Area of research
Electrical and Electronic Engineering · Hardware and Architecture
Research interest
Research interests include VLSI and FPGA Design Techniques, VLSI and Analog Circuit Testing, Low-power high-performance VLSI design, and Embedded Systems Design Techniques.
Reuse-Aware Compilation for Zoned Quantum Architectures Based on Neutral Atoms
Scaling for edge inference of deep neural networks
An automated lung segmentation approach using bidirectional chain codes to improve nodule detection accuracy
FPGA-RPI: A Novel FPGA Architecture With RRAM-Based Programmable Interconnects
An Analytical Placement Framework for 3-D ICs and Its Extension on Thermal Awareness
Collaborative Research: FET: Medium: Efficient Compilation for Dynamically Reconfigurable Atom Arrays
SHF: Medium: Automating High Level Synthesis via Graph-Centric Deep Learning
RTML: Large: Acceleration to Graph-Based Machine Learning
CAPA: Collaborative Research: A Multi-Paradigm Programming Infrastructure for Heterogeneous Architectures
Accelerator-Rich Architectures with Applications to Healthcare
Customizable Domain-Specific Computing
Synthesis and Mapping for Application-Specific Processor Networks
NSF Workshop; Electronic Design Automation -- Past, Present, and Future
SGER: Platforms for Future Embedded Systems
International Center on Design for Nanotechnologies
MSPA-MCS: Scalable Optimization Algorithms for VLSI Circuit Physical Design
CPA: Closing the Gap in VLSI Physical Design
Design and Synthesis of Power Efficient Programmable Fabric
Giga-Scale System-On-A-Chip Design
Nonlinear-Programming Based Algorithms for Constrained Circuit Placement
NSF Workshop on Challenges and Opportunities in Gig-Scale Integration for System-On-A-Chip
NYI: Performance Optimization in Layout and Logic Synthesis of VLSI Systems
RIA: Interconnection Problems for High-Performance VLSI Circuits and Systems