Jinghu Tang
Papers
1
Total Citations
5
H-Index
1
About
Jinghu Tang is a rising innovator in the field of piezoelectric robotics and bionic actuation systems. His research focuses on the design, modeling, and performance optimization of piezoelectric-driven robots, particularly those inspired by biological locomotion principles. Tang’s most notable contribution is the development of an H-shaped bionic piezoelectric robot based on the standing wave principle, a novel design that enhances motion efficiency and structural simplicity. His 2025 paper on this topic has already garnered 5 citations, signaling early recognition for its practical potential in precision positioning and micro-manipulation. By integrating standing wave excitation with bionic geometry, Tang addresses key challenges in miniaturized robotics, such as reducing mechanical complexity while maintaining high-speed, high-precision movement. His work stands at the intersection of smart materials, structural dynamics, and biomimetics, offering a pathway toward more agile and energy-efficient robotic systems. As a researcher early in his career, Tang’s achievements demonstrate a strong capacity for impactful, application-driven innovation. His ongoing efforts promise to advance the capabilities of piezoelectric actuators in fields ranging from medical devices to industrial automation.
Research Focus
Key Achievements
Top Papers
- 1