Beijing, China

Guo Qing


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2013

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1 patent (USPTO):Explore Patents

Title: Innovator Guo Qing and His Contributions to Chinese Prosody

Introduction

Guo Qing is a notable inventor based in Beijing, China, recognized for his innovative approach to language processing. With a focus on developing methods that enhance the clarity and naturalness of spoken Chinese, he has made significant strides in the field of prosody.

Latest Patents

Guo Qing holds a patent for a "Chinese prosodic words forming method and apparatus." This patent outlines a comprehensive method that involves several critical steps, including inputting Chinese text, performing word segmentation, and part of speech annotation. The invention aims to generate a sequence of prosodic words by inserting grids that represent prosodic word boundaries. This unique approach addresses the challenges associated with insertion errors that can obscure pronunciation and reduce naturalness in speech.

Career Highlights

Guo Qing is currently affiliated with Fujitsu Corporation, where he applies his expertise in linguistic technology. His work has contributed to advancements in the field, making spoken Chinese more accessible and intelligible. His dedication to improving language processing systems is evident in the effectiveness of his patented methods.

Collaborations

In his endeavors, Guo Qing collaborates with prominent colleagues, including Nobuyuki Katae. Their partnership brings together a wealth of knowledge and experience in developing cutting-edge language processing solutions.

Conclusion

Through his innovative work, Guo Qing has positioned himself as a valuable contributor to the field of language technology. His patent for forming Chinese prosodic words enhances the understanding and usability of spoken Chinese, showcasing the importance of innovation in linguistics and communication. As he continues his work at Fujitsu Corporation, the potential for further advancements in language processing remains promising.

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