Faculty Tasks Students Papers Demos Posters Talks
State of the Center
Alternative Computational Models
Stochastic Sensor Network-on-a-Chip
Stochastic Networked Computation
Networks of Oscillators for Synchronization
Imperfection-Immune Carbon Nanotube VLSI
On-Chip Stochastic Communication
Coded Boolean Circuits
Interfacing the Brain: Interfacing the Brain: Current Trends in Neural Engineering
Neuro-inspired and Neuro-applied Workshop
The Challenges Moving from Biomedical Appliances to Neuro-Inspired Computing
Insect Leg Sense Organs and Their Functions
Neuro-Inspired and Neuro-Applied Computing
The mammalian thalamocortical network: a "simple" circuit to study "complex" activities?
Biologically Inspired Beamforming
GSRC - Quo Vadis?
Stochastic Communications
On-Line Circuit Reliability Monitoring
Architecture Implications of 3D Integration and Other Technologies
A Biologist's Need for Computation -- Agony & Ecstasy
Oscillator Networks, their Properties and Potential Applications
Networked Computation
Exploring Unreliable Technology Scaling for High Performance Systems
Coding for High-Defect Fabrics
Imperfection-Immune CNFET Circuits
Stochastic Communication
Performance, Energy, and Fault-tolerance Issues in NoC Design Slides in PDF
Collaborative Radio Project Update
Imperfection-Immune Carbon Nanotube FET Circuits
Perturbation Based Computing
Using Defect-Map Knowledge for More Efficient Coding
Modeling and Metrics Initiative: In Search of Common Ground
Workloads of the Future
Future Workloads for Designing Future Computers
Print Workload
NERSC Workload Analysis
Where are Internet workloads going?
Workloads of the Future: "Mobility, Community, Serendipity"
Connecting the Unconnected: the networking challenge
Remarks on Workloads of the Future
NVIDIA GPU Computing
GSRC Workshop: Workloads of the Future
High Performance Buildings (Systems) (...and Power...) Challenges for Embedded Systems & Enabling Opprotunities for GSRC
New Automotive DNA
Theoretical Foundations (Alternatives subtheme)
Communication Fabrics
Alternative Computational Models Slides in PDF
Automated Design of Misalignment-Immune CNT Circuits Slides in PDF
State of the Center Slides in PDF
Automated Design of Misalignment-Immune CNT Circuits
Design Principles for Perturbation Based Computing
Sensor Network-Inspired Energy Efficient Design
Theoretical Foundations: (Alternatives subtheme)
Alternative Challenges
Coding Techniques for Future Nano-circuits
Distributed synchronization/communication protocols for dense networks
Imperfection Immune CMFET Circuits
Interdependent Latch Setup/Hold Time Characterization via Euler-Newton Curve Tracing on State-Transition Equations
MetroSPICE++ and ColabRadio: Synergistic Activities
Modeling On-Chip Communication (Stochastic and Non-stochastic...)
Network-Inspired System Design
On-Chip Stochastic Communication: Modeling, Analysis and Optimization
Progress in CollabRadio Project
Statistical Sensor Network-On-Chip
Generation of Efficient Codes for Realizing Boolean Functions in Nanotechnologies (Requires Windows and IE 6) Slides in PDF
CollabRadio: Bio-inspired, Variablity Resistant RF Front End
Robust Design of DSP Functional Units for Wireless
Towards a Hardware-Software Co-Designed Resilient System
Robust System Design for Scaled CMOS Technologies (Requires Windows and IE 6) Slides in PDF
Welcome and Introduction to Alternatives Theme Workshop
Integrated Micromechanical Circuits for Radio Front Ends
Device Technologies On and Below The Horizon
Making Sense Out of Variability Measurements
Update on the collaborative radio project
Design of Imperfection-Immune Carbon Nanotube FET Circuits
Towards Developing a Strategy for Coding of Boolean Functions
Perturbation Based Computing: Principles and Practice
Panel Discussion Sep 2006 - Shanbhag
Circuit Design with Carbon Nanotubes Open Questions & Some Directions
Collaborative Radio Project
Stochastic Sensor Network on a Chip: New Paradigm for Reliable Computing
The Alternatives Theme: Introduction and Welcome
Dense Networks -- AN EXERCISE IN COMMUNICATION-BASED DESIGN
GSRC Collaborative Radio Project
Perturbation Based Nanocomputing for Next Generation Embedded Real Time Systems
Reliable Computing via Stochastic Sensor Network on a Chip
Coded Boolean Networks for Extreme Defect Densities
Communications-Inspired System Design in the Nanometer Era (Requires Windows and IE 6) Slides in PDF