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  1. Courses
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  3. Future of Production

Future of Production

This course delves into the forefront of manufacturing, exploring how emerging technologies and innovative practices are revolutionizing the industry.

Prasanthkumar Palani
Prasanthkumar Palani
Technology | core | 4 hours |   Published: Jul 2024
In partnership with: Coursera

    Discussions

Overview

1KSTUDENTS*
95.9%RECOMMEND*

This course includes:

  • 4 hours of on-demand video  
  • Certificate of completion  
  • Direct access/chat with the instructor 
  • 100% self-paced online 

This course delves into the forefront of manufacturing, exploring how emerging technologies and innovative practices are revolutionizing the industry. Participants will gain insights into the latest trends and advancements in production processes, including the impact of automation, robotics, and sustainable practices. Through real-world examples and case studies, learners will understand how to implement AI, additive manufacturing, and sustainable strategies in manufacturing. By honing strategic thinking skills and acquiring concrete competencies, participants will be prepared to navigate the evolving landscape of manufacturing effectively.

Skills You Will Gain

Additive Manufacturing
Automation
Emerging Technologies
Robotics
Sustainable Manufacturing

Learning Outcomes (At The End Of This Program, You Will Be Able To...)

  • Analyze the impact of technology on manufacturing processes. 
  • Evaluate the role of automation and robotics in production. 
  • Apply knowledge of sustainable practices in manufacturing scenarios. 
  • Develop strategies for navigating the Future manufacturing.

Prerequisites

Basic knowledge of manufacturing processes and an interest in technology and sustainability. 

Who Should Attend

Manufacturing professionals, including managers, engineers, and those with a basic understanding of manufacturing processes interested in advancing their knowledge of evolving technologies, automation, robotics, sustainability, and strategic planning for future manufacturing. 

Curriculum

Instructors

*Where courses have been offered multiple times, the “# Students” includes all students who have enrolled. The “%Recommended” shown is also based on this data.
Prasanthkumar Palani

Prasanthkumar Palani

Prashanthkumar is an Automotive Homologation Engineer, Premium Instructor, and EV Battery Pack Product/Process Safety Assessor based in Coimbatore, Tamil Nadu, India. With several years of extensive experience in the automotive industry, he specializes in the testing and certification of vehicles and components, with a deep focus on safety, compliance, and regulatory standards.

His expertise spans a wide range of technical domains, including powertrain modeling and control using MATLAB/SIMULINK, battery sizing, thermal management design, and optimization of Rechargeable Energy Storage Systems (REESS) to meet specific design targets. Prashanthkumar has an in-depth understanding of the automotive development lifecycle and excels in sourcing powertrain and chassis-level components from both domestic and international suppliers.

He is proficient in coordinating the testing and validation of electric powertrains and vehicles to ensure compliance with international and national regulations. His regulatory knowledge includes ECE, FMVSS, CMVSS, KMVSS, USCAR, GB, and IEC standards, as well as functional safety under ISO 26262. Additionally, he has specialized expertise in high-voltage system design for electric and hybrid vehicle applications.

Through his professional journey and educational contributions, Prashanthkumar has built a reputation for precision, safety-first engineering, and dedication to advancing electric vehicle technology in line with global standards.

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1Module 1.1: Introduction to Manufacturing Processes
2Module 1.2: Overview of Emerging Technologies
3Module 1.3: Understanding Future Manufacturing
4Module 2.1: Advancements in Automation
5Module 2.2: Integration of Robotics in Production Processes
6Module 2.3: Digitalization in Manufacturing
7Module 3.1: Additive Manufacturing and 3D Printing
8Module 3.2: Internet of Things (IoT) in Manufacturing
9Module 3.3: Big Data and Analytics in Production
10Module 4.1: Environmental Challenges in Manufacturing
11Module 4.2: Green Manufacturing Initiatives
12Module 4.3: Circular Economy and Closed-Loop Manufacturing

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Segment 10 - Understanding the Future of Manufacturing

Segment 11 - The Rise of Industry 4.0

Segment 12 - The Impact of Additive Manufacturing

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Segment 05 - Internet of Things (IoT)

Segment 06 - Additive Manufacturing

Segment 07 - Artificial Intelligence (AI)

Segment 08 - Robotics and Automation

Segment 09 - Augmented Reality(AR) and Virtual Reality(VR)

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Segment 01 - Introduction and Welcome

Segment 02 - Introduction to Manufacturing Processes

Segment 03 - Types of Manufacturing Processes

Segment 04 - Significance of Manufacturing Processes

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Segment 22 - Introduction to Module 3

Segment 23 - Understanding Additive Manufacturing 

Segment 24 - Applications of Additive Manufacturing 

Segment 25 - The Future of Additive Manufacturing

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Segment 17 - Benefits of Integrating Robotics

Segment 18 - Challenges in Integrating Robotics

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Segment 19 - Data-Driven Decision Making

Segment 20 - Internet of Things (IoT) Integration

Segment 21 - Digital Twin Technology

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Segment 13 - Introduction to Module 2

Segment 14 - Robotics

Segment 15 - Artificial Intelligence (AI)

Segment 16 - Internet of Things (IoT) and Collaborative Robots (Cobots)

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Segment 29 - The Role of Big Data

Segment 30 - Benefits of Analytics in Production

Segment 31 - Challenges and Considerations

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Segment 32 - Introduction to Module 4

Segment 33 - Pollution and emissions

Segment 34 - Resource depletion

Segment 35 - Waste generation and carbon footprint

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Segment 26 - Internet of Things (IoT) in Manufacturing

Segment 27 - Benefits of IoT in Manufacturing

Segment 28 - Applications of IoT in Manufacturing

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Segment 40 - Design for Circular Economy

Segment 41 - Resource Recovery and Recycling

Segment 42 - Extended Producer Responsibility

Segment 43 - Wrap-up & key takeaways

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Segment 36 - Energy Efficiency

Segment 37 - Waste Reduction and Recycling

Segment 38 - Sustainable Material Selection

Segment 39 - Supply Chain Optimization