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Twardowski, Mariusz 

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inżynieria lądowa, geodezja i transport

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  • Item type:Article, Access status: Open Access ,
    Metodyka korzystania z baz danych Wielojęzycznego Interdyscyplinarnego Terminologicznego Słownika i Leksykonu Geoinformatycznego Komisji Geoinformatyki PAU za pośrednictwem internetu
    (Wydawnictwa AGH, 2005) Jachimski, Józef; Mikrut, Sławomir; Twardowski, Mariusz 
    The fast development of computer science oriented on capturing, processing and distribution of geoinformation (geoinformatics), which has applications in many technical and natural disciplines of science and technique, calls for urgent unification of professional terminology - for terminological dictionary. The presented open formulae computer program for creation of dictionary assumes the use of internet to continuously present the content of the dictionary database. That way the dictionary is available for users, even during the editorial activity, when it is not completed yet. The open formulae assumes also participation of volunteers in the editorial work via discussion over the existing entries and definitions, as well as via proposing their contributions to the dictionary contents. The project was initialized and is organized by the Geoinformatics Commission of The Polish Academy of Arts and Sciences in Krakow. The dictionary program was prepared by, and dictionary data base is installed on the server of the Department of Photogrammetry and remote sensing informatics. The experimental of pertaining computer program is ready for use in the internet.
  • Item type:Article, Access status: Open Access ,
    PyLiGram – Research Application for LiDAR Data Processing Based on Photogrammetric Methods
    (Wydawnictwa AGH, 2025) Rzonca, Antoni ; Twardowski, Mariusz 
    This paper presents the functionality and research possibilities of an application that is based on two concepts: the use of photogrammetric analysis for LiDAR data processing (lidargrammetry), and the assignments of identifiers to cloud points in order to be able to return to the original points after processing without data loss and redundant processing. The research tool has, thus far, been developed for the implementation of two distinct LiDAR data-enhancement processes. The initial approach involves the altimetric transformation of the LiDAR data (a process that is founded on the principles of stereo model deformation theory), and the second process employs lidargrammetry for the purpose of 3D local point-cloud corrections, global changes, or non-rigid transformation. This is achieved by applying blocks of lidargrams and their subsequent matching and adjustments.