Papers
5
Total Citations
78
H-Index
4
About
Zhiguang Wang is a researcher whose work sits at the intersection of flexible electronics, magnetic sensing, and autonomous robotics. His most cited paper, "Highly sensitive integrated flexible tactile sensors with piezoresistive Ge2Sb2Te5 thin films" (37 citations), demonstrates his contribution to developing next-generation tactile sensors for applications in robotics and wearable devices. Wang has made significant advances in magnetic sensing, achieving a giant magneto-impedance of 41,036% in commercial inductors—a finding that offers a low-cost pathway to highly sensitive magnetic sensors for navigation and medical diagnosis. His work on wireless strain sensors using ferromagnetic resonance (7 citations) and dual-mode magnetic sensors (2 citations) further showcases his drive to create practical, high-performance sensing solutions. Beyond sensors, Wang has explored dynamic modeling and optimal control of positive buoyancy diving autonomous vehicles (9 citations), bridging sensor technology with autonomous underwater robotics. With a growing citation record and a portfolio spanning tactile, magnetic, and strain sensors, Wang is establishing himself as a versatile innovator in smart materials and intelligent systems.
Research Focus
Key Achievements
Top Papers
- 1
- 2Magnetic Sensor Based on Giant Magneto-Impedance in Commercial Inductors23 citations · 2020
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