WSN-Assisted UAV Trajectory Adjustment for Pesticide Drift Control
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Jie Hu | Shilei Lv | Tuan Wang | Jiacheng Yang | Yubin Lan | Yali Zhang | Y. Lan | Yali Zhang | Tuan Wang | Jiacheng Yang | Jie Hu | Shilei Lv
[1] Hui Cheng,et al. Automatic delivery and recovery system of Wireless Sensor Networks (WSN) nodes based on UAV for agricultural applications , 2019, Comput. Electron. Agric..
[2] Rui Zhang,et al. Energy-Efficient Data Collection in UAV Enabled Wireless Sensor Network , 2017, IEEE Wireless Communications Letters.
[3] Yufeng Ge,et al. Numerical analysis and validation of spray distributions disturbed by quad-rotor drone wake at different flight speeds , 2019, Comput. Electron. Agric..
[4] Nasser Yazdani,et al. An efficient medium access control protocol for WSN-UAV , 2016, Ad Hoc Networks.
[5] Marc Peter Deisenroth,et al. Deep Reinforcement Learning: A Brief Survey , 2017, IEEE Signal Processing Magazine.
[6] Chao Shen,et al. Flight Time Minimization of UAV for Data Collection Over Wireless Sensor Networks , 2018, IEEE Journal on Selected Areas in Communications.
[7] Jinya Su,et al. Experimental evaluation of UAV spraying for peach trees of different shapes: Effects of operational parameters on droplet distribution , 2020, Comput. Electron. Agric..
[8] Anbazhagan Rajesh,et al. Implementation of an efficient extreme learning machine for node localization in unmanned aerial vehicle assisted wireless sensor networks , 2019, Int. J. Commun. Syst..
[9] Ali Mansour,et al. UAV-Assisted Dynamic Clustering of Wireless Sensor Networks for Crop Health Monitoring , 2018, Sensors.
[10] Shigeru Shimamoto,et al. Priority-Based Data Gathering Framework in UAV-Assisted Wireless Sensor Networks , 2016, IEEE Sensors Journal.
[11] Wang Ling,et al. Research on the prediction model and its influencing factors of droplet deposition area in the wind tunnel environment based on UAV spraying , 2018 .
[12] Yong Zeng,et al. Completion Time Minimization for Multi-UAV-Enabled Data Collection , 2019, IEEE Transactions on Wireless Communications.
[13] Daniel A. Wachspress,et al. Prediction of Aerial Spray Release from UAVs , 2018 .
[14] André Carlos Ponce de Leon Ferreira de Carvalho,et al. An adaptive approach for UAV-based pesticide spraying in dynamic environments , 2017, Comput. Electron. Agric..
[15] Ernesto Serrano-Finetti,et al. A novel low-cost smart leaf wetness sensor , 2017, Comput. Electron. Agric..
[16] Youngnam Han,et al. Energy-Efficient UAV Routing for Wireless Sensor Networks , 2020, IEEE Transactions on Vehicular Technology.
[17] Fernando Santos Osório,et al. The use of unmanned aerial vehicles and wireless sensor networks for spraying pesticides , 2014, J. Syst. Archit..
[18] A. Hewitt,et al. Meteorological and flight altitude effects on deposition, penetration, and drift in pineapple aerial spraying , 2020 .
[19] Xuejing Lan,et al. Sensor Network with Unmanned Aerial Vehicle-enabled Wireless Power Transfer: Optimal Clustering and Trajectory Designing , 2020 .
[20] Kamran Farajzadeh,et al. Prolong network lifetime and improve efficiency in WSN-UAV systems using new clustering parameters and CSMA modification , 2020, Int. J. Commun. Syst..
[21] Xuejun Yue,et al. Cloud-Assisted UAV Data Collection for Multiple Emerging Events in Distributed WSNs , 2017, Sensors.
[22] Ling Wang,et al. Medium Access Control for Unmanned Aerial Vehicle Based Mission Critical Wireless Sensor Networks in 3D Monitoring Networks , 2019, IEEE Access.
[23] Aijing Li,et al. Completion Time Minimization for Multi-UAV Information Collection via Trajectory Planning , 2019, Sensors.
[24] Haiping Huang,et al. Trajectory Optimization for UAVs’ Efficient Charging in Wireless Rechargeable Sensor Networks , 2020, IEEE Transactions on Vehicular Technology.
[25] Rui Zhang,et al. 3D Trajectory Optimization in Rician Fading for UAV-Enabled Data Harvesting , 2019, IEEE Transactions on Wireless Communications.
[26] Jaime Lloret,et al. Deployment and Performance Study of an Ad Hoc Network Protocol for Intelligent Video Sensing in Precision Agriculture , 2014, ADHOC-NOW Workshops.
[27] Zhou Su,et al. UAV Based Relay for Wireless Sensor Networks in 5G Systems , 2018, Sensors.
[28] F. Richard Yu,et al. Intelligent Trajectory Design in UAV-Aided Communications With Reinforcement Learning , 2019, IEEE Transactions on Vehicular Technology.
[29] Shigenori Sano,et al. Real-time smooth trajectory generation for nonholonomic mobile robots using Bézier curves , 2016 .
[31] Chi-Tsun Cheng,et al. A UAV-assisted topology-aware data aggregation protocol in WSN , 2019, Phys. Commun..
[32] Yong Zeng,et al. Aerial–Ground Cost Tradeoff for Multi-UAV-Enabled Data Collection in Wireless Sensor Networks , 2020, IEEE Transactions on Communications.
[33] Yunjie Wu,et al. Path Planning for UAV Ground Target Tracking via Deep Reinforcement Learning , 2020, IEEE Access.
[34] Piero Toscano,et al. Multisensor approach to assess vineyard thermal dynamics combining high-resolution unmanned aerial vehicle (UAV) remote sensing and wireless sensor network (WSN) proximal sensing , 2017 .
[35] Chadi Assi,et al. UAV-Aided Projection-Based Compressive Data Gathering in Wireless Sensor Networks , 2019, IEEE Internet of Things Journal.
[36] Gustavo Medeiros de Araújo,et al. EGL: efficient geometry-based localisation in wireless sensor networks , 2017, Int. J. Sens. Networks.
[37] Usman Raza,et al. LEMOn: Wireless Localization for IoT Employing a Location-Unaware Mobile Unit , 2019, IEEE Access.
[38] Ikjune Yoon,et al. Efficient Energy Supply Using Mobile Charger for Solar-Powered Wireless Sensor Networks , 2019, Sensors.
[39] Jaime Lloret,et al. Communication Ad Hoc Protocol for Intelligent Video Sensing Using AR Drones , 2013, 2013 IEEE 9th International Conference on Mobile Ad-hoc and Sensor Networks.