New Publication (MICRO 2026)
Our paper, Non-Speculative Redundant Load Elimination, has been accepted to MICRO 2026.

YONSEI UNIVERSITY / COMPUTER ARCHITECTURE
We explore new ways to design computer architectures and systems—pursuing performance, efficiency, and ideas that endure.

General-Purpose Architectures
with Unleashed Design Innovations
A NAME. A WAY OF THINKING.
Named in tribute to Antoni Gaudí, our lab aspires to carry his spirit into computing: learning from nature, working with humility, and devoting ourselves to work that takes time.
RESEARCH AREAS
Our research spans the computing stack, connecting fundamental architecture ideas with emerging platforms and real workloads.
Speculation, dynamic scheduling, SMT, and heterogeneous multi-core architectures.
Explore → 02Energy-efficient GPGPU, NPU, virtual memory, and on-chip accelerator architectures.
Explore → 03Emerging interconnects, memory expansion, and heterogeneous cooperative computing.
Explore → 04Resource management across CPUs, accelerators, memory, cache, and I/O devices.
Explore → 05Processing in memory, storage, and networks for data-intensive applications.
Explore →SELECTED IMPACT
LATEST
Our paper, Non-Speculative Redundant Load Elimination, has been accepted to MICRO 2026.
Our research proposal, Artificial Intelligence Innovation Graduate School, has been accepted.
Training Program for Semiconductor Core IP Design Specialists has been accepted.
Our project on CPU-NPU contention in ultra-low-latency on-device AI SoCs has been accepted.
JOIN GAUDI LAB
We welcome highly motivated postdoctoral researchers, Ph.D. candidates, and M.S. students. Scholarships are available for qualified applicants.