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Articles 331 - 360 of 13046
Full-Text Articles in Entire DC Network
Reeds Run Amok: A Practical Guide To Managing Phragmites-Invaded Wetlands, Christine Rohal, Keith Hambrecht, Chad Cranney, Karin M. Kettenring
Reeds Run Amok: A Practical Guide To Managing Phragmites-Invaded Wetlands, Christine Rohal, Keith Hambrecht, Chad Cranney, Karin M. Kettenring
All Current Publications
Phragmites australis (common reed or simply “phragmites”) is a tall-statured, highly productive wetland grass. It spreads rapidly, often displacing native plants and degrading critical habitat for shorebirds and waterfowl by reducing the availability of nesting, loafing, and foraging areas. Phragmites also consumes large amounts of water, adding pressure to already scarce water resources. Additionally, the accumulation of standing dead biomass can be a fire hazard. Phragmites makes large areas of wetlands inaccessible to both wildlife and humans. This guide provides guidance on managing phragmites.
Structural Evolution Of Nitrogenase Over 3 Billion Years, Bruno Cuevas Zuviría, Franka Detemple, Kaustubh Amritkar, Amanda K. Garcia, Lance Seefeldt, Betül Kaçar
Structural Evolution Of Nitrogenase Over 3 Billion Years, Bruno Cuevas Zuviría, Franka Detemple, Kaustubh Amritkar, Amanda K. Garcia, Lance Seefeldt, Betül Kaçar
Chemistry and Biochemistry Faculty Publications
Previously, we identified the only dinitrogen reduction mechanism known to date as an ancient feature conserved from nitrogenase ancestors, which we directly tested by resurrecting and integrating synthetic ancestral nitrogenases into the genome of Azotobacter vinelandii (Garcia et al., 2023), a genetically tractable, nitrogen-fixing model bacterium. Here, we extend this paleomolecular approach to investigate the structural evolution of nitrogenase over billions of years of evolution by combining phylogenetics, ancestral sequence reconstruction, protein crystallography, and deep-learning based predictions. This study reveals that nitrogenase, while maintaining a conserved multimeric core, evolved novel modular features aligned with major environmental transitions, suggesting that subtle …
Creating Sustainable School And Home Gardens: Using Citizen Science, Kaitlin U. Campbell, Rita Hagevik, Kathy Cabe Trundle
Creating Sustainable School And Home Gardens: Using Citizen Science, Kaitlin U. Campbell, Rita Hagevik, Kathy Cabe Trundle
All Current Publications
Citizen science, also called community-based science or participatory science, provides a way for anyone to gather data, along with scientists, around a scientific question or phenomenon. Citizen science offers immense value to both the general public and scientists. This fact sheet provides resources to connect readers to citizen science projects.
Sagebrush, Wildfire, And Homeowners Associations: Climate Adaptation Opportunities In Summit County, Utah, Rebecca Ivans, Kendall Becker, Wesley Crump, J. Bradley Washa, Lewis Kogan, Scott Hotaling
Sagebrush, Wildfire, And Homeowners Associations: Climate Adaptation Opportunities In Summit County, Utah, Rebecca Ivans, Kendall Becker, Wesley Crump, J. Bradley Washa, Lewis Kogan, Scott Hotaling
All Current Publications
Environmental changes and rapidly expanding suburban developments are amplifying wildfire risk in Utah, including in mixed-sagebrush habitats like those in Morgan, Summit, and Wasatch counties along the Wasatch Back. Wildfire risk to people and structures is especially high in the wildland-urban interface (WUI), where homes and buildings intermingle with undeveloped wildlands and natural vegetation that can fuel wildfire. Much of this urban expansion is occurring in the form of large, dispersed developments managed by homeowners associations (HOAs), which often dictate standards for the homes and properties within their purview. Thus, HOAs can play a critical role in supporting wildfire mitigation …
The Next Frontier In The Study Of Noncovalent Bonding: Transition Metals, Steve Scheiner
The Next Frontier In The Study Of Noncovalent Bonding: Transition Metals, Steve Scheiner
Chemistry and Biochemistry Faculty Publications
