Yonggang Jiang
Papers
12
Total Citations
303
H-Index
10
About
Yonggang Jiang is a pioneering researcher at the intersection of bio-inspired sensing, flexible electronics, and underwater robotics. His work centers on developing artificial lateral line (ALL) systems that mimic the remarkable mechanosensory organs found in fish, enabling underwater vehicles to perceive and navigate complex hydrodynamic environments. Jiang's landmark contributions include creating flexible ALL canal systems for hydrodynamic pressure detection and advancing multi-modal sensor fusion — combining pressure and flow velocity sensing — to dramatically improve underwater source localization, work that has garnered over 60 citations. His development of P(VDF-TrFE)/BTO nanofiber-based sensors further established new standards for biomimetic velocity detection. Beyond underwater sensing, Jiang has made notable strides in tactile sensing, introducing biomimetic structures capable of decoupling normal and shear stress for intelligent robotic applications. His research extends into microrobotics, where he pioneered magnetic-buoyancy-balanced microrobots for microfluidic manipulation and cell injection. More recently, his kirigami-inspired flexible bioelectronic tags demonstrate a versatile approach to compact ocean monitoring. With over 280 cumulative citations, Jiang's interdisciplinary body of work is shaping the future of soft robotics, marine sensing, and biologically inspired engineering.
Research Focus
Key Achievements
Top Papers
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- 8Manipulating Microrobots Using Balanced Magnetic and Buoyancy Forces15 citations · 2018
- 9Cell Injection Millirobot Development and Evaluation in Microfluidic Chip14 citations · 2018
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