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Hard Disk Drive Reaction Wheel System For Cubesat Architecture, Nidhi Sonwalkar, Venkata Chalamalasetty, Dionna Parina, Parishee Bajaj Aug 2025

Hard Disk Drive Reaction Wheel System For Cubesat Architecture, Nidhi Sonwalkar, Venkata Chalamalasetty, Dionna Parina, Parishee Bajaj

Small Satellite Conference

Small satellites have become prevalent within the aerospace industry due to their ability to provide an inexpensive and easily accessible platform for technology demonstrations. Reaction wheels are typically selected for these missions’ attitude and rate control due to their small form factor. Their downside, however, is high cost, upwards of thousands of dollars, which does not align well with the low budget of many small satellites. To address this issue, alternative momentum-actuator technologies can be implemented that, similar to traditional reaction wheels, impart torques for actuation but require much less mass, volume, power, and money. This manuscript discusses the implementation …


Innovative Integration Of A Small And Resetable Hdrm For The Wisdom Project, Guillem Quintana Buil, Valentina Luchetti, Péter Koncsár, Alexandra Széll, Dóra Marossy Aug 2025

Innovative Integration Of A Small And Resetable Hdrm For The Wisdom Project, Guillem Quintana Buil, Valentina Luchetti, Péter Koncsár, Alexandra Széll, Dóra Marossy

Small Satellite Conference

WISDOM is a 6U CubeSat mission demonstrating autonomous collision avoidance in low Earth orbit, addressing the need for in-orbit mitigation in dense satellite environments.

Comprising two mechanically integrated 3U CubeSats, the system launches as a single unit (WISDOM-A), then autonomously separates into WISDOM-A and WISDOM-B for realistic proximity operations and collision avoidance testing.


International Space Cooperation Between Japan And Paraguay, Shinsaku Nakamura, Alejandro Roman, Kei Sato, Yoshinori Kobayashi, Akie Koga, Atsushi Kimura, Adolfo Jara, Osvaldo Almirón Aug 2025

International Space Cooperation Between Japan And Paraguay, Shinsaku Nakamura, Alejandro Roman, Kei Sato, Yoshinori Kobayashi, Akie Koga, Atsushi Kimura, Adolfo Jara, Osvaldo Almirón

Small Satellite Conference

Space Agency of Paraguay (AEP) has an ambitious goal to achieve an initiative for developments, operations and utilizations of small satellites in Latin America. Authors collaborated to enhance Paraguayan space programs on socioeconomic benefits through 3 items: 1) providing a technical transfer program about small satellite developments, including Paraguayan 2nd small satellite, GuaraniSat-2 Engineering Model tests in Japan; 2) creating a flood hazard map and designing inter-sectional framework for evacuation planning as a satellite data application on disaster management; and 3) developing soybean monitoring systems through multiple optical satellite data analysis and combining weather information with agricultural and Livestock minitries …


Leo Catalog Quality Monitoring For Live Operations And Mission Analysis, Lois Reid, Sam Johnson Aug 2025

Leo Catalog Quality Monitoring For Live Operations And Mission Analysis, Lois Reid, Sam Johnson

Small Satellite Conference

Poster presented during the 2025 SmallSat Conference.


Modular Payload Connectivity For Rapid Integration And Testing, Sam Feldman, Noah Gladden, Rahul Rughani, Dave Barnhart Aug 2025

Modular Payload Connectivity For Rapid Integration And Testing, Sam Feldman, Noah Gladden, Rahul Rughani, Dave Barnhart

Small Satellite Conference

Poster presented during the 2025 SmallSat Conference.


Next-Generation Earth Observation: Agile Satellites With Cmg Cluster For Enhanced Coverage, Andrea Coco, Simon Debois Aug 2025

Next-Generation Earth Observation: Agile Satellites With Cmg Cluster For Enhanced Coverage, Andrea Coco, Simon Debois

Small Satellite Conference

The rapid growth of Earth observation demands cost-effective strategies, such as integrating COTS components and accelerating deployment. A key factor in mission efficiency is spacecraft agility, which enables faster reorientation, improved target tracking, and optimized data collection. A game-changing advancement is the revival of Control Moment Gyroscopes (CMGs) as cost-effective, high-performance actuators. Once constrained by high costs, recent manufacturing innovations and new providers have made CMGs more accessible. With superior torque efficiency and capability, CMGs greatly enhance agility, enabling faster reorientation and improved data collection compared to conventional reaction wheels. This paper presents a comparative case study demonstrating the advantages …


