TY - CONF AU - Nolan Pearce AU - Kate Duncan AB - Space weather's intense variance has a seemingly random effect on radio propagation in the Very High Frequency (VHF) range. Key models are built to analyze and estimate performance of wireless systems in these weak-signal propagation mediums. Chiefly, meteor burst communication, auroral propagation, and earth-moon-earth communication models are built and simulated on MATLAB. The results are confirmed through experimental testing and data comparison. Overall, modeling of these space weather events proves immense usefulness in predicting effectiveness of radio equipment through these weak-signal modes. BT - HamSCI Workshop 2021 C1 -
CY - Scranton, PA (Virtual) DA - 03/2021 LA - eng N2 - Space weather's intense variance has a seemingly random effect on radio propagation in the Very High Frequency (VHF) range. Key models are built to analyze and estimate performance of wireless systems in these weak-signal propagation mediums. Chiefly, meteor burst communication, auroral propagation, and earth-moon-earth communication models are built and simulated on MATLAB. The results are confirmed through experimental testing and data comparison. Overall, modeling of these space weather events proves immense usefulness in predicting effectiveness of radio equipment through these weak-signal modes. PB - HamSCI PP - Scranton, PA (Virtual) PY - 2021 T2 - HamSCI Workshop 2021 TI - Simulation and Comparison of Weak-Signal VHF Propagation UR - https://hamsci2021-uscranton.ipostersessions.com/?s=0B-3C-92-BC-7A-A2-35-0C-0B-52-1C-29-5A-03-4F-46 ER -