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Articles 181 - 210 of 17113
Full-Text Articles in Entire DC Network
I Think I'M Falling For You: Xvi Mission's Final Days In Orbit, Lee Jasper, Erika A. Chavez, Andrew A. Knuth, Adam T. Reinelt, Cameron Shideler, Jayce Thedford, Declan Byrne, Michael Dompke
I Think I'M Falling For You: Xvi Mission's Final Days In Orbit, Lee Jasper, Erika A. Chavez, Andrew A. Knuth, Adam T. Reinelt, Cameron Shideler, Jayce Thedford, Declan Byrne, Michael Dompke
Small Satellite Conference
The Air Force Research Lab’s (AFRL) Small Satellite Portfolio (SSP) created the XVI CubeSat which was launched on SpaceX’s Transporter 8 in June of 2023.
XVI remained operational from June 2023 until its deorbit on January 7, 2026. Throughout its lifetime, the team maintained the vehicle and used XVI for experimentation and training purposes. However, due to the sun's low activity around this time frame, and intentionally lowering the drag/cross sectional area of XVI on orbit, the spacecraft was able to stay in orbit for months beyond its initial predicted re-entry.
Between January 4th and January 7th, XVI was tracked …
Student-Led Operational Framework And Initial On-Orbit Lessons Learned In Multifunctional Membrane Mission Helios-R, Daichi Ishido, Masanori Matsushita, Yuki Takao, Ahmed Kiyoshi Sugihara, Osamu Mori, Tetsuya Kusumoto, Yukiho Ohtsuki, Yuto Nakagawa, Haruhito Ohki, Kaho Nakagawa, Shusaku Tsuruya, Masaaki Shigematsu, Fumiya Aono, Kaine Amakawa, Akihiro Kushima, Ayumu Kawasaki, Jiro Takada, Hinata Yamamoto, Reiji Kobayashi, Ryuki Shimizu, Hiroaki Yoneda, Hirona Kawahara, Junya Taguchi, Satsuki Yokohori, Tomoyo Shibata, Kazuki Hamatsuki, Mao Takata, Toshiyuki Hori, Hiroaki Ito, Akihito Watanabe, Sota Kume, Atsuki Ochi, Takuma Komaba, Hiraku Sakamoto, Atsushi Shirane, Kenichi Okada, Ayako Torisaka, Nobukatsu Okuizumi, Yasutaka Satou, Yasuyuki Miyazaki, Atsuhiko Senba
Student-Led Operational Framework And Initial On-Orbit Lessons Learned In Multifunctional Membrane Mission Helios-R, Daichi Ishido, Masanori Matsushita, Yuki Takao, Ahmed Kiyoshi Sugihara, Osamu Mori, Tetsuya Kusumoto, Yukiho Ohtsuki, Yuto Nakagawa, Haruhito Ohki, Kaho Nakagawa, Shusaku Tsuruya, Masaaki Shigematsu, Fumiya Aono, Kaine Amakawa, Akihiro Kushima, Ayumu Kawasaki, Jiro Takada, Hinata Yamamoto, Reiji Kobayashi, Ryuki Shimizu, Hiroaki Yoneda, Hirona Kawahara, Junya Taguchi, Satsuki Yokohori, Tomoyo Shibata, Kazuki Hamatsuki, Mao Takata, Toshiyuki Hori, Hiroaki Ito, Akihito Watanabe, Sota Kume, Atsuki Ochi, Takuma Komaba, Hiraku Sakamoto, Atsushi Shirane, Kenichi Okada, Ayako Torisaka, Nobukatsu Okuizumi, Yasutaka Satou, Yasuyuki Miyazaki, Atsuhiko Senba
Small Satellite Conference
To enable a broad range of space activities, small satellites require innovative solutions for lightweight, high-power generation. HELIOS-R (Harvesting Energy with Lightweight Integrated Origami Structure), co-developed by JAXA, Institute of Science Tokyo, and Sakase Adtech Co., Ltd., is a pioneering multifunctional membrane component. Launched in December 2025 as part of the RAISE-4 mission, it integrates thin-film solar arrays, a 5G array antenna, and an interferometer antenna on a 1-meter equilateral triangular membrane. This paper details a reliable operational framework developed by a diverse, student-led team from JAXA/ISAS to address stringent operational constraints and technical challenges arising from severe launch delays. …
