Company Filing History:
Years Active: 2025
Title: Innovations of Navid Tehrani Dadkhah
Introduction
Navid Tehrani Dadkhah is an accomplished inventor based in Providence, RI (US). He has made significant contributions to the field of aerial vehicle technology, particularly in collision prevention systems. His innovative approach has led to the development of a unique patent that enhances the safety and efficiency of aerial navigation.
Latest Patents
Navid holds a patent for a "Collision prevention flight control mode." This invention encompasses systems and methods designed to control an aerial vehicle to avoid obstacles effectively. The system utilizes a world model generated from sensor data captured by one or more sensors positioned on the aerial vehicle during flight. It can detect obstacles and trigger an augmented manual control mode when the vehicle's speed falls below a predetermined threshold. The system sets a speed constraint for the aerial vehicle based on its distance from the obstacle, ensuring safe navigation.
Career Highlights
Navid is currently employed at Lockheed Martin Corporation, where he applies his expertise in aerospace technology. His work focuses on enhancing the safety features of aerial vehicles, contributing to the advancement of aviation technology. With a patent portfolio that includes 1 patent, he has established himself as a key player in the field.
Collaborations
Navid collaborates with talented professionals such as Anthony J. Smith and Michael Gregory Todd. Their combined expertise fosters an environment of innovation and creativity, driving forward the development of cutting-edge technologies in the aerospace sector.
Conclusion
Navid Tehrani Dadkhah's contributions to aerial vehicle technology exemplify the spirit of innovation. His patent for collision prevention flight control mode showcases his commitment to enhancing safety in aviation. Through his work at Lockheed Martin Corporation and collaborations with esteemed colleagues, he continues to push the boundaries of what is possible in the field.