As work continues unabated in the study of noncovalent bonding, particularly σ-hole bonds, new challenges have emerged as the participation of transition metals in interactions of this sort is fast becoming appreciated. While there are certain similarities with the halogen, chalcogen, etc, bonds, in which the main group elements participate, there are certain unique properties of these metal atoms that must be analyzed before a complete understanding can be attained. As one example, these atoms tend to act simultaneously as both electron donors and acceptors, a synergistic action that amplifies the overall bond strength. Ideas are expressed in this paper …
Distributed Coherent Beamforming At 60 Ghz Enabled By Optically-Established Coherence, Drake Silbernagel, Yu Rong, Isabella Lenz, Prithvi Hemanth, Carl Morgenstern, Owen Ma, Nolan Matthews, Nadar Zaki, Kyle W. Martin, John D. Elgin, Jacob Holtom, Daniel W. Bliss, Kimberly Frey
Distributed Coherent Beamforming At 60 Ghz Enabled By Optically-Established Coherence, Drake Silbernagel, Yu Rong, Isabella Lenz, Prithvi Hemanth, Carl Morgenstern, Owen Ma, Nolan Matthews, Nadar Zaki, Kyle W. Martin, John D. Elgin, Jacob Holtom, Daniel W. Bliss, Kimberly Frey
Space Dynamics Laboratory Publications
We implement and experimentally demonstrate a 60 GHz distributed system leveraging an optical time synchronization system that provides precise time and frequency alignment between independent elements of the distributed mesh. Utilizing such accurate coherence, we perform receive beamforming with interference rejection and transmit nulling. In these configurations, the system achieves a coherent gain over an incoherent network of N nodes, significantly improving the relevant signal power ratios. Our system demonstrates extended array phase coherence times, enabling advanced techniques. Results from over-the-air experiments demonstrate a 14.3 dB signal-to-interference-plus-noise improvement in interference-laden scenarios with a contributing 13.5 dB null towards interference in …
Uinta Basin Snow Shadow: Impact Of Snow-Depth Variation On Winter Ozone Formation, Michael J. Davies, John R. Lawson, Trevor O’Neil, Seth N. Lyman, Karlee Zager, Tristan D. Coxson
Uinta Basin Snow Shadow: Impact Of Snow-Depth Variation On Winter Ozone Formation, Michael J. Davies, John R. Lawson, Trevor O’Neil, Seth N. Lyman, Karlee Zager, Tristan D. Coxson
Bingham Research Center
After heavy snowfall in the Uinta Basin, Utah, elevated surface ozone occurs if a cold-air pool persists and traps emissions from oil and gas industry operations. Sunlight and actinic flux from a high-albedo snowpack drive ozone buildup via photolysis. Snow coverage is paramount in initiating the cold pool and driving ozone generation. Its depth is critical for predicting ozone concentrations. The Basin’s location leeward of the Wasatch Mountains provides conditions for a precipitation shadow, where sinking air suppresses snowfall. We analyzed multiple years of ground-based snow depth measurements, surface ozone data, and meteorological observations; we found that ozone levels track …
Reconstruction Of Water Storage Variability In The Aral Sea Region, Nikita Murzintcev, Sahibjamal Nietullaeva, Timur Berdimbetov, Buddhi Pushpawela, Asiya Tureniyazova, Sherly Shelton, Bakbergen Aytmuratov, Khusen Gafforov, Kanat Parakhatov, Alimjan Erdashov, Abdul-Aziz Makhamatdinov, Timur Allamuratov
Reconstruction Of Water Storage Variability In The Aral Sea Region, Nikita Murzintcev, Sahibjamal Nietullaeva, Timur Berdimbetov, Buddhi Pushpawela, Asiya Tureniyazova, Sherly Shelton, Bakbergen Aytmuratov, Khusen Gafforov, Kanat Parakhatov, Alimjan Erdashov, Abdul-Aziz Makhamatdinov, Timur Allamuratov
Plants, Soils and Climate Student Research
The Gravity Recovery and Climate Experiment (GRACE) mission, operational from 2002 to 2017, provided critical measurements of Earth's gravity field anomalies which have been extensively used to study groundwater and terrestrial water storage (TWS) dynamics. In this research, we utilize GRACE data to identify, model, and analyze potential climate parameters contributing to the reconstruction of TWS variability in the Aral Sea Basin region (ASB). We assess the impact of climate change and anthropogenic nature management on TWS change using a quantitative method. Our analysis reveals a significant decline in the TWS at a rate of 0.44 cm year-1 during …
