Zhejiang, China

Chunying Xu

USPTO Granted Patents = 1 

Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: **Chunying Xu: Innovator in Underwater Monitoring Technology**

Introduction

Chunying Xu, a talented inventor based in Zhejiang, China, has made significant contributions to the field of underwater monitoring technology. With a focus on enhancing ocean observation capabilities, she has developed an innovative solution that addresses the challenges associated with real-time monitoring of underwater surface deformation.

Latest Patents

Chunying Xu holds a patent for her invention titled "Multi-node Data Synchronous Acquisition System and Method for Real-Time Monitoring of Underwater Surface Deformation." This sophisticated system comprises at least four sensor arrays, each using ribbon-like rigid substrates connected by movable joints. Each sensor array has multiple sensor units that communicate with a slave station data acquisition unit, which then integrates data and transmits it to a central controller. The system's design allows for synchronous acquisition of multi-node data underwater and facilitates three-dimensional surface reconstruction, marking a significant advancement in oceanographic research.

Career Highlights

Chunying Xu is affiliated with Zhejiang University, where she continues to work on innovative research projects. Her pioneering efforts in the field of underwater technology have positioned her as a prominent figure in ocean observation and monitoring.

Collaborations

Throughout her career, Chunying Xu has collaborated with notable colleagues, including Jiawang Chen and Huangchao Zhu. These partnerships have fostered a productive research environment, contributing to the development and refinement of her groundbreaking inventions.

Conclusion

Chunying Xu's contributions to underwater monitoring technology exemplify her commitment to innovation and research excellence. With her patented system for real-time monitoring of underwater surface deformation, she is poised to enhance our understanding of ocean dynamics and improve ocean observation capabilities for future generations.

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