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Articles 151 - 180 of 57604
Full-Text Articles in Entire DC Network
Sailing To The Stars Iss Experiment: Results And Conclusions From Light Sail Deployments In Microgravity, Verena Padres, Parishee Bajaj, Venkata Chalamalasetty, Claire Kim, Joshua Umansky-Castro, Dionna Parina, Gabriella Elcsics-Gonzalez, Cameron Goddard, Ethan Francolla, Mason Peck, Andrew Filo, Alex Burke, Olivia Gámez Holzhaus, Heath Mills, Christopher Kelly
Sailing To The Stars Iss Experiment: Results And Conclusions From Light Sail Deployments In Microgravity, Verena Padres, Parishee Bajaj, Venkata Chalamalasetty, Claire Kim, Joshua Umansky-Castro, Dionna Parina, Gabriella Elcsics-Gonzalez, Cameron Goddard, Ethan Francolla, Mason Peck, Andrew Filo, Alex Burke, Olivia Gámez Holzhaus, Heath Mills, Christopher Kelly
Small Satellite Conference
Sailing to the Stars is a mission to test the deployment of free-flying light sails on the International Space Station (ISS). The objective is to understand how different deployer designs affect the stability of both the CubeSat Deployer and the light sail during and after the deployment event. Data from the IMU onboard the deployer and video footage from wall-mounted cameras are used to analyze these dynamics. The findings shall inform the design of future missions that employ this free-flying ChipSat-sail architecture.
The hardware launched with Crew-11 on August 1st, 2025. Nicole Ayers conducted the experiment on August …
A Proposed Development Process For A Hardware-In-The-Loop Testing System For Cubesat Components, Vahini N. Patel, Victoria Coverstone
A Proposed Development Process For A Hardware-In-The-Loop Testing System For Cubesat Components, Vahini N. Patel, Victoria Coverstone
Small Satellite Conference
Hardware-in-the-loop testing systems, commonly known as FlatSats, are testbed systems in which spacecraft subsystems, such as the onboard computer (OBC), power system, attitude determination and control system (ADCS), and communications, are laid flat and interconnected as they would be in an actual spacecraft. This arrangement gives easy access to each subsystem, enabling hardware and software testing and troubleshooting without risking fully assembled flight hardware.
FlatSats are widely used throughout the aerospace industry, from government agencies like ESA and NASA to private companies and university research labs, due to their versatility in enabling parallel development. This accelerates timelines and reduces …
Power Simulation Framework For Korucusat-2 Using Freeflyer, Sahil Singh, Annabel Rong, Mukund Karthikeyan
Power Simulation Framework For Korucusat-2 Using Freeflyer, Sahil Singh, Annabel Rong, Mukund Karthikeyan
Small Satellite Conference
A FreeFlyer-based power simulation was developed for KORUCUSAT-2, a low Earth orbit CubeSat designed to monitor silicon-anode battery behavior in space. The spacecraft model uses body-mounted solar panels with five modules on each of the +X, -X, +Y, and -Y faces. The simulation integrates orbital propagation, Earth shadowing, Sun-incidence angle, ground-station visibility, mode-dependent subsystem loads, and battery-state propagation to estimate electrical margin. Battery watt-hours and normalized state of charge are updated at each 30 s step so that critical, low-power, operations, and transmission modes can be evaluated against stored-energy limits. The framework provides a traceable prelaunch test bench for power-system …
Herding Cubecats: Challenges And Lessons Learned From A Student-Led Cubesat Organization, Matthew Verbryke, Samuel Kohls, Nathan Nguyen, Michael Carovillano, Donghoon Kim
Herding Cubecats: Challenges And Lessons Learned From A Student-Led Cubesat Organization, Matthew Verbryke, Samuel Kohls, Nathan Nguyen, Michael Carovillano, Donghoon Kim
Small Satellite Conference
1. What is CubeCats?
CubeCats is a student-led technical engineering organization founded in 2015 at the University of Cincinnati (UC) with the mission of providing its members with hands-on, educational experience in space systems engineering, primarily through the design, development, testing, launch, and operation of flight-worthy CubeSats and High Altitude Balloons.
