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CEVVE 2021 : 2021 International Conference on Electric Vehicle and Vehicle Engineering (CEVVE 2021) | |||||||||||||||
Link: http://www.cevve.org/ | |||||||||||||||
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Call For Papers | |||||||||||||||
★2021 International Conference on Electric Vehicle and Vehicle Engineering (CEVVE 2021)-- Ei Compendex & Scopus—Call for paper
September 17-19, 2021|Frankfurt, Germany|Website: www.cevve.org ★CEVVE 2021 welcomes researchers, engineers, scientists and industry professionals to an open forum where advances in the field of Electric Vehicle and Vehicle Engineering can be shared and examined. The conference is an ideal platform for keeping up with advances and changes to a consistently morphing field. Leading researchers and industry experts from around the globe will be presenting the latest studies through papers and oral presentations. ★Publication and Indexing All accepted papers will be published in the digital conference proceedings which will be sent to be Indexed by all major citation databases such as Ei Compendex, SCOPUS, Google Scholar, Cambridge Scientific Abstracts (CSA), Inspec, SCImago Journal & Country Rank (SJR), EBSCO, CrossRef, Thomson Reuters (WoS), etc. A selection of papers will be recommended to be published in international journals. ★Program Preview/ Program at a glance September 17: Registration + Icebreaker Reception September 18: Opening Ceremony+ KN Speech+ Technical Sessions September 19: Technical Sessions+ Half day tour/Lab tours ★Paper Submission 1.PDF version submit via CMT: 2.Submit Via email directly to: cevve@iaeeee.org ★CONTACT US Ms. Anna H. M. Wong Email: cevve@iaeeee.org Website: www.cevve.org Call for papers(http://www.cevve.org/cfp): Active and Passive Vehicle Safety High-performance electrode materials for lithium-ion batteries for electric vehicles Advanced Driver Assistance Systems High-voltage battery management systems for electric vehicles Advances in battery technologies for electric vehicles Human Factors and Human Machine Interaction Advantages and disadvantages of electric vehicles Image, Radar, Lidar Signal Processing All-solid-state batteries Impact on Traffic Flows Applied Mechanics Industrial Tribology Assistive Mobility Systems Information Fusion Automated Vehicles Instrumentation and Control Autonomous and Intelligent Robotic Vehicles Intelligent Ground, Air and Space Vehicles Battery Chargers: Onboard, Wireless, Fast and Ultra-Fast Intelligent Vehicle Software Infrastructure Battery design and performance Internal Combustion Engines Battery electric vehicles, and off-road electric vehicles Lead–acid batteries for hybrid electric vehicles and battery electric vehicles Battery pack design Licensing regulations for electric vehicles Battery parameters for HEV applications Life-cycle energy consumption and CO2 emissions compared Battery parameters for hybrid electric vehicles Limits to and potential future developments of lithium-ion batteries and supercapacitors Battery, Fuel Cell and Energy Storage Systems Lithium-air battery Carbon dioxide and consumption reduction through electric vehicles Lithium-ion batteries and supercapacitors for use in HEVs Cell balancing, battery state estimation Lithium-ion batteries for hybrid electric vehicles and battery electric vehicles Cell designs Lithium-sulfur battery Codes, Standards, Policies, and Regulations for Transportation Electrification Mechatronics Collision Avoidance MEMS and Nanotechnology Computational Fluid Dynamics Modeling and Simulation Computer simulation for battery design and lifetime prediction Modeling of Processes Connected and Autonomous Vehicles Multivalent metals: magnesium battery Conversion reaction materials Nano- Technology Cooperative Vehicle-infrastructure Systems Novel Interfaces and Displays Design issues of NiMH and NiZn batteries in electric vehicles Oil and Gas Design of high-voltage battery packs for electric vehicles Optimization of Systems Different electric propulsion systems Pedestrian Protection Driver State and Intent Recognition Power Electronics and Motor Drives Dynamics and Controls Powertrain: Design, Thermal Management, Packaging, and Optimization Eco-driving and Energy-efficient Vehicles Proton battery Electric and Hybrid Technologies Proximity Awareness Technology Electric Machines and Actuators Proximity Detection Technology Electric mobility Rapid Prototyping, Real-Time Simulation, HIL and SIL for Transportation Electrification Electric road and off-road vehicles Recycling lithium batteries Electric road vehicle battery charging systems and infrastructure Redox-flow batteries Electric vehicle Renewable and Non-Renewable Energies Electric, Hybrid Electric, Plug-in Hybrid Electric Vehicle System Architectures and Control Robotics Electrical Systems and Components for Sea, Undersea, Air, and Space Vehicles Safety aspects of battery management systems Electrification of Heavy-Duty and Off-Road Vehicles Safety requirements Energy consumption and CO2 emissions of vehicle production Smart and Micro Grids, EV-Interacting Smart Grid and Electrical Infrastructure Energy consumption of electric vehicles Smart Mobility Energy Management Sodium-ion and sodium-air batteries Energy Systems Solid Mechanics Environmental and safety issues with NiMH and NiZn batteries Standards for electric vehicle batteries and associated testing procedures Environmental aspects Structures and Materials Experimental Techniques and Measurements Telematics Ferrite battery The dawn of batteries succeeding lithium-ion Fluid Dynamics Thermal management of batteries for electric vehicles Fuels and Combustion Types of battery for electric vehicles Future developments in cell chemistries V2X Communication Future developments in Li-ion battery packs Vehicle Control Green Manufacturing Vehicle Environment Perception Halide batteries Vehicle Functional Security Heat and Mass Transfer |
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