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Measurement of Coordinate Parameter by Multi-baseline Digital Close-range Photogrammetry System and Data Analysis for Jujube 被引量:2
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作者 田璐洋 李春友 +1 位作者 孟平 张劲松 《Agricultural Science & Technology》 CAS 2011年第5期756-760,共5页
[Objective] The aim was to explore the measurement of coordinate parameter by multi-baseline digital close-range photogrammetry system.[Method] The 3-dimensional coordinate of 8-year-old Jujube was measured by using L... [Objective] The aim was to explore the measurement of coordinate parameter by multi-baseline digital close-range photogrammetry system.[Method] The 3-dimensional coordinate of 8-year-old Jujube was measured by using Lensphoto multi-baseline digital close-range photogrammetry system,and through comparing with measured data of Total Station,the error and accuracy of photogrammetry data were analyzed.[Result] The absolute error of X,Y and Z coordinate was 0-0.014,0-0.018 and 0-0.004 m respectively,and the relative error of X,Y and Z coordinate was less than 0.145%.The significance test of pairs for the photogrammetry data and measured data of Total Station indicated that the space coordinate data of stumpage were accurately measured by using the multi-baseline digital close-range photogrammetry method,and the photogrammetry data meet the need of space coordinate measurement for virtual plant growth simulation.[Conclusion] This study had provided theoretical basis for the growth measurement of virtual plant growth simulation. 展开更多
关键词 JUJUBE Space coordinate Multi-baseline digital close-range photogrammetry Error analysis
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Enhancing stem volume estimation for savanna species using variable-exponent taper equation and close-range photogrammetry
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作者 Finagnon Gabin Laly Gilbert Atindogbe +2 位作者 Gbedonou Michee Amos Sohou Hospice Afouda Akpo Noel Houedougbe Fonton 《Forest Ecosystems》 2025年第4期742-749,共8页
Stem volume estimation is crucial in forest ecology and management,particularly for timber harvesting strategies and carbon stock assessments.This study aimed to develop a variable-exponent taper equation specifically... Stem volume estimation is crucial in forest ecology and management,particularly for timber harvesting strategies and carbon stock assessments.This study aimed to develop a variable-exponent taper equation specifically tailored to savanna tree species using close-range photogrammetry(CRP)data and to evaluate its performance against conventional volume equations for stem volume estimation.A dataset of 30 trees across five dominant savanna species was used to fit the taper model,which was validated using a separate dataset of 322 trees from 14 species.The results demonstrated significant improvements in volume estimation accuracy when using the taper equation.At the tree level,the root mean square error(RMSE)decreased by 47%,from 598 to 319 dm^(3),and the mean absolute bias(MAB)by 48%,from 328 to 172 dm3,compared to volume equations.Similarly,at the plot level,RMSE was reduced by 42% and MAB by 40%.The model performed well for species with regular forms.However,species with irregular tapers exhibited higher errors,reflecting the challenges of modeling stem forms of mixed species.The use of CRP proved valuable,providing high-resolution diameter measurements that improved model parameterization.This study underscores the importance of advanced data collection methods for enhancing taper model accuracy and suggests that further species-specific adjustments are needed to improve performance for species with irregular forms.The findings support the broader application of taper equations for improving stem volume estimates in savanna ecosystems,contributing to better forest management and resource monitoring practices. 展开更多
关键词 close-range sensing close-range photogrammetry Stem taper equation Stem volume Savanna tree species