CubeCats’ operating model differs significantly from many university-based satellite programs:
- The organization is entirely managed and run by students, the majority of whom are undergraduates (UC faculty and staff serve primarily in an advisory role)
- The organization is entirely volunteer-based, with no direct integration into coursework or on-campus research …
Tracking Assembly For The Pulse-A Optical Ground Station, Rodrigo Spinola E Castro, Ashley Ashiku, Elizabeth Rosario, Juan Ignacio Prieto Asbun, Robert Pitu, Tian Zhong
Tracking Assembly For The Pulse-A Optical Ground Station, Rodrigo Spinola E Castro, Ashley Ashiku, Elizabeth Rosario, Juan Ignacio Prieto Asbun, Robert Pitu, Tian Zhong
Small Satellite Conference
PULSE-A is the University of Chicago’s student-led 3U CubeSat mission to demonstrate a space-to-ground optical downlink at a data rate of 1 to 10 Mbps using circular polarization shift keying (CPolSK).
Micro-Servicer Swarms For Responsive Smallsat Sustainment: The Sdaw Mothership Architecture, Wanjiku Chebet Kanjumba
Micro-Servicer Swarms For Responsive Smallsat Sustainment: The Sdaw Mothership Architecture, Wanjiku Chebet Kanjumba
Small Satellite Conference
The Challenge:
Sustaining The Mega-Constellation Era: LEO has shifted from a sparse domain into critical global infrastructure. With thousands of satellites on-orbit and tens of thousands more planned, sustainability is no longer guaranteed by launch activity alone; it depends on the ability to service, repair, and responsibly dispose of assets at scale.
- 7,500+ operational satellites in LEO (2024); 50,000+ projected within a decade
- 1,500+ trackable fragments from the 2021 Russian ASAT test; 1,700+ Starlink avoidance maneuvers followed
- ≥ 5 / yr large debris objects removed from LEO yearly to stabilize it (Liou & Johnson)
The Servicing Gap: MEV, OSAM-1, and …
A Cubesat-Based Data Collection Architecture For The Catarina Constellation: Complementing Legacy Brazilian Data Collection System With Lora, Vitória Beatriz Bianchin, Carlos Augusto Porto Freitas, João Cláudio Elsen Barcellos, Gabriel Mariano Marcelino, Talita Sauter Possamai, Eduardo Augusto Bezerra
A Cubesat-Based Data Collection Architecture For The Catarina Constellation: Complementing Legacy Brazilian Data Collection System With Lora, Vitória Beatriz Bianchin, Carlos Augusto Porto Freitas, João Cláudio Elsen Barcellos, Gabriel Mariano Marcelino, Talita Sauter Possamai, Eduardo Augusto Bezerra
Small Satellite Conference
- The Catarina Constellation is a Brazilian CubeSat initiative created to enhance environmental monitoring and satellite-based environmental data collection across Brazil.
- The project was named after Hurricane Catarina (2004), the first recorded hurricane in the South Atlantic, which exposed the need for improved space-based monitoring of extreme weather events.
- The constellation aims to expand the Brazilian Satellite Data Collection System (SBCD) by evaluating new communication technologies, enabling a gradual modernization of the country’s environmental monitoring infrastructure.
Advanced Ai Deployment On Smallsats: A Mixed Precision Approach To Onboard Perception And Fpga-Gated Inference, Margaret Michelsen, Jackson Gardner, Shawn Jones, Jackson Kulik, Mario Harper
Advanced Ai Deployment On Smallsats: A Mixed Precision Approach To Onboard Perception And Fpga-Gated Inference, Margaret Michelsen, Jackson Gardner, Shawn Jones, Jackson Kulik, Mario Harper
Small Satellite Conference
MOTIVATION:
SmallSats are asked to make time-sensitive calls (vessel detection, cloud filtering, debris tracking) but CubeSat-class compute is starved for power, memory, and radiation-tolerant silicon.