Long-Term Software-Defined Formation Flying And Its Application To Space Mimo Communications, Takaya Inamori, Keita Tanaka, Kiyoshi Kinefuchi, Shigeru Sunada, Yousuke Kawabata, Ayumu Nono, Takumi Noro, Yukihisa Otani, Norihide Miyamura, Eiji Okamoto, Yuma Abe, Yoshimi Fujii, Hiroyuki Tsuji, Takuya Okura, Rei Kawashima, Takuto Ogawa, Tomoyuki Miyashita
Long-Term Software-Defined Formation Flying And Its Application To Space Mimo Communications, Takaya Inamori, Keita Tanaka, Kiyoshi Kinefuchi, Shigeru Sunada, Yousuke Kawabata, Ayumu Nono, Takumi Noro, Yukihisa Otani, Norihide Miyamura, Eiji Okamoto, Yuma Abe, Yoshimi Fujii, Hiroyuki Tsuji, Takuya Okura, Rei Kawashima, Takuto Ogawa, Tomoyuki Miyashita
Small Satellite Conference
Formation flying of multiple small satellites is expected to enable novel space missions that cannot be achieved by a single satellite. Small sized satellites are strongly affected by environmental disturbances and have strict constraints on mass, volume, and power. This study focuses on characteristics that become prominent as satellites are miniaturized, such as the increased influence of space environment and enhanced interactions among onboard components. By utilizing these effects, the research aims to realize propellant-less, software-defined formation flying. The proposed technologies are applied to space MIMO (multiple input multiple output) communications, in which communication capacity is improved by controlling the …
Advancing Wavelet-Adaptive Interference Cancellation To Enable Cubesat Constellations For High-Fidelity Ac Magnetometry, Surya S. Kalluri, Alex P. Hoffmann, Mark B. Moldwin, James W. Cutler, Yethinder Ragav Lakshmi Kumar, Lauro V. Ojeda
Advancing Wavelet-Adaptive Interference Cancellation To Enable Cubesat Constellations For High-Fidelity Ac Magnetometry, Surya S. Kalluri, Alex P. Hoffmann, Mark B. Moldwin, James W. Cutler, Yethinder Ragav Lakshmi Kumar, Lauro V. Ojeda
Small Satellite Conference
Dense CubeSat constellations equipped with science-grade AC magnetometers offer a transformative path toward high spatial and temporal resolution of several magnetospheric phenomena that large spacecraft missions cannot resolve. Realizing this vision demands boomless magnetometry– due to deployment risks and resource constraints on nano/micro satellite platforms in large scale –capable of operating in the presence of intense spacecraft-generated electromagnetic interference without the spatial separation that conventional booms provide. This paper advances the characterization of the Wavelet-Adaptive Interference Cancellation for Underdetermined Platforms (WAIC-UP) algorithm across different frequency regimes and two distinct classes of test data. In the 50 Hz to 30 kHz …
Toward Trainable Ai Agents For Satellite Operations, Haley Calderon, Vaibhav Bhosale, Ketan Bhardwaj, Ada Gavrilovska
Toward Trainable Ai Agents For Satellite Operations, Haley Calderon, Vaibhav Bhosale, Ketan Bhardwaj, Ada Gavrilovska
Small Satellite Conference
Low Earth orbit is increasingly crowded, and a growing share of it is flown by universities and small operators. These teams must detect and respond to on-orbit anomalies with far less staff, expertise, and tooling than large operators, and a single missed anomaly can end a mission. We present COMET, a ground-based operator agent that helps a small team both detect anomalies and diagnose them. COMET pairs a learned detector with a retrieval-augmented diagnosis stage. An LSTM autoencoder flags anomalous telemetry windows, and a language model explains each one against the mission’s own documentation, procedures, and prior operational records. Because …
