Liu et al., 2024 - Google Patents
Underwater biomimetic lateral line sensor based on triboelectric nanogenerator for dynamic pressure monitoring and trajectory perceptionLiu et al., 2024
View PDF- Document ID
- 16646053409035417770
- Author
- Liu J
- Xu P
- Liu B
- Xi Z
- Li Y
- Guo L
- Guan T
- Zhu P
- Meng Z
- Wang S
- Wang H
- Xu M
- Publication year
- Publication venue
- Small
External Links
Snippet
Developing desirable sensors is crucial for underwater perceptions and operations. The perceiving organs of marine creatures have greatly evolved to react accurately and promptly underwater. Inspired by the fish lateral line, this study proposes a triboelectric dynamic …
- 230000008447 perception 0 title abstract description 22
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Liu et al. | Underwater biomimetic lateral line sensor based on triboelectric nanogenerator for dynamic pressure monitoring and trajectory perception | |
Shi et al. | Self-powered triboelectric nanogenerator buoy ball for applications ranging from environment monitoring to water wave energy farm | |
An et al. | Biomimetic hairy whiskers for robotic skin tactility | |
Yu et al. | A self‐powered dynamic displacement monitoring system based on triboelectric accelerometer | |
CN110726756B (en) | Bionic whisker sensor based on friction nano generator | |
Xu et al. | A bio-inspired and self-powered triboelectric tactile sensor for underwater vehicle perception | |
Xu et al. | A triboelectric-based artificial whisker for reactive obstacle avoidance and local mapping | |
CN104836472B (en) | Utilize the generator and sound transducer of acoustic energy | |
Wang et al. | A Self‐powered Triboelectric Coral‐Like Sensor Integrated Buoy for Irregular and Ultra‐Low Frequency Ocean Wave Monitoring | |
Liu et al. | Triboelectric hydrophone for underwater detection of low-frequency sounds | |
CN211784189U (en) | Fluid motion measurement sensor device based on artificial tentacles | |
CN103780121A (en) | Ultrasonic sound and sound wave detector based on triboelectricity nanometer generator | |
CN104155586B (en) | Transformer partial discharge ultrasonic vector array positioning device and manufacturing method thereof | |
CN109391168A (en) | Sensor and method for sensing in Pneumatic friction nano generator, pneumatic system | |
Wang et al. | Self‐Powered Multifunctional Triboelectric Sensor Based on PTFE/PU for Linear, Rotary, and Vibration Motion Sensing | |
Zhang et al. | Pull‐In Analysis of the Flat Circular CMUT Cell Featuring Sealed Cavity | |
Ryu et al. | Flexible piezoelectric liquid volume sensor | |
Shi et al. | A self-powered triboelectric multi-information motion monitoring sensor and its application in wireless real-time control | |
Guo et al. | Self-powered angle-resolved triboelectric nanogenerator for underwater vibration localization | |
Hou et al. | Self‐Powered Underwater Force Sensor Based on a T‐Shaped Triboelectric Nanogenerator for Simultaneous Detection of Normal and Tangential Forces | |
CN111289220B (en) | Fluid motion measurement sensor device based on artificial tentacles | |
CN106643981A (en) | Ground pile type water level monitoring device | |
Mao et al. | Extraordinary-durable cylindrical rotary triboelectric nanogenerator based on CB/Fe3O4/PDMS microarrays for energy harvester | |
Wu et al. | A Self‐Powered Triboelectric Nanosensor for PH Detection | |
JP2020514754A5 (en) |