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Variable Rate Application of Fertilizer in Citrus

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Advances in Citrus Nutrition

Abstract

Spatially variable application of fertilizer to citrus fields is dependent upon accuracy of the input variables. The accuracy in determining a variable rate application map and the application accuracy are important. An accuracy model is described using a 3.6-ha Florida citrus block. The effects of boundary determination, interpolation method, and global positioning system (GPS) location errors were studied for determining a variable rate nitrogen application map based upon citrus yield maps. Accuracy models can be developed considering interaction among GPS horizontal accuracy, differential GPS (DGPS) sampling frequencies, and machine delay times of a hypothetical variable rate applicator for nitrogen (N) fertilizer application based on an application map. Parameters studied included five GPS horizontal accuracy levels, two levels of DGPS horizontal accuracy, two DGPS sampling frequencies, and two machine delay times. Two integrated models were developed which documented the effects of the parameters. Machine delay time was the most important factor, and GPS horizontal accuracy was the second most important.

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References

  • Anderson NW, Humburg DS (1997) Application equipment for site specific management. In: Pierce FJ, Sadler EJ (eds) The state of site-specific management for agriculture. ASA CSSA/SSSA, Madison, pp 245–281

    Google Scholar 

  • Anonymous (1995) Global positioning system standard positioning service signal specification. Annex B. Standard positioning service performance characteristics. US Coast Guard Navigation Center Technical Report, pp 21

    Google Scholar 

  • Barnes JB, Cross PA (1998) Processing models for very high accuracy GPS positioning. Navigation 51(2):180–185

    Article  Google Scholar 

  • Cahn MD, Hummel JW (1995) A variable rate applicator for side dressing liquid N fertilizer. In: Rust RH, Larson WE, Robert PC (eds) Proceedings of the second international conference site – specific management for agricultural systems. ASA CSSA/SSSA, Madison, pp 683–689

    Google Scholar 

  • Chan CW (2000) Integrated analysis of GPS, GIS and machine dynamic response in precision liquid fertilizer application. Unpublished PhD dissertation, University of Florida, Gainesville

    Google Scholar 

  • Chan CW, Schueller JK, Miller WM et al (1999a) Interpolation errors in citrus yield mapping. ASAE paper no. 99-FL101, ASAE, St. Joseph

    Google Scholar 

  • Chan CW, Schueller JK, Miller WM et al (1999b) Accuracy in spatially-variable crop production and an illustration in citrus yield mapping. In: Stafford JV (ed) Proceedings of the second European conference on precision agriculture. Sheffield Academic Press, Sheffield, pp 805–813

    Google Scholar 

  • Chan CW, Schueller JK, Miller WM et al (2002) Error sources on yield-based fertilizer variable rate application maps. Precis Agric 3:81–94

    Article  Google Scholar 

  • Goense D (1997) The accuracy of farm machinery for precision agriculture: a case for fertilizer application. Neth J Agric Sci 45:201–217

    Google Scholar 

  • Jackson LK, Alva AK, Tucker DPH et al (1995) Factors to consider in developing a nutrition program. In: Tucker DPH, Alva AK, Jackson LK et al (eds) Nutrition of Florida citrus trees. IFAS University of Florida, