Lesznowola, Poland

Arkadiusz Bartlomiej Nagorski


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Arkadiusz Bartlomiej Nagorski: Innovator in Acoustic Monitoring Systems

Introduction

Arkadiusz Bartlomiej Nagorski is a notable inventor based in Lesznowola, Poland. He has made significant contributions to the field of acoustic monitoring, particularly in power generation systems. His innovative approach combines technology and engineering to enhance the efficiency and reliability of these systems.

Latest Patents

Nagorski holds a patent for a "Cloud-based acoustic monitoring, analysis, and diagnostic for power generation system." This system includes an acoustic monitoring, analysis, and diagnostic framework that utilizes a processor. The processor is designed to receive near field (NF) noise signals from a microphone array, which measures noises from a power generation system. Additionally, it receives far field (FF) noise signals from another microphone array. The processor synchronizes these measurements to create a comprehensive noise signature, enabling the diagnosis of root causes of noises generated by the power generation system.

Career Highlights

Nagorski is currently employed at GE Infrastructure Technology, LLC, where he applies his expertise in acoustic monitoring. His work focuses on developing advanced systems that improve the operational efficiency of power generation technologies. His innovative solutions have the potential to significantly impact the industry.

Collaborations

He collaborates with talented professionals such as Quoc Hoai Nguyen and Dinesh Venugopal Setty. These partnerships enhance the development of cutting-edge technologies in the field of acoustic monitoring.

Conclusion

Arkadiusz Bartlomiej Nagorski is a pioneering inventor whose work in acoustic monitoring systems is shaping the future of power generation. His contributions are vital for improving the efficiency and reliability of these systems.

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