Optical Telescope Paradigms For High-Performance Cost-Effective Smallsats, Tony Hull, Janina Krieg, Florian Gollier, Dustin Ruth, Thomas Westerhoff, Ralf Jedamsik Aug 2025

Optical Telescope Paradigms For High-Performance Cost-Effective Smallsats, Tony Hull, Janina Krieg, Florian Gollier, Dustin Ruth, Thomas Westerhoff, Ralf Jedamsik

Small Satellite Conference

ZERODUR®’s supreme thermo-mechanical stability is enabling for high-performance telescopes, including mirror substrates and even the precision metering structure. For on-orbit high-resolution SmallSat telescopes, tight dimensional control may be passively maintained, even while experiencing continuously changing Solar and Earth thermal view factors. This stability is a vast improvement over implementation in alternate materials like aluminum. ZERODUR®’s thermal and strength characteristics are comprehensively described via ~ 100 scientific publications. Innate stability, decades of spaceborne heritage and expert machining and lightweighting from SCHOTT offers special ZERODUR® cost-effective solutions for SmallSat Telescope Design-to-Cost paradigms, even for constellation level implementation. The latest information for such …


Orbital Decay Analysis Of Uae Nanosatellites In Low Earth Orbit, Bassam Alfeeli Aug 2025

Orbital Decay Analysis Of Uae Nanosatellites In Low Earth Orbit, Bassam Alfeeli

Small Satellite Conference

Given the continuous efforts in the United Arab Emirates (UAE) to develop its local capabilities in space technology through the deployment of nanosatellites (cubesats) in Low Earth Orbit (LEO), understanding cubesats orbital dynamics and decay patterns is crucial for both future mission planning and space debris management. This study investigates the orbital decay characteristics of cubesats deployed by the UAE in LEO. We analyzed the orbital decay rates of seven UAE cubesats namely Nayif-1, Mysat-1, Meznsat, QMR-KWT, Ghalib, Dhabisat, and Light-1 by examining observational data, orbital parameters, and environmental factors. The results offer insights into the effectiveness of current satellite …


Orbitcare: A Universal Autonomous In-Orbit Platform For Manufacturing, Servicing, And Debris Mitigation, Rohan Chandratre, Vishish Behera, Anushree Manwatkar, Aruma Kushwaha, Sneha Gayen Aug 2025

Orbitcare: A Universal Autonomous In-Orbit Platform For Manufacturing, Servicing, And Debris Mitigation, Rohan Chandratre, Vishish Behera, Anushree Manwatkar, Aruma Kushwaha, Sneha Gayen

Small Satellite Conference

OrbitCare is a proposed orbital infrastructure enabling scalable, sustainable, and cost-effective in-space servicing, manufacturing, and assembly through a modular system architecture comprising an Orbital Manufacturing Hub (OMH) and a fleet of free-flying WorkSat servicing satellites, all integrated via a standardized Servicing Interface Standard (SIS). This paper presents the technical architecture, subsystem design, trade studies, use cases, and development roadmap for OrbitCare. The motivation stems from the current lack of persistent infrastructure in orbit, which renders satellites single-use assets with limited repair or upgrade capabilities. OrbitCare addresses this by combining a permanent hub with reusable robotic satellites to extend spacecraft lifespans, …


Peek-Guided Neural Network Pruning For Deployment On Low Swap Hardware, Mackenzie J. Meni, Blake Gisclair, Ryan T. White, Trupti Mahendrakar Aug 2025

Peek-Guided Neural Network Pruning For Deployment On Low Swap Hardware, Mackenzie J. Meni, Blake Gisclair, Ryan T. White, Trupti Mahendrakar

Small Satellite Conference

Deploying deep learning models onboard spacecraft is limited by strict size, weight, power (SWaP), and bandwidth constraints. Standard object detection networks like YOLO or Faster R-CNN are too computationally heavy for real-time use in space. We present a pruning framework using PEEK (Probabilistic Explanations for Entropic Knowledge extraction), an entropy-based interpretability method that pinpoints low-information layers for removal. Applied to YOLOv5 for Rendezvous, Proximity Operations, and Docking (RPOD), this approach cuts model size by up to 30% and compute cost by 25%, with only minor accuracy trade-offs—enabling faster, reliable detection on low-SWaP spacecraft platforms.


