Mechanical Engineering

AAP Advances in Green Technologies for Sustainable Energy Solutions

MEMS in Renewable Energy Systems
Design, Optimization, and Applications

Editors: Dr. Himanshu Sharma
Dr. Anil Dhanola
Dr. Jarnail Singh

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MEMS in Renewable Energy Systems

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Series: AAP Advances in Green Technologies for Sustainable Energy Solutions

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Short description about the volume:


Renewable energy sources development is a great step in sustainable development worldwide. For technologies to overcome climate change, countries need innovative technologies that offer lower, more dependably scalable, and more cost-effective solutions for renewable energy systems than fossil fuel-based systems. Micro-Electro-Mechanical Systems (MEMS) can be seen as revolutionary facilitator that are transforming energy generation, control, and management. It highlights that the incorporation of MEMS elucidate an excellent roadmap in optimizing energy consumption, reducing the size of systems, and provides instantaneous feedback of the performance of renewable energy systems, which has been a significant driving force to the world in its shift towards greener energy alternatives.

MEMS also transform efficiency, scalability, and adaptability in renewable energy systems. From solar trackers and wind turbine sensors to advanced energy storage systems and smart grid monitoring solutions, MEMS devices, with their accuracy and compactness, have shown considerable promise in numerous renewable energy applications. Detailed real-time measurement, control and management of renewable energy systems allow them to continue operating at maximum efficiency even as environmental conditions shift. Some other uses of MEMS are in markets like wireless sensor networks, where they package countless individuals towards the end to manage, measure, and monitor real-world parameters in each product segment even when integrated over long range, for example in the power sector, where integration of MEMS components in devices such as micro fuel cells for battery replacement, solar cells, MEMS pressure sensors, and power systems assist in seamless integration of renewable energy sources into established power infrastructures. Hence, it is an invaluable resource for researchers, engineers, and energy professionals looking to capitalize on these revolutionary technologies in the pursuit of a cleaner and more sustainable energy landscape, as well as the design and optimization and real-world applications of MEMS in renewable energy illustrated in this book.

Coverage

To create an authoritative and comprehensive volume, we invite scholars, researchers, and industry professionals to contribute original research and perspectives. While the following topics are the primary focus, we encourage submissions that explore additional areas within this evolving field.

SUGGESTED CONTENTS

Section 1: Introduction to MEMS in Renewable Energy


Chapter 1: Fundamentals of MEMS (Micro-Electro-Mechanical Systems)
Chapter 2: Role of MEMS in Renewable Energy Systems

Section 2: Design and Fabrication of MEMS for Renewable Energy Applications

Chapter 3: MEMS Sensors for Energy Monitoring
Chapter 4: MEMS for Solar Energy Systems
Chapter 5: MEMS in Wind Energy Systems
Chapter 6: MEMS for Energy Harvesting

Section 3: Optimization and System Integration

Chapter 7:
Design Optimization of MEMS for Renewable Systems
Chapter 8: MEMS-based Control Systems for Renewable Energy

Section 4: Applications and Case Studies

Chapter 9:
MEMS in Smart Grids and Energy Storage
Chapter 10: MEMS in Hybrid Renewable Energy Systems
Chapter 11: Case Studies in MEMS for Renewable Energy

Section 5: Future Trends and Emerging Technologies

Chapter 12:
MEMS for Future Energy Technologies
Chapter 13: Sustainability and Environmental Impact of MEMS
Chapter 14: Emerging Trends and Innovations
Chapter 15: Case Studies and Successful Implementation of MEMS based Renewable Energy Systems

Important Dates:

Initial Proposal / Abstract Submission (300 – 400 words)
Deadline: April 3rd, 2025
Notification of Acceptance: May 3rd, 2025
Full Chapter (4,000 – 7,000 words) Submission Due: On or before July 4th, 2025

Submission procedure:

We invite researchers and practitioners to contribute original chapters to this book. Prospective authors should submit a one-page proposal or abstract outlining the chapter’s content, objectives, and methodology by April 3rd, 2025. The proposal must include the chapter title and author details. Notifications of acceptance will be sent by May 3rd, 2025. Accepted authors will be required to submit full chapters (15–20 pages) by July 4th, 2025. All submissions will undergo a rigorous peer-review process.

To submit your proposal or full-length chapter, please send a Word document attachment to editors:

Dr. Himanshu Sharma
Dr. Anil Dhanola
Dr. Jarnail Singh
For submissions and questions, please contact: optimizedmems@gmail.com

Authors must refer to the following link for detailed guidelines for chapter preparation: http://www.appleacademicpress.com/publishwithus


Note: Authors submitting manuscripts to this book do not incur any publication fees. To ensure the originality and quality of the content, all submissions must be previously unpublished and not under consideration for publication in any other venue.


About the Authors / Editors:
Editors: Dr. Himanshu Sharma
Assistant Professor, UIE, Department of ECE, Chandigarh University, Mohali, India

Dr. Anil Dhanola
Assistant Professor, UIE, Department of Mechanical Engineering, Chandigarh University, Mohali, India

Dr. Jarnail Singh
Assistant Professor, UIE, Department of Mechanical Engineering, Chandigarh University, Mohali, India




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