Dr. Xiangbao Zeng | Tough Sensors Awards | Best Researcher Award

Dr. Xiangbao Zeng | Tough Sensors Awards | Best Researcher Award

Dr. Xiangbao Zeng, Chongqing University, China

Zeng Xiangbao is a distinguished PhD candidate in Instrument Science and Technology at the College of Optoelectronic Engineering, Chongqing University, China, with a focus on ultrasonic and photoelectric sensors. Currently serving as a senior engineer at CETC Chip Technology Co., Ltd., Chongqing, he has contributed significantly to the field of sensor research and development. Over the years, Zeng has led and participated in more than 10 national research projects, including four at the national level. His innovative work spans biosensing, piezoelectric sensing, photoelectric sensing, and intelligent perception, including the development of a distributed laser gas monitoring system and an acoustic resonance ultrasonic wind sensor used in diverse industries such as environmental protection and wind energy. With more than 40 patents and 10 peer-reviewed publications, Zeng is an active collaborator on national programs and works closely with institutions like MIT to advance sensor technologies. His membership in the Acoustical Society of China and the China Instrument and Control Society further reflects his commitment to the advancement of sensor technologies.

Professional Profile:

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Suitability for the Best Researcher Award: Dr. Xiangbao Zeng

Dr. Xiangbao Zeng is an exemplary candidate for the Best Researcher Award due to his outstanding contributions to sensor technology, particularly in the fields of acoustic, photoelectric, and biochemical sensors. His innovative research has resulted in significant advancements in sensor applications, evidenced by his numerous academic and industrial achievements.

Academic and Professional Background:

Zeng Xiangbao is a PhD candidate in Instrument Science and Technology at the College of Optoelectronic Engineering, Chongqing University, China πŸŽ“. Currently, he is a Senior Engineer at CETC Chip Technology Co., Ltd, Chongqing πŸ‡¨πŸ‡³. His research focuses on ultrasonic sensors and photoelectric sensors, and he has published more than 10 peer-reviewed papers πŸ“š.

Research & Innovations:

  • Zeng has completed and is involved in over 10 national projects and has presided over 4 national-level projects 🌍.
  • He has published 41 patents πŸ“ and 11 research papers in reputable journals πŸ“–.
  • Collaborated with MIT on research regarding disinfection factors πŸ”¬.
  • His research includes acoustic, optical, and biochemical sensors 🌟.

Key Contributions:

  • Developed a distributed laser gas monitoring system for underground pipeline corridors πŸš‡.
  • Created an acoustic resonance ultrasonic wind sensor widely used in wind turbine generators and the meteorological & environmental protection industries 🌬️🌍.
  • Holds over 40 patents and continues to innovate in biosensing, piezoelectric sensing, and intelligent perception πŸ€–πŸ”§.

Awards & Recognition:

Zeng’s contributions have earned him recognition within his field, and he is a leading researcher in sensor technologies that play a critical role in environmental and industrial applications 🌱⚑.

Publication top Notes:

Full-Phase Wind Speed and Direction Algorithm for Acoustic Resonance Wind Sensor

Bionic tribo-sensors with sweat and smudge-resistant as electronic skin for personal authentication

Signal Identification Method of Vibration Sensor System for Environmental Condition Monitoring

Study on Closed-Loop Solving Strategy of Piezoelectric Ultrasonic Resonant Wind Sensor

Research on performance improvement of acoustic resonance-based wind sensors by using dual closed-loop control

Study on Preparation and Properties of Sodium Potassium Niobate-Based 1-3 Piezoelectric Composites

Resonance-State Temperature Compensation Method for Ultrasonic Resonance Wind Speed and Direction Sensors

Prof. Yoon-Gyung Sung | Sensing Awards | Best Researcher Award

Prof. Yoon-Gyung Sung | Sensing Awards | Best Researcher AwardΒ 

Prof. Yoon-Gyung Sung, Chosun University, South Korea

Yoon-Gyung Sung is a distinguished professor in the Department of Mechanical Engineering at Chosun University, South Korea, where he has been a faculty member since 2001. He earned his B.S. degree in machine design from Yeungnam University in 1982, followed by an M.S. degree in mechanical vibration and control from Yonsei University in 1987. He completed his Ph.D. at The University of Alabama in 1997, specializing in the nonlinear control of large flexible systems. Dr. Sung was a postdoctoral fellow at the Korea Atomic Energy Research Institute (KAERI) from 1998 to 2000, where he further developed his expertise in control systems. His research interests encompass nonlinear system control, multiple robotics, input shaping control, and intelligent mechatronics, contributing significantly to advancements in these fields.

Professional Profile:

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Summary of Suitability for Best Researcher Award:Β 

Yoon-Gyung Sung is a distinguished academic in the field of mechanical engineering, holding degrees from prominent institutions: a B.S. in machine design from Yeungnam University (1982), an M.S. in mechanical vibration and control from Yonsei University (1987), and a Ph.D. from The University of Alabama, focusing on nonlinear control of large flexible systems (1997). He has been a faculty member at Chosun University since 2001 and currently serves as a full professor.

Education

  • Ph.D. in Mechanical Engineering
    The University of Alabama, USA
    Specialization: Nonlinear Control of Large Flexible Systems
    Year: 1997
  • M.S. in Mechanical Engineering
    Yonsei University, South Korea
    Specialization: Mechanical Vibration and Control
    Year: 1987
  • B.S. in Machine Design
    Yeungnam University, South Korea
    Year: 1982

Work Experience

  • Full Professor
    Department of Mechanical Engineering, Chosun University, South Korea
    Year: 2001 – Present
  • Postdoctoral Fellow
    Korea Atomic Energy Research Institute (KAERI)
    Years: 1998 – 2000

Publication top Notes:

Robust Input Shaping Commands with First-Order Actuators

Development of highly sensitive/durable porous carbon nanotube-polydimethylsiloxane sponge electrode for wearable human motion monitoring sensor

Robust Input Shapers for Acceleration-Limit Actuators

Design of a tribotester based on non-contact displacement measurements

Deflection reduction shaping commands with asymmetric first-order actuators

On–Off Shaping Commands for Asymmetrically Delayed Second-Order Actuators