Publication | Closed Access
PolarScheduler: Dynamic Transmission Control for Floating LoRa Networks
18
Citations
35
References
2022
Year
EngineeringEdge ComputingPolarization LossSpace-air-ground Integrated NetworkComputer EngineeringSwaying AntennaSystems EngineeringHigh-speed NetworkingMarine EngineeringInternet Of ThingsLora NetworksAdvanced NetworkingUnderwater Sensor NetworkLow-power Wide-area NetworkTransmission SystemDynamic Transmission ControlSatellite Network
LoRa is widely deploying in aquatic environments to support various Internet of Things applications. However, floating LoRa networks suffer from serious performance degradation due to the polarization loss caused by the swaying antenna. Existing methods that only control the transmission starting from the aligned attitude have limited improvement due to the ignorance of aligned period length. In this paper, we propose PolarScheduler, a dynamic transmission control method for floating LoRa networks. PolarScheduler actively controls transmission configurations to match polarization aligned periods. We propose a V-zone model to capture diverse aligned periods under different configurations. We also design a low-cost model establishment method and an efficient optimal configuration searching algorithm to make full use of aligned periods. We implement PolarScheduler on commercial LoRa platforms and evaluate its performance in a deployed network. Extensive experiments show that PolarScheduler can improve the packet delivery rate and throughput by up to 20.0% and 15.7%, compared to the state-of-the-art method.
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