Qualification Challenges Of An Sadm Using The Slipring Technology, Adrien Guignabert, Flavien Deschaux, Etienne Magnin-Robert, Luc Herrero, Jean-Bernard Mondier Aug 2025

Qualification Challenges Of An Sadm Using The Slipring Technology, Adrien Guignabert, Flavien Deschaux, Etienne Magnin-Robert, Luc Herrero, Jean-Bernard Mondier

Small Satellite Conference

The SADM-200 (Solar Array Drive Mechanism for 200W) is a new mechanism developed at Comat in order to provide a solution for solar array rotation and power transfer for small satellite applications. This mechanism is designed to be as compact as possible while providing a reliable angular positioning and electrical power transfer from the solar array to the satellite. Robust mechanical guidance and high quality components selection allows an accurate positioning with low angular play while withstanding the tough mechanical and thermal environment faced during launch and in-orbit operations. The development focused on keeping the cost as low as possible …


Qualification Testing And Initial Flights Of The Payload Release Module – Prm™ 4-Point Dispensing Mechanism, Ensign-Bickford Aerospace & Defense Aug 2025

Qualification Testing And Initial Flights Of The Payload Release Module – Prm™ 4-Point Dispensing Mechanism, Ensign-Bickford Aerospace & Defense

Small Satellite Conference

Poster presented during the 2025 SmallSat Conference.


Scout Mission: Satellite Collision Observation And Unified Tracking, Timothy Suxe, Linnea Berger, Rohan Patel, Lauren Ward, Frankie Sharman, Griffin Mckay, Shellene Redhorse, Ayush Srivastava, Barbra Sobhani Aug 2025

Scout Mission: Satellite Collision Observation And Unified Tracking, Timothy Suxe, Linnea Berger, Rohan Patel, Lauren Ward, Frankie Sharman, Griffin Mckay, Shellene Redhorse, Ayush Srivastava, Barbra Sobhani

Small Satellite Conference

SCOUT is a CubeSat-based mission developed to improve space situational awareness by detecting and cataloging orbital debris through the use of RGB imaging and advanced image processing techniques. The mission focuses on identifying the position, velocity, and orbital trajectories of debris smaller than 10 centimeters. This data will be collected, analyzed, and made publicly available to support future collision avoidance efforts and promote transparency in orbital debris monitoring. The system's core component is an RGB camera mounted on the CubeSat, which enables real-time visual tracking of objects within the field of view. By utilizing computer vision algorithms, SCOUT aims to …


Small Satellites, Big Impact: Advancing Space Innovation From Earth To Orbit With The Catapult’S Isam Test Facility, Dimitris Xydas, Oliver Knappett, Lewis Gray, Alex Goodhand, Jeremy Hadall, Michael Curtis-Rouse Aug 2025

Small Satellites, Big Impact: Advancing Space Innovation From Earth To Orbit With The Catapult’S Isam Test Facility, Dimitris Xydas, Oliver Knappett, Lewis Gray, Alex Goodhand, Jeremy Hadall, Michael Curtis-Rouse

Small Satellite Conference

The In-orbit Servicing Assembly & Manufacturing (ISAM) Test Facility at Westcott, UK is a testbed providing realistic environmental conditions for orbital operations here on Earth, with the primary objective of accelerating the readiness level of emerging ISAM technologies and reducing the time to market for commercial space systems. As a result of continuous feedback from campaigns, the Facility has seen recent upgrades to both infrastructure and capabilities, which has created a unique operational environment that acts as an enabler for space activities in the UK and internationally. Moreover, as a constantly evolving system, it is uniquely positioned to adapt to …


Smallsats In Earth Science: Pioneering Insights Through The Usgeo’S Earth Observation Assessment, Shankar Ramaseri, Jordan Rowe, Ellen Wengert, Kimberly A. Casey Aug 2025

Smallsats In Earth Science: Pioneering Insights Through The Usgeo’S Earth Observation Assessment, Shankar Ramaseri, Jordan Rowe, Ellen Wengert, Kimberly A. Casey

Small Satellite Conference

Poster presented during the 2025 SmallSat Conference.