Most missions still downlink raw imagery for ground processing, costing hours-to-days of latency and scarce bandwidth. Running inference onboard means solving two separate problems:
- When to run inference: compute and power budgets can’t tolerate a neural network firing on every frame.
- Whether it fits when it does run: the model has to live inside a memory and compute envelope measured in megabytes, not gigabytes.
Helio: Ai Solar Weather Forecasting For Proactive Small Satellite Constellation Response, Kylie Nager, James Kirk, Cagri Kilic
Helio: Ai Solar Weather Forecasting For Proactive Small Satellite Constellation Response, Kylie Nager, James Kirk, Cagri Kilic
Small Satellite Conference
Challenge:
Small satellite constellations in Low Earth Orbit (LEO) operate in an environment directly exposed to space weather while providing communications, remote sensing, positioning, and other critical services. Geomagnetic storms heat and expand the thermosphere, increasing neutral density, atmospheric drag, and orbital decay. These effects are especially hazardous during post-deployment and orbit-raising operations when satellites remain at low altitude with limited propulsion and recovery margins.
Operational Gap:
NOAA Space Weather Prediction Center products provide essential situational awareness, but satellite operators must still translate environmental forecasts into spacecraft-specific decisions. This translation can introduce operational delay particularly when protective actions must be …
Coconut: Student-Led Development And On-Orbit Operation Of A 1u Lora Amateur Radio Cubesat, Ricardo Ontiveros, Quang Huy Dinh, Tyler Nielsen, Josh Sink, Noah Campos, Michael Goryll, Joe Dubois
Coconut: Student-Led Development And On-Orbit Operation Of A 1u Lora Amateur Radio Cubesat, Ricardo Ontiveros, Quang Huy Dinh, Tyler Nielsen, Josh Sink, Noah Campos, Michael Goryll, Joe Dubois
Small Satellite Conference
The Coconut CubeSat was launched aboard the Cygnus NG-24 resupply mission and then deployed from the ISS on July 2nd. Developed and built 100% by students at the Arizona State University Sun Devil Satellite Laboratory (SDSL), Coconut is oriented towards enabling students to engage in hands-on learning and gain engineering experience with spacecraft hardware and software systems. Coconut was designed for amatuer radio, with both a single-frequency digipeater and account-based store-and-forward capabilities.
Comparison Of Cubesat And Pocketqube Mission Timelines And Costs, Benjamin Skinner, Brian Damitz, Nathan Ford, Brian Iverson, David Long
Comparison Of Cubesat And Pocketqube Mission Timelines And Costs, Benjamin Skinner, Brian Damitz, Nathan Ford, Brian Iverson, David Long
Small Satellite Conference
PocketQube missions promise to reduce costs, speed up development timelines, and increase pedagogical value. We compared this mission format to CubeSat mission to compare relative strengths and weaknesses.
Cubesats For Climate Change Monitoring (C3m): Demonstrating Interferometric Ir Payloads Scalable To Constellations, Miguel Nunes, Paul Lucey, Noah Thompson, Jharrell Sim, Samantha Mallari, Dennis Sarsozo Jr., Junjie Huang, Jaycee Hasegawa, Mari Murillo
Cubesats For Climate Change Monitoring (C3m): Demonstrating Interferometric Ir Payloads Scalable To Constellations, Miguel Nunes, Paul Lucey, Noah Thompson, Jharrell Sim, Samantha Mallari, Dennis Sarsozo Jr., Junjie Huang, Jaycee Hasegawa, Mari Murillo
Small Satellite Conference
- Project Objective: Develop a compact, low-power IR spectrometer for a modular 1U CubeSat.
- Mission Motivation: Enable timely monitoring of climate hazards, wildfires, volcanic activity, and greenhouse gases.
- Core Demonstration: Validated end-to-end integration and operation of a thermal IR payload on the Artemis CubeSat Kit.
- Constellation Vision: Establish a scalable, low-cost architecture for high-revisit climate monitoring.
