Unit Outlines
Automotive Engineering Technology: Advanced Topics
AI Generated
Advanced
60 hours
10 topics
Learning Objectives
5 objectives- Understand advanced concepts in vehicle dynamics and control systems.
- Analyze and evaluate cutting-edge powertrain and propulsion technologies.
- Examine the application of advanced materials for performance and efficiency.
- Explore modern automotive electronics and safety systems.
- Apply knowledge of advanced manufacturing and aerodynamic principles in vehicle design.
Content Outline
PreviewUnit 3583: Advanced Automotive Engineering
1. Advanced Vehicle Dynamics
1.1 Handling and Stability
- Fundamentals of vehicle handling
- Understeer and oversteer dynamics
1.2 Suspension Design
- Types of suspension systems
- Role of suspension in ride and handling
1.3 Tire Dynamics
- Tire-road interaction
- Tire slip and traction characteristics
1.4 Vehicle Stability Control Systems
- Electronic Stability Control (ESC)
- Traction control systems
2. Advanced Powertrain Technologies
2.1 Hybrid Powertrains
- Series, parallel, and series-parallel configurations
- Energy management strategies
2.2 Electric Vehicles (EVs)
- Battery technologies
- Electric motor types and control
2.3 Fuel Cell Technology
- Principles of hydrogen fuel cells
- Integration into automotive applications
2.4 Advanced Combustion Engines
- Downsizing and turbocharging
- Variable valve timing and direct injection
3. Advanced Materials in Automotive Engineering
3.1 Composite Materials
- Types and properties
- Applications in automotive structures
3.2 High-Strength Steel
- Advantages and manufacturing considerations
3.3 Aluminum Alloys
- Lightweighting and corrosion resistance
3.4 Carbon Fiber
- Strength-to-weight ratio
- Cost and manufacturing challenges
4. Advanced Vehicle Safety Systems
4.1 Adaptive Cruise Control
- Sensors and algorithms
4.2 Automatic Emergency Braking
- Detection and actuation mechanisms
4.3 Lane-Keeping Assist
- Camera systems and control logic
4.4 Advanced Driver Assistance Systems (ADAS)
- Overview and integration
5. Advanced Automotive Electronics
5.1 CAN Bus Systems
- Architecture and communication protocols
5.2 Vehicle Networking
- Network topologies and standards
5.3 Electric Vehicle Architecture
- Power electronics and control units
5.4 Cybersecurity in Automotive Systems
- Threats and mitigation strategies
6. Advanced Engine Performance Tuning
6.1 Turbocharging and Supercharging
- Principles and performance impact
6.2 Variable Valve Timing
- Mechanisms and benefits
6.3 Direct Injection
- Fuel delivery and combustion efficiency
6.4 Engine Mapping for Performance
- Calibration techniques
7. Advanced Aerodynamics in Vehicle Design
7.1 Principles of Aerodynamics
- Lift, drag, and downforce
7.2 Wind Tunnel Testing
- Methods and data interpretation
7.3 Computational Fluid Dynamics (CFD)
- Simulation techniques
7.4 Aerodynamic Optimization
- Design strategies to reduce drag and improve efficiency
8. Advanced Vehicle Propulsion Systems
8.1 Hydrogen Fuel Cells
- System components and integration
8.2 Compressed Natural Gas (CNG) Engines
- Fuel storage and engine adaptations
8.3 Rotary Engines
- Design and performance characteristics
8.4 Alternative Fuels
- Biofuels and synthetic fuels
9. Advanced Automotive Manufacturing Processes
9.1 Additive Manufacturing (3D Printing)
- Applications and benefits
9.2 Robotic Assembly Lines
- Automation and precision
9.3 Lean Manufacturing Principles
- Waste reduction and efficiency
9.4 Industry 4.0 Technologies
- IoT, AI, and digital twins in manufacturing
10. Advanced Vehicle Control Systems
10.1 Active Suspension Systems
- Adaptive and semi-active suspensions
10.2 Torque Vectoring
- Techniques and vehicle dynamics impact
10.3 Electronic Stability Control
- Sensors and control algorithms
10.4 Autonomous Vehicle Control Algorithms
- Path planning and decision making
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