Essays about: "Fordonsteknik"

Showing result 1 - 5 of 16 essays containing the word Fordonsteknik.

  1. 1. Interaction design for Augmented Reality Head-Up Displays : Developing graphics design and evaluating perceptual and safety aspects for navigation use cases

    University essay from Luleå tekniska universitet/Institutionen för ekonomi, teknik, konst och samhälle

    Author : Johan Hansols; [2022]
    Keywords : industrial design engineering; human-centered design; user experience design; Augmented reality head-up displays; visual perception; AR-HUD navigation; automotive industry; user-testing; teknisk design; användarcentrerad design; användarupplevelsedesign; head-up-displayer med förstärkt verklighet; visuell perception; AR-HUD-navigering; fordonsindustri; användartestning;

    Abstract : The interactions with everyday products and technology are often done without being noticed or reflected upon. Interactions driving a vehicle are happening automatically for most people when having experience driving. READ MORE

  2. 2. Modelling of a high-performance vehicle in MATLAB/Simulink and Canopy Simulations

    University essay from KTH/Väg- och spårfordon samt konceptuell fordonsdesign

    Author : Rickard Höglund; [2022]
    Keywords : Vehicle Engineering; vehicle development; modelling; simulation; longitudinal model; lateral model; standard maneuver; Fordonsteknik; fordonsutveckling; modellering; simulering; longitudinell modell; lateral modell; standardmanöver;

    Abstract : The car industry is constantly evolving. High demands from customers and governing bodies force the manufacturers to speed up development of new vehicle models. This process used to be a very costly, time consuming and not very ecologically sustainable because new and expensive parts had to be made that are difficult to manufacture. READ MORE

  3. 3. Security Evaluation of Damper System’s Communication and Update Process : Threat modeling using vehicleLang and securiCAD

    University essay from KTH/Skolan för elektroteknik och datavetenskap (EECS)

    Author : Joar Ekelund; [2021]
    Keywords : Electronic Control Unit; Update; Automotive; Threat Modeling; vehicleLang; securiCAD; Styrenhet; Uppdatera; fordonsteknik; Hotmodellering; vehicleLang; securi- CAD;

    Abstract : As the automotive industry becomes increasingly reliant on digital systems it is of utmost importance that these systems are secure. Secure systems are of interest both for the general public as well as manufactures. READ MORE

  4. 4. Modelling of electromechanical motors for turret and barrel control in main battle tanks

    University essay from KTH/Fordonsdynamik

    Author : Arvid Carlstedt; [2021]
    Keywords : Mechanics; Mechatronics; Vehicle Technology; Mekanik; Mekatronik; Fordonsteknik;

    Abstract : In this master thesis the dynamics of a modern main battle tank's turret traverse and gun elevation have been modelled. The models of dynamic motion have been coupled to two different types of electric motors, namely a direct-current motor and an induction motor. READ MORE

  5. 5. Additive Manufacturing Applications for Suspension Systems : Part selection, concept development, and design

    University essay from Linköpings universitet/Produktrealisering; Linköpings universitet/Maskinkonstruktion

    Author : Morgan Waagaard; Johan Persson; [2020]
    Keywords : AM; Additive Manufacturing; 3D printing; DfAM; Design for Additive Manufacturing; SLM; Selective Laser Melting; L-PBF; Laser Powder Bed Fusion; Topology Optimization; Design Optimization; titanium alloy; Suspension Systems; Automotive Applications; Racing; Motorcycle; Motorbike; Moto Racing; Roadracing; Additiv tillverkning; Additiv Tillverkningsteknik; Friformsframställning; Topologioptimering; Designoptimering; Titanlegering; Hjulupphängning; Fjädringssystem; Fordonsteknik; Fordonsapplikationer; Motorcykel; Motorcykelracing; Motorsport;

    Abstract : This project was conducted as a case study at Öhlins Racing AB, a manufacturer of suspension systems for automotive applications. Öhlins usually manufacture their components by traditional methods such as forging, casting, and machining. READ MORE