An Ai-Enabled Ground Processing Pipeline For Image Restoration And Super-Resolution In 1u Cubesat Missions, Juan Bernardo Calabrese, Manuel Alejandro González Mendoza, Eduardo De La Vega Segura
An Ai-Enabled Ground Processing Pipeline For Image Restoration And Super-Resolution In 1u Cubesat Missions, Juan Bernardo Calabrese, Manuel Alejandro González Mendoza, Eduardo De La Vega Segura
Small Satellite Conference
The inaugural 1U CubeSat mission of Universidad Panamericana represents a shift in academic remote sensing, prioritizing ground-segment intelligence to overcome the physical and computational constraints of a 10-centimeter cubic form factor. Given strict power limitations, the satellite utilizes a low-cost, space-qualified XCAM C3D imaging system providing moderate-quality 1.3MP imagery with a ground sample distance (GSD) of approximately 360 meters at an altitude of 550 kilometers. To transform these raw frames into high-value Earth Observation products, this paper details an automated ground station framework hosting a modular image processing pipeline. The pipeline combines traditional image processing—including histogram equalization and edge enhancement—with …
Itasat2 Conceptual Architectural Design Of A Multi-Band Communication Framework For Distributed Cubesat Formation Operations, Renan Guilherme Soares Menezes, Edson Wander Do Rego Pereira, Bruno Leonardo Schuster, Pedro Casarin, Pedro Henrique Antero Lira, Luiz Fernando Da Cunha Silva, Matheus Esteves, Lidia Shibuya Sato, Ana Di Iorio, Luis Eduardo Vergueiro Loures Da Costa
Itasat2 Conceptual Architectural Design Of A Multi-Band Communication Framework For Distributed Cubesat Formation Operations, Renan Guilherme Soares Menezes, Edson Wander Do Rego Pereira, Bruno Leonardo Schuster, Pedro Casarin, Pedro Henrique Antero Lira, Luiz Fernando Da Cunha Silva, Matheus Esteves, Lidia Shibuya Sato, Ana Di Iorio, Luis Eduardo Vergueiro Loures Da Costa
Small Satellite Conference
The growing operational complexity of distributed CubeSat missions in Low Earth Orbit (LEO) demands communication architectures that provide robustness, responsiveness, and mission-level adaptability. The ITASAT2 mission, composed of three coordinated CubeSats operating in controlled relative motion, serves as a representative case to investigate how a multi-layer communication architecture can support formation flying, responsive maneuver planning, space situational awareness (SSA), distributed payload operations, and increasing levels of onboard autonomy within strict SWaP constraints. This paper proposes and analyzes a multi-band communication architecture designed to improve both operational resilience and communication responsiveness. The architecture combines a primary telemetry, tracking, and command (TT&C) …
Autonomous Reinforcement Learning Astrobee Control With Low Swap Neuromorphic Hardware, Kenneth Stewart, Roxana Leontie, Samantha Chapin, Joe Hays, Sumit Bam Shrestha, Carl Glen Henshaw
Autonomous Reinforcement Learning Astrobee Control With Low Swap Neuromorphic Hardware, Kenneth Stewart, Roxana Leontie, Samantha Chapin, Joe Hays, Sumit Bam Shrestha, Carl Glen Henshaw
Small Satellite Conference
