
Advance Mechatronics Simulation Engineer
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#Program
About Program
QP Name: Advance Mechatronics Simulation Engineer
QP Code: CSC/Q
QP Version: 1.0
NSQF Level: 6
Model Curriculum Version: 1.0
An Advanced Mechatronics Simulation Engineer specializes in designing, simulating, and optimizing complex mechatronic systems that integrate mechanical, electrical, and software components. This role focuses on using simulation tools, digital twins, and AI-driven analysis to enhance the performance, reliability, and efficiency of automated systems in industries such as automotive, aerospace, robotics, and industrial automation. By leveraging virtual prototyping and real-time simulations, these engineers reduce development time, optimize designs, and predict system behaviors before physical implementation.
#Bookdetails
Module
Module 1
Introduction to Advance Mechatronics Simulation
Module 2
Introduction to Modeling Environment
Module 3
Modelling Development using Simulation Software
Module 4
Mechatronics Components Testing and Calibration
Module 5
System-Level Integration and Testing of Mechatronic system
#Overview
Program Overview
Training Outcomes:
At the end of the program, the learner should have acquired the listed knowledge and skills.
 – Modelling and simulation of the behaviour of mechatronic system before physical
implementation.
–Â Integrate realistic physics and mathematical models and dynamic simulations to
accurately represent mechatronic system behaviour.
Observe multi body dynamics of the system and observe the motion of gears,cams and
linkages.
–Â Conduct thorough testing and validation of mechatronics simulations to ensure accuracy
and reliability. Troubleshoot and refine models based on simulation results
–Â Optimize current process to enhance the results keeping
energy,efficiency,speed,accuracy and reliability in mind .Document simulation
methodologies, parameters, and results for future reference.
–Â Advanced Simulation Techniques: Mastery of advanced simulation software and
techniques used in mechatronics systems design and analysis. This includes proficiency
in tools like MATLAB/Simulink, ANSYS, or other specialized software used for multi
domain simulations.
–Â Mechatronics Principles: Deep understanding of mechatronics principles, which combine
mechanical, electrical, and software engineering concepts. This includes knowledge of
sensors, actuators, control systems, and their integration into complex mechatronic
systems.
–Â System Modeling and Optimization: Ability to create accurate mathematical models of
mechatronic systems and optimize them for performance, efficiency, and reliability. This
involves understanding dynamic systems, control theory, and optimization algorithms.
–Â Virtual Prototyping: Proficiency in virtual prototyping techniques to simulate and
validate the performance of mechatronic systems before physical prototyping and
production. This involves creating virtual models of components and systems to assess
their behavior under various operating conditions.
NOS and Module Details | Theory Duration | Practical Duration | On-the-Job Training Duration (Mandatory) | On-the-Job Training Duration (Recommended) | Total Duration |
---|---|---|---|---|---|
Bridge Module: | 05:00 | 00:00 | 00:00 | 00:00 | 05:00 |
Module: 1 Introduction to Advance Mechatronics Simulation | 05:00 | 05:00 | |||
CSC/N: Perform Model and simulate the mechatronic system components software. | 60:00 | 60:00 | 00:00 | 00:00 | 120:00 |
Module:2 Introduction to Modelling Environment | 30:00 | 30:00 | 00:00 | 00:00 | 60:00 |
Module:3 Modelling Development using Simulation Software. | 25:00 | 30:00 | 00:00 | 00:00 | 55:00 |
CSC/N: Test, and Integrate all the sensor, actuators, control system and mechanical components of the mechatronic system. | 40:00 | 80:00 | 30:00 | 00:00 | 150:00 |
Module:4 Mechatronics Components Testing and Calibration | 20:00 | 40:00 | 00:00 | 60:00 | |
Module:5 System-Level Integration and Testing of Mechatronic system | 20:00 | 40:00 | 30:00 | 00:00 | 90:00 |
CSC/N: Collaboratively coordinate with the team for physical implementation of the designed and tested mechatronic system | 30:00 | 90:00 | 30:00 | 00:00 | 150:00 |
Module:6 Mechatronic System Prototype Fabrication | 30:00 | 90:00 | 30:00 | 00:00 | 150:00 |
CSC/N: Health, Safety and Environment at workplace is ensured by including emergency stops and safety sensors | 30:00 | 90:00 | 30:00 | 150:00 | |
Module:7 Risk Assessment and Hazard Identification in Mmechatronic Ssystem | 30:00 | 90:00 | 30:00 | 00:00 | 150:00 |
DGT/VSQ/N0102 -Employability Skills (60 hours) NOS Version No. – 1.0 | 36:00 | 54:00 | 90:00 | ||
Module 8: Introduction to Employability Skills | 1:00 | 2:00 | 00:00 | 3:00 | |
Module 9: Constitutional values - Citizenship | 0.5:00 | 1:00 | 30:00 | 00:00 | 1.5:00 |
Module 10: Becoming a Professional in the 21st Century | 2:00 | 3:00 | 5:00 | ||
Module 11: Basic English Skills | 4:00 | 6:00 | 10:00 | ||
Module 12: Career Development & Goal Setting | 1.5:00 | 2.5:00 | 4:00 | ||
Module 13: Communication Skills | 4:00 | 6:00 | 10:00 | ||
Module 14: Diversity & Inclusion | 1:00 | 1.5:00 | 2.5:00 | ||
Module 15: Financial and Legal Literacy | 4:00 | 6:00 | 10:00 | ||
Module 16: Essential Digital Skills | 8:00 | 12:00 | 20:00 | ||
Module 17: Entrepreneurship | 3:00 | 4:00 | 7:00 | ||
Module 18: Customer Service | 4:00 | 5:00 | 9:00 | ||
Module 19: Getting ready for apprenticeship & Jobs | 3:00 | 5:00 | 8.00 | ||
Total Duration | 176:00 | 334:00 | 90:00 | 660:00 |
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