Course overview

Who can take this course?

 

This course is for 

 

  1. Professionals from the industry 
  2. Student racing teams participating in Electric Vehicle competitions
  3. Research scholars in the EV sector
  4. Learners who are looking forward to starting a career in EV
  5. Individuals who like to learn the industry way to size & optimize the motor & battery for mobility applications

 

What will I learn in this course?

 

You will learn a detailed understanding of motor & battery sizing & selection by modeling the 2W (Ather Bike) and Formula Electric Race Car in Scilab-Xcos. We will study the effect of various parameters such as Drive cycle (FTP75, WLTP, NEDC), Acceleration, Gradeability. With these inputs, we shall perform the studies on battery Current, C-rating, Power, Energy consumption per Km, Peak & Nominal Motor torque & Power, Nominal & Peak Motor current

 

We will be able to make logical decisions upon subcomponent selection, study, and optimize the motor operating regions for efficiency, cell selection, SoC depletion, and more. 


 

In this course

 

  1. You will learn the Scilab Xcos simulation software
  2. You will Model the Ather 450 & study the powertrain characteristics 
  3. You will Model the Electric Race & study the powertrain characteristics
  4. You will learn on implementing different drive cycles and study their effects   
  5. You will gain deeper insights to choose the right cell & motor for 2W application like a scooter, from the results of the simulation model 
  6. You will have a project worth to portray on your resume
  7. You will gain the confidence to model physical systems of various complexity and carry out projects
  8. You will receive Decibels Authorized course completion certificate


 

Course Pre-requisite 

 

We will teach the course from fundamentals, including the Scilab & Scilab Xcos software. So, nothing to worry about the Pre-requisites. 

 

  1. Laptop/Desktop is mandatory
  2. We will share the link to download the Scilab software

 

Certificate of Participation

Electric Vehicle Powertrain Modeling & Simulation

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  • 00 Hours
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