Arjang Hassibi
Papers
2
Total Citations
214
H-Index
2
About
Arjang Hassibi is a researcher working at the intersection of analog computing, circuit design, and computer architecture, with a focus on addressing fundamental limitations in modern processor performance and energy efficiency. His most notable contribution centers on a novel paradigm for general-purpose code acceleration using limited-precision analog computation, a concept he has explored through a holistic approach spanning circuit design to compiler implementation. As the era of reliable transistor scaling draws to a close, Hassibi's work proposes a compelling alternative: harnessing the speed and efficiency advantages of analog circuits to accelerate digital workloads, even in the presence of inherent imprecision. This cross-layer solution challenges conventional assumptions about computation and opens new pathways for energy-efficient processing in an age of increasing hardware constraints. His research in this area has garnered over 200 citations, reflecting strong interest from both the architecture and circuits communities. His work is particularly relevant to students and researchers grappling with the post-Moore's Law landscape, where unconventional computing paradigms are gaining increasing urgency and attention.
Research Focus
Key Achievements
Top Papers
- 1General-purpose code acceleration with limited-precision analog computation148 citations · 2014
- 2General-purpose code acceleration with limited-precision analog computation66 citations · 2014