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Mobilitätsdienste und integrierte Funktionsentwicklung zur Reichweitenoptimierung

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Literaturhinweise

  1. Köhler, S.; Viehl, A.; Bringmann, O.; Rosenstiel, W.: Energy-Efficient Torque Distribution for Axle-Individually Propelled Electric Vehicles. IEEE Intelligent Vehicles Symposium (IV) 2014, Dearborn, USA

  2. Valentina, R.; Viehl, A.; Bringmann, O.; Rosenstiel, W.: HVAC System Modeling for Range Prediction of Electric Vehicles. IEEE Intelligent Vehicles Symposium (IV) 2014, Dearborn, USA

  3. Bär, T.; Nienhüser, D., Zöllner, J.: Driver Individual Energy Consumption Forecast. 3rd International Conference on Energy Efficient Vehicles (ICEEV 2014), Dresden

  4. Köhler, S.; Viehl, A.; Bringmann, O.; Rosenstiel, W.: Advanced Driver Assistance System for Optimized Recuperation under Consideration of Parameter Uncertainties. IEEE In Intelligent Vehicles Symposium (IV) 2013, Gold Coast, Australia

  5. Schyr, C.: Virtual Test Driving — Enabler for the Efficient Development of Electric Vehicle Technologies. Electromobility Conference Asia (EMCA) 2013, Singapore International Energy Week, Singapore

  6. IPG Automotive GmbH: http://www.ipg.de/simulationsolutions/carmaker

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Alexander Viehl, A., Donn, C., Bersiner, L. et al. Mobilitätsdienste und integrierte Funktionsentwicklung zur Reichweitenoptimierung. ATZ Extra 19, 62–67 (2014). https://doi.org/10.1365/s35778-014-1293-6

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  • DOI: https://doi.org/10.1365/s35778-014-1293-6

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