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Design and Fabrication of a Deployable Tensegrity-Based Robotic Arm
The primary goal of this research is to conceptualize, design, fabricate, and deploy a robotic arm driven by the principles of tensegrity structures, providing a unique approach to robotic movement, flexibility, and adaptability. Tensegrity, a portmanteau of "tension" and "integrity", refers to structural systems that derive their stability from a balance between tension and compression components. In recent years, there has been a growing interest in applying the principles of tensegrity to the realm of robotics, primarily due to its potential advantages such as lightweight structures, increased flexibility, and adaptive resilience. Scope: Literature Review: Investigation of existing research related to tensegrity robotics, its prin...
Preferred Majors
Aerospace Engineer & Mechanics | Electrical Engineering | Mechanical EngineeringKeywords
robotics | 3D modeling | prototyping | 3D printingFaculty
Sichen YuanDesigning a low noise amplifier for detectors of elementaty particles using electronic circuit simulation techniques
Use electronics circuit simulation software to design a dedicated low noise amplifier for novel detectors of elementary particles. Requires familiarity with relevant hardware (e.g., transimpedance amplifier) and software (e.g., LTspice)...