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  • 1.
    Axelsson, Jonathan
    et al.
    University of Skövde, School of Engineering Science.
    Hultberg, Carl
    University of Skövde, School of Engineering Science.
    Realtidsstyrning av robotiserad kameraplattform2018Independent thesis Basic level (degree of Bachelor), 20 credits / 30 HE creditsStudent thesis
    Abstract [en]

    The Swedish Defence Material Administration (FMV) that supplies materials to the Swedish military, has a part of its organization located in Karlsborg called test and evaluation of land combat systems. The photogroup of test and evaluation wishes to control a robotized camera platform, of the brand Vinten, in real time using a number of different positioning systems like joystick, Doppler-position radar, their self-constructed system UNIPOS and using a predicted trajectory of a launched projectile. The main goal of the project is therefore to create a control system to maneuver the camera platform with the assistance of mentioned data sources. The theoretical framework and literature review gave the members of the project the knowledge base, in serial communication and data protocols, needed to complete the project and gave understanding about earlier similar projects and choose to follow the structure of the systems development model Rational Unified Process (RUP). FMV wanted the main control unit to be a PC to be able to remotely control the system and to be able to make further developments. RUP was used to give the work structure and to make sure the quality of the end product was satisfactory. The development process consists, in accordance with the RUP structure, of a number of iterations that all add some function to the system. In close cooperation with the staff at FMV the system is developed and continuously tested to ensure the quality. A simple manual has been developed to make usage of the system easier. Every data source wanted by FMV has been handled in some way throughout the project and the result was a portable system that can be ran on any PC. Tests using drones, grenade launchers and a response-test was performed to verify that the functions of the system lives up to the goals that were set up and to evaluate the systems possibilities and limitations. The tests showed that real time control is possible to some extent with all systems and that the limitations lies in the delays that exists both in signal transfers and in the camera platforms built in filters for soft movements.

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