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Urban Geospatial Information Acquisition Mobile Mapping System based on close-range photogrammetry and IGS site calibration 被引量:2
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作者 Ming Guo Yuquan Zhou +3 位作者 Jianghong Zhao Tengfei Zhou Bingnan Yan Xianfeng Huang 《Geo-Spatial Information Science》 SCIE EI CSCD 2021年第4期558-579,共22页
The measurement accuracy of the Mobile Mapping System (MMS) is the main problem, which restricts its development and application, so how to calibrate the MMS to improve its measure-ment accuracy has always been a rese... The measurement accuracy of the Mobile Mapping System (MMS) is the main problem, which restricts its development and application, so how to calibrate the MMS to improve its measure-ment accuracy has always been a research hotspot in the industry. This paper proposes a position and attitude calibration method with error correction based on the combination of the feature point and feature surface. First, the initial value of the spatial position relation-ship between each sensor of MMS is obtained by close-range photogrammetry. Second, the optimal solution for error correction is calculated by feature points in global coordinates jointly measured with International GNSS Service (IGS) stations. Then, the final transformation para-meters are solved by combining the initial values obtained originally, thereby realizing the rapid calibration of the MMS. Finally, it analyzed the RMSE of MMS point cloud after calibration, and the results demonstrate the feasibility of the calibration approach proposed by this method. Under the condition of a single measurement sensor accuracy is low, the plane and elevation absolute accuracy of the point cloud after calibration can reach 0.043 m and 0.072 m, respectively, and the relative accuracy is smaller than 0.02 m. It meets the precision require-ments of data acquisition for MMS. It is of great significance for promoting the development of MMS technology and the application of some novel techniques in the future, such as auton-omous driving, digital twin city, urban brain et al. 展开更多
关键词 Mobile Mapping System(MMS) close-range photogrammetry International GNSS Service(IGS) MMS calibration accuracy evaluation
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An efficient and accurate numerical method for simulating close-range blast loads of cylindrical charges based on neural network 被引量:1
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作者 Ting Liu Changhai Chen +2 位作者 Han Li Yaowen Yu Yuansheng Cheng 《Defence Technology(防务技术)》 2025年第2期257-271,共15页
To address the problems of low accuracy by the CONWEP model and poor efficiency by the Coupled Eulerian-Lagrangian(CEL)method in predicting close-range air blast loads of cylindrical charges,a neural network-based sim... To address the problems of low accuracy by the CONWEP model and poor efficiency by the Coupled Eulerian-Lagrangian(CEL)method in predicting close-range air blast loads of cylindrical charges,a neural network-based simulation(NNS)method with higher accuracy and better efficiency was proposed.The NNS method consisted of three main steps.First,the parameters of blast loads,including the peak pressures and impulses of cylindrical charges with different aspect ratios(L/D)at different stand-off distances and incident angles were obtained by two-dimensional numerical simulations.Subsequently,incident shape factors of cylindrical charges with arbitrary aspect ratios were predicted by a neural network.Finally,reflected shape factors were derived and implemented into the subroutine of the ABAQUS code to modify the CONWEP model,including modifications of impulse and overpressure.The reliability of the proposed NNS method was verified by related experimental results.Remarkable accuracy improvement was acquired by the proposed NNS method compared with the unmodified CONWEP model.Moreover,huge efficiency superiority was obtained by the proposed NNS method compared with the CEL method.The proposed NNS method showed good accuracy when the scaled distance was greater than 0.2 m/kg^(1/3).It should be noted that there is no need to generate a new dataset again since the blast loads satisfy the similarity law,and the proposed NNS method can be directly used to simulate the blast loads generated by different cylindrical charges.The proposed NNS method with high efficiency and accuracy can be used as an effective method to analyze the dynamic response of structures under blast loads,and it has significant application prospects in designing protective structures. 展开更多
