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NSTGRO 2023

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Jared Long-Fox
University of Central Florida
Quantitative Optimization of Planetary Excavation Methods

Catherine Nachtigal
Massachusetts Institute of Technology
Pixels in Electrospray Thrusters for Ultra-Reliable, Flat-Panel Electric Propulsion

Andrew Galassi
University of California, Berkeley
Low Preload Ice Anchoring Grippers for Icy Worlds Mobility

Thomas Watts
University of Texas at Austin
Wide-Temperature Range Lithium-Ion Batteries through Characterization of Surface Reactivity and Electrode/Electrolyte Interfacial Kinetics

Anya Volter
University of Florida
Controlled Therapeutic Biomanufacturing for Deep Space Missions

Christopher Hayner
University of Washington
Closing the Perception and Planning Loop for Autonomous Planetary Landing Missions

Logan Anderson
University of Minnesota
System Identification and Robust Control of Deployable Space Structures using Dissipativity Properties

Broderick Lewis
Northwestern University
Dynamic Epoxy Concretes for Extraterrestrial Habitats

Joshua Eckels
University of Michigan
Multifidelity reduced-order modeling of particle-in-cell simulations for anomalous transport closure models

Mark Stephenson
University of Colorado, Boulder
Autonomous Multiagent Search-and-Image Tasking for Satellite Constellations

Nancy Diallo
Stanford University
Modeling Spacecraft Charging Incident from the Effect of Background Plasma on Satellites with Electric Propulsion

Christopher Davami
San Diego State University
Autonomous End-to-End Trajectory Planning and Guidance for Constrained Entry and Precision Powered Descent by Unified Optimization Theory

Marley Albright
University of Central Florida
Experimental Investigation and Chemical Modeling of Thruster Plumes for Planetary Landers

J Flores Govea
University of Colorado, Boulder
Magnetohydrodynamics for Enhanced Thermal Protection and Planetary Entry Systems

William Hurley
University of Michigan
Development of an Ultra High Current Density Magnetically Shielded Hall Thruster

Rayne Wolf
University of Wisconsin-Madison
Development of Semi-Autonomous and Autonomous Electrohydrodynamic Inkjet Printing for In-space Manufacturing based on Artificial Intelligence

Timothy Chen
Stanford University
Safe and Informative Navigation of Unmapped Terrain using Neural Radiance Fields

Neil Laya
University of Alabama, Huntsville
Development and Characterization of a Magnetohydrodynamic Propulsion Device Using Torsional Magnetic Reconnection

Jessica Myers
University of Illinois at Urbana-Champaign
Analysis and Simulation of Robot Sound to Improve the Reliability of Planetary Surface Navigation

Jacob Levy
University of Texas at Austin
Efficient Adaptive Tracking for Safe Robotic Operations in Microgravity with Dynamic Uncertainties

Palak Patel
Massachusetts Institute of Technology
Nanoengineered Ultra High-Temperature Ceramics for High Strength and Toughness Multifunctional Composites for Space Applications

Harsh Bhundiya
Massachusetts Institute of Technology
Modeling the In-Space Manufacturing of Large, Lightweight Structures with Robotic Deformation Processing

Kyle Watson
Virginia Commonwealth University Optimizing Carbon Nanotube Composite Performance via Novel Multiscale Modeling and Machine Learning Methods

Andrew Pannone
Penn State University
Realization of Intelligent Instruments Through the Integration of Neuromorphic Devices with Gas Sensors Enabled by Two-Dimensional Materials

Kellen Arnold
Vanderbilt University
Design and Analysis of Deep Subwavelength Featured Integrated Photonics for Aerospace Applications in Harsh Environments

Logan Feld
Georgia Institute of Technology
Autonomous Landing and Proximity Operation Technology for Poorly-Characterized Small Bodies

Ryan Kinzie
Embry-Riddle
Aeronautical University Novel dual quaternion based model and control for gravity recovery missions

Kenneth McAfee
University of Maryland, College Park
A Framework for Accurate, Full-Field EDL Environment Reconstruction from Distributed Thermal Measurements

