Pullman, WA, United States of America

David M Gneiting


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: David M Gneiting: Innovator in Electric Power Systems

Introduction

David M Gneiting is a notable inventor based in Pullman, WA (US). He has made significant contributions to the field of electric power systems, particularly in the detection and remediation of transients. His innovative work has the potential to enhance the stability and reliability of power systems.

Latest Patents

David M Gneiting holds a patent for "Detection and remediation of transients in electric power systems." This patent outlines systems and methods for detecting transients that could destabilize electric power systems. The invention includes an angle monitoring subsystem that determines the angle between two rotating machines based on multiple measurements. It also features a stability threshold subsystem that establishes a dynamic stability threshold to identify potentially destabilizing transient conditions. An event detection subsystem compares metrics of instability to this threshold, allowing for the detection of transient conditions. Finally, a remedial action subsystem implements necessary actions based on the instability metrics.

Career Highlights

David M Gneiting is associated with Schweitzer Engineering Laboratories, Inc., where he applies his expertise in electric power systems. His work focuses on improving the detection and management of transient conditions, which is crucial for maintaining system stability.

Collaborations

David has collaborated with notable colleagues such as Ellery Abner Blood and Jedidiah W Bartlett. Their combined efforts contribute to advancements in the field of electric power systems.

Conclusion

David M Gneiting's innovative work in electric power systems showcases his commitment to enhancing system stability through advanced detection methods. His contributions are vital for the future of reliable power management.

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