Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Life Sciences (2580)
- Social and Behavioral Sciences (2543)
- Education (1847)
- Physical Sciences and Mathematics (1554)
- Engineering (1398)
-
- Arts and Humanities (838)
- Psychology (648)
- Environmental Sciences (595)
- Biology (492)
- Animal Sciences (457)
- Medicine and Health Sciences (451)
- Sociology (393)
- Business (388)
- Ecology and Evolutionary Biology (384)
- Civil and Environmental Engineering (379)
- Library and Information Science (346)
- Agriculture (319)
- Physics (305)
- Electrical and Computer Engineering (294)
- Teacher Education and Professional Development (287)
- Plant Sciences (269)
- Communication (257)
- Aerospace Engineering (234)
- Special Education and Teaching (232)
- English Language and Literature (216)
- Earth Sciences (213)
- Computer Sciences (208)
- Curriculum and Instruction (197)
- Communication Sciences and Disorders (196)
- Educational Assessment, Evaluation, and Research (191)
- Keyword
-
- Utah State University (952)
- USU (785)
- Newspaper (691)
- The Utah Statesman (623)
- Statesman (612)
-
- Agenda (553)
- Minutes (527)
- Faculty senate (484)
- Educational Policies Committee (465)
- Utah (423)
- Curriculum Subcommittee (214)
- Education (209)
- Usu (190)
- Educational policies committee (157)
- Executive committee (147)
- Family (140)
- Children (136)
- Design (132)
- COVID-19 (131)
- General Education Subcommittee (129)
- Program Proposals (120)
- October (116)
- April (109)
- Development (108)
- Utah State University Extension (106)
- CubeSat (105)
- Regents (105)
- Communication (102)
- Management (100)
- November (100)
- Publication Year
- Publication
-
- Small Satellite Conference (3146)
- All Graduate Theses and Dissertations, Spring 1920 to Summer 2023 (3081)
- Educational Policies Committee (790)
- All Graduate Plan B and other Reports, Spring 1920 to Spring 2023 (716)
- The Utah Statesman (712)
-
- Undergraduate Honors Capstone Projects (516)
- Faculty Senate & Faculty Senate Executive Committee (427)
- All Graduate Theses and Dissertations, Fall 2023 to Present (360)
- Human–Wildlife Interactions (317)
- All Current Publications (306)
- Student Research Symposium (235)
- Scanning Microscopy (199)
- Wildlife Damage Management Conference (196)
- Journal of Early Hearing Detection and Intervention (186)
- Biology (174)
- Wildland Resources Faculty Publications (138)
- Utah Space Grant Consortium (137)
- Natural Resources and Environmental Issues (135)
- Instructional Technology and Learning Sciences Faculty Publications (130)
- Space Dynamics Laboratory Publications (130)
- All Physics Faculty Publications (127)
- Marketing and Strategy Faculty Publications (112)
- Civil and Environmental Engineering Faculty Publications (107)
- Reports (103)
- All U.S. Government Documents (Utah Regional Depository) (99)
- Developmental Disabilities Network Journal (99)
- Blog Posts (95)
- Journal on Empowering Teaching Excellence (94)
- Teacher Education and Leadership Faculty Publications (94)
- Psychology Faculty Publications (93)
- Publication Type
- File Type
Articles 91 - 120 of 17113
Full-Text Articles in Entire DC Network
Reacquiring Satellites After Unknown Maneuvers In Sensor Blind Spots: A Physics-Informed Behavioral Framework For Closed-Loop Custody Recovery, Naushad Rahman, Niha Agarwalla, Hardik Patel
Reacquiring Satellites After Unknown Maneuvers In Sensor Blind Spots: A Physics-Informed Behavioral Framework For Closed-Loop Custody Recovery, Naushad Rahman, Niha Agarwalla, Hardik Patel
Small Satellite Conference
Operational problem
After a maneuver during a sensor blind spot, a pre-gap catalog state may no longer be operationally sufficient. A null look at GS2 must become evidence for where the object could be – and where to task next – before access expires.
