SA028-0001
A Climatology of Traveling Ionospheric Disturbances Observed by High Frequency Amateur Radio Networks.

Tuesday, 15 December 2020
Poster
Diego Sanchez1, Nathaniel A Frissell2, Gareth William Perry3, Anthea Coster4, Philip John Erickson4, William Engelke5, J. Michael Ruohoniemi6 and Joseph B. H. Baker2, (1)New Jersey Institute of Technology, Edison, NJ, United States, (2)Virginia Tech, Blacksburg, VA, United States, (3)University of Calgary, Calgary, AB, Canada, (4)MIT Haystack Observatory, Westford, MA, United States, (5)University of Alabama, Center for Advanced Public Safety, Tuscaloosa, AL, United States, (6)Virginia Polytechnic Institute and State University, Blacksburg, VA, United States
Abstract:
Traveling Ionospheric Disturbances (TIDs) are propagating variations in ionospheric electron densities that affect radio communications and can help with understanding energy transport throughout the coupled magnetosphere-ionosphere-neutral atmosphere system. Large scale TIDs (LSTIDs) have periods min, horizontal phase velocities m/s, and horizontal wavelengths km and are believed to be generated either by geomagnetic activity or lower atmospheric sources. TIDs create concavities in the ionospheric electron density profile that move horizontally with the TID and cause skip-distance focusing effects for high frequency (HF, 3-30 MHz) radio signals propagating through the ionosphere. The signature of this phenomena is manifest as quasi-periodic variations in contact ranges in HF amateur radio communication reports recorded by automated monitoring systems such as the Weak Signal Propagation Reporting Network (WSPRNet) and the Reverse Beacon Network (RBN). In this study, members of the Ham Radio Science Citizen Investigation (HamSCI) present a climatology of LSTID activity using RBN and WSPRNet observations on the 1.8, 3.5, 7, 14, 21, and 28 MHz amateur radio bands from 2017. Results will be organized as a function of observation frequency, longitudinal sector (North America and Europe), season, and geomagnetic activity level.