We present an end-to-end pipeline for deploying neural networks on low SWaP neuromorphic hardware to control a CubeSat like robot. As a test case, we use a reinforcement learning (RL)-trained Artificial Neural Networks (ANNs) on neuromorphic hardware by converting them into spiking Sigma-Delta Neural Networks (SDNNs) for controlling the NASA Astrobee free-flying robot, similar to a previously space-validated controller demonstrated on robotic hardware. We demonstrate that an ANN trained entirely in simulation can be transformed into an SDNN compatible with Intel’s Loihi 2 neuromorphic architecture, enabling low-latency and energy-efficient inference. The SDNN is deployed on Loihi 2, then evaluated in …
Pulse-Q: Space-To-Ground Quantum Key Distribution At The Cubesat Form Factor, Logan Hanssler, Stewart Kristiansen, Ellisian King, Neha Chandran, Unnathi Venkatesh, Selina Gao, Nelson Chan, Mika Sadikario, Joseph Sorel, Lexi Liu, Eleanor Gentry, Rohan Gupta, Juan Ignacio Prieto Asbun, Lauren Ayala, Vincent Redwine, Tian Zhong
Pulse-Q: Space-To-Ground Quantum Key Distribution At The Cubesat Form Factor, Logan Hanssler, Stewart Kristiansen, Ellisian King, Neha Chandran, Unnathi Venkatesh, Selina Gao, Nelson Chan, Mika Sadikario, Joseph Sorel, Lexi Liu, Eleanor Gentry, Rohan Gupta, Juan Ignacio Prieto Asbun, Lauren Ayala, Vincent Redwine, Tian Zhong
Small Satellite Conference
Motivation
- Quantum key distribution (QKD) offers provably secure communication regardless of the technology available to potential eavesdroppers.
- Space-to-ground QKD facilitates long-distance key distribution without costly terrestrial infrastructure.
- The Polarization-modUlated Laser Satellite Experiment – Quantum (PULSE-Q) is a 12U CubeSat mission to leverage recent innovations in compact quantum sources and optical communication to achieve space-to-ground QKD.
Rapid Integration Of A Secondary Communications Subsystem On Aggiesat6, Alex B. Halbesleben, John F. Connolly
Rapid Integration Of A Secondary Communications Subsystem On Aggiesat6, Alex B. Halbesleben, John F. Connolly
Small Satellite Conference
AggieSat Laboratory (AGSL) is a student-run space program that trains students in systems engineering through hands-on experience in the design, building, testing, and operation of space and space-related systems
AGSL is currently comprised of 107 students, most of whom are undergraduates. Its members work on eight active projects (including a shadow program for underclassmen).
AGSL has demonstrated flight heritage with the deployments of AggieSat2, AggieSat4, and AggieSat6.
The Base Got Hit: Interpersonal Communication Strategies In High-Stress Space Projects, Allison E. Barnes, Avery G. Barriga, John F. Connolly
The Base Got Hit: Interpersonal Communication Strategies In High-Stress Space Projects, Allison E. Barnes, Avery G. Barriga, John F. Connolly
Small Satellite Conference
The AggieSat Laboratory (AGSL) is a student-driven laboratory with 17 years of space systems experience and flight heritage. As AGSL prepares to launch several space systems over the next three years, reflecting on lessons learned from past projects is critical to improving future reliability and execution. This survey analyzes communication dynamics in past CubeSat and ISS payload projects, specifically within the high-stress phases of Assembly, Integration, and Test (AI&T) and Mission Operations, where a combination of young engineers and high-stakes decision-making can often lead to compounding, avoidable technical anomalies.