The Quantum Cubesat: A Perspective For Quantum Technology In Orbit, Natalie Pearson, Andrew Kelly, Curtis Talbot, Colin Aitken, Kevin Quillen, Sandy Provan
The Quantum Cubesat: A Perspective For Quantum Technology In Orbit, Natalie Pearson, Andrew Kelly, Curtis Talbot, Colin Aitken, Kevin Quillen, Sandy Provan
Small Satellite Conference
Motivation
The ability to measure, control and exploit quantum effects has shown significant potential to outperform classical devices across a variety of applications in computing, sensing and communication. However, quantum devices today typically depend equipment that is large, heavy, expensive and delicate. Bringing quantum capability to space requires a relentless focus on miniaturisation, ruggedisation and applicability. Focusing engineering efforts on the most promising technologies to realise their benefits in orbit is a crucial step in this process.
University Ground-Station-As-A-Service: Promoting Space It Education And University Collaboration, Daniel Freburg, Will Lewis, Charles Edamala, Phoenix Alpine
University Ground-Station-As-A-Service: Promoting Space It Education And University Collaboration, Daniel Freburg, Will Lewis, Charles Edamala, Phoenix Alpine
Small Satellite Conference
Poster presented at the 2026 Small Satellite Conference
Leveraging Persistent L-Band Leo-To-Geo Relays For The Orchestration Of High-Bandwidth Optical Inter-Satellite Links, Jonathan Maier, Skylar A. Cox
Leveraging Persistent L-Band Leo-To-Geo Relays For The Orchestration Of High-Bandwidth Optical Inter-Satellite Links, Jonathan Maier, Skylar A. Cox
Small Satellite Conference
As the already tremendous demand for data transfer in Low Earth Orbit (LEO) grows, Free-Space Optical (FSO) communication has emerged as a critical capability due to high data rates and inherent resilience attributes. However, the operational complexity of FSO, specifically the Pointing, Acquisition, and Tracking (PAT) process, requires significant operational planning. The narrow beamwidth of optical terminals requires precise spatial coordination, resulting in latency during link establishment, heavy reliance on scheduled ground-based commanding, and an impediment to agile, responsive, and ad hoc operations.
This paper presents a novel orchestration architecture utilizing Viasat’s L-band space relay network as a persistent, always-on …
Evaluating Performance Of Hardware-Accelerated Vessel Detection Algorithms, Michael Tietz, John Warner, Quinton Davidson, Douglas Carssow
Evaluating Performance Of Hardware-Accelerated Vessel Detection Algorithms, Michael Tietz, John Warner, Quinton Davidson, Douglas Carssow
Small Satellite Conference
Earth observing satellites contribute to the monitoring of maritime activity by enabling large-scale coverage of open water. For example, spacecraft data can be used to monitor and combat Illegal, Unreported, and Unregulated (IUU) fishing that occurs in coastal and international waters across the globe. However, information latencies limit the utility of space-based sensors for operational users who need real-time situational awareness. These limitations are especially pronounced for small spacecraft with limited power generation and downlink capabilities. In recent years, the devices and tools that enable edge computing and near real-time downlink from small spacecraft have improved substantially. Equipped with these …
Metadata-Conditioned Dark-Frame Modelling And Hsdr-Scanfusion Denoising: A Physics-Informed Independent Tool For Low-Cost Hyperspectral Small-Satellite Calibration, Nooh Adnan, Kyaw Thiha, Raffael Gil Dela Cruz, Li Cheng Zheng, Faijul Amin, Areeba Khan, Sameha Tasnim, Sung Jegal, Yunhan Bao, Iliya Shofman
Metadata-Conditioned Dark-Frame Modelling And Hsdr-Scanfusion Denoising: A Physics-Informed Independent Tool For Low-Cost Hyperspectral Small-Satellite Calibration, Nooh Adnan, Kyaw Thiha, Raffael Gil Dela Cruz, Li Cheng Zheng, Faijul Amin, Areeba Khan, Sameha Tasnim, Sung Jegal, Yunhan Bao, Iliya Shofman
Small Satellite Conference
Hyperspectral imaging in the shortwave-infrared spectrum is valuable for orbital Earth observation, but its use on low-cost, resource-constrained small satellites is limited by thermally dependent dark current, fixed-pattern noise, and intermittent access to matched calibration frames. Traditional mitigation through active cooling, shutters, or frequent dark-frame acquisition can be difficult to accommodate within small-satellite mass, power, volume, and operations budgets. This paper presents a physics-informed independent calibration tool that reconstructs condition-matched dark response from acquisition metadata rather than relying on hardware-heavy calibration at every operating point. The framework combines a stochastic dark-noise simulator, a metadata-conditioned neural dark operator that predicts spectral-spatial …
