Company Filing History:
Years Active: 2019-2020
Title: Marco Guerriero: Innovator in Detection Systems and Pipeline Safety
Introduction
Marco Guerriero is a notable inventor based in Niskayuna, NY (US). He holds 2 patents that showcase his contributions to detection systems and pipeline safety technologies. His work reflects a commitment to advancing engineering solutions in critical industries.
Latest Patents
One of Guerriero's latest patents is a detection system that includes sensors and a method of operating such a system. This detection system features a first sensor that sends an ultrasonic pulse toward an object in a blowout prevention system. The system also includes a second sensor that sends a different ultrasonic pulse, allowing for enhanced detection capabilities. The system is designed to determine characteristics of the object based on the received ultrasonic pulses.
Another significant patent involves systems and methods to provide pipeline damage alerts. This innovation utilizes a signal processing unit that receives distributed acoustic sensing data and physical data from various pipeline locations. By employing a pipeline model, the system can automatically generate alerts indicating an increased probability of damage, thereby enhancing pipeline safety.
Career Highlights
Throughout his career, Marco Guerriero has worked with prominent companies such as General Electric Company and Baker Hughes, a GE Company, LLC. His experience in these organizations has contributed to his expertise in developing innovative technologies.
Collaborations
Guerriero has collaborated with notable professionals in his field, including Frederick Wilson Wheeler and Glen Peter Koste. These collaborations have likely enriched his work and led to advancements in the technologies he has developed.
Conclusion
Marco Guerriero's contributions to detection systems and pipeline safety demonstrate his innovative spirit and dedication to engineering excellence. His patents reflect significant advancements that can enhance safety and efficiency in critical applications.