This survey identifies specific interpersonal strategies to mitigate human error, including …
Processor And Sensor Interfacing On Fpga For Stp-H12-Vantage Space Mission, Christopher Brubaker, Alan D. George
Processor And Sensor Interfacing On Fpga For Stp-H12-Vantage Space Mission, Christopher Brubaker, Alan D. George
Small Satellite Conference
Previous SHREC Missions
- STP-H5-CSP – Demonstration of CSP and hybrid COTS + rad-hard architecture
- STP-H6-SSIVP – Parallel and distributed computing with multiple CSPs
- STP-H7-CASPR – Onboard processing with next-gen sensors and apps
STP-H12-VANTAGE
- Visual And Neuromorphic Tracking And Geosensing Experiment
- Correlation of neuromorphic and visual sensor data
- Advancing usage of COTS SoMs supplemented with rad-hard monitoring and watchdog circuitry
Squidsat: A Modular, Open-Source 3u Cubesat Bus For Low-Cost Cubesat Missions, Aaron Bournias, Joseph Dukowitz, Mark Jaber, Tyler Field, Micah Nguyen, Koowum Joshi, Noah Campos, Daphne Riordan, Ryan La Ra, Jonathan Luse, Joshua Sink, Tyler Nielsen, Ricardo Ontivaros, Michael Goryll, Joe Dubois
Squidsat: A Modular, Open-Source 3u Cubesat Bus For Low-Cost Cubesat Missions, Aaron Bournias, Joseph Dukowitz, Mark Jaber, Tyler Field, Micah Nguyen, Koowum Joshi, Noah Campos, Daphne Riordan, Ryan La Ra, Jonathan Luse, Joshua Sink, Tyler Nielsen, Ricardo Ontivaros, Michael Goryll, Joe Dubois
Small Satellite Conference
CubeSat launches continue to increase yearly, yet over 51% of missions from 2002–2016 failed. Primary faults were often due to power, mechanical, or design issues. Costs still remain high in a market driven by expensive flight-heritage hardware with proprietary designs. In order to counteract such costly practice, Sun Devil Satellite Lab (SDSL) at ASU has developed an open-source, modular 3U CubeSat bus built for low cost reliability. Unlike other bus architectures, SquidSat distributes control across independent microcontrollers linked via a CAN bus. CAN is commanded by the OBC but is capable of independent operation for fault isolation and easier testing. …
Onboard Ai At The Orbital Edge: A Mission Debrief From Stp-H7-Caspr, Evan W. Gretok, Linus Silbernagel, Diego Wildenstein, Michael J. Cannizzaro, Seth Roffe, Alan D. George
Onboard Ai At The Orbital Edge: A Mission Debrief From Stp-H7-Caspr, Evan W. Gretok, Linus Silbernagel, Diego Wildenstein, Michael J. Cannizzaro, Seth Roffe, Alan D. George
Small Satellite Conference
Goals: Enable autonomous Earth observation and onboard sensor data processing with novel compute
Motivations: Growing numbers of spacecraft demand autonomy in operation and data collection
Challenges: Harsh radiation and thermal environment of space over four-year mission lifetime
A Comparative Analysis Of Radio Frequency And Optical Inter-Satellite Link Communications For Leo Mega-Constellations, Alexa Houck, Suryansh Aryan, Kevin Schroeder, Samantha Kenyon
A Comparative Analysis Of Radio Frequency And Optical Inter-Satellite Link Communications For Leo Mega-Constellations, Alexa Houck, Suryansh Aryan, Kevin Schroeder, Samantha Kenyon
Small Satellite Conference
SpaceNet design
Software-based testbed for simulating large satellite networks, specifically LEO-based constellations to analyze network behavior, connectivity, routing, and overall communication.
- Phase one focuses on connectivity and routing: Given the topology and link availability over time, how does my network behave?
- Phase two focuses on network emulation: Given the topology and link availability over time, how does my network behave?
Snack Protocol For Reliable High-Throughput Data Transfer On Mtu-Constrained Low-Cost Uhf Radios, Samantha Mallari, Dennis Sarsozo, Miguel Nunes
Snack Protocol For Reliable High-Throughput Data Transfer On Mtu-Constrained Low-Cost Uhf Radios, Samantha Mallari, Dennis Sarsozo, Miguel Nunes
Small Satellite Conference
- Student CubeSat missions using sub-$100 UHF radios are constrained by small packet sizes, making standard protocols (e.g., TCP, CFDP) too overhead-intensive for payload downlinks.
- We developed a Selective Negative Acknowledgement (SNACK)-based protocol for the Artemis CubeSat Kit bus to support reliable 160 × 120 LWIR thermal image transmission for the CubeSats for Climate Change Monitoring (C3M) mission
- A 45-byte SNACK bitmap acknowledges up to 360 packet fragments, minimizing retransmission overhead.