Design And Performance Of The Active Thermal Architecture Technology For The Upcoming Acmes Mission, Lucas Anderson, Charles Swenson, Miguel Nunes, Robert Wright
Design And Performance Of The Active Thermal Architecture Technology For The Upcoming Acmes Mission, Lucas Anderson, Charles Swenson, Miguel Nunes, Robert Wright
Small Satellite Conference
This paper will discuss the basic design, fabrication, and experimental validation plan of the Active Thermal Architecture (ATA), a novel Active Thermal Control (ATC) technology that will be demonstrated on the upcoming Active Cooling for Multispectral Earth Sensors (ACMES) mission. The ATA is an integrated single-phase mechanically pumped fluid-loop (MPFL) thermal control system developed for high-power small-satellite applications. The ATA is constructed using 3D Ultrasonic Additive Manufacturing to co-fabricate the internal thermal transport channels and structural members, enabling direct integration of heat exchangers and fluid pathways within primary spacecraft components. The resulting architecture reduces mechanical interfaces, improves thermal transfer, and …
Development Of Wavelength-Division-Multiplexed All-Optical Relays For Low-Earth Orbit Free-Space Optical Communication Networks, Travis Jones, Justin Cook, Chris Krush, Doruk Engin, Keith G. Petrillo
Development Of Wavelength-Division-Multiplexed All-Optical Relays For Low-Earth Orbit Free-Space Optical Communication Networks, Travis Jones, Justin Cook, Chris Krush, Doruk Engin, Keith G. Petrillo
Small Satellite Conference
In this work, we designed, built, and tested an all-optical relay amplifier to enable a space-based all-optical backbone for laser communications networks. The design sought to optimize links for LEO-based networks incorporating appropriate span lengths and optical terminal specifications. We incorporate an add-drop multiplexer for rerouting signals and designed the system to be flexible over span lengths with a nominal range of 1,800 km. We performed several tests of the nominally 60 dB gain amplifier to assess link dynamics unique to free space optical communications (FSOC) including the impact of pointing jitter, nonlinearities, gain flattening, and wide-band filters on an …
Delay/ Disruption Tolerant Networking In Cislunar Space, Sara Garcia-Beech, Rebecca Besser, Elizabeth Geist, Theresa Beech, Mike Palsson, Krishnan Narayanan, Ben Anderson
Delay/ Disruption Tolerant Networking In Cislunar Space, Sara Garcia-Beech, Rebecca Besser, Elizabeth Geist, Theresa Beech, Mike Palsson, Krishnan Narayanan, Ben Anderson
Small Satellite Conference
DTN (Delay/Disruption Tolerant Networking) is at foundation of NASA's LunaNet architecture, which will enable the robust communications, navigation, and networking capabilities needed to establish a long-term presence on the Moon. DTN is a network architecture composed of several different protocols that are designed to provide internetworking functionality and standardized multi-hop, end-to-end data delivery in highly stressed environments that are not optimal for traditional Internet Protocols. Bundle Protocol (BP) version 7, a store-and-forward protocol intended to run at the application layer on top of convergence layer protocols, provides the key delay tolerance functionality of DTN and is designed to handle intermittent …
Event-Driven Spacecraft Operations Demonstrated On Mms, Miles Bengtson, Alexander Barrie, Joseph Patton, Liam Greenlee, Paul Wood, Marcus Piquette, Russell Bjella, Matthew Chang, Joshua Paul
Event-Driven Spacecraft Operations Demonstrated On Mms, Miles Bengtson, Alexander Barrie, Joseph Patton, Liam Greenlee, Paul Wood, Marcus Piquette, Russell Bjella, Matthew Chang, Joshua Paul
Small Satellite Conference
Operations engineers face the challenging task of capturing high-value science data while maintaining spacecraft health and functionality and responding to a dynamic space environment using limited information. This task is becoming increasingly complex as missions involve increasingly large numbers of spacecraft, target more elusive science signatures, and operate under growing budget and staffing constraints. Conventional pre-programmed time-sequence commands become increasingly burdensome for multi-spacecraft missions and are fundamentally incapable of reacting to rare, transient science events in real time.