The Potential Of Small Optical Isolators For Leo Satellite Equipment, Tomoaki Toriya, Shuto Goryo, Masaki Ogura, Fumiaki Shiotsu, Toshihisa Okubo, Takashi Kato Aug 2025

The Potential Of Small Optical Isolators For Leo Satellite Equipment, Tomoaki Toriya, Shuto Goryo, Masaki Ogura, Fumiaki Shiotsu, Toshihisa Okubo, Takashi Kato

Small Satellite Conference

Poster presented during the 2025 SmallSat Conference.


Ultra-Compact Deployable Reflectarray Antenna For Cubesat Earth Observation Or Science Missions, Cecilia Cappellin, Tonny Rubæk, Min Zhou, Andreas Ericsson, Mustafa Murat Bilgic, Erik Jørgensen Aug 2025

Ultra-Compact Deployable Reflectarray Antenna For Cubesat Earth Observation Or Science Missions, Cecilia Cappellin, Tonny Rubæk, Min Zhou, Andreas Ericsson, Mustafa Murat Bilgic, Erik Jørgensen

Small Satellite Conference

Earth observation and science missions require high data-rate downlinks, demanding antennas with higher gain and wider bandwidth than standard COTS solutions, like helixes, monopoles or patches.

Reflectarray antennas are ideal, as they can deploy from flat panels on the satellite and become electrically large.

To fill the gap in European high gain space-qualified COTS options, the European Space Agency (ESA) and TICRA have developed and qualified a compact and deployable, circularly polarized X band reflectarray antenna (8.025–8.4 GHz) designed to fit on the side of a 6U CubeSat.


3ucubed: The Imap Student Collaboration Cubesat Progress To Flight Readiness, Sanjeev Mehta, Noé Lugaz, Lindsay Bartolone, Marc Lessard, Laura Peticolas, Marcus Alfred Aug 2025

3ucubed: The Imap Student Collaboration Cubesat Progress To Flight Readiness, Sanjeev Mehta, Noé Lugaz, Lindsay Bartolone, Marc Lessard, Laura Peticolas, Marcus Alfred

Small Satellite Conference

3UCubed is the Student Collaboration (StC) for the Interstellar Mapping and Acceleration Probe (IMAP) mission. 3UCubed stands for 3 Universities; 3U CubeSat; Uplifting Undergraduate; Upwelling. The 3UCubed project is a student-focused CubeSat collaboration effort between the University of New Hampshire, Sonoma State University, and Howard University. The 3UCubed program offers hands-on experience to undergrad students at three universities through all phases of mission–design, development, assembly, design and testing. 3UCubed is manifested to launch on SpaceX’s Transporter-15 in Q4 2025 in a polar Sun Synchronous orbit (SSO) ~500 km altitude and LTDN of 10:00.


Aerogel-Enhanced E-Ink Particle Detector (Aepd) For Thermospheric Studies, Abeneth Ramachandran, Saranya Ravva, Yukti Makkar, Sai Kiran Parre Aug 2025

Aerogel-Enhanced E-Ink Particle Detector (Aepd) For Thermospheric Studies, Abeneth Ramachandran, Saranya Ravva, Yukti Makkar, Sai Kiran Parre

Small Satellite Conference

Current SmallSat particle detectors suffer from high power consumption ( > 5W) and poor spatial resolution ( ≥ 1mm), limiting thermospheric research capabilities. The Aerogel-Enhanced E-Ink Particle Detector (AEPD) ideation is intended to revolutionize space instrumentation by integrating radiation-tolerant aerogel ( ≤ 3 mg/cm3) with modified E-Ink display technology. This breakthrough if valid can achieve close to 100mW operation with ≤ 200μm resolution, a 50x power improvement and 5x resolution enhancement. The aerogel's graded nanostructure provides 40% capture efficiency gains, while E-Ink layers enable 12-hour persistent visualization without power. Laboratory validation demonstrates 92% particle classification accuracy and linear energy …


A Small-Satellite On-Orbit Optical And Thermal Calibrator, Paul D. Fucile Aug 2025

A Small-Satellite On-Orbit Optical And Thermal Calibrator, Paul D. Fucile

Small Satellite Conference

Imaging payload sensor calibrations are typically performed under laboratory conditions prior to launch and then routinely while on-orbit by using ground or astronomical based reference sources. With a trend towards autonomous operations, many machine-learning algorithms would benefit from having on-demand calibration across multiple detectors to better enable capabilities, for example using long wave infrared observations to identify and distinguish clouds from snow and ice. This subsequently would allow satellites to identify clouds confidently onboard, and downlink well defined clear images.

