Irrig‐OH: An Open‐Hardware Device for Soil Water Potential Monitoring and Irrigation Management
暂无分享,去创建一个
Filippo Renga | Claudio Gandolfi | Edoardo G. Vannutelli Depoli | Arianna Facchi | Daniele Masseroni | D. Masseroni | A. Facchi | C. Gandolfi | F. Renga
[1] R. G. Evans,et al. Evaluation of Closed-Loop Site-Specific Irrigation with Wireless Sensor Network , 2009 .
[2] M. Dursun,et al. A wireless application of drip irrigation automation supported by soil moisture sensors , 2011 .
[3] Rodney B. Thompson,et al. Determination of lower limits for irrigation management using in situ assessments of apparent crop water uptake made with volumetric soil water content sensors , 2007 .
[4] L. Bacci,et al. L'impiego di tensiometri nel controllo automatico dell'irrigazione di specie ornamentali in contenitore § , 2007 .
[5] D. Intrigliolo,et al. Continuous measurement of plant and soil water status for irrigation scheduling in plum , 2004, Irrigation Science.
[6] Marcin Kozak,et al. What about keeping plants well watered , 2014 .
[7] D. K. Fisher,et al. Application note: A low-cost microcontroller-based system to monitor crop temperature and water status , 2010 .
[8] F. S. Zazueta,et al. Microcomputer-based control of irrigation systems , 1992 .
[9] Fabio Rodrigues de Miranda. A Site-Specific Irrigation Control System , 2003 .
[10] Clinton C. Shock,et al. Calibration of Granular Matrix Sensors for Irrigation Management , 1993 .
[11] Rodney B. Thompson,et al. Using plant water status to define threshold values for irrigation management of vegetable crops using soil moisture sensors , 2007 .
[12] James W. Jones,et al. Real-time greenhouse monitoring and control with an expert system , 1989 .
[13] Michael Beigl,et al. Dinam: A wireless sensor network concept and platform for rapid development , 2010, 2010 Seventh International Conference on Networked Sensing Systems (INSS).
[14] Daniel K. Fisher,et al. Open-Source Hardware Is a Low-Cost Alternative for Scientific Instrumentation and Research , 2012 .
[15] Pilar Baeza,et al. Relationship between Soil and Plant Water Status in Wine Grapes under Various Water Deficit Regimes , 2010 .
[16] M. Garcia,et al. A Multisensor Proposal for Wireless Sensor Networks , 2008, 2008 Second International Conference on Sensor Technologies and Applications (sensorcomm 2008).
[17] Roberto Testezlaf,et al. A REAL-TIME IRRIGATION CONTROL SYSTEM FOR GREENHOUSES , 1997 .
[18] M. Gallardo,et al. Evaluation of the Watermark sensor for use with drip irrigated vegetable crops , 2006, Irrigation Science.
[19] Arto Visala,et al. Open configurable control system for precision farming , 2004 .
[20] Glendon W. Gee,et al. Water Potential: Miscellaneous Methods , 2018, SSSA Book Series.
[21] Zhuohui Zhang. Investigation of Wireless Sensor Networks for Precision Agriculture , 2004 .
[22] Isabel Abrisqueta,et al. Soil water content criteria for peach trees water stress detection during the postharvest period , 2012 .
[23] Reinhard Nolz,et al. Calibrating soil water potential sensors integrated into a wireless monitoring network , 2013 .
[24] Ning Wang,et al. Review: Wireless sensors in agriculture and food industry-Recent development and future perspective , 2006 .
[25] Kamarul Ariffin Noordin,et al. A Low-Cost Microcontroller-based Weather Monitoring System , 2006 .
[26] Steven T. Koike,et al. Winter cover crops in a vegetable cropping system: Impacts on nitrate leaching, soil water, crop yield, pests and management costs , 1996 .
[27] Joshua Mendoza-Jasso,et al. FPGA-based real-time remote monitoring system , 2005 .
[28] Daniele Bassi,et al. The Peach: Botany, Production and Uses , 2008 .
[29] B. Leib,et al. FIELD EVALUATION AND PERFORMANCE COMPARISON OF SOIL MOISTURE SENSORS , 2003 .
[30] Antonio Mauro Saraiva,et al. From wireless sensors to field mapping: Anatomy of an application for precision agriculture , 2007 .
[31] Calvin D. Perry,et al. A real-time wireless smart sensor array for scheduling irrigation , 2008 .
[32] A.D. Siuli Roy,et al. Agro-sense: Precision agriculture using sensor-based wireless mesh networks , 2008, 2008 First ITU-T Kaleidoscope Academic Conference - Innovations in NGN: Future Network and Services.
[33] Yunseop Kim,et al. Remote Sensing and Control of an Irrigation System Using a Distributed Wireless Sensor Network , 2008, IEEE Transactions on Instrumentation and Measurement.
[34] Martin Thalheimer,et al. A low-cost electronic tensiometer system for continuous monitoring of soil water potential , 2013 .
[35] A. Y. C. Nee,et al. Design and development of a navigation assistance system for visually impaired individuals , 2009 .
[36] F. J. Pierce,et al. Regional and on-farm wireless sensor networks for agricultural systems in Eastern Washington , 2008 .
[37] Robert W. Coates,et al. Control of individual microsprinklers and fault detection strategies , 2006, Precision Agriculture.
[38] S. J. Thomson,et al. Evaluation of Calibration Equations and Application Methods for the Watermark® Granular Matrix Soil Moisture Sensor , 1996 .
[39] J. Brunton,et al. Economic Evaluation of Early Peach (Prunus Persica L. batsch) Commercial Orchard under Different Irrigation Strategies , 2013 .
[40] W. E. Hart,et al. A DIGITAL EVENT RECORDER FOR MAPPING FIELD OPERATIONS , 2004 .
[41] Michael J. Delwiche,et al. Design of a System for Individual Microsprinkler Control , 2006 .
[42] D. K. Fisher. Automated Collection of Soil-Moisture Data with a Low-Cost Microcontroller Circuit , 2007 .
[43] Israel Joel Koenka,et al. Instrumentino: An open-source modular Python framework for controlling Arduino based experimental instruments , 2014, Comput. Phys. Commun..
[44] Alexander S. Szalay,et al. Wireless sensor networks for soil science , 2010, Int. J. Sens. Networks.
[45] R. E. Yoder,et al. An autonomous controller for site-specific management of fixed irrigation systems , 2005 .
[46] Thomas J. Jackson,et al. Crop condition and yield simulations using Landsat and MODIS , 2004 .