Haoyu Tan
Papers
2
Total Citations
21
H-Index
2
About
Haoyu Tan is a leading researcher in the field of micro-electromechanical systems (MEMS) for underwater acoustics, with a primary focus on developing next-generation vector hydrophones. His work addresses critical challenges in marine resource exploration and long-distance underwater detection by engineering sensors that overcome the traditional limitations of narrow frequency bandwidth. Tan’s major contributions include pioneering the design of flexible, conformal hydrophones using innovative 3D buckling structures and heterogeneous integration technologies. These advances enable sensors to conform to curved surfaces, significantly improving their adaptability and performance in real-world marine environments. His most cited paper, "Design and Simulation of Flexible Underwater Acoustic Sensor Based on 3D Buckling Structure" (2021), has garnered 17 citations, establishing a foundation for flexible acoustic sensing. More recently, his 2024 work on MEMS flexible conformal hydrophones demonstrates continued innovation, targeting the low-frequency noise from commercial shipping and seismic exploration. Tan’s research is pivotal for enhancing the sensitivity and range of underwater acoustic detection, with direct applications in marine biology, defense, and oceanography. His achievements mark him as a rising authority in MEMS-based acoustic sensor technology.
Research Focus
Key Achievements
Top Papers
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