- Field tests from 5 m to 1.6 km achieved 72.2 kbps peak throughput and ≥98.7% final data integrity.
Austronauts 3u Cubesat Space Weather Payloads Proposal, Tiana Pendray
Austronauts 3u Cubesat Space Weather Payloads Proposal, Tiana Pendray
Small Satellite Conference
CubeSats are becoming increasingly prominent due to their accessibility, affordability and versatility. An emerging field of satellite application is the monitoring of ionospheric space weather, made possible by sensitive instruments that collect data on plasma potential, temperature and ion density. These parameters vary due to changing solar activity in the form of Coronal Mass Ejections (CMEs) and solar flares, which can have severe impacts on satellite navigation systems, radio communication networks and orbital estimations. The AUStronauts team at the University of New South Wales is developing a 3U CubeSat with two space weather payloads – an Electrodynamic Tether (EDT) and …
Autonomous Microelectronics See Payload For Validating Terrestrial Predictions In Space, Michael A. Blacconiere, Isaac Hudson, John W. Burgoon, Terrance Sacks, Spencer Westfall, Sajal Islam, Davidson Juhke, George Randel, Jared Harvey, Merek Chertkow, Daniel Loveless
Autonomous Microelectronics See Payload For Validating Terrestrial Predictions In Space, Michael A. Blacconiere, Isaac Hudson, John W. Burgoon, Terrance Sacks, Spencer Westfall, Sajal Islam, Davidson Juhke, George Randel, Jared Harvey, Merek Chertkow, Daniel Loveless
Small Satellite Conference
The radiation environment in space is complex and time-varying, causing major risks for microelectronic applications. Terrestrial radiation sources are used to characterize devices before missions to predict in-orbit error rates. However, these predictions are rarely validated in deployment. The payload, designed by IU CREATE and The Radiation Team, the IUB-SAT-1, integrates IU’s RadFX-IC and commercial SRAMs with well-characterized terrestrial radiation responses into a modular payload to collect on-orbit radiation-response data. Results will refine radiation error-rate models and improves confidence in deploying advanced microelectronics to radiation-rich space environments.
In-Transit Debris Remediation: Dual-Use Logistics For Sustainable Cislunar Smallsat Constellations, Wanjiku Chebet Kanjumba
In-Transit Debris Remediation: Dual-Use Logistics For Sustainable Cislunar Smallsat Constellations, Wanjiku Chebet Kanjumba
Small Satellite Conference
A Debris Crisis Meets A Logistics Boom: Low- and high-Earth orbit keep accumulating debris faster than the atmosphere can clear it, even as NASA's Artemis and CLPS programs establish routine trans-lunar traffic. The 2009 Iridium-Cosmos collision and later anti-satellite tests proved that single fragmentation events can irreversibly degrade critical orbital shells, raising the specter of Kessler Syndrome.
- 46,600+ objects tracked on orbit today, with ~130 million sub-cm fragments (ESA, 2025)
- $500K-$2M cost per kilogram for dedicated ADR, fiscally intractable at system scale
- 5-10 / yr large objects must be removed to stabilize LEO (Liou & Johnson)
The Unit-Economics Problem: Purpose-built …
Lessons Learned From The Hyvrid 3u Cubesat Development, Kim Jee Hoon
Lessons Learned From The Hyvrid 3u Cubesat Development, Kim Jee Hoon
Small Satellite Conference
Space Object Surveillance System
- Hanwha Systems’ Next Generation Satellite Laser Ranging (NGSLR) uses the turnaround time of laser emitted from the ground to measure precise distance of satellites or space objects.
- It is also capable of precise orbit prediction and active response by utilizing high-energy laser.
Verification Satellite
- CubeSat HYVRID is made to operate as a target satellite of the NGSLR system, verifying the laser ranging, precise orbit prediction, and active response technology.
