Second CUBE Filtering Algorithm and Its Application in Sounding Data Processing of Slope Riprap Area
Traditional CUBE (combined uncertainty bathymetry estimation) filter generally fails to estimate the depth of the water accurately, and produces blur terrain feature in underwater slope riprap area by the multi-beam sounding data filtering with poor ability to remove gross error.Based on the soundin...
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2018-11-01
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doaj-9a8611e9726a41f4a89808d9d4c152c72020-11-24T21:49:51ZzhoSurveying and Mapping PressActa Geodaetica et Cartographica Sinica1001-15951001-15952018-11-0147111549155710.11947/j.AGCS.2018.201703542018110354Second CUBE Filtering Algorithm and Its Application in Sounding Data Processing of Slope Riprap AreaZHENG Yongxin0ZHANG Hongmei1ZHAO Jianhu2School of Geodesy and Geomatics, Wuhan University, Wuhan 430079, ChinaSchool of Electrical Engineering and Automation, Wuhan Universality, Wuhan 430072, ChinaSchool of Geodesy and Geomatics, Wuhan University, Wuhan 430079, ChinaTraditional CUBE (combined uncertainty bathymetry estimation) filter generally fails to estimate the depth of the water accurately, and produces blur terrain feature in underwater slope riprap area by the multi-beam sounding data filtering with poor ability to remove gross error.Based on the sounding data characteristics of slope riprap area, a secondary CUBE filtering algorithm is proposed. The key idea is to estimate the plane position and depth synchronously, taking account of the transfer model of plane and water depth uncertainty related to terrain gradient. It is based on the second depth estimation model which considers geometric gradient and an optimization method of reference depth to accurately estimate the depth of water in underwater riprap areas and to detect gross error automatically.A set of meaningful experiments are also presented. And the experimental results have shown that the proposed method provides an automatic and accurate elimination for gross error. Specifically, the accuracy of the proposed algorithm is a few times higher than that of the traditional CUBE. It also demonstrates that the proposed filter shows superiority in preserving terrain features with better efficiency and robustness.http://html.rhhz.net/CHXB/html/2018-11-1549.htmCUBE filteringslope riprap areamulti-beam sounding point cloudplane position estimationsecond CUBE filtering |
collection |
DOAJ |
language |
zho |
format |
Article |
sources |
DOAJ |
author |
ZHENG Yongxin ZHANG Hongmei ZHAO Jianhu |
spellingShingle |
ZHENG Yongxin ZHANG Hongmei ZHAO Jianhu Second CUBE Filtering Algorithm and Its Application in Sounding Data Processing of Slope Riprap Area Acta Geodaetica et Cartographica Sinica CUBE filtering slope riprap area multi-beam sounding point cloud plane position estimation second CUBE filtering |
author_facet |
ZHENG Yongxin ZHANG Hongmei ZHAO Jianhu |
author_sort |
ZHENG Yongxin |
title |
Second CUBE Filtering Algorithm and Its Application in Sounding Data Processing of Slope Riprap Area |
title_short |
Second CUBE Filtering Algorithm and Its Application in Sounding Data Processing of Slope Riprap Area |
title_full |
Second CUBE Filtering Algorithm and Its Application in Sounding Data Processing of Slope Riprap Area |
title_fullStr |
Second CUBE Filtering Algorithm and Its Application in Sounding Data Processing of Slope Riprap Area |
title_full_unstemmed |
Second CUBE Filtering Algorithm and Its Application in Sounding Data Processing of Slope Riprap Area |
title_sort |
second cube filtering algorithm and its application in sounding data processing of slope riprap area |
publisher |
Surveying and Mapping Press |
series |
Acta Geodaetica et Cartographica Sinica |
issn |
1001-1595 1001-1595 |
publishDate |
2018-11-01 |
description |
Traditional CUBE (combined uncertainty bathymetry estimation) filter generally fails to estimate the depth of the water accurately, and produces blur terrain feature in underwater slope riprap area by the multi-beam sounding data filtering with poor ability to remove gross error.Based on the sounding data characteristics of slope riprap area, a secondary CUBE filtering algorithm is proposed. The key idea is to estimate the plane position and depth synchronously, taking account of the transfer model of plane and water depth uncertainty related to terrain gradient. It is based on the second depth estimation model which considers geometric gradient and an optimization method of reference depth to accurately estimate the depth of water in underwater riprap areas and to detect gross error automatically.A set of meaningful experiments are also presented. And the experimental results have shown that the proposed method provides an automatic and accurate elimination for gross error. Specifically, the accuracy of the proposed algorithm is a few times higher than that of the traditional CUBE. It also demonstrates that the proposed filter shows superiority in preserving terrain features with better efficiency and robustness. |
topic |
CUBE filtering slope riprap area multi-beam sounding point cloud plane position estimation second CUBE filtering |
url |
http://html.rhhz.net/CHXB/html/2018-11-1549.htm |
work_keys_str_mv |
AT zhengyongxin secondcubefilteringalgorithmanditsapplicationinsoundingdataprocessingofsloperipraparea AT zhanghongmei secondcubefilteringalgorithmanditsapplicationinsoundingdataprocessingofsloperipraparea AT zhaojianhu secondcubefilteringalgorithmanditsapplicationinsoundingdataprocessingofsloperipraparea |
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1725886992046096384 |