关键词 close-range air blast load Cylindrical charge Numerical method Neural network CEL method CONWEP model
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Determination Method for Shear Strength Parameters of Rock-Soil Mixtures Using Close-Range Photogrammetry and 3-D Limit Equilibrium Theory 被引量:3
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作者 ZHOU Jia-wen YANG Xing-guo YANG Zhao-hui 《Journal of Mountain Science》 SCIE CSCD 2015年第5期1068-1083,共16页
Using a combination of close-range photogrammetry and three-dimensional(3-D) limit equilibrium theory, a determination method for the shear strength parameters of rock-soil mixture is presented. A close-range photogra... Using a combination of close-range photogrammetry and three-dimensional(3-D) limit equilibrium theory, a determination method for the shear strength parameters of rock-soil mixture is presented. A close-range photogrammetry method is used for measurement of the 3-D terrain of the experimental target. Auto CAD Lisp and EXCEL VBA are used to perform 3-D limit equilibrium analysis of the stability of sliding mass and perform backanalysis of shear strength parameters. The presented method was used to determine the shear strength parameters of rock-soil mixtures at the Liyuan Hydropower Station. The 3-D terrain of sliding surface could be measured notably well using of closerange photogrammetry. The computed results reveal that the cohesion and friction angle of rock-soil mixtures were 3.15 k Pa and 29.88o for test A, respectively, and 4.43 k Pa and 28.30o for test B, respectively, within the range of shear strength parameters, as determined by field and laboratory tests. The computation of shear strength parameters is influenced by the mesh grid number, especially the cohesion of the rock-soil mixture. The application of close-range photogrammetry can reduce the siteworks and improve the computational efficiency and accuracy. 展开更多
关键词 Rock-soil mixtures In-situ horizontalpush-shear test photogrammetry Limit equilibrium Shear strength parameters
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Direct Creation of Construction Drawings for Kwan-yin Statue by Close-Range Photogrammetry
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作者 FENG Wenhao LI Xin JIANG Wanshou GAO Xinqiaoprofessor,Ph.D supervisor,School of Remote Sensing and Information Engineering,Wuhan University,129 Luoyu Road,Wuhan 430079,China. 《Geo-Spatial Information Science》 2002年第3期58-64,共7页
In order to provide the model point accuracy of ±2 mm,an extra high accuracy industrial control net with four surveying piers with accuracy ±0.1 mm was set up around the model.Tens of orientation marks have ... In order to provide the model point accuracy of ±2 mm,an extra high accuracy industrial control net with four surveying piers with accuracy ±0.1 mm was set up around the model.Tens of orientation marks have been placed on the different parts and measured with accuracy ±0.2 mm from the above_mentioned piers.The main four stereopairs taken with the P31 camera around the model are simultaneously processed on the BC2 analytical plotter.The accuracy of absolute orientation is better than ±0.9 mm.Finally,about 300 sections construction drawings have been directly offered,and the close_range photogrammetric data has been used for the design and construction of the statue. 展开更多
关键词 closerange photogrammetry Kwanyin STATUE construction DRAWING industrial control NET high ACCURACY
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Digital close-range photogrammetric application to small-scale physical simulation experiment