Large-Scale Flood Detection And Mapping In The Yangtze River Basin (2016–2021) Using Convolutional Neural Networks With Sentinel-1 Sar Images, Xuan Wu, Zhijie Zhang, Wanchang Zhang, Bangsheng An, Zhenghao Li, Rui Li, Qunli Chen
Large-Scale Flood Detection And Mapping In The Yangtze River Basin (2016–2021) Using Convolutional Neural Networks With Sentinel-1 Sar Images, Xuan Wu, Zhijie Zhang, Wanchang Zhang, Bangsheng An, Zhenghao Li, Rui Li, Qunli Chen
Environment and Society Faculty Publications
Synthetic Aperture Radar (SAR) technology offers unparalleled advantages by delivering high-quality images under all-weather conditions, enabling effective flood monitoring. This capability provides massive remote sensing data for flood mapping, while recent rapid advances in deep learning (DL) offer methodologies for large-scale flood mapping. However, the full potential of deep learning in large-scale flood monitoring utilizing remote sensing data remains largely untapped, necessitating further exploration of both data and methodologies. This paper presents an innovative approach that harnesses convolutional neural networks (CNNs) with Sentinel-1 SAR images for large-scale inundation detection and dynamic flood monitoring in the Yangtze River Basin (YRB). An …
Reducing Residential Landscape Water Use In Utah: Technologies And Strategies, Maya Cottam, Kendall Becker, Katlyn Stemmler, Shital Poudyal, Wesley Crump, Lewis Kogan, Scott Hotaling
Reducing Residential Landscape Water Use In Utah: Technologies And Strategies, Maya Cottam, Kendall Becker, Katlyn Stemmler, Shital Poudyal, Wesley Crump, Lewis Kogan, Scott Hotaling
All Current Publications
Water conservation is a critical issue in Utah, and several actions are already underway to help lower residential landscape water use. Strategies include smart irrigation controllers, efficient sprinkler bodies and nozzles, drip irrigation systems, soil amendments that increase water-holding capacity, and drought-tolerant grass cultivars for lawns. While additional conservation efforts will be necessary to reach sustainable water management, statewide adoption of current programs can help reduce water use and loss.
Universal Centralizers, Morita Abelianization, And Wonderful Models In Lie Theory, Peter Crooks
Universal Centralizers, Morita Abelianization, And Wonderful Models In Lie Theory, Peter Crooks
Funded Research Records
No abstract provided.
Collaborative Proposal: Caig: Synthetic Data Generation For Solar Energetic Particle Events Via Multimodal Augmentation, Shah Muhammad Hamdi
Collaborative Proposal: Caig: Synthetic Data Generation For Solar Energetic Particle Events Via Multimodal Augmentation, Shah Muhammad Hamdi
Funded Research Records
No abstract provided.
Designing Writers: A Self-Regulated Approach To Multimodal Composition In Teacher Preparation And Early Grades, Qi Si, Tracey S. Hodges, Vahid Mousavi
Designing Writers: A Self-Regulated Approach To Multimodal Composition In Teacher Preparation And Early Grades, Qi Si, Tracey S. Hodges, Vahid Mousavi
Teacher Education and Leadership Faculty Publications
Reading and writing in the 21st century have evolved from traditional text-based formats to multimodal literacy, integrating linguistic, visual, auditory, and spatial modes to enhance communication and comprehension. While multimodal reading has been widely studied, multimodal writing remains underexplored, despite its growing importance in K–12 education across disciplines. Multimodal composing demands advanced self-regulation as students navigate multiple digital tools and platforms. Self-regulated learning strategies, particularly the self-regulated strategy developmental model, offer a promising approach to support students in planning, monitoring, and revising multimodal compositions. However, a comprehensive framework linking self-regulation and multimodal composition is lacking. This article addresses this gap …
Collaborative Research: Bocp-Implementation: Us-China: Multi-Scale, Multi- Proxy, Integrative Investigation Of Functional Biodiversity On A Changing Proterozoic Planet, Carol Dehler
Funded Research Records
No abstract provided.