Presented are two technologies that provide a method for the direct on-orbit calibration of optical and thermal cameras used in …


Potential Benefits Of A Space Domain Awareness Secondary Mission Capability On Proliferated Smallsat Constellations For Cost-Effective Augmentation Of Sensor Headcount And Angular Diversity In Terrestrial Sda Enterprises, Paul Day, Tina Schmidt, Micah Chapman, Zackary Werner, Carlos Jimenez, Paul Cronk Aug 2025

Potential Benefits Of A Space Domain Awareness Secondary Mission Capability On Proliferated Smallsat Constellations For Cost-Effective Augmentation Of Sensor Headcount And Angular Diversity In Terrestrial Sda Enterprises, Paul Day, Tina Schmidt, Micah Chapman, Zackary Werner, Carlos Jimenez, Paul Cronk

Small Satellite Conference

Poster presented during the 2025 SmallSat Conference.


Reaching Higher Orbit - A Quick Guide For Exploration Beyond Leo, John Carrico, Mike Loucks, Alisa Hawkins Aug 2025

Reaching Higher Orbit - A Quick Guide For Exploration Beyond Leo, John Carrico, Mike Loucks, Alisa Hawkins

Small Satellite Conference

Poster presented during the 2025 SmallSat Conference.


Sol3 - A Level 5 Self Driving System For Spacecraft, Blake Bruell, Bob Crocco, Ethan Rublee, Giuseppe Pasqualino, Greg Brougher, Hauke Strasdat, Ian Sherman, John Bailey, Morgan Swanson, Ryan Catherman, Ryan Johnson, Stephen Bailey, Sydney Weiser Aug 2025

Sol3 - A Level 5 Self Driving System For Spacecraft, Blake Bruell, Bob Crocco, Ethan Rublee, Giuseppe Pasqualino, Greg Brougher, Hauke Strasdat, Ian Sherman, John Bailey, Morgan Swanson, Ryan Catherman, Ryan Johnson, Stephen Bailey, Sydney Weiser

Small Satellite Conference

Poster presented during the 2025 SmallSat Conference.


Techniques For Optimizing Swap-C Through Multi-Phase Clock Distribution, Abigail Eberts Aug 2025

Techniques For Optimizing Swap-C Through Multi-Phase Clock Distribution, Abigail Eberts

Small Satellite Conference

Multi-phase power is important to design highly efficient solutions for next-generation space avionics systems, but noise, current sharing accuracy and beat pulses can all contribute to the complexity of a power system's design. The latest FPGAs and ACAPs have very specific DC and AC regulation tolerances, so it can be difficult to manage power while considering size, efficiency, reliability and cost.

This poster will demonstrate methods to scale and manage multi-phase power systems through the inclusion of power management-specific clock distribution ICs and show how they can be used to implement a variety of solutions that balance efficiency and accuracy …


Star Tracker Advancements At A Glance, Steffen Hahn, Florian Schuh Aug 2025

Star Tracker Advancements At A Glance, Steffen Hahn, Florian Schuh

Small Satellite Conference

Poster presented during the 2025 SmallSat Conference.


Screen Time And Objectively Measured Sleep Of U.S. College Students: A Brief Report, Donya Sedaghat, Eunkyung Lee, Jeanette Garcia, Keith Brazendale Aug 2025

Screen Time And Objectively Measured Sleep Of U.S. College Students: A Brief Report, Donya Sedaghat, Eunkyung Lee, Jeanette Garcia, Keith Brazendale

International Journal of Exercise Science

International Journal of Exercise Science 18(4): 747-756, 2025. The objective was to investigate screen time (ST) and objectively measured sleep quality in college students. Participants were undergraduate students attending a large metropolitan public university in the southeastern U.S. Participants wore accelerometers on their wrist for 24hr/day for 14 days to capture sleep outcomes, and completed a survey reporting ST duration. Analyses explored weight-status, race/ethnicity, and sleep patterns (presence of daytime sleep) differences among students. Participants (n=29, 86% female, ~21.5 years old, 38% White, 35% Overweight/Obese) slept for an average of 433.8 minutes/night, reported 419.1 minutes of daily ST, and 112 …


Modernizing Smallsat Mission Operations: Integrating Ai-Driven Optimization With Cloud-Native Control Systems, David Besson, Dax Garner Aug 2025

