Letteratura scientifica selezionata sul tema "LR-FHSS"
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Articoli di riviste sul tema "LR-FHSS"
Sanchez-Vital, Roger, Lluís Casals, Bartomeu Heer-Salva, Rafael Vidal, Carles Gomez e Eduard Garcia-Villegas. "Energy Performance of LR-FHSS: Analysis and Evaluation". Sensors 24, n. 17 (5 settembre 2024): 5770. http://dx.doi.org/10.3390/s24175770.
Testo completoBoquet, Guillem, Pere Tuset-Peiro, Ferran Adelantado, Thomas Watteyne e Xavier Vilajosana. "LR-FHSS: Overview and Performance Analysis". IEEE Communications Magazine 59, n. 3 (marzo 2021): 30–36. http://dx.doi.org/10.1109/mcom.001.2000627.
Testo completoUllah, Muhammad Asad, Konstantin Mikhaylov e Hirley Alves. "Analysis and Simulation of LoRaWAN LR-FHSS for Direct-to-Satellite Scenario". IEEE Wireless Communications Letters 11, n. 3 (marzo 2022): 548–52. http://dx.doi.org/10.1109/lwc.2021.3135984.
Testo completoMaldonado, Diego, Leonardo S. Cardoso, Juan A. Fraire, Alexandre Guitton, Oana Iova, Megumi Kaneko e Hervé Rivano. "Enhanced LR-FHSS receiver for headerless frame recovery in space–terrestrial integrated IoT networks". Computer Networks 257 (febbraio 2025): 111018. https://doi.org/10.1016/j.comnet.2024.111018.
Testo completoCastro-Carrera, Alejandro. "A systematic review of LEO satellite services for IoT". Multidisciplinary Reviews 8, n. 3 (30 ottobre 2024): 2025083. http://dx.doi.org/10.31893/multirev.2025083.
Testo completoBukhari, Jumana, e Zhenghao Zhang. "Understanding Long Range-Frequency Hopping Spread Spectrum (LR-FHSS) with Real-World Packet Traces". ACM Transactions on Sensor Networks, 5 settembre 2024. http://dx.doi.org/10.1145/3694971.
Testo completoKnop, Diogo Nogueira, João Luiz Rebelatto e Richard Demo Souza. "LR-FHSS with Network-Coded Header Replication". IEEE Transactions on Vehicular Technology, 2024, 1–5. http://dx.doi.org/10.1109/tvt.2024.3350635.
Testo completoMaleki, Alireza, Ha H. Nguyen, Ebrahim Bedeer e Robert Barton. "Outage Probability Analysis of LR-FHSS and D2D-aided LR-FHSS Protocols in Shadowed-Rice Fading Direct-to-Satellite IoT Networks". IEEE Internet of Things Journal, 2023, 1. http://dx.doi.org/10.1109/jiot.2023.3329361.
Testo completoSant’Ana, Jean Michel de Souza, Osvaldo da Silva Neto, Arliones Hoeller, João Luiz Rebelatto, Richard Demo Souza e Hirley Alves. "Asynchronous Contention Resolution-Aided ALOHA in LR-FHSS Networks". IEEE Internet of Things Journal, 2024, 1. http://dx.doi.org/10.1109/jiot.2024.3355709.
Testo completoMaleki, Alireza, Ha H. Nguyen e Robert Barton. "Outage Probability Analysis of LR-FHSS in Satellite IoT Networks". IEEE Communications Letters, 2022, 1. http://dx.doi.org/10.1109/lcomm.2022.3233524.
Testo completoTesi sul tema "LR-FHSS"
Tran, Van Lic. "Développement de techniques radio cognitives pour les communications LP-WAN terrestres et satellites". Electronic Thesis or Diss., Université Côte d'Azur, 2024. http://www.theses.fr/2024COAZ4048.
Testo completoThis research focuses on improving Low-Power Wide-Area Network (LP-WAN) communications using cognitive radio technologies. Specifically, it addresses the challenge of network localization by utilizing the Received Signal Strength Indicator (RSSI) from LoRa networks, along with the proposed ML-MTL algorithm, to improve the accuracy of end device position estimation. Additionally, this study explores LoRaWAN coverage estimation and extension. In coverage estimation, it demonstrates that gathering multiple data points around each gateway enables the creation of accurate coverage heat maps using a proposed LoRaWAN coverage estimation algorithm. This approach effectively pinpoints areas where additional gateways are needed to improve network reliability. For coverage extension, the study focuses on optimizing terrestrial LP-WAN coverage through relay-based strategies. By incorporating cognitive radio techniques, the research aims to expand the coverage area of LoRa networks, enhancing both the reach and reliability of communication services. In terms of satellite communication, the project employs Omnet++ to simulate the performance and latency of LoRa networks in a satellite environment. The simulation assesses the feasibility of using LoRa networks in satellite communications, highlighting its potential for extending LP-WAN capabilities to remote or hard-to-reach regions through satellite links. By addressing both terrestrial and satellite domains, this research adopts a comprehensive approach to advancing LP-WAN communications. The integration of cognitive radio techniques contributes to the development of intelligent, adaptive communication systems that enhance efficiency, reliability, and coverage across terrestrial and satellite LP-WAN environments
Atti di convegni sul tema "LR-FHSS"
Maleki, Alireza, Ebrahim Bedeer e Robert Barton. "Performance Evaluation and Low-Complexity Detection of the PHY Modulation of LR-FHSS Transmission in IoT Networks". In 2024 IEEE 99th Vehicular Technology Conference (VTC2024-Spring), 1–7. IEEE, 2024. http://dx.doi.org/10.1109/vtc2024-spring62846.2024.10683565.
Testo completode Souza Sant’Ana, Jean Michel, Arliones Hoeller, Hirley Alves e Richard Demo Souza. "LR-FHSS-Sim: A Discrete-Event Simulator for LR-FHSS Networks". In 2024 Joint European Conference on Networks and Communications & 6G Summit (EuCNC/6G Summit). IEEE, 2024. http://dx.doi.org/10.1109/eucnc/6gsummit60053.2024.10597000.
Testo completoBen Temim, Mohamed Amine, Guillaume Ferré e Olivier Seller. "An LR-FHSS Receiver for a Massive IoT Connectivity". In 2023 IEEE 34th Annual International Symposium on Personal, Indoor and Mobile Radio Communications (PIMRC). IEEE, 2023. http://dx.doi.org/10.1109/pimrc56721.2023.10293878.
Testo completoZhang, Fanhao, Fu Yu, Xiaolong Zheng, Liang Liu e Huadong Ma. "DFH: Improving the Reliability of LR-FHSS via Dynamic Frequency Hopping". In 2023 IEEE 31st International Conference on Network Protocols (ICNP). IEEE, 2023. http://dx.doi.org/10.1109/icnp59255.2023.10355600.
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