TY - JOUR AU - Nathaniel Frissell AU - John Ackermann AU - Jesse Alexander AU - Robert Benedict AU - William Blackwell AU - Rachel Boedicker AU - Stephen Cerwin AU - Kristina Collins AU - Scott Cowling AU - Chris Deacon AU - Devin Diehl AU - Francesca Di Mare AU - Timothy Duffy AU - Laura Edson AU - William Engelke AU - James Farmer AU - Rachel Frissell AU - Robert Gerzoff AU - John Gibbons AU - Gwyn Griffiths AU - Sverre Holm AU - Frank Howell AU - Stephen Kaeppler AU - George Kavanagh AU - David Kazdan AU - Hyomin Kim AU - David Larsen AU - Vincent Ledvina AU - William Liles AU - Sam Lo AU - Michael Lombardi AU - Elizabeth MacDonald AU - Julius Madey AU - Thomas McDermott AU - David McGaw AU - Robert McGwier AU - Gary Mikitin AU - Ethan Miller AU - Cathryn Mitchell AU - Aidan Montare AU - Cuong Nguyen AU - Peter Nordberg AU - Gareth Perry AU - Gerard Piccini AU - Stanley Pozerski AU - Robert Reif AU - Jonathan Rizzo AU - Robert Robinett AU - Veronica Romanek AU - Simal Sami AU - Diego Sanchez AU - Muhammad Sarwar AU - Jay Schwartz AU - Lawrence Serra AU - Ward Silver AU - Tamitha Skov AU - David Swartz AU - David Themens AU - Francis Tholley AU - Mary West AU - Ronald Wilcox AU - David Witten AU - Ben Witvliet AU - Nisha Yadav AB -
The amateur radio community is a global, highly engaged, and technical community with an intense interest in space weather, its underlying physics, and how it impacts radio communications. The large-scale observational capabilities of distributed instrumentation fielded by amateur radio operators and radio science enthusiasts offers a tremendous opportunity to advance the fields of heliophysics, radio science, and space weather. Well-established amateur radio networks like the RBN, WSPRNet, and PSKReporter already provide rich, ever-growing, long-term data of bottomside ionospheric observations. Up-and-coming purpose-built citizen science networks, and their associated novel instruments, offer opportunities for citizen scientists, professional researchers, and industry to field networks for specific science questions and operational needs. Here, we discuss the scientific and technical capabilities of the global amateur radio community, review methods of collaboration between the amateur radio and professional scientific community, and review recent peer-reviewed studies that have made use of amateur radio data and methods. Finally, we present recommendations submitted to the U.S. National Academy of Science Decadal Survey for Solar and Space Physics (Heliophysics) 2024–2033 for using amateur radio to further advance heliophysics and for fostering deeper collaborations between the professional science and amateur radio communities. Technical recommendations include increasing support for distributed instrumentation fielded by amateur radio operators and citizen scientists, developing novel transmissions of RF signals that can be used in citizen science experiments, developing new amateur radio modes that simultaneously allow for communications and ionospheric sounding, and formally incorporating the amateur radio community and its observational assets into the Space Weather R2O2R framework. Collaborative recommendations include allocating resources for amateur radio citizen science research projects and activities, developing amateur radio research and educational activities in collaboration with leading organizations within the amateur radio community, facilitating communication and collegiality between professional researchers and amateurs, ensuring that proposed projects are of a mutual benefit to both the professional research and amateur radio communities, and working towards diverse, equitable, and inclusive communities.
BT - Frontiers in Astronomy and Space Sciences DA - Apr-11-2024 DO - 10.3389/fspas.2023.1184171 LA - eng N2 -The amateur radio community is a global, highly engaged, and technical community with an intense interest in space weather, its underlying physics, and how it impacts radio communications. The large-scale observational capabilities of distributed instrumentation fielded by amateur radio operators and radio science enthusiasts offers a tremendous opportunity to advance the fields of heliophysics, radio science, and space weather. Well-established amateur radio networks like the RBN, WSPRNet, and PSKReporter already provide rich, ever-growing, long-term data of bottomside ionospheric observations. Up-and-coming purpose-built citizen science networks, and their associated novel instruments, offer opportunities for citizen scientists, professional researchers, and industry to field networks for specific science questions and operational needs. Here, we discuss the scientific and technical capabilities of the global amateur radio community, review methods of collaboration between the amateur radio and professional scientific community, and review recent peer-reviewed studies that have made use of amateur radio data and methods. Finally, we present recommendations submitted to the U.S. National Academy of Science Decadal Survey for Solar and Space Physics (Heliophysics) 2024–2033 for using amateur radio to further advance heliophysics and for fostering deeper collaborations between the professional science and amateur radio communities. Technical recommendations include increasing support for distributed instrumentation fielded by amateur radio operators and citizen scientists, developing novel transmissions of RF signals that can be used in citizen science experiments, developing new amateur radio modes that simultaneously allow for communications and ionospheric sounding, and formally incorporating the amateur radio community and its observational assets into the Space Weather R2O2R framework. Collaborative recommendations include allocating resources for amateur radio citizen science research projects and activities, developing amateur radio research and educational activities in collaboration with leading organizations within the amateur radio community, facilitating communication and collegiality between professional researchers and amateurs, ensuring that proposed projects are of a mutual benefit to both the professional research and amateur radio communities, and working towards diverse, equitable, and inclusive communities.
PY - 2023 ST - Front. Astron. Space Sci. T2 - Frontiers in Astronomy and Space Sciences TI - Heliophysics and amateur radio: citizen science collaborations for atmospheric, ionospheric, and space physics research and operations UR - https://www.frontiersin.org/articles/10.3389/fspas.2023.1184171/fullhttps://www.frontiersin.org/articles/10.3389/fspas.2023.1184171/full VL - 10 ER -