Time-Evolved Constant Voltage Conductivity Measurements Of Common Spaceborne Polymeric Materials, Brian Wood, David King, Jr Dennison
Time-Evolved Constant Voltage Conductivity Measurements Of Common Spaceborne Polymeric Materials, Brian Wood, David King, Jr Dennison
Journal Articles
Long-duration current measurements were made for low-density polyethylene (LDPE), polyimide (PI), polyether ether ketone (PEEK), and biaxially oriented polypropylene (BOPP) to determine their bulk conductivity near room temperature as a function of time. These common thin-film spacecraft material samples were vacuum baked to remove moisture and volatile contaminants to better simulate space conditions. The constant voltage conductivity (CVC) method used a very stable, low-noise dc voltage source and measured the resulting current in a parallel plate geometry. Due to the extremely low conductivity of these four polymeric materials, extended experiments of up to ten days were necessary to establish equilibrium …
Career: Algebra And Representation Theory For Non-Semisimple Topological Field Theory, Matthew Young
Career: Algebra And Representation Theory For Non-Semisimple Topological Field Theory, Matthew Young
Funded Research Records
No abstract provided.
Passive Precision Alignment For Thin-Panel Deployable Space Systems, Jake Sutton, Trevor Carter, Brooklyn Olson, David Wing, Fisk Lungreen, Larry Howell, Nathan Usevitch, Spencer Magleby, Mark Stephen
Passive Precision Alignment For Thin-Panel Deployable Space Systems, Jake Sutton, Trevor Carter, Brooklyn Olson, David Wing, Fisk Lungreen, Larry Howell, Nathan Usevitch, Spencer Magleby, Mark Stephen
Small Satellite Conference
Optical satellite performance improves with increased surface area, which enhances light capture and sensor input. Deployable mechanisms allow satellites to remain compact during launch and expand in orbit but the large relative motion during deployment makes it difficult to achieve precision alignment in the final deployed state. This study focuses on designing passive hinges in rigid-panel origami-based deployable satellites for optical applications. A novel kinematic coupling method is developed, incorporating magnets, compact Lamina Emergent Torsional (LET) joints, and principles from Maxwell couplings. This system autonomously achieves alignment without motorized actuation. The design process involved iterative testing of ten two-panel hinge …
Augmenting Attitude Knowledge For Optical Communication Terminals On Cubesats By Kalman Filter Based Estimation, Elisa Garbagnati, René Rüddenklau, Chrisopher Schmidt
Augmenting Attitude Knowledge For Optical Communication Terminals On Cubesats By Kalman Filter Based Estimation, Elisa Garbagnati, René Rüddenklau, Chrisopher Schmidt
Small Satellite Conference
Given the growing demand for high data rate transmission on small satellites like CubeSats, free-space optical communication terminals have recently attracted an increasing interest thanks to their capability of ensuring high data rates, compact designs and low power requirements. Yet, the performances of the acquisition and pointing processes crucially depend on their attitude knowledge information. This information is currently available only if an optical link has already been established. Nevertheless, it is likewise important to accurately know the attitude during the link acquisition phase to shorten the search time until the opposing target is found. This aspect is equally relevant …
Deployable Diffractive Optical Elements For Small Satellite Lidar Missions, Adam Bahlous-Boldi, Leila Freitag, Amber Cooper, Mary Dahl, Afreen Siddiqi, John Leckey, Kerri Cahoy