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作者 LI Chun-yi CUI Xi-min YU Yi-ju 《中国有色金属学会会刊:英文版》 CSCD 2011年第S3期681-685,共5页
In order to research the possibility of digital close-range photogrammetric surveying in small scale physical simulation experiment,physical model coinciding with engineering practice was constructed based on similar ... In order to research the possibility of digital close-range photogrammetric surveying in small scale physical simulation experiment,physical model coinciding with engineering practice was constructed based on similar theory.The datum processing method and surveying precision of digital close-range photogrammetric were analyzed.And the function relationship between overburden subsidence factor qr and the ratio z/H of stratum horizon z and mining depth H was researched.The results show that surveying points position mean error along horizontal direction is±0.131 mm and vertical direction is±0.192 mm.Therefore,multi-taking station cross direction digital close-range photogrammetric can completely satisfy the precision need of physical simulation experiment.And the empirical formula can be utilized to represent evolution law of stratum subsidence factor. 展开更多
关键词 close-range photogrammetric physical simulation light-rays adjustment surveying precision subsidence factor
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Characteristics and close-range exploration methods of near- Earth asteroid 2016HO_(3) 被引量:1
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作者 He Zhang Fei Li +3 位作者 Linzhi Meng Fuming Zeng Xiaoyu Jia Yu’ang Liu 《Astronomical Techniques and Instruments》 CSCD 2024年第1期42-51,共10页
The characteristics of asteroids are vital parameters for planning asteroid exploration missions.These characteristics have been explored in close range for some typical asteroids,and are summarized in the article.Thi... The characteristics of asteroids are vital parameters for planning asteroid exploration missions.These characteristics have been explored in close range for some typical asteroids,and are summarized in the article.This allows estimates of the characteristics of asteroid 2016HO_(3),the target of the first Chinese asteroid exploration mission,Tianwen 2.We obtain 80 characteristic parameters in 9 categories and analyze their impacts on the mission.By comparing three close-range exploration modes,we provide advantages and disadvantages of each,and propose suitable methods for the exploration of 2016HO_(3).Owing to the weak gravity and small size of 2016HO_(3),a combination of multiple hovering positions and active orbiting is recommended for scientific exploration. 展开更多
关键词 Near-Earth asteroid 2016HO_(3) Tianwen 2 close-range exploration CHARACTERISTICS
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Analytic optimal pose tracking control in close-range proximity operations with a non-cooperative target 被引量:1
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作者 Caisheng WEI Guanhua HUANG +1 位作者 Zeyang YIN Qifeng CHEN 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2024年第5期410-425,共16页
This paper investigates an analytical optimal pose tracking control problem for chaser spacecraft during the close-range proximity operations with a non-cooperative space target subject to attitude tumbling and unknow... This paper investigates an analytical optimal pose tracking control problem for chaser spacecraft during the close-range proximity operations with a non-cooperative space target subject to attitude tumbling and unknown orbital maneuvering.Firstly,the relative translational motion between the orbital target and the chaser spacecraft is described in the Line-of-Sight(LOS)coordinate frame along with attitude quaternion dynamics.Then,based on the coupled 6-Degree of Freedom(DOF)pose dynamic model,an analytical optimal control action consisting of constrained optimal control value,application time and its duration are proposed via exploring the iterative sequential action