To address this challenge, we have developed MEDOS: the Module for Event-Driven Operations of Spacecraft. Unlike machine learning and neural-network approaches, MEDOS …
Demonstration Of Bidirectional Tracking And Data Transfer With The Cubeisl Optical Communication Terminal, Jan Hildebrand, Hannes Zeihsel, René Rüddenklau, Jorge Rosano Nonay, Lukas Rodeck, Olman Quiros Jimenez
Demonstration Of Bidirectional Tracking And Data Transfer With The Cubeisl Optical Communication Terminal, Jan Hildebrand, Hannes Zeihsel, René Rüddenklau, Jorge Rosano Nonay, Lukas Rodeck, Olman Quiros Jimenez
Small Satellite Conference
This paper presents the experimental results of a free-space optical link validating the capabilities of two integrated CubeISL terminals. The campaign serves as a verification of the tracking, pointing and acquisition of the terminals before launch of the CubeISL mission. The link was conducted over a distance of 6600 m between the rooftop of the DLR Institute of Communication and Navigation in Oberpfaffenhofen and a 80 m high radio tower in Schöngeising. To ensure robust link establishment, the system employed a Pointing, Acquisition, and Tracking scheme utilizing both a 10 kHz modulated beacon for initial acquisition and a Continuous Wave …
Recovery Of Grus-1e From Magnetic Torquer Loss Using Data-Driven Open-Loop Attitude Steering, Nader Ganaba, Takanori Iwata, Minoru Kurata
Recovery Of Grus-1e From Magnetic Torquer Loss Using Data-Driven Open-Loop Attitude Steering, Nader Ganaba, Takanori Iwata, Minoru Kurata
Small Satellite Conference
In typical low Earth orbit (LEO) operations, the inability to remove excess angular momentum often leads to the decommissioning of a satellite. This paper presents the on-orbit recovery of GRUS-1E, a hundred kg class Earth observation satellite in Axelspace Corporation’s GRUS-1 constellation. The recovery followed the permanent loss of magnetic torquer commanding capability, which in turn disabled the satellite’s nominal reaction wheel momentum unloading. In addition, the satellite experienced persistent disturbance torques that significantly exceeded the combined contributions predicted by standard models, including gravity gradient, solar radiation pressure, aerodynamic drag, and the estimated residual magnetic dipole moment. The magnitude of …
The Genesis Of The Annual Usu Conference On Small Satellites, Rex Ridenoure, Alex Da Silva Curiel, Martin Sweeting
The Genesis Of The Annual Usu Conference On Small Satellites, Rex Ridenoure, Alex Da Silva Curiel, Martin Sweeting
Small Satellite Conference
On this milestone of marking the 40th SmallSat conference, this paper provides a capsule summary of how it all started in 1987, and why.
By January 1986, Utah State University was actively involved with NASA’s Space Shuttle program, which from April 1981 through mid-January 1986 had notched 24 successful missions in a row, including nine in 1985. Missions were starting to appear routine, and the manifest was full for many dozens of future missions.
The Shuttle’s Get Away Special (GAS) secondary payload program had become quite popular within academic, government and commercial sectors, and through 1985 six dozen separate …
Nanouhfcomms Mission Overview, Nazia Mozaffar, Salwan Damman, Ryan Hiser, Lizbeth Durbin, Jose Ruvalcaba, Alejandro Castro, David Sadowski, Dmitriy Obukhov, Brendan Hill
Nanouhfcomms Mission Overview, Nazia Mozaffar, Salwan Damman, Ryan Hiser, Lizbeth Durbin, Jose Ruvalcaba, Alejandro Castro, David Sadowski, Dmitriy Obukhov, Brendan Hill
Small Satellite Conference
The NanoUHFComms experiment seeks to demonstrate the ability to detect and correct Doppler offsets caused by the relative high velocity between Low Earth Orbit (LEO) spacecraft and terrestrial nodes. The payload includes a Rincon Research Corporation AstroSDR with external Low Noise Amplifier (LNA) for the receive band and an external power amplifier for the transmit band. The uplink and downlink bands are combined with a diplexer before connecting to a common antenna mounted on the spacecraft. The demonstrations planned for the orbit testing include a relay mode which will detect and correct the Doppler offset of an uplink signal, translate …
