Beverly, MA, United States of America

Matthew A Morena

This inventor holds 3 USPTO granted patents. Top assignee: University of New Hampshire. Active years: 2017-2022.


% Patents Active = 66.7

Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2017-2022

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3 patents (USPTO):Explore Patents

Title: Innovations of Matthew A Morena

Introduction

Matthew A Morena is an accomplished inventor based in Beverly, MA (US). He has made significant contributions to the field of technology, particularly in the area of chaotic entanglement using cupolets. With a total of three patents to his name, his work showcases innovative approaches to complex systems.

Latest Patents

Matthew's latest patents focus on systems and methods for chaotic entanglement using cupolets. These patents present techniques for maintaining cupolets in a state of mutual stabilization. The process involves generating a first cupolet and a second cupolet, applying a first control code to the first cupolet to produce a first visitation code, and transforming this code based on an exchange function to create a second control code. This second control code is then applied to the second cupolet, producing a second visitation code, which is also transformed back to produce the first control code. This innovative method allows for repeated applications of control codes to achieve stabilization.

Career Highlights

Matthew A Morena is affiliated with the University of New Hampshire, where he continues to advance his research and development efforts. His work has garnered attention for its potential applications in various technological fields.

Collaborations

Matthew collaborates with Kevin Michael Short, contributing to the innovative research environment at the University of New Hampshire.

Conclusion

Matthew A Morena's contributions to the field of chaotic entanglement and his innovative patents highlight his role as a significant inventor in modern technology. His work continues to inspire advancements in complex systems and stabilization techniques.

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