Location History:
- Phoenix, AZ (US) (1992)
- Glendale, AZ (US) (2010 - 2012)
Company Filing History:
Years Active: 1992-2012
Title: Gerald B Kelley: Innovator in Digital Control Systems
Introduction
Gerald B Kelley is a notable inventor based in Glendale, AZ (US), recognized for his contributions to digital control systems. With a total of 6 patents, Kelley has made significant advancements in redundancy management and flight control systems.
Latest Patents
One of Kelley's latest patents is titled "Method and system for redundancy management of distributed and recoverable digital control system." This invention provides a method for managing redundancy in a digital control system, utilizing unique techniques to ensure recovery and restoration of redundant elements in an asynchronous environment. The system features a first computing unit with redundant computational lanes that generate control commands, while internal monitors detect data errors and trigger recovery processes. Another significant patent is the "Limited authority and full authority mode fly-by-wire flight control surface actuation control system." This system includes an actuator control unit and a flight control module that generates flight control commands based on pilot inputs and flight control data, ensuring the operability of actuator control channels.
Career Highlights
Throughout his career, Gerald B Kelley has worked with prominent companies such as Honeywell International Inc. and Honeywell G.m.b.h. His experience in these organizations has contributed to his expertise in developing innovative control systems.
Collaborations
Kelley has collaborated with notable individuals in his field, including Kent Stange and Richard F Hess. These partnerships have likely enhanced his work and led to further advancements in technology.
Conclusion
Gerald B Kelley is a distinguished inventor whose work in digital control systems has paved the way for innovative solutions in redundancy management and flight control. His contributions continue to impact the field significantly.