Deployable Diffractive Optical Elements For Small Satellite Lidar Missions, Adam Bahlous-Boldi, Leila Freitag, Amber Cooper, Mary Dahl, Afreen Siddiqi, John Leckey, Kerri Cahoy
Small Satellite Conference
SPECIES (Smart Polyimide Expandable Collector to enable Investigations for Earth Science) is a NASA Earth Science Technology Office (ESTO) project that explores the use of a deployable diffractive optical element (DOE) in a space-based lidar instrument for a 12–24U CubeSat operating in low Earth orbit (LEO). The DOE, a 0.6-meter hybrid multi-level Fresnel zone plate, is made using a tessellation of hexagonal molds, each with a unique number of diffractive levels. It is stowed for launch and deployed on orbit using a 3 meter long extendible boom, which positions the optic at the correct distance from the spacecraft, while guy …
From Classroom To Orbit: How A High School Girls-In-Stem Club Started The Journey Of Pleiades Orpheus, Diya Dalal, Pooja Verma, Rhea Cherukuri
From Classroom To Orbit: How A High School Girls-In-Stem Club Started The Journey Of Pleiades Orpheus, Diya Dalal, Pooja Verma, Rhea Cherukuri
Small Satellite Conference
Students from Irvington High School in Fremont, California built and launched a 1U CubeSat satellite called Pleiades Orpheus after its establishment in 2022. This project was a central part of the Irvington High School Girls-in-STEM Club and is among the few high school student-run programs globally to design, build, and successfully launch a satellite. The Pleiades Orpheus team strived to increase gender diversity in their student body, eventually leading them to form IHS Women in Satellite Engineering (IHS WiSE) in 2024.
This paper will showcase the central goals and progress of the team, highlighting their most important goal: to make …
From Classroom To Orbit: How A High School Girls-In-Stem Club Started The Journey Of Pleiades Orpheus, Diya Dalal, Pooja Verma, Rhea Cherukuri
From Classroom To Orbit: How A High School Girls-In-Stem Club Started The Journey Of Pleiades Orpheus, Diya Dalal, Pooja Verma, Rhea Cherukuri
Small Satellite Conference
Students from Irvington High School in Fremont, California built and launched a 1U CubeSat satellite called Pleiades Orpheus after its establishment in 2022. This project was a central part of the Irvington High School Girls-in-STEM Club and is among the few high school student-run programs globally to design, build, and successfully launch a satellite. The Pleiades Orpheus team strived to increase gender diversity in their student body, eventually leading them to form IHS Women in Satellite Engineering (IHS WiSE) in 2024.
This paper will showcase the central goals and progress of the team, highlighting their most important goal: to make …
Development Of A Tool For Planning Fuel-Optimized Collision Avoidance Maneuvers, Saksham Jain
Development Of A Tool For Planning Fuel-Optimized Collision Avoidance Maneuvers, Saksham Jain
Small Satellite Conference
The need for collision avoidance maneuvers is expected to rise due to growing congestion in low-Earth orbit. This paper presents the development of a tool to automate the generation of collision avoidance maneuvers in response to conjunction events. The tool presented has allowed the Space Flight Laboratory (SFL) to eliminate concerns associated with human error, while concurrently addressing the expected increase in the need for these maneuvers without needing to impose any additional burden on flight dynamics engineers. The automation of this task has reduced the hands-on time required by over 80% when compared to the pre-existing workflow.