Modernizing Smallsat Mission Operations: Integrating Ai-Driven Optimization With Cloud-Native Control Systems, David Besson, Dax Garner

Small Satellite Conference

As the space industry experiences unprecedented growth in SmallSat constellation deployments, traditional mission control approaches face significant scalability and efficiency challenges. This paper presents a novel framework that integrates three cutting-edge technologies to revolutionize satellite mission operations: Cognitive Space’s CNTIENT.Optimize AI-powered decision engine, Yamcs open-source mission control software, and the Amazon Web Services (AWS) Cloud Mission Operations Center (CMOC) solution. As a representative simulation benchmark, the paper demonstrates the framework’s capabilities through mission simulations of the Cyclone Global Navigation Satellite System (CYGNSS) SmallSat constellation. The integration leverages CNTIENT.Optimize’s advanced AI algorithms to automate complex scheduling decisions across proliferating homogenous or …


Arizona Dust: Students Advancing Climate Science With Cubesat Technology, Haile Brown, Theodore Courtois, Alyssa Armstrong, Abraham Phillips, Mckayla Morgan, Isabella O'Brien, Aaron Wall, Harrison Constance Aug 2025

Arizona Dust: Students Advancing Climate Science With Cubesat Technology, Haile Brown, Theodore Courtois, Alyssa Armstrong, Abraham Phillips, Mckayla Morgan, Isabella O'Brien, Aaron Wall, Harrison Constance

Small Satellite Conference

ARIZONA DUST (Arid Region Infrared Zone Observation of Notable Arizona Desert Urban Storms and Temperatures) is a student-led mission team of 25 out of Arizona State University with the goal to understand how Earth’s climate is evolving and why. The 6U CubeSat ‘Dusty’ will orbit at a 400 km altitude in a non-sun synchronous orbit with a 40° inclination designed to pass over Arizona (as well as Australia). The mission is designed to study monsoon and dust storms to enhance understanding of their effects on temperature as they relate to global climate change. With the orbital path also crossing …


Afrl Validated Principles And Building Blocks Of Ground-Based Ops Automation, Tyler De Caussin, Jarred Langhals, Brandon Shirley, Lee Jasper Aug 2025

Afrl Validated Principles And Building Blocks Of Ground-Based Ops Automation, Tyler De Caussin, Jarred Langhals, Brandon Shirley, Lee Jasper

Small Satellite Conference

Over the past decade, AFRL's Small Satellite Portfolio (SSP) and Ops Cadre (RVES) branches have been operating small satellites with different bus providers to support diverse mission needs. Because the bus, payload and experimentation differ for every mission, and the ground segment has had the challenge of supporting the varying needs on a mission-by-mission basis. AFRL has been working to improve efficiency with which the ground segment supports those varying needs. One major emphasis has been on learning how to automate operations of such different missions. In an effort to standardize mission automation within the operations center, AFRL has developed …


Terp Raptor: A University-Led Smallsat Flyby Mission To Investigate Asteroid Apophis, Adrienne Rudolph, Sean Phillips, Chinthan Prasad, Kruti Bhingradiya, Rahul Vishnoi, Cameron Storey, Brent Barbee, Mary Bowden, David Akin, Jarred Young, Paul Bernhardt, Yunghsin Chen Aug 2025

Terp Raptor: A University-Led Smallsat Flyby Mission To Investigate Asteroid Apophis, Adrienne Rudolph, Sean Phillips, Chinthan Prasad, Kruti Bhingradiya, Rahul Vishnoi, Cameron Storey, Brent Barbee, Mary Bowden, David Akin, Jarred Young, Paul Bernhardt, Yunghsin Chen

Small Satellite Conference

The ~350-meter diameter Potentially Hazardous Asteroid (PHA) designated 99942 Apophis 2004 MN4 will make a historic close approach of Earth on April 13th, 2029, passing within ~31,634 km of Earth’s surface, closer than our geosynchronous satellites. Suggested to be a 1 in 7500-year event, this is an extraordinarily unique opportunity for collecting data on an Apophis-sized asteroid experiencing the effects of Earth’s gravitational field. Our Terrapin Engineered Rideshare Probe for Rapid-response asteroid Apophis Profiling, Tracking, Observing, and Reconnaissance (TERP RAPTOR) is a low-cost, Earth-orbiting mission concept in which a 12U CubeSat designed and built by University of Maryland students …