A Smallsat In Vleo: The Orion Kraken Approach, Chad Fish, Crystal Frazier, Sun-Hee Goldsberry, Katie Nyland, Will Armijo, Raj Patel, Elijah Vance, Adam Reynolds, Nathan Tipton, Kevin Quintana, Sam Clowes, Rachel Stutz, Keith Underwood, Jared Stromberg, Justin Berger, Erich Hoover, Andrew Irvine, Ali Wise, Christian Frazier, Derek Taylor, Kong Yang, Tracy Cueto, Wes Leong, Greg Ushomirsky, Charles Swenson, Paul Bernhart, Ron Reedy, Tim Minton, Mitchell Weins, Kent Frankovich
A Smallsat In Vleo: The Orion Kraken Approach, Chad Fish, Crystal Frazier, Sun-Hee Goldsberry, Katie Nyland, Will Armijo, Raj Patel, Elijah Vance, Adam Reynolds, Nathan Tipton, Kevin Quintana, Sam Clowes, Rachel Stutz, Keith Underwood, Jared Stromberg, Justin Berger, Erich Hoover, Andrew Irvine, Ali Wise, Christian Frazier, Derek Taylor, Kong Yang, Tracy Cueto, Wes Leong, Greg Ushomirsky, Charles Swenson, Paul Bernhart, Ron Reedy, Tim Minton, Mitchell Weins, Kent Frankovich
Small Satellite Conference
The Orion Space Solutions' Kraken Mission, sponsored by DARPA and implemented by a science and engineering team led by Orion Space Solutions, will make in-situ and remote sensing space weather observations from Very Low Earth Orbit (VLEO). The mission instrument suite will include Langmuir Probes, RF Impedance Probes, HF Sounders, Atomic Oxygen Sensors, Science Magnetometers, Floating Potential Probes, and Science Accelerometers. Long-term (approximately 4-6 month lifetime), repeated measurements of plasma density and other plasma and neutral parameters in this region are very rare, and the Kraken data is expected to contribute considerably to space weather and science modeling of VLEO. …
The Cospar-1 Spacecraft: Advancing Space Science And Capacity Building Through International Collaboration, Amal Chandran, Hex20 Ltd., Carlos Gabriel, Loren C. Chang
The Cospar-1 Spacecraft: Advancing Space Science And Capacity Building Through International Collaboration, Amal Chandran, Hex20 Ltd., Carlos Gabriel, Loren C. Chang
Small Satellite Conference
The Committee on Space Research (COSPAR) is the world's leading organization for advancing space science. The COSPAR Panel for a Constellation of Small Satellites (PCSS) was assembled in 2020 to examine how emerging CubeSat and small satellite technology could help solve outstanding questions in Space Weather, Earth Climate change, and Radiation Belt studies through constellations of miniature spacecraft. The COSPAR-1 spacecraft is a 3U CubeSat carrying a Solar Spectral Sensor from the Laboratory for Atmospheric and Space Physics (LASP) at the University of Colorado Boulder to observe solar output across the UV-to-IR spectrum, an Earth Radiation Sensor from LATMOS in …
The Landolt Mission Payload: An Artificial Star For Precision Astronomy, Peter Pachowicz, Peter Plavchan, Gabrielle Belle, Jay Deorukhkar, Philip Cunio, Eliad Peretz, John Mather, Peter Kurczynski, Angelle Tanner, Susana Deustua, Brian Alberding, Joseph Rice, Thomas Michaud-Baeyens, Jean-Thomomas Landry, Marc-Andre Boucher, David Ciardi, Mike Lund, Justin Albert, Greg Alderling, Brian Stalder, Daniel Stevens, Jamie Tayar, Daniel Kuesters, Tabetha Boyajian
The Landolt Mission Payload: An Artificial Star For Precision Astronomy, Peter Pachowicz, Peter Plavchan, Gabrielle Belle, Jay Deorukhkar, Philip Cunio, Eliad Peretz, John Mather, Peter Kurczynski, Angelle Tanner, Susana Deustua, Brian Alberding, Joseph Rice, Thomas Michaud-Baeyens, Jean-Thomomas Landry, Marc-Andre Boucher, David Ciardi, Mike Lund, Justin Albert, Greg Alderling, Brian Stalder, Daniel Stevens, Jamie Tayar, Daniel Kuesters, Tabetha Boyajian
Small Satellite Conference
The Landolt Mission represents a significant advancement in space-based instrumentation, serving as NASA’s first hybrid space mission. Central to the mission is a smallsat deployed in Geostationary Orbit (GEO), carrying the SI Traceable Absolute Radiometer [STAR] comprised of two Laser Instruments (LI) and an Element Wheel technology demonstrator. The LI utilizes six specialized Laser Trays to project SI-calibrated light beams at various wavelengths into ground telescopes. By creating a stable, SI-traceable calibration source, the Landolt mission aims to provide an unprecedented level of precision in astronomical observations. These advancements are expected to facilitate transformative discoveries in exoplanet host stars, supernova …