If the …
Cubesat-Compatible Q/V Band Phased Array Antenna Design For High-Bandwidth Mmwave Inter-Satellite Communications For Scalable Leo Satellite Constellations, Lucien Hammond, Rachel Swan
Cubesat-Compatible Q/V Band Phased Array Antenna Design For High-Bandwidth Mmwave Inter-Satellite Communications For Scalable Leo Satellite Constellations, Lucien Hammond, Rachel Swan
Small Satellite Conference
As instruments and payloads aboard satellites increasingly demand higher data rates to fulfill scientific objectives, the shift by industry and governments toward small satellite platforms necessitates high-performance communication systems tailored to these compact designs. With the growing use cases for multi-agent satellite constellations, particularly in Low Earth Orbit (LEO), frequency band congestion remains a critical challenge. To address this spectrum scarcity and enable adaptive, inter-satellite communication for multi-agent satellite constellations, this paper explores the design of a Q/V band patch antenna array to enable adaptive beamforming, high data rate inter-satellite communication for scalable satellite constellations. The use of millimeter wave …
Attitude Control Of A Floating Satellite (Floatsat) Via Deep Reinforcement Learning, Muhammad Faisal, Dennis Reimer, Sergio Montenegro
Attitude Control Of A Floating Satellite (Floatsat) Via Deep Reinforcement Learning, Muhammad Faisal, Dennis Reimer, Sergio Montenegro
Small Satellite Conference
In this work, attitude determination and control (ADC) of a Floating–Satellite(FloatSat)1 through artificial intelligence is proposed. More specifically, Deep Reinforcement Learning (DRL) will be used to generate an optimal control policy for small satellites. This project evaluated an attitude control policy based on deep reinforcement learning using stable–baseline3 (a library which implements the DRL algorithms in PyTorch).2 This Artificially intelligent attitude control was realized for a one-dimensional laboratory-based satellite, which is specifically designed to train the students for satellites and their subsystems.
Chantsat-1: A First-Time University's Experience In Small Satellite Development, George Hitt, Jean French, Juliana Harding, Ian Hewitt, Louis Keiner, Michael Woodle
Chantsat-1: A First-Time University's Experience In Small Satellite Development, George Hitt, Jean French, Juliana Harding, Ian Hewitt, Louis Keiner, Michael Woodle
Small Satellite Conference
ChantSat-1, Coastal Carolina University (CCU) High Altitude Nadir-pointing Satellite-1, is the first smallsat mission envisioned by our primarily undergraduate university. Capacity development to support mission planning over 18 months has integrated a range of interdisciplinary stakeholders while capturing the attention and imagination of students. The mission’s primary payload will be a multispectral camera for remote sensing of South Carolina’s coastal blackwater rivers, estuaries, and adjacent ocean shelf waters. The resulting coastal habitat mosaic supports ecologically important food webs and related economic and cultural engines of regional growth, while being uniquely vulnerable to the combination of natural episodic climate-related events combined …
Exploring Lunar Ionosphere Characterization Through Multi-Cubesat Occultation With Ranging Technology And Radiation Environment Analysis, Yiyu Chang, Yuhsiu Tien, Chieh Lung, Jason Yu, Weichih Lin, Yihsuan Chou, Roger Tsai, Terry Chen, Yi Duann, Loren Chang
Exploring Lunar Ionosphere Characterization Through Multi-Cubesat Occultation With Ranging Technology And Radiation Environment Analysis, Yiyu Chang, Yuhsiu Tien, Chieh Lung, Jason Yu, Weichih Lin, Yihsuan Chou, Roger Tsai, Terry Chen, Yi Duann, Loren Chang
Small Satellite Conference
Characterizing the lunar ionosphere and radiation environment is critical for advancing both scientific knowledge and the practical requirements of future lunar missions. This mission proposes deploying dual satellites in lunar orbit to perform radio occultation (RO) measurements and validate the presence and behavior of the lunar ionosphere. By analyzing the phase differences of dual-frequency signals, the electron density can be measured, enabling both temporal analysis and spatial mapping of the lunar ionospheric structure. A thorough understanding of these environmental factors is essential for identifying suitable landing sites, designing resilient infrastructure, and ensuring the reliability of communication and navigation systems—key enablers …
