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PL
Zapis powierzchni fantomów - manekinów (stosowanych powszechnie w odzieżownictwie fizycznych modeli budowy ciała ludzkiego o określo-nej uśrednionej charakterystyce wymiarowej) jest konieczny z punktu widzenia prac nad inżynierskimi metodami konstrukcji wykrojów odzieży. Potwierdzają to liczne prace z tego obszaru prowadzone przez szereg placówek naukowych i badawczych świata [1, 2, 3]. Dzięki badaniom prowadzonym w Katedrze Odzieżownictwa PŁ opracowano metodę fotogrametryczną pozwalającą na rejestrację, przetworzenie, analizę, opis cech wymiarowych i odwzorowanie 3D (three dimensional) powierzchni manekinów [4].
EN
Phantom surface representation based on computer analysis of phantom 2D images is a very challenging problem. The representation of phantom surface is necessary for development of engineering techniques for constructing shapes of clothes. The phantoms are widely used in clothing science as a model of human body. This is confirmed by large number of publications from many research institutes [1, 2, 3]. At the Clothing Department, Technical University of Łódź, the new method of digital representation of phantom surface was developed [4]. Thus optical representation method was used to obtain a digital phantom surface model. The indirect method of 3D surface measurement was proposed, where geometrical features of an analysed object were estimated based on analysis of series of its 2D images. The 2D image is a central projection of the analysed object. The most important problem is to register such a projection and then perform an appropriate analysis. To obtain a digital model of objects with size comparable to the human body, the measurement bench was assembled as shown in Fig. 1. This bench contains: analysed object (1); a projector (2) which is a source of two light half-planes (bright and dark); they are projected onto analysed object (1) and are called as "horizontal light half-plane"; a TV camera (9) as a video signal source for the computer (10); it is moved along with a projector during measurement process and it is at an angle ? in relation to light half-plane; two stepper motors (3, 4) with a driving system (5), used to move a camera (with Δζ step) and rotate a phantom (with an angle Δφ); mechanical circuit, which is used to move a camera and a projector; computer (10) used to control whole a system, equipped with two monitors (6, 7), add-on cards and specialised software; vertical reference half-plane, firmly fixed to measure a distance from the analysed object. This measurement bench was used for acquisition and analysis of images of investigated objects.
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