Area of research
Hardware and Architecture · Computer Networks and Communications
Research interest
Research interests include Parallel Computing and Optimization Techniques, Interconnection Networks and Systems, Embedded Systems Design Techniques, and Low-power high-performance VLSI design.
Evaluating Ruche Networks: Physically Scalable, Cost-Effective, Bandwidth-Flexible NoCs
ProcessorFuzz: Processor Fuzzing with Control and Status Registers Guidance
NeuriCam: Key-Frame Video Super-Resolution and Colorization for IoT Cameras
RACE: RISC-V SoC for En/decryption Acceleration on the Edge for Homomorphic Computation
A Tensor Processing Framework for CPU-Manycore Heterogeneous Systems
A 7.3 M Output Non-Zeros/J, 11.7 M Output Non-Zeros/GB Reconfigurable Sparse Matrix–Matrix Multiplication Accelerator
The Celerity Open-Source 511-Core RISC-V Tiered Accelerator Fabric: Fast Architectures and Design Methodologies for Fast Chips
ASIC Clouds: Specializing the Datacenter
CortexSuite: A synthetic brain benchmark suite
A Landscape of the New Dark Silicon Design Regime
Bitcoin and the age of bespoke silicon
Bitcoin and the age of Bespoke Silicon
CAREER: Optically Controlled Protein Proximity Labelling
Collaborative Research: PPoSS: LARGE: Panorama: Integrated Rack-Scale Acceleration for Computational Pangenomics
CAREER: Optically Controlled Protein Proximity Labelling
Collaborative Research: Dry Rifting In the Albertine-Rhino graben (DRIAR), Uganda
Collaborative Research: What Created the Southern Tibetan Plateau Drainage Divide? Integrated Tectonic and Geomorphic Investigation of the Gangdese Range and Yarlung River
Collaborative Research: Filling in the Central Himalayan Seismic Gap: A Structural, Neotectonic, and Paleoseismic Investigation of the Western Nepal Fault System
TWC: Large: Collaborative: Verifiable Hardware: Chips that Prove their Own Correctness
TWC: Large: Collaborative: Verifiable Hardware: Chips that Prove their Own Correctness
Continental-Scale Studies of Mesospheric Dynamics using the Antarctic Gravity Wave Instrument Network (ANGWIN)
Elliptic Boundary Problems and Evolution Equations in Partial Differential Equations
Collaborative Research: Quantification of Gravity Wave Momentum Fluxes and Instability Events in the Mesosphere and Lower Thermosphere (MLT) Region at High- and Mid- Latitudes
Collaborative Research: Deep Propagating Gravity Wave (DEEPWAVE)
CubeSat: The Optical Profiling of the Atmospheric Limb (OPAL) CubeSat Experiment
TWC: Medium: Collaborative Proposal: Safety in Numbers: Crowdsourcing for Global Software Integrity
Investigating Wave-Driven Mesospheric Dynamics Over South Pole Using an Advanced Mesospheric Temperature Mapper
Collaborative Research: Dynamics in the Mesosphere and Lower Thermosphere over the Andes Lidar Observatory
Evolution Equations and Elliptic Boundary Problems in PDE
Development of an Antarctic Gravity Wave Imaging Network (ANGWIN) for Collaborative Mesospheric Research
Collaborative Reasearch: CEDAR--Gravity Wave Momentum Fluxes and Instability Studies Using Coupled Lidar, Temperature Mapper and Modeling Studies at ALOMAR and Cerra Pachon
Collaborative Research: II-NEW: Prototyping Platform to Enable Power-Centric Multicore Research
SHF: Small: Feather: A High Productivity, Energy-Efficient Manycore System for Numerical Codes
Collaborative Research: Development of Airborne Lidar and Temperature Mapper "Facility" Instruments for the NSF GV and Measurements during SAANGRIA
COLLABORATIVE PROPOSAL: An Investigation of Wave Dynamics in the Arctic Mesosphere and Coupling Between the Lower and Upper Polar Atmosphere