,他引:1  
声速是多波束测深系统进行水深测量的重要参数。以SeaBeam2100多波束系统为例,结合实测资料,以MB-system多波束处理软件为辅助,对声速数据进行了分析,并深入探讨了声速剖面对SeaBeam2100多波束系统测深精度所产生的影响。研究表明,声速(尤其是表层声速)对所测水深的精确度起着关键作用。合理的声速剖面是获得高精度多波束测深资料的基本保证。  相似文献   

14.
多波束水深测量误差源分析与成果质量评定   总被引:1,自引:0,他引:1       下载免费PDF全文
结合多波束测深系统在海洋水深测量实际生产中的应用,分析了受复杂海洋动态环境以及仪器自身原因等内外部因素影响易产生的各种粗差和系统性偏差,探讨了适用于多波束测深系统获取的水深测量成果的质量控制和检验指标,制定了涵盖多波束测深数据采集、处理、成果制作、验收等全过程的质量检验方案。  相似文献   

15.
为了改善多波束声纳的分辨率,提出了一种基于相干原理的测深新算法,对每一个波束脚印内的信号进行相干处理,获得了大量的海底深度值。在此基础上,采用新算法对仿真数据和某型号多波束测深声纳湖上实验数据进行处理。结果表明,相对于传统多波束测深算法,该算法可显著提高声纳海底测量的分辨率,获得大量的海底深度测量值。  相似文献   

16.
波束角偏差是影响多波束系统测量精度的因素之一,严重时导致测量的海底地形成凸凹形状的伪地形。论述了波束角偏差产生的原因以及对多波束系统测量精度的影响,介绍了借用EM系列多波束系统配置的横向参数校准软件对波束角偏差进行校正的方法,经实际应用,该方法很好地校正了波束角偏差,提高了测量数据的精度。  相似文献   

17.
海底地形不易进行实地探测及核实,海底地形格网数据产品精度指标的确定不具备实地核实的条件,为了确定海底地形格网数据精度指标,通过大量的数据实验,分析得出单位面积内,一定比例的极值水深差值的平均值与海底地形之间有一定的线性关系,从而提出了通过单位面积水深插值来划分海底地形的一种量化方式,并依据实验数据,分析误差规律,给出了海底地形格网数据中误差的精度指标及方法。  相似文献   

18.
多波束勘测的特殊地形处理   总被引:3,自引:2,他引:1  
张异彪 《海洋测绘》2004,24(3):16-19
海底特殊地形在多波束勘测后处理时经常遇到但又极易被忽视,导致具有重要地学和工程意义的特殊地形未能被反映在成果图上。通过分析后处理中的常见问题,提出了利用水深残差法搜索定位多波束海量数据中存在的局部特殊地形,进而提取特殊地形的水深浅点和深点的处理方法。该方法在国家海洋勘测专项中取得了很好的应用效果。  相似文献   

19.
The maximum error in ocean depth measurement as specified by the International Hydrographic Organization is 1% for depth greater than 30m. Current acoustic multibeam bathymetric systems used for depth measurement are subject to errors from various sources which may significantly exceed this limit. The lack of sound speed profiles may be one significant source of error. Because of the limited ability of sound speed profile measurement, depth values are usually estimated using an assumed profile. If actual sound speed profiles are known, depth estimate errors can be corrected using ray-tracing methods. For depth measurements, the calculation of the location at which a sound pulse impinges on the sea bottom varies with the variation of the sound speed profile. We demonstrate that this location is almost unchanged for a family of sound speed profiles with the same surface value and the same area under them. Based on this observation, we can construct a simple constant-gradient equivalent sound speed profile to correct errors. Compared with ray-tracing methods, the equivalent sound speed profile method is more efficient. If a vertical depth is known (or independently measured), then depth correction for a multibeam system can be accomplished without knowledge of the actual sound speed profile. This leads to a new type of precise acoustic multibeam bathymetric system.  相似文献   

20.
Precise Multibeam Acoustic Bathymetry   总被引:7,自引:0,他引:7  
The maximum error in ocean depth measurement as specified by the International Hydrographic Organization is 1% for depth greater than 30m. Current acoustic multibeam bathymetric systems used for depth measurement are subject to errors from various sources which may significantly exceed this limit. The lack of sound speed profiles may be one significant source of error. Because of the limited ability of sound speed profile measurement, depth values are usually estimated using an assumed profile. If actual sound speed profiles are known, depth estimate errors can be corrected using ray-tracing methods. For depth measurements, the calculation of the location at which a sound pulse impinges on the sea bottom varies with the variation of the sound speed profile. We demonstrate that this location is almost unchanged for a family of sound speed profiles with the same surface value and the same area under them. Based on this observation, we can construct a simple constant-gradient equivalent sound speed profile to correct errors. Compared with ray-tracing methods, the equivalent sound speed profile method is more efficient. If a vertical depth is known (or independently measured), then depth correction for a multibeam system can be accomplished without knowledge of the actual sound speed profile. This leads to a new type of precise acoustic multibeam bathymetric system.  相似文献   

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