control algorithm.Meanwhile,the global closed-loop asymptotic stability of the proposed predictive control action is presented and discussed.Compared with traditional proximity control schemes,the highlighting advantages are that the application time and duration of the devised controller is applied discretely in light of the influence of the instantaneous pose configuration on the pose tracking performance with less energy consumptions rather than at each sample time.Finally,three groups of illustrative examples are organized to validate the effectiveness of the proposed analytical optimal pose tracking control scheme. 展开更多
关键词 Optimal control close-range proximity operation Non-cooperative space target Coupled attitude and orbit control Iterative sequential action control
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A Comparative Experimental Study on the Blast-Resistant Performances of Single and Multi-Layered Thin Plates Under Close-Range Airblast Loading
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作者 陈长海 朱锡 +3 位作者 张立军 侯海量 沈晓乐 唐廷 《China Ocean Engineering》 SCIE EI CSCD 2013年第4期523-535,共13页
The performance of multilayered thin steel plates subjected to close-range air blasts has been experimentally studied and compared with that of monolithic plates made of the same material and having equal mass. In pre... The performance of multilayered thin steel plates subjected to close-range air blasts has been experimentally studied and compared with that of monolithic plates made of the same material and having equal mass. In present experiments, multilayered plates are in-contact four-layered thin steel plates and two types of deformation/failure modes were observed for them. Comparisons concerning deformation/failure modes, strain distributions and energy absorptions between the multilayered plate and its monolithic counterpart were conducted. It is found that the multilayered plate is much superior to its monolithic counterpart in the ability to deform against blast loading. Furthermore, under intense airblast loading, the multilayered plate can not only absorb much more energy but also effectively reduce the secondary destruction ability of structural fragments in comparison with its monolithic counterpart. 展开更多
关键词 explosion mechanics comparative experiment multilayeredplates blastperformance close-range airblast
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Transforming Education with Photogrammetry:Creating Realistic 3D Objects for Augmented Reality Applications
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作者 Kaviyaraj Ravichandran Uma Mohan 《Computer Modeling in Engineering & Sciences》 SCIE EI 2025年第1期185-208,共24页
Augmented reality(AR)is an emerging dynamic technology that effectively supports education across different levels.The increased use of mobile devices has an even greater impact.As the demand for AR applications in ed... Augmented reality(AR)is an emerging dynamic technology that effectively supports education across different levels.The increased use of mobile devices has an even greater impact.As the demand for AR applications in education continues to increase,educators actively seek innovative and immersive methods to engage students in learning.However,exploring these possibilities also entails identifying and overcoming existing barriers to optimal educational integration.Concurrently,this surge in demand has prompted the identification of specific barriers,one of which is three-dimensional(3D)modeling.Creating 3D objects for augmented reality education applications can be challenging and time-consuming for the educators.To address this,we have developed a pipeline that creates realistic 3D objects from the two-dimensional(2D)photograph.Applications for augmented and virtual reality can then utilize these created 3D objects.We evaluated the proposed pipeline based on the usability of the 3D object and performance metrics.Quantitatively,with 117 respondents,the co-creation team was surveyed with openended questions to evaluate the precision of the 3D object created by the proposed photogrammetry pipeline.We analyzed the survey data using descriptive-analytical methods and found that the proposed pipeline produces 3D models that are positively accurate when compared to real-world objects,with an average mean score above 8.This study adds new knowledge in creating 3D objects for augmented reality applications by using the photogrammetry technique;finally,it discusses potential problems and future research directions for 3D objects in the education sector. 展开更多
