Advanced Techniques and Applications Based on Sound and Vibration

Deadline for Manuscript Submissions: July 20, 2026

 

 

Special Issue Editors

 

Prof. Jun Ye Website  E-Mail: yehjun@aliyun.com; yejun1@nbu.edu.cn

Ningbo University, China

Interests: structural analysis; robotics and automation; machinery reliability; soft computing; medical diagonisis

 

 

 

Prof. Rui Yong Website  E-Mail: yongrui@nbu.edu.cn

Ningbo University, China

Interests: structural analysis; computer-aided engineering; rock methanics; soft computing in civil engineering; risk evaluation

 

 

Special Issue Information

Dear colleagues,

 

Sound and vibration techniques are versatile tools with a wide range of applications across various fields. Their ability to provide insights into system performance, structural integrity, and material properties makes them invaluable in enhancing safety, reliability, and efficiency in numerous industries. As technology advances, the applications of these techniques are expected to expand further, incorporating innovations like machine learning and artificial intelligence for more accurate and efficient analysis.

 

Contributions across a wide spectrum of topics are encouraged, including but not limited to:

 

  • health monitoring of structures such as bridges, buildings, and dams using vibration analysis
  • assessing the risks and failures of rotating machinery (motors, turbines, pumps, gearboxes)
  • evaluating the integrity of materials and components without causing damage  (commonly used in aerospace, automotive, and manufacturing)
  • utilizing sound and vibration techniques in medical imaging and diagnostics such as ultrasound imaging and monitoring cardiac function
  • using sound and vibration feedback in robotic systems for enhanceing navigation, object detection, and manipulation
  • using sound and vibration techniques in geological and geophysical surveys
  • evaluating noise and vibration in vehicles (cars, trains, airplanes)
  • assessing environmental noise pollution and its impact on human health and wildlife

 

 

Keywords

structural health monitoring

machinery condition monitoring

non-destructive testing

acoustic/vibration-based diagnostics

robotic vibration control

environmental noise assessment

dynamic measurements

computer-aided engineering

transportation vibration analysis

geophysical vibration techniques