Demonstration Of Integrated Operation Plan Automation For Cubesat Missions, Riki Nakamura, Shunichiro Nomura, Akihiro Ishikawa, Satoshi Ikari, Ryu Funase, Shinichi Nakasuka
Demonstration Of Integrated Operation Plan Automation For Cubesat Missions, Riki Nakamura, Shunichiro Nomura, Akihiro Ishikawa, Satoshi Ikari, Ryu Funase, Shinichi Nakasuka
Small Satellite Conference
Small satellites, especially CubeSats, are often operated with tight resource margins and small teams. Generating, managing, and validating operation plans under coupled power, thermal, attitude, and communication constraints is labor-intensive and error-prone when done manually.
This work presents an integrated ground-operations automation framework demonstrated on two CubeSat missions.
Development Of A Design Tool For 3d-Printable Cold Gas Thruster Systems For Nanosatellite Missions, Mikolaj Szyszka, Katherine Smith
Development Of A Design Tool For 3d-Printable Cold Gas Thruster Systems For Nanosatellite Missions, Mikolaj Szyszka, Katherine Smith
Small Satellite Conference
Currently, there are 5219 Nanosatellites and CubeSats in orbit [1]. A decade ago, this number was only 800 [1], with forecasts predicting a total of 14,000 small satellites in orbit by 2033 [2]. However, out of the ones that are currently operational, only about 5% are equipped with a propulsion system. Omitting the electric and classified thrusters, cold gas systems are the most popular due to their simplicity and ease of operation. This shows a general lack of manoeuvrability and agility within small satellites in orbit. The proposed C.O.N.E tool aims to bridge the gap between nanosatellite manufacturers and simple …
Development Of Low-Cost And Mobile University Ground Stations, Michael Cargill, Matthew Watson, Patrick Bailey, Jacob Boutin, Wout De Backer
Development Of Low-Cost And Mobile University Ground Stations, Michael Cargill, Matthew Watson, Patrick Bailey, Jacob Boutin, Wout De Backer
Small Satellite Conference
Recent years have seen a deluge of university-class small satellite missions, driving an increase in demand for ground stations. SatNOGS is an open-source network of ground stations allowing users to schedule observations on each others’ hardware. Most stations are fixed in-place. Mobile stations lack endurance or are high cost. There is a gap for a low-cost option for groups needing mobility.
Experimental And Analytical Investigation Of Low-Power Resistojet Performance For Small Satellites, Ryan Mcpherson, Daniel Kichma, Nathan Paes, Benoit Larouche, Robert E. Zee
Experimental And Analytical Investigation Of Low-Power Resistojet Performance For Small Satellites, Ryan Mcpherson, Daniel Kichma, Nathan Paes, Benoit Larouche, Robert E. Zee
Small Satellite Conference
- Small satellite missions increasingly require propulsion systems that can deliver meaningful maneuverability within tight limits on mass, volume, and power.
- Water resistojet thrusters are attractive for this class of spacecraft because they are simple, nontoxic, and compatible with typical small satellite power budgets, but achieving efficient performance at low power remains challenging.
- This work addresses that gap through coupled thermo-fluid modeling, parametric trade studies, and experimental characterization of low-power water resistojet prototypes using a low-cost vacuum testbed.
Investigation Of Functional Realization Of Optically Transparent Patch Antenna For Cubesat Downlink, Jaret Riggs, Ethan Wayland, Alivia Mckinlay, Isaiah Crookston, Samuel Green, Ernest Green, Tevis Hadley, Reyhan Baktur
Investigation Of Functional Realization Of Optically Transparent Patch Antenna For Cubesat Downlink, Jaret Riggs, Ethan Wayland, Alivia Mckinlay, Isaiah Crookston, Samuel Green, Ernest Green, Tevis Hadley, Reyhan Baktur
Small Satellite Conference
The Get Away Special Radio and Antenna Transparency Satellite (GASRATS) is a 2U technology demonstration CubeSat. The spacecraft will demonstrate the feasibility of an optically transparent solar panel-integrated patch antenna in a spacecraft application. The solar panel integrated with meshed antenna efficiently uses external surface area, allowing for communications and power generation on a small CubeSat.
