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Guozhen Shen

Publications -  33
Citations -  339

Guozhen Shen is an academic researcher. The author has contributed to research in topics: Computer science & Engineering. The author has an hindex of 8, co-authored 33 publications receiving 339 citations.

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Perception‐to‐Cognition Tactile Sensing Based on Artificial‐Intelligence‐Motivated Human Full‐Skin Bionic Electronic Skin

TL;DR: By making full use of the FSB e‐skin with a six‐layer MLP neural network, an advanced intelligent material cognition system is developed for real‐time cognition of the object material species and locations via one contact, which surpasses the capability of humans.
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A high-accuracy, real-time, intelligent material perception system with a machine-learning-motivated pressure-sensitive electronic skin

TL;DR: In this article , a hybrid e-skin consisting of a triboelectric nanogenerator in tandem with a piezoresistive pressure sensor (PPS) is reported by using an eggshell membrane and infiltration method, which effectively perceives static and dynamic tactile information, such as human physiological information, manipulator tactile sensation, and human walking state.
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Dual sensing signal decoupling based on tellurium anisotropy for VR interaction and neuro-reflex system application

TL;DR: In this paper , the intrinsic anisotropy of tellurium nanowires is used to modulate the electronic structure and piezoelectric polarization and decouple pressure and temperature difference signals, and realize VR interaction and neuro-reflex applications.
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Technology Roadmap for Flexible Sensors.

Yi Fei Luo, +141 more
- 09 Mar 2023 - 
TL;DR: In this article, the authors identify bottlenecks hindering the maturation of flexible sensors and propose promising solutions to ease and to expedite their deployment, highlighting environmental concerns and emphasizing nontechnical issues such as business, regulatory, and ethical considerations.
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Wearable Hybrid Device Capable of Interactive Perception with Pressure Sensing and Visualization

TL;DR: In this paper , an integrated hybrid device based on ionic sensing and electrochromic display is proposed for interactive pressure perception, which enables quantitative sensing and direct color changing in response to pressure.