Climate - Commercial And Scientific Instrument Opportunities For Small Satellite Constellations, Alex Da Silva Curiel, Rob Elliott, Tony Canas, Stephanie Mottershead, Andy Palfreyman, Martin Sweeting Sir
Climate - Commercial And Scientific Instrument Opportunities For Small Satellite Constellations, Alex Da Silva Curiel, Rob Elliott, Tony Canas, Stephanie Mottershead, Andy Palfreyman, Martin Sweeting Sir
Small Satellite Conference
There is an economic and social impact in many areas in the world due to lack of information on local climate, and better understanding is widely believed to lead to cost savings and improved living standards. Despite the wealth of spacecraft data available today, many climate variables are still poorly monitored. Small satellites in constellation can help in filling data gaps, and also provides the important temporal resolution required. Such missions could be highly complementary to the NASA NEO and EU Copernicus programs, and their data can be commercially valuable, opening up the potential for novel business models and services. …
Using Capstone’S Mission Extension To Navigate The Future Of Cislunar Technology, Alec Forsman, Michael Caudill, Anthony Zara, Matthew Givens, Rebecca Rogers, Lauren De Moudt, Ethan Kayser, Thomas Gardner
Using Capstone’S Mission Extension To Navigate The Future Of Cislunar Technology, Alec Forsman, Michael Caudill, Anthony Zara, Matthew Givens, Rebecca Rogers, Lauren De Moudt, Ethan Kayser, Thomas Gardner
Small Satellite Conference
Launched in late June 2022, the Cislunar Autonomous Position System Technology, Operations, and Navigation Experiment (CAPSTONE) has been operating in the Earth-Moon, Southern L2 Near Rectilinear Halo Orbit (NRHO) for more than two years. After successfully completing its primary mission objectives, CAPSTONE was awarded a 15-month mission extension in September of 2024. The goal of this extension was to continue to use CAPSTONE to provide valuable and informative data to the NASA Gateway program and leverage the platform to raise the TRL of several cislunar technologies. This paper presents a detailed analysis of the operational data obtained throughout the mission, …
High Resolution, Wide Swath Sar Observation From Disksat At Vleo, Hirobumi Saito, Yasuyuki Miyazaki, Michio Takikawa, Tien M. Nguyen, Roy Nakagawa, Ching-Yao (Tony) Chang, David Hinkley, Ryo Natsuaki, Mitsuteru Kaneoka, Jiro Hirokawa, Kazuyuki Nakamura
High Resolution, Wide Swath Sar Observation From Disksat At Vleo, Hirobumi Saito, Yasuyuki Miyazaki, Michio Takikawa, Tien M. Nguyen, Roy Nakagawa, Ching-Yao (Tony) Chang, David Hinkley, Ryo Natsuaki, Mitsuteru Kaneoka, Jiro Hirokawa, Kazuyuki Nakamura
Small Satellite Conference
This paper proposes a novel concept of quasi-two-dimensional SAR (synthetic aperture radar) satellites, SAR DiskSats, featuring a deployable passive slot array antenna (De-PSAA) that can be compactly folded within the quasi-two-dimensional (Q-2D) satellite body. This Q-2D configuration allows for potential flexible solar cell sheets to be installed on the backside of the antenna, as the antennas do not dissipate heat. This satellite configuration is also suitable for stacking within a rocket fairing for the mega-constellation launch of SAR DiskSats into VLEO (very low Earth orbit). The proposed DiskSat's thin edge cross-section reduces aerodynamic drag, enabling the satellite to operate at …
Designing Coordinated Multi-Vehicle Networks For Leo-To-Geo Transport Using Low-Thrust Propulsion, Shan Selvamurugan, E. Glenn Lightsey
Designing Coordinated Multi-Vehicle Networks For Leo-To-Geo Transport Using Low-Thrust Propulsion, Shan Selvamurugan, E. Glenn Lightsey
Small Satellite Conference
Elements of on-orbit servicing (OOS), such as propellant depots and refuellable servicing spacecraft (servicers), offer promising means to extend the operational lifespan of Earth-orbiting assets. While current concepts for reusable in-space transportation often rely on a single, versatile servicer to transfer payload satellites to high-energy orbits, an alternative approach to this monolithic architecture may employ a network of space-resident transport vehicles to move payloads from low-Earth orbit (LEO) to geostationary orbit (GEO). This paper investigates how servicers equipped with low-thrust propulsion can be used to design fuel-optimal, multi-vehicle transport architectures under temporal constraints. A set of analytical solutions is derived …