Measuring Space Weather Through Nitrogen-Vacancy Diamond Quantum Magnetometry: A Cubesat Mission Exploration, Patrick Bailey, Alberto Diaz, Jacob Boutin, Austin Downey, Wout De Backer
Measuring Space Weather Through Nitrogen-Vacancy Diamond Quantum Magnetometry: A Cubesat Mission Exploration, Patrick Bailey, Alberto Diaz, Jacob Boutin, Austin Downey, Wout De Backer
Small Satellite Conference
1. The Challenge
- Solar weather is constantly changing with adverse effects on earth and the space around it
- Solar flares cause communication blackouts
- Coronal mass ejections can damage satellite hardware, and cause geomagnetic induced currents that can damage the power grid
- Difficult to measure these effects in real-time
Project Minerva: High-Altitude Weather Balloon Cubesat Research Platform, Gannon English, Gabrielle Guirguis, Jose Murphy, Lena Wang, Ethan Yemm
Project Minerva: High-Altitude Weather Balloon Cubesat Research Platform, Gannon English, Gabrielle Guirguis, Jose Murphy, Lena Wang, Ethan Yemm
Small Satellite Conference
Minerva is an undergraduate student-led high-altitude balloon (HAB) platform developed to provide repeatable, low-cost, and flight-proven testing of experimental payloads and communications systems in near-stratosphere environments. Originally an atmospheric data experiment, it has evolved into a modular testbed supporting missions for both internal research and external student organizations.
Minimum Variable Speed Control Moment Gyros (Vscmg) Cluster Sizing For Full Three-Axis Smallsat Attitude Control: A Numerical Study, Khang Nguyen, Christopher Damaren
Minimum Variable Speed Control Moment Gyros (Vscmg) Cluster Sizing For Full Three-Axis Smallsat Attitude Control: A Numerical Study, Khang Nguyen, Christopher Damaren
Small Satellite Conference
Small satellites demand high-resolution imaging, optical inter-satellite links, precision science — demand agile, accurate attitude control under tight mass, volume, and power.
Momentum-exchange actuators are the standard propellant-free solution:
- Reaction wheels: precise, but low torque authority
- CMGs: high torque, but singularity-prone
- VSCMGs: variable wheel speed and gimbal angle → high torque, added DOFs for singularity avoidance, dual RW/CMG operation
The gap: VSCMG research has focused on 4-unit pyramid clusters, whose redundancy costs actuator count, volume, and power — resources SmallSats can least afford. The minimum cluster size for practical three-axis control is not well established.
Multi-Satellite Optical Link Scheduling With Direct Nonlinear Attitude Planning, Leif Nelson, Yung-Jai Pomeroy, Daniel J. Garcia
Multi-Satellite Optical Link Scheduling With Direct Nonlinear Attitude Planning, Leif Nelson, Yung-Jai Pomeroy, Daniel J. Garcia
Small Satellite Conference
The Problem:
Low Earth Orbit (LEO) constellations increasingly rely on Optical Inter-Satellite Links (OISL) to route data across dynamic satellite networks. As satellites move through their orbits, communications continuously change due to line-of-sight constraints, link quality variations, and spacecraft pointing limitations. Traditional routing approaches often consider network optimization separately from spacecraft attitude control, creating a disconnect between planned routes and physically achievable communication links. This work addresses the challenge of simultaneously generating communication routes while validating that satellites can physically point toward their assigned target. The result is an end-to-end framework that integrates network planning, optical link feasibility, and spacecraft …
Nebulous: Applying Genetic Algorithms To Design Next-Generation Satellites For Drag Resilience, Rick Marcusen, Adrian Bryant, Julie Rolla, Max Foreback, Evan Imata, Emily Dolson, Kyle Helson, Marcin Pilinski, Anselmo C. Pontes, Jonathan Sy, Joey Wagner, Scott Palo
Nebulous: Applying Genetic Algorithms To Design Next-Generation Satellites For Drag Resilience, Rick Marcusen, Adrian Bryant, Julie Rolla, Max Foreback, Evan Imata, Emily Dolson, Kyle Helson, Marcin Pilinski, Anselmo C. Pontes, Jonathan Sy, Joey Wagner, Scott Palo
