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EN
Training an anti-aircraft soldier is expensive, complicated, and time-consuming. As a result, many countries, weighing the cost-effectiveness, opt to introduce solutions aimed at minimizing this trend. One of them is incorporating modern training devices such as simulators and trainers into the training. However, to make this happen, it is worth analyzing the effectiveness of training with their use by comparing it to that conducted in a traditional way. With this in mind, the purpose of this article is to present the results of research on the effectiveness of using a Virtual Reality (VR) simulator developed at the Military University of Technology in teaching the construction and basic activities of combat work in the area of conducting a selected check of the functioning of the SA6 Gainful missile launcher system. The theoretical foundation for the empirical research was provided by a method of analyzing literary content. By using the method of comparison and generalization, knowledge was obtained about the general construction and use of training devices in the training of the anti-aircraft defense forces of the Polish Armed Forces, and the features of the VR simulator were described. As regards the empirical methods, a study was conducted using a research sample which was conducted using a parallel triangulation strategy scheme involving the simultaneous use of quantitative and qualitative methods. The synthesis served in formulating the final conclusions and in determining the relationships between theoretical and empirical studies. The results obtained in this way can provide valuable information about the effectiveness of using training devices in training anti-aircraft defense forces and serve as a basis for further work on their development and application.
2
Content available remote Symulator jazdy czołgiem LEOPARD 2A4. Część 2. System wizualizacji
PL
W artykule przedstawiono opracowany w OBRUM sp. z o.o. system wizualizacji przeznaczony do symulatora jazdy czołgiem LEOPARD 2A4 (kryptonim SJCL-6P). Omówiono przyjęte w projekcie rozwiązania spełniające wymagania techniczne zamawiającego. W przedstawionych analizach uwzględniono obecny stan techniki. Uzasadniono wybór rozwiązań zastosowanych w najważniejszych węzłach konstrukcyjnych, w tym wybór rozwiązań w zakresie systemu wizyjnego i pomocniczych narządzi. W podsumowaniu uwypuklono cechy wyróżniające SJCL-6P wśród użytkowanego sprzętu szkoleniowego.
EN
The article presents a display system developed at OBRUM for the LEOPARD 2A4 tank driving simulator (codenamed SJCL-6P). The solutions adopted in the design compliant with client’s technical requirements are discussed. The analyzes presented take into account the current state of the art. The choice of solutions used in the most important structural units, including the vision system and auxiliary tools, is explained. The summary highlights the distinguishing features of SJCL-6P among the training equipment used.
3
Content available remote LEOPARD 2A4 tank driving training simulator. Part 2. Display system
EN
The article presents a display system developed at OBRUM for the LEOPARD 2A4 tank driving simulator (codenamed SJCL-6P). The solutions adopted in the design compliant with client's technical requirements are discussed. The analyzes presented take into account the current state of the art. The choice of solutions used in the most important structural units, including the vision system and auxiliary tools, is explained. The summary highlights the distinguishing features of SJCL-6P among the training equipment used.
4
Content available Flight simulation devices in pilot air training
EN
This article deals with issues related to the use of flight simulation devices in pilot training. It also discusses the regulations included in the legislation defining the scope of simulator use in flight training processes for particular aviation ratings. In addition, the methods for using flight simulation devices in pilot training and practical training processes are presented, taking into consideration civil and military aviation applications.
5
Content available Testowanie robotów medycznych
PL
Artykuł przedstawia zagadnienie badań przedwdrożeniowych robotów medycznych na podstawie doświadczeń zespołu pracującego nad polskim robotem chirurgicznym Robin Heart. W cyklu badań laboratoryjnych (in vitro), na zwierzętach (in vivo), w dobrej komunikacji z przyszłymi użytkownikami przygotowywane jest rozwiązanie rynkowe – nowy robot medyczny.
EN
The article presents the issue of pre-implementation tests of medical robots based on the experience of the team working on the Polish Robin Heart surgical robot. In a cycle of laboratory tests (in vitro), on animals (in vivo), in a good communication with future users a market solution is being prepared – a new medical robot.
6
Content available remote Wirtualny trenażer 3D narzędziem wspomagającym proces szkolenia
PL
W artykule przedstawiono nowoczesne narzędzie informatyczne – trenażer wirtualny 3D do szkolenia z zakresu obsługi, napraw i diagnostyki zwłaszcza urządzeń i sprzętu wojskowego. Opisana została budowa trenażera oraz dostępne tryby szkoleń. W podsumowaniu odniesiono się do potencjalnego zakresu szkoleń z wykorzystaniem opisanego urządzenia.
EN
The article presents a modern IT tool, a virtual 3D training kit for training in the operation, maintenance and diagnostics of military devices and equipment. The structure of the training device and available training modes are described. A reference is made in the summary to a potential scope of training sessions with the use of the device described.
7
Content available remote Virtual 3D training kit as a tool for supporting the training process
EN
The article presents a modern IT tool, a virtual 3D training kit for training in the operation, maintenance and diagnostics of military devices and equipment. The structure of the training device and available training modes are described. A reference is made in the summary to a potential scope of training sessions with the use of the device described.
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