Irrigation control: towards a new solution of an old problem
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[1] Gerd H. Schmitz,et al. Analytical solution of simplified surge flow equations , 1987 .
[2] J. S. Archer,et al. Neural network based objective flow regime identification in air-water two phase flow , 1994 .
[3] John A. Nelder,et al. A Simplex Method for Function Minimization , 1965, Comput. J..
[4] R. Liedl,et al. Analytical Solution to the Zero-Inertia Problem for Surge Flow Phenomena in Nonprismatic Channels , 2002 .
[5] J. Philip. Steady Infiltration from Circular Cylindrical Cavities , 1984 .
[6] J. C. Mailhol,et al. Impact of fertilisation practices on nitrogen leaching under irrigation , 2001, Irrigation Science.
[7] Pierre Perrochet,et al. On the primary variable switching technique for simulating unsaturated–saturated flows , 1999 .
[8] Mohammad Rayej,et al. Time Solution of Kinematic‐Wave Model with Stochastic Infiltration , 1988 .
[9] Jean Claude Mailhol. Contribution à l'amélioration des pratiques d'irrigation à la raie par une modélisation simplifiée à l'échelle de la parcelle et de la saison , 2001 .
[10] Holger R. Maier,et al. Neural networks for the prediction and forecasting of water resource variables: a review of modelling issues and applications , 2000, Environ. Model. Softw..
[11] Linda O. Mearns,et al. Investigating the Effect of Seasonal Plant Growth and Development in Three-Dimensional Atmospheric Simulations. Part I: Simulation of Surface Fluxes over the Growing Season , 2001 .
[12] Xxyyzz. Sustainability Criteria for Water Resource Systems , 1998 .
[13] Hartmut Pohlheim. Entwicklung und systemtechnische Anwendung evolutionärer Algorithmen , 1998 .
[14] S. Sorooshian,et al. Precipitation Estimation from Remotely Sensed Information Using Artificial Neural Networks , 1997 .
[15] A. J. Clemmens,et al. Irrigation Techniques and Evaluations , 1994 .
[16] J. Monteith,et al. Boundary Layer Climates. , 1979 .
[17] Narendra Singh Raghuwanshi,et al. Economic Optimization of Furrow Irrigation , 1997 .
[18] Volker Nissen. Einführung in Evolutionäre Algorithmen , 1997 .
[19] Albert J. Clemmens,et al. Verification of the Zero-Inertia Model for Border Irrigation , 1979 .
[20] Martin Hanke-Bourgeois,et al. Grundlagen der Numerischen Mathematik und des Wissenschaftlichen Rechnens , 2002 .
[21] T. Sinclair. Water and nitrogen limitations in soybean grain production I. Model development , 1986 .
[22] Albert J. Clemmens,et al. Irrigation Performance Measures: Efficiency and Uniformity , 1997 .
[23] Shashi Mathur,et al. Modeling Water Uptake by Plant Roots , 1999 .
[24] Jens Christian Refsgaard,et al. Recent developments of the Système Hydrologique Européen (SHE) towards the MIKE SHE , 1995 .
[25] B. Zur,et al. Wetted soil volume as a design objective in trickle irrigation , 1996, Irrigation Science.
[26] R. Hecht-Nielsen. Counterpropagation networks. , 1987, Applied optics.
[27] Brent Clothier,et al. Infiltration from a surface point source and drip irrigation: 2. An approximate time‐dependent solution for wet‐front position , 1997 .
[28] E. Camacho,et al. IPE: Model for Management and Control of Furrow Irrigation in Real Time , 1997 .
[29] G. S. Deep,et al. A low-cost water detection method for furrow irrigation control , 1997 .
[30] M. Wu,et al. Principles of environmental physics , 2004, Plant Growth Regulation.
[31] G. Hammer,et al. Predicting leaf area development of sunflower , 1993 .
[32] P. E. O'connell,et al. An introduction to the European Hydrological System — Systeme Hydrologique Europeen, “SHE”, 2: Structure of a physically-based, distributed modelling system , 1986 .
[33] Molly M. Gribb,et al. PARAMETER ESTIMATION FOR DETERMINING HYDRAULIC PROPERTIES OF A FINE SAND FROM TRANSIENT FLOW MEASUREMENTS , 1996 .
[34] R. L. Elliott,et al. Field Evaluation of Furrow Infiltration and Advance Functions , 1982 .
[35] J. Philip,et al. The Theory of Infiltration , 1958 .
[36] S. Recous,et al. STICS : a generic model for the simulation of crops and their water and nitrogen balances. I. Theory, and parameterization applied to wheat and corn , 1998 .