- GPS raw data
- laser detection data
- images captured before-and-after active response
Microcontroller Debugging Efficiency For Low Cost Cubesat Missions, Koowum Joshi, Tyler Nielson, Tyler Field, Aaron Bounias, Michael Goryll
Microcontroller Debugging Efficiency For Low Cost Cubesat Missions, Koowum Joshi, Tyler Nielson, Tyler Field, Aaron Bounias, Michael Goryll
Small Satellite Conference
This study evaluates the debugging efficiency of different microcontrollers for CubeSat applications by using a “debugging box” system that links two devices to detect faulty code. It compares latency, reliability, and cost to identify the most effective low-cost option. The goal is to improve accessibility to space technologies.
Multi-Phase Guidance And Control For Small Satellite Docking Via Deep Reinforcement Learning, Tanner Gill, Greg Furlich, Nisar Ahmed
Multi-Phase Guidance And Control For Small Satellite Docking Via Deep Reinforcement Learning, Tanner Gill, Greg Furlich, Nisar Ahmed
Small Satellite Conference
As interest in small satellite Rendezvous, Proximity Operations, and Docking (RPOD) grows, so does the need for high-level autonomy in space systems. Current systems relying on constrained hardware and ground-in-the-loop decision-making are ill-equipped for the evolving, contested space domain. Recent research on autonomous spacecraft guidance and control has moved beyond established optimal control and trajectory optimization methods to incorporate Reinforcement Learning (RL), though these efforts have predominantly focused on a single operational phase. This research advances small satellite docking autonomy by formulating the reference scenario as a Hierarchical Markov Decision Process (H-MDP), expanding the scope of the learned guidance and …
Aggiesat6 University Cubesat Ops Prep And Leops, Avery G. Barriga, Garrett M. Stevenson, John F. Connolly
Aggiesat6 University Cubesat Ops Prep And Leops, Avery G. Barriga, Garrett M. Stevenson, John F. Connolly
Small Satellite Conference
AggieSat6 (AGS6) is a 6U CubeSat designed and developed by students at Texas A&M University (TAMU) as part of the University Nanosatellite Program (UNP) NS-10 cycle. The mission will demonstrate a space-based radio frequency array for Space Domain Awareness (SDA) applications and collect low-energy electron radiation data to improve existing environmental models. Beginning in January 2025, students at TAMU established mission operations architecture, implemented operator training and certification, and prepared to assume sole responsibility for on-orbit operations. The AggieSat6 bus launched into Low Earth Orbit (LEO) in April of 2026. The AGS6 Mission was supported by the University Nanosatellite Program. …
Experimental Analysis Of Cryptography Overhead For Secure Cubesat Telemetry, Tyler Field, Michael Goryll
Experimental Analysis Of Cryptography Overhead For Secure Cubesat Telemetry, Tyler Field, Michael Goryll
Small Satellite Conference
Encryption consumes critical and limited resources, such as computing power, energy, and memory. Results from this research has helped SquidSat, a student-led 3u CubeSat launching sometime in 2027-2028, by providing data showing which microcontrollers are most effective for encryption algorithms.
F Prime To Flight Faster: Hardware-In-The-Loop Continuous Integration For Accelerated Cubesat Development, Nate Gay, Saidi Adams, Michael Pham
F Prime To Flight Faster: Hardware-In-The-Loop Continuous Integration For Accelerated Cubesat Development, Nate Gay, Saidi Adams, Michael Pham
Small Satellite Conference
Flight software teams iterate quickly in development and then slow down at integration, because the software must be validated against real hardware that is itself still changing.
Bench testing is manual, intermittent, and happens late. Defects surface days after the commit that caused them, once the context is gone and the change has been built on.
Propellant-Free Formation Keeping Using Environmental Perturbations In Leo Via Orbital Angular Momentum Vector Matching, Yu Seike, Takaya Inamori, Keita Tanaka
Propellant-Free Formation Keeping Using Environmental Perturbations In Leo Via Orbital Angular Momentum Vector Matching, Yu Seike, Takaya Inamori, Keita Tanaka
Small Satellite Conference
Small-satellite formation flying enables new mission capabilities.
e.g. MIMO (Multi Input Multi Output) Communication
Challenge: Conventional formation keeping requires thrusters. Small satellites have limited onboard resources.
