Bloomington, IN, United States of America

Betsy Marschand


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Betsy Marschand

Introduction

Betsy Marschand is a notable inventor based in Bloomington, IN (US). She has made significant contributions to the field of technology, particularly in systems that utilize directed energy and machine learning. Her work focuses on enabling or protecting against non-destructive degradation or disruption of electro-optic systems or sensors.

Latest Patents

Betsy holds a patent for "Systems and related methods employing directed energy and machine learning operable for enabling or protecting from non-destructive degradation or disruption of electro-optic(s) or sensors." This patent encompasses various embodiments, including artificial learning counter surveillance (ALCS) and self-protection surveillance systems (SPSS). The apparatuses and methods described in her patent include non-destructive electro-optic interference or protection systems, as well as directed energy systems. Additionally, her work involves a control system and an analysis system that determines the optical system of interest and generates degradation or disruption effects using various equipment and machine learning systems. Methods for assessing the severity of degradation or disruption based on threshold definitions are also included.

Career Highlights

Betsy is currently employed by the United States Navy, where she contributes her expertise to innovative projects. Her work is instrumental in advancing technologies that enhance the functionality and reliability of electro-optic systems.

Collaborations

Betsy collaborates with talented individuals such as Tyler Fitzsimmons and Clay Armstrong, who contribute to her projects and research endeavors.

Conclusion

Betsy Marschand's innovative work in directed energy and machine learning showcases her commitment to advancing technology in the field of electro-optics. Her contributions are vital for the development of systems that protect and enhance the functionality of critical technologies.

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