[37] Musharraf Zaman,et al. Modeling of soil behavior with a recurrent neural network , 1998 .
[38] Nikolaos D. Katopodes,et al. Hydrodynamics of Border Irrigation — Complete Model , 1977 .
[39] Teuvo Kohonen,et al. Self-organized formation of topologically correct feature maps , 2004, Biological Cybernetics.
[40] Gerd H. Schmitz,et al. Artificial neural networks for estimating soil hydraulic parameters from dynamic flow experiments , 2005 .
[41] G. Cannell,et al. Surface Irrigation: Theory and Practice , 1988 .
[42] Thomas Bäck,et al. Evolutionary algorithms in theory and practice - evolution strategies, evolutionary programming, genetic algorithms , 1996 .
[43] M. Th. van Genuchten,et al. Effect of the shape of the soil hydraulic functions near saturation on variably-saturated flow predictions , 2000 .
[44] Jorge A. Ramírez,et al. Optimal Stochastic Multicrop Seasonal and Intraseasonal Irrigation Control , 1997 .
[45] L. García,et al. Furrow Irrigation System Design for Clay Soils in Arid Regions , 2005 .
[46] Wesley W. Wallender,et al. Hydrodynamic Furrow Irrigation Model with Specified Space Steps , 1992 .
[47] D. Rizzo,et al. Characterization of aquifer properties using artificial neural networks: Neural kriging , 1994 .
[48] J. Feyen,et al. Effects of Flow Depth on Water Flow and Solute Transport in Furrow Irrigation: Field Data Analysis , 2003 .
[49] Miguel A. Mariño,et al. Surface Irrigation Optimization Models , 1986 .
[50] Jean-Claude Mailhol. Validation of a Predictive Form of Horton Infiltration for Simulating Furrow Irrigation , 2003 .
[51] M. Fonteh,et al. Furrow Irrigation with Physically Based Spatially Varying Infiltration , 1994 .
[52] D. L. Bassett,et al. Simulating Overland Flow in Border Irrigation , 1976 .
[53] Ben Chie Yen,et al. Modeling of conjunctive two-dimensional surface-three-dimensional subsurface flows , 2002 .
[54] Subhash Chander,et al. Irrigation scheduling under a limited water supply , 1988 .
[55] Marvin E. Jensen,et al. Design and Operation of Farm Irrigation Systems , 1980 .
[56] Mansour Esfandiari Baiat. Evaluation of furrow irrigation models for south-east Australia , 1997 .
[57] Niels Schütze,et al. Self‐organizing maps with multiple input‐output option for modeling the Richards equation and its inverse solution , 2005 .
[58] J. Valiantzas. Surface water storage independent equation for predicting furrow irrigation advance , 2000, Irrigation science.
[59] R. Feddes,et al. Simulation of field water use and crop yield , 1978 .
[60] S. Sorooshian,et al. Shuffled complex evolution approach for effective and efficient global minimization , 1993 .
[61] N. Null. Artificial Neural Networks in Hydrology. I: Preliminary Concepts , 2000 .
[62] Narendra Singh Raghuwanshi,et al. Furrow Irrigation Performance under Spatially Varying Conditions , 2000 .
[63] Gaylon S. Campbell,et al. Soil physics with BASIC :transport models for soil-plant systems , 1985 .
[64] Ravi Kothari,et al. Spatial characterization of remotely sensed soil moisture data using self organizing feature maps , 1999, IEEE Trans. Geosci. Remote. Sens..
[65] Stephen R. Workman,et al. Modeling of Evaporation Reduction in Drip Irrigation System , 1999 .
[66] D. Zerihun,et al. Analysis and design of furrow irrigation systems , 2001 .
[67] M. J. Hall. How well does your model fit the data , 2001 .
[68] Luis S. Pereira,et al. Modelling of furrow irrigation. Advance with two- dimensional infiltration , 1995 .
[69] Glenn Kirkpatrick,et al. Automatic Irrigation Scheduling System (AISSUM): Principles and Applications , 1995 .
[70] James L. McClelland,et al. James L. McClelland, David Rumelhart and the PDP Research Group, Parallel distributed processing: explorations in the microstructure of cognition . Vol. 1. Foundations . Vol. 2. Psychological and biological models . Cambridge MA: M.I.T. Press, 1987. , 1989, Journal of Child Language.
[71] Gerd H. Schmitz,et al. Physically Based Modeling of Interacting Surface-Subsurface Flow during Furrow Irrigation Advance , 2004 .
[72] Subhash Chander,et al. Optimal multicrop allocation of seasonal and intraseasonal irrigation water , 1990 .