Noaa Nesdis Commercial Data Program Using Small Satellites For Space-Based Environmental Monitoring Data, Marc Gasbarro, Natalie Laudier, Harshesh Patel, Gerald Peltzer, Chunhui Pan
Noaa Nesdis Commercial Data Program Using Small Satellites For Space-Based Environmental Monitoring Data, Marc Gasbarro, Natalie Laudier, Harshesh Patel, Gerald Peltzer, Chunhui Pan
Small Satellite Conference
The National Oceanic and Atmospheric Administration (NOAA) National Environmental Satellite, Data and Information Service (NESDIS) Commercial Data Program (CDP) successfully engages with the private sector to acquire commercial space-based environmental observation data to diversify, streamline, and improve NOAA's observations and to meet NOAA’s mission objectives. The NESDIS CDP manages two lines of effort, the Commercial Data Pilot projects to demonstrate the quality and impact of commercial data on NOAA applications and the Commercial Data Purchases to support operational weather and space weather applications. NESDIS CDP leverages commercial companies’ use of innovative Small Satellite (SmallSat) collection platforms. NESDIS CDP procures data …
Monitoring Spoken Language In Infants And Toddlers Who Are Deaf Or Hard Of Hearing Using The Lena Developmental Snapshot, Monika-Maria Oster, Kimberly A. Peters
Monitoring Spoken Language In Infants And Toddlers Who Are Deaf Or Hard Of Hearing Using The Lena Developmental Snapshot, Monika-Maria Oster, Kimberly A. Peters
Journal of Early Hearing Detection and Intervention
Purpose: This retrospective analysis evaluates the Developmental Snapshot as a language monitoring tool for infants and toddlers with bilateral hearing loss who use listening and spoken language.
Method: Data were obtained from the educational and clinical records of 147 children with bilateral hearing loss. For each child, the LENA (Language ENvironment Analysis) Developmental Snapshot, a standardized online language assessment that relies on parent report, had been completed at least once. When available, scores from other standardized language assessments (PLS-5, CDI, and DAYC-2) were also obtained.
Results: LENA Developmental Snapshot standard scores were characterized by high variability and mean scores in …
A Survey Study On Physiological Hearing Assessment Practice In The Usa, Malina Mangrum, Hasan Saleh, Sangamanatha Ankmnal Ankmnal Veeranna, Kimberly Ward, Charles G. Marx
A Survey Study On Physiological Hearing Assessment Practice In The Usa, Malina Mangrum, Hasan Saleh, Sangamanatha Ankmnal Ankmnal Veeranna, Kimberly Ward, Charles G. Marx
Journal of Early Hearing Detection and Intervention
Background: In the United States, limited information exists regarding the physiological measures and testing parameters used in infant hearing assessments. To address this gap, we conducted a nationwide survey to identify the types of physiological tests and procedures currently employed by audiologists.
Method: A structured survey was distributed to audiologists across the country to gather information about the auditory tests and recording parameters used in infant hearing evaluations.
Results: Most respondents reported using Auditory Brainstem Responses (ABRs) to estimate infant hearing thresholds, primarily relying on traditional stimuli rather than chirp stimuli. The Auditory Steady-State Response (ASSR) was not widely used …
Measuring Family Involvement In Early Intervention Services For Children Who Are Dhh: A Scoping Review, Marie Martinez, Blair Richlin, Kristina Blaiser
Measuring Family Involvement In Early Intervention Services For Children Who Are Dhh: A Scoping Review, Marie Martinez, Blair Richlin, Kristina Blaiser
Journal of Early Hearing Detection and Intervention
Background: Family involvement after a child has been identified as deaf or hard of hearing (DHH) is often recommended as “best practice” for Family Centered Early Intervention (FCEI; Szarkowski et al., 2024) and a catalyst for improved outcomes. Defining actions of a family will inform high-quality family support programs. This scoping review aims to explore and document family involvement as well as the current systems of measurement used in early intervention DHH family-centered services.
