Papers
1
Total Citations
19
H-Index
1
About
Se-Joong Lee is a leading figure in energy-efficient, high-performance processor design, with a focus on memory-centric architectures and network-on-chip (NoC) systems for intelligent mobile robotics. His seminal work, "81.6 GOPS Object Recognition Processor Based on a Memory-Centric NoC," introduced a groundbreaking chip architecture that achieves 81.6 billion operations per second by leveraging task-level and data-level parallelism through a memory-centric NoC. This design, which has garnered 19 citations, directly addresses the computational demands of real-time object recognition in autonomous systems. Lee’s contributions lie in optimizing data flow and memory access patterns to overcome traditional bottlenecks, enabling compact, low-power processors suitable for embedded vision applications. By integrating NoC principles with specialized hardware acceleration, his research bridges the gap between general-purpose computing and domain-specific processing. His work has influenced subsequent developments in mobile robot intelligence and edge computing, demonstrating how architectural innovation can achieve supercomputer-level performance in a chip. Lee’s achievements underscore his role in advancing the frontier of efficient, real-time visual processing for autonomous systems.
Research Focus
Key Achievements
Top Papers
- 181.6 GOPS Object Recognition Processor Based on a Memory-Centric NoC19 citations · 2009