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Course Outline

Introduction to EV Powertrains

  • Exploring the architecture of EV powertrains.
  • Contrasting conventional internal combustion powertrains with electric alternatives.
  • Key components in electric powertrains, including motors, inverters, and transmissions.

Battery Chemistry and Technology

  • Overview of EV battery types, such as Lithium-ion and solid-state technologies.
  • In-depth look at battery chemistry and electrochemical processes.
  • Analyzing battery capacity, energy density, and lifecycle factors.

Battery Management Systems (BMS)

  • Core functions and constituent parts of a BMS.
  • Strategies for battery monitoring, cell balancing, and safety mechanisms.
  • Seamless integration of BMS within the broader EV powertrain system.

Powertrain Efficiency and Optimization

  • Identifying energy loss factors and calculating efficiency metrics.
  • Methods to enhance and optimize EV powertrain performance.
  • Maximizing energy recovery via regenerative braking systems.

Thermal Management of EV Batteries

  • Cooling and heating strategies tailored for battery packs.
  • Preventing and controlling thermal runaway incidents.
  • Assessing the impact of temperature fluctuations on battery output.

Advanced Powertrain Configurations

  • Design of All-wheel drive (AWD) and dual-motor systems.
  • Hybrid electric powertrains and range extender technologies.
  • Role of power electronics and control strategies in system performance.

Simulation and Testing Techniques

  • Simulating powertrain performance under varying operational conditions.
  • Protocols for battery testing and diagnostic procedures.
  • Assessing the efficiency of different powertrain configurations.

Real-World Applications and Case Studies

  • Examination of successful EV powertrain design case studies.
  • Navigating the challenges of integrating advanced battery systems.
  • Key insights derived from practical industry applications.

Summary and Next Steps

Requirements

  • A foundational grasp of basic electrical engineering principles.
  • Practical experience with automotive systems or general powertrain technology.
  • Familiarity with core energy storage concepts.

Target Audience

  • Electrical engineers focused on automotive applications.
  • Automotive technicians responsible for EV maintenance and support.
  • Energy specialists engaged in EV integration and battery solution development.
 14 Hours

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