Max Tyler
Papers
1
Total Citations
88
H-Index
1
About
Dr. Max Tyler is a leading researcher in computational imaging and high-speed 3D sensing, with a focus on pushing the limits of temporal resolution for real-world applications. His most influential work, "High-speed 3D sensing via hybrid-mode imaging and guided upsampling" (2020, 88 citations), introduces a novel approach that combines single-photon avalanche diode (SPAD) arrays with hybrid imaging modes to achieve rapid, high-fidelity depth reconstruction. This contribution is critical for advancing time-of-flight (ToF) systems used in autonomous vehicles, robotics, and industrial inspection, where both speed and accuracy are paramount. By developing guided upsampling techniques, Dr. Tyler has enabled efficient processing of sparse photon data, significantly improving 3D sensing performance under low-light conditions. His research bridges the gap between cutting-edge detector hardware and practical imaging algorithms, earning recognition for its impact on both fundamental science and applied engineering. With a growing citation record, Dr. Tyler’s work continues to shape the future of real-time 3D vision and high-speed optical metrology.
Research Focus
Key Achievements
Top Papers
- 1High-speed 3D sensing via hybrid-mode imaging and guided upsampling88 citations · 2020