Z McLaughlin
University of Texas at Austin
Non-Gaussian Estimation using Intrusive Polynomial Chaos

Harrison Coker
Texas A&M University
Biological Augmentation of Off-World Regolith using Aeroponics to Support Regenerative Cropping Operations

Nicholas Miklave
University of Louisiana, Lafayette
Optimization of Novel Synthetic Substrates for Plant Growth in Space

Ashlee Gabourel
Cornell University
Data-Driven Autonomous Discovery of Refractory High Entropy Alloys

Abigail Maltese
Texas A&M University
Automated Patterning of Customized Extravehicular Activity (EVA) Spacesuit Pressure Garment Arm Assemblies

Erik Ballesteros
Massachusetts Institute of Technology
Design, Control, and Human-Robot Coordination of Space Suits Integrated with Supernumerary Robotic Limbs

Sarah Kingsley
Georgia Institute of Technology
Onboard Chemically Specific Monitoring and Detection of Microorganisms

Roxanne Kate Balanay
University of Hawaii at Manoa
Acoustic-Field Aerosol Separator for Planetary Atmospheric Sampling

Joseph “Gabe” Richardson
University of Arizona
Toward Universal Quantum Optimal Photonic Processing Using Quantum Computation

Giuliana Hofheins
Cornell University
IMPACT: Ionic Molecular Propellants Advanced Collision analysis Technique

Emmeline Evans
Georgia Institute of Technology
In Situ Acoustic Emission Monitoring of Defect Formation in Additively Manufactured Refractory Alloy Components

Thomas Neafus
Purdue University
Optimization of Device Geometry for Rotating Detonation Engines

Schuyler McNaughton
Purdue University
Hypergolic Reactive Boundaries

Edith Perez-Valenzuela
University of Michigan
Low Hysteresis Shape Memory Alloys for Mechanical Actuation and Thermal Management Systems

Julian Lopez-Uricoechea
Georgia Institute of Technology
Coherent Thomson Scattering to Investigate Lower-Hybrid Instabilities in the Front Pole Region of a Magnetically Shielded Hall Thruster

Elaine Ng
University of Texas at Austin
High-Rate, Large-Area Deposition of Magnetic Materials for Next-Generation Energy Technologies

Benjamin Hanson
University of California, San Diego
A Grid-Based, Bayesian Approach to Uncertainty Propagation for Icy-Moon Missions

Crystal Kim
University of California, Santa Barbara
Development of a New Microwave Kinetic Inductance Detector High-Resolution Multi-Object Spectrograph for Space-Based Applications

Jiahui Cao
University of California, Irvine
High-Sensitivity Temperature Sensing using Holey Silicon-Based Thermopiles

Gwendolyn Tsai
Massachusetts Institute of Technology
Physics-Informed Machine Learning for the Optimization of Hybrid Rocket Motors

Miriam Marino
University of Wisconsin-Madison
Fabrication and Optimization of Nanotechnology for X-ray TES Sounding Rocket Instrument

Neal Lojek
University of Massachusetts, Lowell
A 3D hiPSC Cortical Tissue Model for Quantifying the Effects of Galactic Cosmic Radiation on Functional Cortical Networks

Rachel Rivero
University of Michigan
Utilizing Asexual Reproductive Abilities of Kalanchoe Daigremontiana for a Space-Based Biomanufacturing System

Nelson Badillo
Perez Harvard University
Aerobot Mounted Vine Robots for Surface Mobility and Confined Space Exploration

Grace Calkins
University of Colorado, Boulder
Efficient Uncertainty Quantification for Intelligent Autonomous Systems

Albert Lin
University of Southern California
Using World Models to Enable Safety Assurances for Uncertain High-Dimensional Systems

Priyal Soni
Georgia Institute of Technology
Image-Based Relative Navigation for Autonomous Space Exploration

June Stenzel
Massachusetts Institute of Technology

Joshua Cannon
Brigham Young University