Location History:
- Mountain View, CA (US) (2019 - 2021)
- Sunnyvale, CA (US) (2021)
Company Filing History:
Years Active: 2019-2021
Title: Gregory D Dibb: Innovator in Vehicle Technology
Introduction
Gregory D Dibb is a notable inventor based in Mountain View, CA (US). He has made significant contributions to the field of vehicle technology, holding a total of 4 patents. His work focuses on enhancing vehicle performance and service delivery through innovative systems and methods.
Latest Patents
One of Gregory's latest patents is titled "Tire wear estimation using a hybrid machine learning system and method." This invention involves a tire tread wear system that utilizes vehicle sensors and a processor. The processor includes a control module, a geometrical model, and a machine learning model. The geometrical model collects data from the vehicle sensors to determine the dynamic rolling radius of a tire and outputs a tread wear estimation based on this data. The machine learning model correlates the tread wear estimation with various data instances related to tire tread states.
Another significant patent is "Vehicle sensing and access control for on-demand services." This technology provides methods and systems for delivering on-demand services to vehicles. It determines vehicle information, generates requests for fuel delivery services, confirms vehicle identification through wireless signals, and secures the vehicle after service completion.
Career Highlights
Gregory Dibb is currently employed at Nissan North America, Inc., where he continues to innovate in vehicle technology. His work has contributed to advancements in both safety and efficiency in automotive systems.
Collaborations
Gregory has collaborated with talented individuals such as Siddharth Thakur and GianLuca Storti, enhancing the innovative capabilities of his projects.
Conclusion
Gregory D Dibb's contributions to vehicle technology through his patents demonstrate his commitment to innovation and improvement in the automotive industry. His work continues to influence the future of vehicle performance and service delivery.