This inventor holds 1 USPTO granted patent. Top assignee: University of Kansas. Active years: 2009.
Company Filing History:
Years Active: 2009
Title: Thomas Higgins: Innovator in Radar Technology
Introduction
Thomas Higgins is a notable inventor based in Lawrence, Kansas. He has made significant contributions to the field of radar technology, particularly through his innovative patent. His work focuses on enhancing the efficiency and accuracy of radar systems, which are crucial in various applications.
Latest Patents
Higgins holds a patent for a "Computationally efficient adaptive radar pulse compression system." This invention relates to a method for processing received, modulated radar pulses to effectively resolve radar targets from noise or other competing signals. The method involves receiving a radar return signal and obtaining samples of that signal. A minimum mean-square error (MMSE) pulse compression filter is determined for each successive sample. The MMSE filter is then separated into components using contiguous blocking, with each component containing a piecewise MMSE pulse compression filter segment. An estimate of the radar range profile is derived from either an initialization stage or a previous stage. The piecewise MMSE pulse compression filter segments are applied to enhance the accuracy of the estimate, which is repeated over two or three stages to adaptively suppress range sidelobes to a noise floor level.
Career Highlights
Higgins is affiliated with the University of Kansas, where he continues to advance research in radar technology. His work has implications for various fields, including defense and telecommunications, where precise radar systems are essential.
Collaborations
One of his notable collaborators is Shannon D. Blunt, with whom he has worked on various projects related to radar technology.
Conclusion
Thomas Higgins is a prominent figure in the field of radar technology, with a focus on developing innovative solutions that enhance the performance of radar systems. His contributions are vital for advancing the capabilities of radar applications in multiple industries.
