Company Filing History:
Years Active: 2020
Title: Innovations of Xiankun Wang in Hydrographic Surveying
Introduction
Xiankun Wang is a notable inventor based in Qingdao, China. He has made significant contributions to the field of hydrographic surveying and charting technology. His innovative work focuses on enhancing the capabilities of multi-beam sonar systems.
Latest Patents
Xiankun Wang holds a patent for a "Device and method for detecting main acoustic indexes of multi-beam sonar." This invention pertains to the field of hydrographic surveying and charting technology. The device includes a rotating device and a lifting gear installed in an anechoic tank. The bottom of the rotating device is equipped with a multi-beam sonar that has its rotating plane perpendicular to the direction of the track line and transmits signals along the horizontal direction. A standard hydrophone is equipped at the bottom of the lifting gear and is connected with a signal collector. The device utilizes the standard hydrophone to receive the pulse signals transmitted by the multi-beam sonar and employs the multi-beam sonar to receive the standard sound source signals. It designs the detection process for data collection for analysis and research, thereby achieving the detection of the frequency, source level, and beam angle of multi-beam sonar. He has 1 patent to his name.
Career Highlights
Xiankun Wang is affiliated with Shandong University, where he continues to advance his research and development in sonar technology. His work has been instrumental in improving the accuracy and efficiency of hydrographic surveys.
Collaborations
He has collaborated with notable colleagues, including Fanlin Yang and Donghui Li, to further enhance the research and development efforts in their field.
Conclusion
Xiankun Wang's innovative contributions to hydrographic surveying technology demonstrate his commitment to advancing the field. His patent for detecting acoustic indexes of multi-beam sonar showcases his expertise and dedication to improving sonar systems.