[73] M. V. Velzen,et al. Self-organizing maps , 2007 .
[74] G. Fogg. The state and movement of water in living organisms. , 1966, Journal of the Marine Biological Association of the United Kingdom.
[75] Michael de Paly,et al. Global optimization of deficit irrigation systems using evolutionary algorithms , 2006 .
[76] Drainage Division,et al. Criteria for Evaluation of Watershed Models , 1993 .
[77] Rafael L. Bras,et al. Intraseasonal water allocation in deficit irrigation , 1981 .
[78] M. Beran,et al. Hydrograph Prediction - How much skill? , 1999 .
[79] Gerd H. Schmitz,et al. Mathematical Zero-Inertia Modeling of Surface Irrigation: Advance in Borders , 1990 .
[80] J. Cunge,et al. Practical aspects of computational river hydraulics , 1980 .
[81] A. W. Jayawardena,et al. Use of Radial Basis Function Type Artificial Neural Networks for Runoff Simulation , 1998 .
[82] Viliam Novák,et al. Estimation of soil-water extraction patterns by roots , 1987 .
[83] Mohammad Rayej,et al. Shooting method for Saint Venant equations of furrow irrigation. , 1990 .
[84] P. B. Coaker,et al. Applied Dynamic Programming , 1964 .
[85] Theodor Strelkoff,et al. Border-Irrigation Hydraulics with Zero Inertia , 1977 .
[86] H. Nagai. Validation and Sensitivity Analysis of a New Atmosphere–Soil–Vegetation Model , 2002 .
[87] Van Genuchten,et al. A closed-form equation for predicting the hydraulic conductivity of unsaturated soils , 1980 .
[88] Basant Maheshwari,et al. SW—Soil and Water: Field Evaluation of Furrow Irrigation Models , 2001 .
[89] M. Kiwan. ANALYTICAL SOLUTION FOR OPTIMUM DESIGN OF FURROW IRRIGATION SYSTEMS , 1996 .
[90] Vijay P. Singh,et al. The SHE/SHESED basin scale water flow and sediment transport modelling system. , 1995 .
[91] E. Bresler,et al. Analysis of trickle irrigation with application to design problems , 1978, Irrigation Science.
[92] F. D. Whisler,et al. Crop simulation models in agronomic systems , 1986 .
[93] Jan W. Hopmans,et al. Two-Dimensional Analysis of Furrow Infiltration , 1992 .
[94] E. Russell,et al. Soil Physics , 1941, Nature.
[95] A. Karimi,et al. Master‟s thesis , 2011 .
[96] Vijay P. Singh,et al. Analytical model for furrow irrigation , 1990 .
[97] A. W. Warrick,et al. A Generalized Solution to Infiltration from a Surface Point Source , 1988 .
[98] S. F. Actory,et al. Personal correspondence , 1997 .
[99] H. L. Penman. Natural evaporation from open water, bare soil and grass , 1948, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[100] R Govindaraju,et al. ARTIFICIAL NEURAL NETWORKS IN HYDROLOGY: II, HYDROLOGIC APPLICATIONS , 2000 .
[101] P. Bannister,et al. Okophysiologie der Pflanzen. , 1976 .
[102] L. A. Richards. Capillary conduction of liquids through porous mediums , 1931 .
[103] J. Mailhol,et al. Sorghum and sunflower evapotranspiration and yield from simulated leaf area index , 1997 .
[104] Wayne Clyma,et al. Optimal Design of Border Irrigation Systems , 1981 .
[105] C. R. Tischler,et al. Radiation use efficiency and leaf CO2 exchange for diverse C4 grasses. , 1999 .
[106] J. C. Mailhol,et al. Analysis of irrigation systems and irrigation strategies for durum wheat in Tunisia , 2004 .
[107] R. H. Brooks,et al. Properties of Porous Media Affecting Fluid Flow , 1966 .
[108] Wesley W. Wallender,et al. Zero Inertia Furrow Modeling with Variable Infiltration and Hydraulic Characteristics , 1988 .
[109] Roland K. Price,et al. A neural network model of rainfall-runoff using radial basis functions , 1996 .
[110] Steven R. Raine,et al. Irrigation application efficiency and deep drainage potential under surface irrigated cotton , 2005 .
[111] J. C. van Dam,et al. Numerical simulation of infiltration, evaporation and shallow groundwater levels with the Richards equation , 2000 .
[112] Helge J. Ritter,et al. Neural computation and self-organizing maps - an introduction , 1992, Computation and neural systems series.
[113] Allan S. Humpherys,et al. Kinematic‐Wave Furrow Irrigation Model , 1983 .