Purpose: The specific aim of this scoping review was to identify the operational definitions of family involvement and metrics used with families of children who are …
Exploring Speech-Language Pathologists’ Development Of Hearing Loss Health Literacy, Ellie Cooper, Krystal L. Werfel
Exploring Speech-Language Pathologists’ Development Of Hearing Loss Health Literacy, Ellie Cooper, Krystal L. Werfel
Journal of Early Hearing Detection and Intervention
Purpose. This qualitative study examined how speech-language pathologists (SLPs) develop hearing loss health literacy through academic training and on-the-job experience. Specifically, it explored SLPs’ perspectives on how graduate coursework and clinical exposure contributed to their readiness to work with children who are deaf or hard of hearing (DHH).
Method. Participants included 48 SLPs with a range of specialty academic coursework and on-the-job experience working with children who are DHH. SLPs were categorized into four groups: with/without specialty academic training in aural (re)habilitation and more/fewer than three years of experience with at least ten children who are DHH. Semi-structured interviews were …
Early Childhood Access To Language Acquisition Services In Arizona, Kendra Benedict, Wendy Steuerwald, Najwa Ghattas, Cheryl Johnson
Early Childhood Access To Language Acquisition Services In Arizona, Kendra Benedict, Wendy Steuerwald, Najwa Ghattas, Cheryl Johnson
Journal of Early Hearing Detection and Intervention
This investigation reviewed existing services and gaps for young children who are deaf or hard of hearing (DHH) in Arizona and explored community-based approaches to improve access to language development resources. The study was conducted in two phases, each focusing on different approaches for language acquisition based on surveys of parents and providers. Phase I, completed in 2024, addressed listening and spoken language (LSL) as a methodology for language acquisition while Phase II, completed in 2025, focused on the use of American Sign Language (ASL). Findings from Phase I surveys found that 63% of parents reported using LSL as the …
Journal Of Early Hearing Detection And Intervention: Volume 11 Issue 1, Pages 1-80
Journal Of Early Hearing Detection And Intervention: Volume 11 Issue 1, Pages 1-80
Journal of Early Hearing Detection and Intervention
No abstract provided.
Acs3 Results And Lesson Learned, Philip Shih, Olive Stohlman, Ivan Bertaska, Andres Dono Perez
Acs3 Results And Lesson Learned, Philip Shih, Olive Stohlman, Ivan Bertaska, Andres Dono Perez
Small Satellite Conference
ACS3 (Advanced Composite Solar Sail System) was a technology demonstration mission for the National Aeronautics and Space Administration1, to demonstrate the deployment of a solar sail of size 80m2 from a new NASA-developed compact deployable composite boom2 packaged in a 12U CubeSat. The extended objective of the mission was to perform attitude control and orbit maneuvering. ACS3 was successfully launched on 24 April 2024 local time via Rocket Lab Electron launch vehicle from Rocket Lab Launch Complex 1B in Mahia, New Zealand. Following four months of commissioning operations, the solar sail was deployed on 28 August …
Artemis Cubesats Help Advance Exploration Of The Moon, Mars, And Beyond, Russell Lane, David Beaman, Courtney Ryals, David Hitt
Artemis Cubesats Help Advance Exploration Of The Moon, Mars, And Beyond, Russell Lane, David Beaman, Courtney Ryals, David Hitt
Small Satellite Conference
On April 1, NASA launched the Artemis II mission – the first crewed mission of the Artemis campaign. The nine-day lunar flyby launched on the agency’s SLS (Space Launch System) rocket and had four astronauts test the Orion spacecraft in high Earth orbit and in deep space. Four 12U CubeSats also launched on the mission, housed within the SLS’s Orion stage adapter (OSA). The spacecraft were deployed approximately five-and-a-half hours into the flight, following Orion separation and departure from SLS, as the SLS interim cryogenic propulsion stage (ICPS) and the attached OSA were in a high Earth orbit on an …
The Pandora Smallsat: Overview Of The First Six Months In Orbit, Jessie Dotson, Elisa Quintana, Knicole Colón, Thomas Barclay, Christina Hedges, Ben Hord, Trevor Foote, Jordan Karburn, Pete Supsinkas, Lance Simms, Joe Renaud, Julie Moquin
The Pandora Smallsat: Overview Of The First Six Months In Orbit, Jessie Dotson, Elisa Quintana, Knicole Colón, Thomas Barclay, Christina Hedges, Ben Hord, Trevor Foote, Jordan Karburn, Pete Supsinkas, Lance Simms, Joe Renaud, Julie Moquin
Small Satellite Conference
The Pandora SmallSat was selected as an inaugural NASA Astrophysics Pioneers mission. The Astrophysics Pioneers program is tasked with performing compelling astrophysics science at lower cost while simultaneously providing space mission experience to early career researchers and engineers. The science goal of Pandora is to study transiting exoplanets and their host stars by collecting long duration, simultaneous visible photometry and near-infrared spectroscopy. This unique dataset will enable Pandora to disentangle the contributions from stellar activity which contaminate the exoplanet spectrum so we can search for water in exoplanet atmospheres.