Small Satellite Conference
Very Low Earth Orbit (VLEO) is a region of space between ~150-400 km that is becoming increasingly valuable for operators of large satellite constellations. VLEO's proximity to the Earth enables improved technical performance, such as higher surface image resolution and lower communications latency, as well as less expensive and more frequent launch opportunities. However, one significant disadvantage to operating in VLEO is the increased effects of aerodynamic drag, which can reduce a mission's lifetime and decrease a spacecraft's position accuracy. To address this, we introduce NEBULOUS, a genetic algorithm-based design tool that evolves spacecraft geometries through generations of mutation and …
Progressing From High-Altitude Balloon Validation To Orbit: Establishing Cubesat Capability In Nevada Through Incremental Design, Kylee Brahma, Leandro Araiza, Christian Ługowski
Progressing From High-Altitude Balloon Validation To Orbit: Establishing Cubesat Capability In Nevada Through Incremental Design, Kylee Brahma, Leandro Araiza, Christian Ługowski
Small Satellite Conference
UNLV ATLAS-1—Analysis of Temperature and Radiation in Low-Earth Orbit for Analog Studies—is a student-led 1U CubeSat mission at the University of Nevada, Las Vegas. The project uses an incremental approach, progressing from mock-satellite prototypes to high-altitude balloon flights and, ultimately, orbital deployment. By increasing system fidelity alongside student experience, UNLV ATLAS-1 aims to create a repeatable pathway for CubeSat development in Nevada and beyond.
Solar-Assisted Battery Charging For The Chipsat Architecture: Chipsat Updates And Validation For The Descent Mission, Mark Lohatepanont, Joshua Umansky-Castro, Val Zeitlin, Matthew Hurford, Mason Peck, Andrew Filo, Alex Burke
Solar-Assisted Battery Charging For The Chipsat Architecture: Chipsat Updates And Validation For The Descent Mission, Mark Lohatepanont, Joshua Umansky-Castro, Val Zeitlin, Matthew Hurford, Mason Peck, Andrew Filo, Alex Burke
Small Satellite Conference
DeSCENT is a suborbital mission to deploy 100 ChipSats from Blue Origin's New Shepard near 100 km altitude. The experiment characterizes ChipSat free-fall kinematics and dispersion, and demonstrates their potential for distributed atmospheric sensing. The updated ChipSat combines rechargeable energy storage and body-mounted solar cells with GPS, sensing, onboard logging, and 915 MHz LoRa communications. Lab testing and high-altitude balloon flights validate integrated power operation and long-range communications performance. Preliminary mechanical testing supports the remaining deployment and flight-verification effort.
Thermal Analysis Of Small Satellites, Devansh Patel
Thermal Analysis Of Small Satellites, Devansh Patel
Small Satellite Conference
Accurate thermal modeling is essential to spacecraft design, ensuring components remain within operational temperatures throughout orbit. This study develops and validates thermal models of increasing complexity to gain practical experience in spacecraft thermal analysis.
The GRIFEX mission is a 3U CubeSat launched in a 634 km circular polar orbit by the Michigan Exploration Laboratory (MXL). The CubeSat observed both 90° and 0° beta angle orbits during its mission, making it optimal for comparing thermal analysis results for small satellites in low Earth orbit.
Toward Plug-And-Play Sensor Integration: A Multi-Protocol Hardware Bridge For Nanosatellites, Pawan Kumar, Moritz P. Heimbach, Shayarrn Khatiwada, Jiten Thapa, Marco Schmidt
Toward Plug-And-Play Sensor Integration: A Multi-Protocol Hardware Bridge For Nanosatellites, Pawan Kumar, Moritz P. Heimbach, Shayarrn Khatiwada, Jiten Thapa, Marco Schmidt
Small Satellite Conference
COTS sensors speak many protocols; but the satellite bus understands only a few. An FPGA hardware bridge board reroutes heterogeneous sensor protocols (UART, SPI, RS-422, RS-485) to the single communication channel with minimum latency supporting plug-and-play with no bus redesign.