Bcon-2 Operations And Pre-Flight Testing, Kenny Blanton, Brayden Kuchenbacker, Dan White
Bcon-2 Operations And Pre-Flight Testing, Kenny Blanton, Brayden Kuchenbacker, Dan White
Small Satellite Conference
As part of the Dream Big Phase I mission, Valpo Space Program’s (VSP) satellite BCON-2 is a 0.5U ThinSat CubeSat designed by NearSpace Launch (NSL).
Dimensions: 0.5U ThinSat (10 cm × 10 cm × 5 cm).
- Comms/MCU Board: STM-32 based PocketQube satellite board that utilizes an AX5043 transceiver to manage VHF/UHF radio communications and subsystem connectivity via CAN bus.
- ADCS Payload: Collaborative flight of the University of Luxembourg’s (UniLu) Space Systems Engineering (SpaSys) system; features their PCB-embedded tri-axial magnetorquer coils Attitude Determination and Control System (ADCS).
- Square Koch Fractal Antenna: The RF systems remain inactive for this mission due to …
Exploring Knowledge And Sources Of Information On Augmentative And Alternative Communication Among Board-Certified Behavior Analysts, Alyssa Roylance, Sophia R. D'Agostino, Avery Briggs, Naima Bhana-Lopez
Exploring Knowledge And Sources Of Information On Augmentative And Alternative Communication Among Board-Certified Behavior Analysts, Alyssa Roylance, Sophia R. D'Agostino, Avery Briggs, Naima Bhana-Lopez
Special Education and Rehabilitation Counseling Student Research
Applied Behavior Analysis (ABA) is often recommended to help autistic individuals develop needed skills, and as such, Board-Certified Behavior Analysts (BCBAs) should be prepared to assist minimally verbal individuals to learn how to communicate. Augmentative and Alternative Communication (AAC) can be a helpful tool to assist communication for these individuals. An explanatory sequential mixed-methods study, including a survey with Likert-type and open-answer questions and a semi-structured interview, was conducted to learn if BCBAs are receiving training on AAC systems and where they are obtaining AAC-related professional development. The survey and interview also inquired about collaboration with other professionals regarding the …
Enhancing Algae Biofilm Quantity And Value Through Controlled Light Intensity For Treatment Of Municipal Anaerobic Digestor Effluent, Joshua D. Wintch, Ronald C. Sims
Enhancing Algae Biofilm Quantity And Value Through Controlled Light Intensity For Treatment Of Municipal Anaerobic Digestor Effluent, Joshua D. Wintch, Ronald C. Sims
Biological Engineering Student Research
Rotating algae biofilm reactors (RABRs) have been shown to remove nutrients from wastewater and to cultivate algae for bioproducts. Another key variable in RABR technology for cultivating microalgae biomass is light intensity. The goal of this study was to address a gap in the design and operation of algae biofilm reactors by analyzing the effects of light intensity on biomass quality and quantity, chemical precipitation of phosphorus, and phosphorus uptake into biomass. This study utilized a triplicate laboratory-scale experiment with PAR intensities from 10 to 2000 µmol m−2·s−1. Municipal wastewater anaerobic digester effluent (ADE) was utilized …
Excelling In An Entry-Level Job, Paul Hill, Osei Vega-Sandoval
Excelling In An Entry-Level Job, Paul Hill, Osei Vega-Sandoval
All Current Publications
Experience in an entry-level job becomes more valuable over time, especially when performance is exceptional. Managers conduct periodic performance reviews to provide feedback that entry-level employees can use to improve. Performance reviews are an opportunity for employees to learn, share career goals, and seek tailored guidance for their career development. This fact sheet provides insights into the character and qualities an employee should demonstrate to become a high performer, and what organizations can do to retain such employees.