关键词 Augmented reality education immersive learning 3D object creation photogrammetry and StructureFromMotion
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Improvement of photogrammetric joint roughness coefficient value by integrating automatic shooting parameter selection and composite error model
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作者 Qinzheng Yang Ang Li +2 位作者 Feng Dai Zhen Cui Hongtian Wang 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第1期200-219,共20页
In order to improve the accuracy of the photogrammetric joint roughness coefficient(JRC)value,the present study proposed a novel method combining an autonomous shooting parameter selection algorithm with a composite e... In order to improve the accuracy of the photogrammetric joint roughness coefficient(JRC)value,the present study proposed a novel method combining an autonomous shooting parameter selection algorithm with a composite error model.Firstly,according to the depth map-based photogrammetric theory,the estimation of JRC from a three-dimensional(3D)digital surface model of rock discontinuities was presented.Secondly,an automatic shooting parameter selection algorithm was novelly proposed to establish the 3D model dataset of rock discontinuities with varying shooting parameters and target sizes.Meanwhile,the photogrammetric tests were performed with custom-built equipment capable of adjusting baseline lengths,and a total of 36 sets of JRC data was gathered via a combination of laboratory and field tests.Then,by combining the theory of point cloud coordinate computation error with the equation of JRC calculation,a composite error model controlled by the shooting parameters was proposed.This newly proposed model was validated via the 3D model dataset,demonstrating the capability to correct initially obtained JRC values solely based on shooting parameters.Furthermore,the implementation of this correction can significantly reduce errors in JRC values obtained via photographic measurement.Subsequently,our proposed error model was integrated into the shooting parameter selection algorithm,thus improving the rationality and convenience of selecting suitable shooting parameter combinations when dealing with target rock masses with different sizes.Moreover,the optimal combination of three shooting parameters was offered.JRC values resulting from various combinations of shooting parameters were verified by comparing them with 3D laser scan data.Finally,the application scope and limitations of the newly proposed approach were further addressed. 展开更多
关键词 photogrammetry Shooting parameter JRC estimation 3D reconstruction
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Integrating UAV Photogrammetry and Thermal Infrared Entropy in Evaluating Rock Mass Characteristics
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作者 Xiaohan Zhao Wen Zhang +2 位作者 Junqi Chen Yaoyao Wang Qing Liu 《Journal of Earth Science》 2025年第4期1853-1866,共14页
0 INTRODUCTION Rock masses are inherently discontinuous,with fractures and joints governing their mechanical behavior and stability(Liu et al.,2024;Shang et al.,2018;Lisjak and Grasselli,2014;Scholtès and Donz... 0 INTRODUCTION Rock masses are inherently discontinuous,with fractures and joints governing their mechanical behavior and stability(Liu et al.,2024;Shang et al.,2018;Lisjak and Grasselli,2014;Scholtès and Donzé,2012;Jiang et al.,2009;Pine et al.,2006;Aydan et al.,1989). 展开更多
关键词 thermal infrared entropy rock masses rock mass characteristics UAV photogrammetry FRACTURES joints
