Deep Reservoir Computers for Precise Chaos Control
TS-065447 — The Need:
In the realm of nonlinear control engineering, managing systems with chaotic dynamics poses a significant challenge. Conventional methods often fall short in achieving precise control over such systems due to their complexity and unpredictability. There's a pressing need for a solutio…
- College: College of Arts & Sciences
- Inventors: Canaday, Daniel; Gauthier, Daniel; Griffith, Aaron
- Licensing Officer: Dahlman, Jason "Jay"
Reservoir Computing: Revolutionizing Rapid Processing
TS-065446 — The Need: In today's fast-paced commercial landscape, there's an increasing demand for rapid processing of complex data sets. Traditional computing methods often struggle to keep pace with real-time requirements, leading to inefficiencies and missed opportunities. Addressing this need for sw…
- College: College of Arts & Sciences
- Inventors: Canaday, Daniel; Gauthier, Daniel; Griffith, Aaron
- Licensing Officer: Dahlman, Jason "Jay"
Secure Your Digital Fortress: Revolutionizing Cybersecurity with Next-Gen PUF Technology
TS-065412 — The Need:
In contemporary cybersecurity landscapes, the conventional methods of employing Physically Unclonable Functions (PUFs) necessitate maintaining a secure challenge-response database. However, this practice poses significant security risks as access to this database could lead to the comprom…
- College: College of Arts & Sciences
- Inventors: Gauthier, Daniel
- Licensing Officer: Dahlman, Jason "Jay"
Waveform-Capture-Device: Revolutionizing Precision Timing and High-Speed Waveform Analysis
TS-053834 — The Need
In various scientific and engineering fields, the accurate measurement of time-dependent digital waveforms is paramount. From wireless communication systems and GPS to medical imaging like PET scans, precision timing is critical. Traditional methods utilizing separate time-to-digital conve…
- College: College of Arts & Sciences
- Inventors: Charlot, Noeloikeau; Gauthier, Daniel
- Licensing Officer: Dahlman, Jason "Jay"