Software For The Alpha Cubesat Mission: System Architecture, Development, And Testing Behind Successful Flight Operations, Eric Zhang, Jonathan Ma, Joshua Umansky-Castro, Lauren Greenhill, Duncan Mcdonald, Damian Hackett, Maria Boza, Cameron Goddard
Software For The Alpha Cubesat Mission: System Architecture, Development, And Testing Behind Successful Flight Operations, Eric Zhang, Jonathan Ma, Joshua Umansky-Castro, Lauren Greenhill, Duncan Mcdonald, Damian Hackett, Maria Boza, Cameron Goddard
Small Satellite Conference
Alpha CubeSat is a 1U CubeSat designed, built, and operated by a student-led team at Cornell University. Its primary mission is to deploy a free-flying lightsail in low Earth orbit, carrying gram-scale "ChipSat" flight computers as a demonstration of low-cost distributed sensing in space. The spacecraft was built around commercial, off-the-shelf hardware, including a Teensy 3.5 microcontroller as the primary flight computer and a RockBLOCK Iridium modem for communication, and was developed and flown under the constraints that define a student program: a small power budget, a rotating team, limited development time, and an intermittent operations radio link. The CubeSat …
Concept Of Operation Logic And Implementation Expectations For Multimode Propulsion Technology Demonstration Missions, Logan Thompson, Michael Harrigan, Theresa Sandborn, Victoria Coverstone, Joshua L. Rovey
Concept Of Operation Logic And Implementation Expectations For Multimode Propulsion Technology Demonstration Missions, Logan Thompson, Michael Harrigan, Theresa Sandborn, Victoria Coverstone, Joshua L. Rovey
Small Satellite Conference
Traditional single-mode propulsion systems are typically optimized for either high-thrust, short-duration maneuvers (chemical propulsion) or high-efficiency, low-thrust operations (electric propulsion). For CubeSats, which are limited by mass, volume, power, and system complexity, carrying separate propulsion systems for each mission phase is often impractical. Multimode propulsion systems overcome this limitation by combining chemical and electric propulsion within a shared architecture, allowing a single spacecraft to perform both rapid maneuvers and efficient long-duration orbit maintenance.
Demonstrating a multimode propulsion system requires more than operating two propulsion modes on the same spacecraft. Shared propellant, feed systems, thermal interactions, power usage, and transitions …
Lighting Up The Moon: A Scheduling Framework For Cislunar Space Based Solar Power Orchestration, Vaibhav Bhosale, Andrew Woo, Ada Gavrilovska, Christopher R. Valenta, Ketan Bhardwaj
Lighting Up The Moon: A Scheduling Framework For Cislunar Space Based Solar Power Orchestration, Vaibhav Bhosale, Andrew Woo, Ada Gavrilovska, Christopher R. Valenta, Ketan Bhardwaj
Small Satellite Conference
Surviving the Lunar Night
- 14 Earth day lunar nights
- More batteries, more mass, higher cost
Spatial Reconstructability Analysis: Information-Theoretic Modeling Of Categorical Raster Data, David Percy
Spatial Reconstructability Analysis: Information-Theoretic Modeling Of Categorical Raster Data, David Percy
Dissertations and Theses
This research focuses on the application of Reconstructability Analysis (RA), an information-theoretic machine learning (ML) methodology, to categorical spatial data in Geographic Information Systems (GIS). RA was developed in the systems community with applications including classification, prediction, pattern recognition, and decision analysis. RA is implemented in OCCAM (Organizational Complexity Computation and Modeling), a software suite developed at Portland State University that analyzes discrete data in tabular form, with observations in rows and variables in columns. While RA has been successfully applied to a variety of domains, no systematic application to georeferenced raster data arranged in regular grids has been previously …