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Effect of Image Resolution on UAV-Based Photogrammetric Accuracy for Civil Engineering Applications
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作者 Mostafa Abdel-Bary Ebrahim 《Journal of Civil Engineering and Architecture》 2025年第7期317-326,共10页
This study provides the first systematic evaluation of image resolution’s effect (50-300 PPI, pixels per inch) on UAV (unmanned aerial vehicle)-based digital close-range photogrammetry accuracy in civil engineering a... This study provides the first systematic evaluation of image resolution’s effect (50-300 PPI, pixels per inch) on UAV (unmanned aerial vehicle)-based digital close-range photogrammetry accuracy in civil engineering applications, such as infrastructure monitoring and heritage preservation. Using a high-resolution UAV with a 20 MP (MegaPixels) sensor, four images of a brick wall test field were captured and processed in Agisoft Metashape, with resolutions compared against Leica T2002 theodolite measurements (1.0 mm accuracy). Advanced statistical methods (ANOVA (analysis of variance), Tukey tests, Monte Carlo simulations) and ground control points validated the results. Accuracy improved from 25 mm at 50 PPI to 5 mm at 150 PPI (p < 0.01), plateauing at 4 mm beyond 200 PPI, while 150 PPI reduced processing time by 62% compared to 300 PPI. Unlike prior studies, this research uniquely isolates resolution effects in a controlled civil engineering context, offering a novel 150 PPI threshold that balances precision and efficiency. This threshold supports Saudi Vision 2030’s smart infrastructure goals for megaprojects like NEOM, providing a scalable framework for global applications. Future research should leverage deep learning to optimize resolutions in dynamic environments. 展开更多
关键词 UAV photogrammetry image resolution 3D measurements civil engineering Saudi Vision 2030
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Orientation Parameters Estimation and Lens Distortion Correction for UAVs Photogrammetry with Non-metric Cameras
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作者 DENG Xingsheng GAO Yang ZHU Xu 《Journal of Geodesy and Geoinformation Science》 2025年第1期71-88,共18页
The estimation of orientation parameters and correction of lens distortion are crucial problems in the field of Unmanned Aerial Vehicles(UAVs)photogrammetry.In recent years,the utilization of UAVs for aerial photogram... The estimation of orientation parameters and correction of lens distortion are crucial problems in the field of Unmanned Aerial Vehicles(UAVs)photogrammetry.In recent years,the utilization of UAVs for aerial photogrammetry has witnessed a surge in popularity.Typically,UAVs are equipped with low-cost non-metric cameras and a Position and Orientation System(POS).Unfortunately,the Interior Orientation Parameters(IOPs)of the non-metric cameras are not fixed.Whether the lens distortions are large or small,they effect the image coordinates accordingly.Additionally,Inertial Measurement Units(IMUs)often have observation errors.To address these challenges and improve parameter estimation for UAVs Light Detection and Ranging(LiDAR)and photogrammetry,this paper analyzes the accuracy of POS observations obtained from Global Navigation Satellite System Real Time Kinematic(GNSS-RTK)and IMU data.A method that incorporates additional known conditions for parameter estimation,a series of algorithms to simultaneously solve for IOPs,Exterior Orientation Parameters(EOPs),and camera lens distortion correction parameters are proposed.Extensive experiments demonstrate that the coordinates measured by GNSS-RTK can be directly used as linear EOPs;however,angular EOP measurements from IMUs exhibit relatively large errors compared to adjustment results and require correction during the adjustment process.The IOPs of non-metric cameras vary slightly between images but need to be treated as unknown parameters in high precision applications.Furthermore,it is found that the Ebner systematic error model is sensitive to the choice of the magnification parameter of the photographic baseline length in images,it should be set as less than or equal to one third of the photographic baseline to ensure stable solutions. 展开更多
