Projects
From Murray Wiki
				List of project pages on this wiki.
Active Projects
- Developer Cell: A modular, extensible chassis for building synthetic cells (Alfred P. Sloan Foundation)
 - Design and Implementation of Multi-Component Synthetic Cells (ARO/ICB)
 - Control of Functional Bioenabled Materials using Synthetic Cells (ARO/ICB)
 - Center for Harnessing Microbiota from Military Environments (CHARMME) (ARO)
 - Layered T&E for Safety-Critical Autonomous Systems (AFOSR)
 - Rules of Composition in Synthetic Biology Across Scales of Complexity: Theory and Tools (AFOSR)
 
Completed Projects
- Upscaling Engineering of Synthetic Biomachines (Schmidt Sciences)
 - Deciphering the Rules of Nucleus Architecture with Synthetic Cells and Organelles (NSF)
 - Safety-Critical Cyber-Physical Systems: From Validation & Verification to Test & Evaluation (NSF)
 - Multi-Layer, Composable and Programmable Biomolecular Circuits for Microbial Consortia (Army Research Office)
 - Engineering Reliable Genetic Circuits for Characterization and Remediation of Soil Ecologies (Army Research Office)
 - Developing Standardized Cell-Free Platforms for Rapid Prototyping of Synthetic Biology Circuits and Pathways (NSF)
 - Formal Methods for V&V and T&E of Autonomous Systems (AFOSR)
 - Actuation of Synthetic Cells Via Proto-Flagellar Motors (NSF)
 - An Open Synthetic Biology Toolkit for Engineering Reliable Genetic Circuits in Microbes in Soil (Resnick Sustainability Institute)
 - Fundamental Biological Factors Underlying Human Performance: From Molecular Diagnostics and Detection to Behavior and Systems Biology (Army Research Office)
 - Field-Programmable, Recombinase-Based Biomolecular Circuits (Army Research Office)
 - Design of Digitally Controlled Bacterial Circuits for Bioenabled Materials (Army Research Lab/Institute for Collaborative Biotechnologies)
 - VeHICaL: Verified Human Interfaces, Control, and Learning for Semi-Autonomous Systems (NSF)
 - Engineering Replication-, Growth-, and Division-Deficient E. coli for Safe, Stable and Efficient Function (Rosen Center for Bioengineering)
 - Assurance for Learning Enabled Systems (DARPA)
 - Robust Multi-Layer Control Systems for Cooperative Cellular Behaviors (DARPA)
 - Enabling Technologies for Cell-Silicon Interfacing (Army Research Office)
 - Engineering Durable Cell-Free Biological Capabilities for Advanced Sensing and Prototyping (Army Research Office)
 - Genetic Circuits for Multi-Cellular Machines (Army Research Lab/Institute for Collaborative Biotechnologies)
 - Temporal Logic Specifications for Control System Design in Automotive Systems (DENSO)
 - Theory-Based Engineering of Biomolecular Circuits in Living Cells (Air Force Office of Scientific Research)
 - Biomolecular Circuits for Rapid Detection and Response to Environmental Events (Army Research Office)
 - Molecular Programming Architectures, Abstractions, Algorithms, and Applications (NSF)
 - Rapid, Reliable and Repeatable Platforms for Cell-Free Prototyping (Synvitrobio)
 - Establishing microfluidic cell-free systems for the rapid prototyping of synthetic genetic networks (Human Frontiers Science Program)
 - Safety-Critical Autonomy and Verification for Space Missions (JPL)
 - Model-guided Discovery and Optimization of Cell-based Sensors (Office of Naval Research)
 - The TerraSwarm Research Center (STARnet)
 - Synthesizing flight software (FSW) discrete controllers from formal specifications (JPL)
 - Programmable Molecular Technology Initiative (Gordon and Betty Moore Foundation)
 - Cell-Free Expression of Membrane Proteins with Applications to Drug Discovery (Amgen)
 - Resilient Risk-Aware Autonomy for the Exploration of Uncertain and Extreme Environments (Keck Institute for Space Studies)
 - Improvement of E. coli transcription-translation (TX-TL) system (Caltech Grubstake)
 - Correct-by-Construction Synthesis of Control Protocols for Aerospace Systems (Boeing)
 - ICyPhy: Industrial Cyber-Physical Systems (IBM, UTC)
 - Biomolecular Breadboards for Prototyping and Debugging Synthetic Biocircuits (DARPA)
 - Molecular Programming Project (NSF)
 - Biomolecular Feedback Circuits for Modular, Robust and Rapid Response (Army Research Office)
 - Control Design for Cyberphysical Systems Using Slow Computing (NSF)
 - Distributed Sense and Control Systems (DARPA FCRP)
 - Network Science and Engineering: A Theory of Network Architecture (NSF)
 - Networked Feedback Systems in Biology (ARO ICB)
 - CAGEN: Critical Assessment of Genetically Engineered Networks (NAKFI)
 - Model-Based Design and Qualification of Complex Systems (Boeing)
 - Packet-Based Estimation and Control (AFOSR)
 
Older projects (not on this wiki):
- Specification, Design and Verification of Distributed Embedded Systems (MURI/AFOSR)
 - Information Dynamics for Networked Feedback Systems (NSF)
 - 2007 DARPA Urban Challenge (DARPA; Caltech/JPL)
 - Packet-Based Algorithms for Cooperative Surveillance and Reconnaissance (AFOSR)
 - Control and Dynamical Systems Alliance (Dept of Education)
 - Cooperative Control in Dynamic, Uncertain, and Adversarial Environments (MURI/AFOSR)
 - DARPA Grand Challenge, Team Caltech (CIT)
 - Information Flow in Cooperative Control of Multi-Vehicle Systems (AFOSR)
 - High Confidence, Reconfigurable, Distributed Control (DARPA SEC)
 - Mixed Initiative Control of Automa-Teams (DARPA MICA)
 - Computationally Engineered Microstructural Complexity (MURI/ARO)
 - Integrated Control of Inlet Compression Systems (DARPA MAFC)
 - Panel on Future Directions in Control, Dynamics, and Systems
 - Multi-Vehicle, Wireless Testbed (DURIP/AFOSR)
 - Actively Stabilized Isentropic Supersonic Inlet (DARPA QSP)
 - Formation Flight for Micro-Satellites (AFOSR)
 - Virtual Integrated Processing of YBCO Thin Films (DARPA/NSF)
 - Two Degree of Freedom Design for Robust Nonlinear Control of Mechanical Systems (NSF)
 - Robust Nonlinear Control Theory with Application to Aerospace Vehicles (AFOSR)
 - Robust Nonlinear Control of Stall and Flutter in Aeroengines (AFOSR)
 - Nonlinear Control of Mechanical Systems in the Presence of Magnitude and Rate Saturations (ONR)
 - Curriculum in Control and Dynamical Systems (NSF)