{"title":"无人机地形航空测量数字图像外方位确定要素的软件应用结果","authors":"M. Fys, V. Hlotov, A. Hunina, M. Protsyk","doi":"10.33841/1819-1339-2-42-92-98","DOIUrl":null,"url":null,"abstract":"One of the problems with the use of UAVs for high-precision mapping is the inability to install on these devices an accurate stabilization system to determine the angular EEO images, so there is a need to develop methods for accurate location of EEO. To date, there are many developments in the definition of elements of EEO. However, there are a number of issues in their practical implementation. This applies primarily to attempts to improve the accuracy of obtaining the coordinates of the points of objects on the ground. Aim. Investigate the possibility of the proposed algorithm for determining the elements of EEO of digital images obtained by aerial surveying from an UAV. Methodology. Based on the condition of collinearity, two types of functions are determined for which the minimum is searched. This process of determining the elements of the EEO is performed using software. A diverse set of programs makes it possible to implement such a search, and a reasonable initial approximation of the EEA and provides a definition of their optimal parameters [Hlotov, 2020; Zavarzin, 2013; Berezina, 2018; Kim Hon Ir, 2017]. Results. The proposed approach was tested on the corresponding digital images obtained by aerial surveying from UAVs at checkpoints, which made it possible to justify the effectiveness of the proposed method. The specified RMSE had the following values: = 0.15 m, = 0.18 m, = 0.40 m. After specifying the steel error = 0.06 m, = 0.03 m, = 0.25 m. The analysis of the unknown results confirms the improvement of the accuracy of coordinate determination by specifying the values of RMS relative to those obtained in the software package Models and the proposed algorithm. Scientific novelty and practical significance. An algorithm has been developed that makes it possible to determine the value of EEO using software without the use of special software for digital image processing. First of all, it makes it possible to improve the accuracy of EEO determination for digital images obtained from UAVs and allows to significantly expand the range of tasks using UAVs.","PeriodicalId":422474,"journal":{"name":"Modern achievements of geodesic science and industry","volume":"44 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-09-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Results of the software application for determination elements of external orientation of digital images of topographic aerial surveying from UAV\",\"authors\":\"M. Fys, V. Hlotov, A. Hunina, M. Protsyk\",\"doi\":\"10.33841/1819-1339-2-42-92-98\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"One of the problems with the use of UAVs for high-precision mapping is the inability to install on these devices an accurate stabilization system to determine the angular EEO images, so there is a need to develop methods for accurate location of EEO. To date, there are many developments in the definition of elements of EEO. However, there are a number of issues in their practical implementation. This applies primarily to attempts to improve the accuracy of obtaining the coordinates of the points of objects on the ground. Aim. Investigate the possibility of the proposed algorithm for determining the elements of EEO of digital images obtained by aerial surveying from an UAV. Methodology. Based on the condition of collinearity, two types of functions are determined for which the minimum is searched. This process of determining the elements of the EEO is performed using software. A diverse set of programs makes it possible to implement such a search, and a reasonable initial approximation of the EEA and provides a definition of their optimal parameters [Hlotov, 2020; Zavarzin, 2013; Berezina, 2018; Kim Hon Ir, 2017]. Results. The proposed approach was tested on the corresponding digital images obtained by aerial surveying from UAVs at checkpoints, which made it possible to justify the effectiveness of the proposed method. The specified RMSE had the following values: = 0.15 m, = 0.18 m, = 0.40 m. After specifying the steel error = 0.06 m, = 0.03 m, = 0.25 m. The analysis of the unknown results confirms the improvement of the accuracy of coordinate determination by specifying the values of RMS relative to those obtained in the software package Models and the proposed algorithm. Scientific novelty and practical significance. An algorithm has been developed that makes it possible to determine the value of EEO using software without the use of special software for digital image processing. First of all, it makes it possible to improve the accuracy of EEO determination for digital images obtained from UAVs and allows to significantly expand the range of tasks using UAVs.\",\"PeriodicalId\":422474,\"journal\":{\"name\":\"Modern achievements of geodesic science and industry\",\"volume\":\"44 1\",\"pages\":\"0\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2021-09-01\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Modern achievements of geodesic science and industry\",\"FirstCategoryId\":\"1085\",\"ListUrlMain\":\"https://doi.org/10.33841/1819-1339-2-42-92-98\",\"RegionNum\":0,\"RegionCategory\":null,\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"\",\"JCRName\":\"\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Modern achievements of geodesic science and industry","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.33841/1819-1339-2-42-92-98","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
摘要
使用无人机进行高精度测绘的问题之一是无法在这些设备上安装精确的稳定系统来确定角度EEO图像,因此需要开发精确定位EEO的方法。迄今为止,在平等就业机会要素的定义方面有许多发展。然而,在其实际实施中存在一些问题。这主要适用于试图提高获得地面上物体点坐标的精度。的目标。研究了该算法用于确定无人机航测数字图像的EEO要素的可能性。方法。基于共线性的条件,确定了两类函数的最小值搜索。确定平等就业机会要素的过程是使用软件来完成的。一组不同的程序使实现这样的搜索成为可能,并对EEA进行合理的初始近似,并提供其最佳参数的定义[Hlotov, 2020;Zavarzin, 2013;贝尔齐纳河,2018;Kim Hon Ir, 2017]。结果。在检查站无人机航测获得的相应数字图像上对所提方法进行了测试,验证了所提方法的有效性。指定的RMSE有以下值:= 0.15 m, = 0.18 m, = 0.40 m。指定钢材误差= 0.06 m、= 0.03 m、= 0.25 m后。对未知结果的分析证实,通过指定相对于软件包模型和所提算法中获得的均方根值,可以提高坐标确定的精度。具有科学新颖性和现实意义。已经开发出一种算法,可以使用软件来确定EEO的值,而无需使用专门的数字图像处理软件。首先,它可以提高从无人机获得的数字图像的EEO确定的准确性,并允许显着扩大使用无人机的任务范围。
Results of the software application for determination elements of external orientation of digital images of topographic aerial surveying from UAV
One of the problems with the use of UAVs for high-precision mapping is the inability to install on these devices an accurate stabilization system to determine the angular EEO images, so there is a need to develop methods for accurate location of EEO. To date, there are many developments in the definition of elements of EEO. However, there are a number of issues in their practical implementation. This applies primarily to attempts to improve the accuracy of obtaining the coordinates of the points of objects on the ground. Aim. Investigate the possibility of the proposed algorithm for determining the elements of EEO of digital images obtained by aerial surveying from an UAV. Methodology. Based on the condition of collinearity, two types of functions are determined for which the minimum is searched. This process of determining the elements of the EEO is performed using software. A diverse set of programs makes it possible to implement such a search, and a reasonable initial approximation of the EEA and provides a definition of their optimal parameters [Hlotov, 2020; Zavarzin, 2013; Berezina, 2018; Kim Hon Ir, 2017]. Results. The proposed approach was tested on the corresponding digital images obtained by aerial surveying from UAVs at checkpoints, which made it possible to justify the effectiveness of the proposed method. The specified RMSE had the following values: = 0.15 m, = 0.18 m, = 0.40 m. After specifying the steel error = 0.06 m, = 0.03 m, = 0.25 m. The analysis of the unknown results confirms the improvement of the accuracy of coordinate determination by specifying the values of RMS relative to those obtained in the software package Models and the proposed algorithm. Scientific novelty and practical significance. An algorithm has been developed that makes it possible to determine the value of EEO using software without the use of special software for digital image processing. First of all, it makes it possible to improve the accuracy of EEO determination for digital images obtained from UAVs and allows to significantly expand the range of tasks using UAVs.