The Pandora SmallSat successfully launched from Vandenberg Space Force Base on …
Gray Jay Pathfinder: One Year Of Maritime And Airborne Vessel Monitoring With A Formation-Flying Constellation Of Microsatellites, Erica Peterson, Nicolaas Handojo, Nima Assadian, Jacob Von Chorus, Jeremy Hawke, Andrew Barlow, Sanjeev Narayanaswamy, Abigail Macgillivray, Alex Kiar, Nathan Cole, Robert E. Zee
Gray Jay Pathfinder: One Year Of Maritime And Airborne Vessel Monitoring With A Formation-Flying Constellation Of Microsatellites, Erica Peterson, Nicolaas Handojo, Nima Assadian, Jacob Von Chorus, Jeremy Hawke, Andrew Barlow, Sanjeev Narayanaswamy, Abigail Macgillivray, Alex Kiar, Nathan Cole, Robert E. Zee
Small Satellite Conference
Gray Jay Pathfinder (GJP) is an experimental microsatellite constellation that has been designed, built, and operated by the Space Flight Laboratory (SFL), for Defence Research and Development Canada (DRDC). GJP launched in January 2025, and consists of three microsatellites, developed using SFL’s 30kg DEFIANT platform, flying in formation in a sun-synchronous orbit at a 510km altitude. All three spacecraft carry radio frequency (RF) payloads capable of receiving raw spectrum in the VHF, UHF, L, S, and X radar bands. The RF payloads include a combination of in-house designed and COTS antennas, in-house designed antenna front ends, a payload computer with …
Disksat: On-Orbit Performance And Lessons Learned From The Inaugural Flight Of Two-Dimensional Satellites, Darren Rowen, Catherine Venturini, Garrett Kinum, Brian Hardy, Joseph Gangestad, Lisa Toda, Chris Day, Thomas Pridy, Eddson Alcid, Ziba Shahriary
Disksat: On-Orbit Performance And Lessons Learned From The Inaugural Flight Of Two-Dimensional Satellites, Darren Rowen, Catherine Venturini, Garrett Kinum, Brian Hardy, Joseph Gangestad, Lisa Toda, Chris Day, Thomas Pridy, Eddson Alcid, Ziba Shahriary
Small Satellite Conference
DiskSat is a novel spacecraft design that uses a disk-shaped form factor, 1 meter in diameter but only 2.5 cm in depth, to provide unprecedented power-to-mass ratio in a nanosatellite and the potential to operate long-term in very low Earth orbit (VLEO). The inaugural flight of four DiskSats launched on 18 December 2025 from NASA’s Wallops Flight Facility on an Electron rocket, which delivered the satellites to a 550-km altitude orbit at an inclination of 45 deg. Developing DiskSat’s two-dimensional form factor presented a myriad of challenges for power generation, thermal management, attitude control, and deployment that could only be …
Development Of A Digital Electronic Framework To Manage High Power Systems In Small Satellite Missions, Mariel Serra, Rami Kandela, Bryan Johnston-Lemke, Robert E. Zee
Development Of A Digital Electronic Framework To Manage High Power Systems In Small Satellite Missions, Mariel Serra, Rami Kandela, Bryan Johnston-Lemke, Robert E. Zee
Small Satellite Conference
- As small spacecraft payloads increase in complexity, they introduce the need for higher capacity and reliable power systems.
- The use of radiation tested automotive-grade components offer low-costs, however these parts are less suited to increased power demands, exhibiting signs of on-orbit latch-up.
- A re-design of a Modular Power System’s digital framework is proposed to support more spacecraft loads with minimal computational stress on the electronic processing units.