Variable sampling interval for energy-efficient heterogeneous precision agriculture using Wireless Sensor Networks
Tài liệu tham khảo
Adam, 2000, Managing uncertainty in site-specific management: what is the best model?, Precis Agric, 2, 39, 10.1023/A:1009984516714
Ali, 2011
Arampatzis, 2005, 719
Bennis, 2015, Drip irrigation system using Wireless Sensor Networks, Conf. Comp. Sci. Inf. Syst. (FedCSIS), 1297
Crary, 1990, Digital compensation of high-performance silicon pressure transducers, Sensor Actuat A-Phys., 21, 70, 10.1016/0924-4247(90)85014-U
I. Das, C. Naveen, S. S. Yadav, A. Kodilkar, N. G. Shah, S. N. Merchant, U. B. Desai, WSN Monitoring of Weather and Crop Parameters for Possible Disease Risk Evaluation for Grape Farms - Sula Vineyards, A Case Study, Presented in the Geomatrix-2009 conferemce, 2009, IIT Bombay, Mumbai, Oral Session Five.
Diedrichs, 2014, 525
Hamouda, 2017, 109
Hamouda, 2017, 78
Haule, 2014, 86
Judd, 2015, Advancements in root growth measurement technologies and observation capabilities for container-grown plants, Plants, 2015, 369, 10.3390/plants4030369
K. K. Khedo, M. R. Hosseny, M. Z. Toonah, PotatoSense: A wireless sensor network system for precision agriculture, IST-Africa Conference Proceedings; 7-9 May 2014, Le Meridien Ile Maurice, Mauritius, pp. 1-11.
T. D. Le, D. H. Tan, Design and deploy a wireless sensor network for precision agriculture, Conference on Information and Computer Science (NICS), 2015 2nd National Foundation for Science and Technology Development, 16-18 Sept. 2015; Ho Chi Minh City, Vietnam, pp. 294-299.
K. Lee, A Smart Transducer Interface for Sensors and Actuators, Smart Transducer Interface Standard-IEEE 1451.2 Standard 1998.
Leea, 2010, Sensing technologies for precision specialty crop production, Comput. Electron. AGR, 74, 2, 10.1016/j.compag.2010.08.005
Math, 2017, 1
Maurya, 2017, Energy-efficient network protocol for precision agriculture: using threshold sensitive sensors for optimal performance, IEEE Consumer Electr. Mag., 6, 42, 10.1109/MCE.2017.2684960
Milind, 2014, Microcontroller based adaptive irrigation system using WSN for variety crops and development of insect avoidance system for better yield, Int. J. Res. Eng. Technol. (IJRET), 03, 308, 10.15623/ijret.2014.0307052
Miller, 2005, AMAC protocol to reduce sensor network energy consumption using a wakeup radio, IEEE Trans. Mobile Comp., 4, 228, 10.1109/TMC.2005.31
Nandurkar, 2014, 1
Nayak, 2014, 221
J. Paek, J. Hicks, S. Coe, R. Govindan, Image-Based Environmental Monitoring Sensor Application Using an Embedded Wireless Sensor Network, SENSORS-BASEL2014, 14, pp. 15981-16002.
Patel, 2011, 1
Perkins, 1994, 234
Potdar, 2009, 636
Ramya, 2012, INT J COMPUT APPL, Int. J. Comp. Appl., 53, 36
Sahota, 2010, An energy-efficient wireless sensor network for precision agriculture, IEEE Symposium on Computers and Communications (ISCC), 347, 10.1109/ISCC.2010.5546508
Shinghal, 2010, Wireless sensor networks in agriculture: for potato farming, Int. J. Eng. Sci. Technol., 2, 3955
Tarange, 2015, 1
Wan, 2001, Fundamentals of soil physics, Natl. Inst. Comp. Transl., 136
Wang, 2002, Energy-efficient DSPs for wireless sensor networks, IEEE Signal Proc. Mag., 19, 68, 10.1109/MSP.2002.1012351
Wang, 2008, Coverage for target localization in wireless sensor networks, IEEE T Wirel. Commun., 7, 667, 10.1109/TWC.2008.060611
J. E. Wieselthier, G. D. Nguyen, A. Ephremides, Resource management in energy-limited, bandwidth-limited, transceiver-limited wireless networks for session based multicasting, COMPUT NETWORKS ISDN2002, 39, 2002, pp. 113-131.
J. Xu, J. Zhang, X. Zheng, X. Wei, J. Han, Wireless Sensors in Farmland Environmental Monitoring, International Conference on Cyber-Enabled Distributed Computing and Knowledge Discovery (CyberC), 17-19 Sept. 2015;Xi'an, China, pp. 372-379.
Yazdi, 2000, A generic interface chip for capacitive sensors in low-power multi-parameter microsystems, Sensor Actuat. A-Phys., 84, 351, 10.1016/S0924-4247(00)00307-1
Zeng, 2016, 49
Zhao, 2003, Collaborative signal and information processing: an information directed approach, Proc. IEEE, 11, 1199, 10.1109/JPROC.2003.814921