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Discover the nexus of Science, Technology, Engineering, and Medicine in our Multidisciplinary Open Access Journal – a platform for breakthroughs and collaborative expertise, driving knowledge and innovation. | Important Update! Building on our inaugural year's success, adjustments to article processing charges will take effect in October. More details coming soon!
Engineering

Mechatronics Engineering at IgMin Research | Engineering Group

Our mission is to foster interdisciplinary dialogue and accelerate the advancement of knowledge across a wide spectrum of scientific domains.

About

Welcome to the world of Mechatronics Engineering, where cutting-edge technology meets intricate mechanical design and intelligent control systems. Mechatronics Engineering is an interdisciplinary field that integrates principles from mechanical engineering, electronics, computer science, and control engineering to create innovative solutions that bridge the gap between the physical and digital realms. This field has gained significant prominence in modern industries, shaping automation, robotics, and advanced manufacturing processes.

At IgMin Research, we delve into the diverse domains encompassed by Mechatronics Engineering, fostering a holistic understanding of this dynamic field. Our comprehensive coverage includes, but is not limited to, the following scopes:

  • Robotic Systems and Control
  • Sensors and Actuators
  • Automation and Manufacturing
  • Embedded Systems
  • Artificial Intelligence in Mechatronics
  • Microcontroller Applications
  • Machine Vision and Image Processing
  • Autonomous Systems
  • Human-Machine Interaction
  • Control System Design
  • Motion Planning and Kinematics
  • Mechatronic Design Principles
  • Smart Materials and Structures
  • Bio-mechatronics
  • Haptic Systems
  • Internet of Things (IoT) in Mechatronics
  • Mechatronic Prototyping
  • Digital Signal Processing
  • Rapid Prototyping and 3D Printing
  • Mechatronics in Medical Applications
  • Energy-efficient Systems
  • Vehicular Mechatronics
  • Wearable Mechatronics
  • Robotics in Hazardous Environments
  • Mechatronics Education and Training

Engineering Group (2)

Mini Review Article ID: igmin212
Cite

Open Access Policy refers to a set of principles and guidelines aimed at providing unrestricted access to scholarly research and literature. It promotes the free availability and unrestricted use of research outputs, enabling researchers, students, and the general public to access, read, download, and distribute scholarly articles without financial or legal barriers. In this response, I will provide you with an overview of the history and latest resolutions related to Open Access Policy.

From Motor Augmentation to Body Enhancement, the Harmony between Human Body and Artificial Parts
by Liming YU, Bohan LV, Xin LI, Yuhang Wang and Ifeoluwa David Oyename

Based on the recent study of the Third Thumb at the University of Cambridge, one profound question is arising: Do human beings and the human body need a Third Thumb? This article introduces briefly motor augmentation and human augmentation emerging in decades compared to human enhancement, then focuses on three concerns deriving from the methodology of engineering system design including the relationship of system and part, main function and auxiliary function, and engineering system evolution and human evolution, so as to discuss the coordinat...ion between the human body and artificial parts generated by wearable interactive technology employed in motor augmentation.

Biomedical Engineering Mechatronics Engineering
Mini Review Article ID: igmin144
Cite

Open Access Policy refers to a set of principles and guidelines aimed at providing unrestricted access to scholarly research and literature. It promotes the free availability and unrestricted use of research outputs, enabling researchers, students, and the general public to access, read, download, and distribute scholarly articles without financial or legal barriers. In this response, I will provide you with an overview of the history and latest resolutions related to Open Access Policy.

On the Governing Equations for Velocity and Shear Stress of some Magnetohydrodynamic Motions of Rate-type Fluids and their Applications
by Constantin Fetecau

The governing equations for the shear stress corresponding to some magnetohydrodynamic (MHD) motions of a large class of rate-type fluids are brought to light. In rectangular domains, the governing equations of velocity and shear stress are identical as form. The provided governing equations can be used to solve motion problems of such fluids when shear stress is prescribed on the boundary. For illustration, the motion in an infinite circular cylinder with shear stress on the boundary is discussed.

Dynamics Mechatronics EngineeringApplied Engineering