关键词 UAVs photogrammetry non-metric cameras Interior Orientation Parameters(IOPs) Exterior Orientation Parameters(EOPs) lens distortion correction
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ICam4D摄影测量技术应用于口腔种植固定修复的临床效果
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作者 陈艳 王梦婷 +3 位作者 史凡 唐金鑫 薛昌敖 宋鑫 《口腔医学》 2026年第1期61-65,共5页
目的比较ICam4D摄影测量技术结合口内扫描技术与传统的夹板印模技术、传统开窗取模技术应用于全牙列口腔种植固定修复的临床效果。方法选取已经完成种植手术需要进行终修复的全口牙列缺失患者14例,单颌牙列缺失患者18例,共46个牙列。分... 目的比较ICam4D摄影测量技术结合口内扫描技术与传统的夹板印模技术、传统开窗取模技术应用于全牙列口腔种植固定修复的临床效果。方法选取已经完成种植手术需要进行终修复的全口牙列缺失患者14例,单颌牙列缺失患者18例,共46个牙列。分成ICam4D组(A组)和夹板组(B组)及开窗组(C组)共3组:A组16个,运用ICam4D摄影测量技术结合口内扫描技术来制取印模;B组15个,应用传统的夹板技术来制取印模;C组15个,仅应用开窗式印模杆取模,不在印模杆上绑夹板。比较3组患者的修复体边缘适合性、印模制取舒适度、耗时、对修复的满意度、患者随访观察。从而获得ICam4D摄影测量技术结合口内扫描技术用于口腔种植固定修复的临床效果。结果修复体边缘适合性差异无统计学意义。印模制取舒适度评分为:A组(95.77±2.30),B组(60.02±7.56),C组(71.92±6.55),两两比较差异均有统计学意义(P<0.001)。耗时为:A组(16.53±3.24)min,B组(59.38±10.74)min,C组(25.46±5.63)min,组间两两比较差异有统计学意义(P<0.001)。修复体满意度,差异无统计学意义。结论ICam4D摄影测量技术结合口内扫描技术应用于口腔种植固定修复取模用时更短,患者舒适度更高,且修复体边缘适合性佳,建议临床推广。 展开更多
关键词 ICam4D摄影测量技术 传统夹板印模技术 口腔种植固定修复
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专业认证背景下的“摄影测量”实践教学模式改革
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作者 汪桂生 郭辉 《黑龙江工程学院学报》 2026年第1期74-79,共6页
在分析专业认证背景对实践能力培养要求和“摄影测量”实践教学体系现状基础上,指出了目前“摄影测量”实践中存在理论与实践整合深度不足、体系分散且缺乏工程化思维、行业法律和规范融入不足的问题,提出分阶段分层次开展的实践教学模... 在分析专业认证背景对实践能力培养要求和“摄影测量”实践教学体系现状基础上,指出了目前“摄影测量”实践中存在理论与实践整合深度不足、体系分散且缺乏工程化思维、行业法律和规范融入不足的问题,提出分阶段分层次开展的实践教学模式,融合程序编制和软件操作的基础训练、以模拟工程项目为基础的专题实习、以专业竞赛为支撑的提升应用、以毕业实习为基础的工程实训等不同级别的实践形式。同时,提出了将法律和规范贯穿整个“摄影测量”工程的改革举措,对改进“摄影测量”教学实践水平、提升学生的综合实践能力具有积极的参考价值。 展开更多
关键词 摄影测量 测绘类专业 实践教学 教学改革 专业认证
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多视角贴近摄影测量技术在复杂地貌实景三维建模中的应用
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作者 陈荣 《科技创新与生产力》 2026年第1期150-152,共3页
传统地形、地质调查依赖人工拍照和正射影像,存在工作量大、成本高、空间维度低等问题;倾斜摄影测量技术能多角度采集地面影像,克服传统航测视角局限,但仍然存在传统航线飞行方式不适用于复杂地貌等问题。为了解决以上问题,结合实际工... 传统地形、地质调查依赖人工拍照和正射影像,存在工作量大、成本高、空间维度低等问题;倾斜摄影测量技术能多角度采集地面影像,克服传统航测视角局限,但仍然存在传统航线飞行方式不适用于复杂地貌等问题。为了解决以上问题,结合实际工程案例,应用多视角贴近摄影测量技术进行复杂地貌实景三维建模,并基于实景三维模型进行定量分析和定性分析。研究结果表明,本文方法能够有效提高复杂地形模型精度。 展开更多
关键词 倾斜摄影测量 贴近摄影测量 复杂地貌 实景三维建模 定量分析
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基于Photogrammetry的地表变形监测技术研究 被引量:2
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作者 孙平贺 何中导 +2 位作者 赵仁明 乌效鸣 Siddharth Banerjee 《地下空间与工程学报》 CSCD 北大核心 2010年第6期1226-1231,共6页
主要讨论了采用Photogrammetry技术监测地下施工过程中地表变形的主要方法和应用情况。地表变形过大往往会导致地表既有建筑物的破碎,所以量化监测其变形程度在地下施工中尤为重要。Photogrammetry技术是一种非接触式的变形监测技术,主... 主要讨论了采用Photogrammetry技术监测地下施工过程中地表变形的主要方法和应用情况。地表变形过大往往会导致地表既有建筑物的破碎,所以量化监测其变形程度在地下施工中尤为重要。Photogrammetry技术是一种非接触式的变形监测技术,主要通过影像手段获取目标点的三维变形大小。该方法需要从空间多角度对目标点进行摄影测量,获取连续的三维影像信息,通过Photogrammetry软件进行现场目标点重现,进而获取三维可视目标点坐标值。本文通过现场的监测,获取了地表变形的数据,提出了监测的方法。 展开更多
关键词 photogrammetry 地下工程 地表变形 三维监测
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无人机载LiDAR及摄影测量技术在沙滩地形监测中的应用研究
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作者 钟小菁 陈沈良 +5 位作者 李鹏 戚洪帅 戚湛扬 徐炜 何原荣 于鹏 《海洋工程》 北大核心 2026年第1期209-222,共14页
沙滩地形是海岸带基础观测的要素之一,对海岸带开发、保护和研究具有重要意义。近年来,随着激光雷达和摄影测量等观测技术的发展,沙滩地形的大范围、高精度监测成为可能,但各测量系统对沙滩地貌监测的精度仍有待进一步研究。采用常规验... 沙滩地形是海岸带基础观测的要素之一,对海岸带开发、保护和研究具有重要意义。近年来,随着激光雷达和摄影测量等观测技术的发展,沙滩地形的大范围、高精度监测成为可能,但各测量系统对沙滩地貌监测的精度仍有待进一步研究。采用常规验证和Triple Collocation(TC)方法对地面实时动态载波相位差分(RTK)、无人机摄影测量及机载激光雷达(LiDAR)这3种观测系统开展沙滩地形的监测精度评估和误差分析,探讨了滩面覆盖类型、降雨条件等因素对沙滩地形监测的影响,获得了福建省厦门市同安区彩虹沙滩的高精度地形变化监测结果并开展了成因分析。结果表明:地面RTK的误差方差最小,达到0.0012 m^(2),而空中监测手段略微高估了沙滩高程,无人机摄影测量与机载LiDAR的误差方差分别为0.0204和0.0480 m^(2);在正常天气条件下,机载LiDAR和无人机摄影测量手段获得的结果与地面RTK较为接近,无人机摄影测量结果的均方根误差(0.082 m)要略低于机载LiDAR(0.114 m);在降雨条件下,无人机摄影测量获得的结果与地面RTK结果相近,其误差方差为0.0027 m^(2),略低于地面RTK的-0.0030 m^(2),机载LiDAR(0.1439 m^(2))则显著高估了沙滩高程;在地面覆盖类型方面,无人机摄影测量显著高估了灌木和浅水区的地面高程,而机载LiDAR在这两种地面类型的表现则优于无人机摄影测量。研究可为中小尺度上海岸动力地貌观测方法的选择提供重要参考。 展开更多
关键词 海岸带 沙滩地形 无人机摄影 机载激光雷达 地貌观测 摄影测量
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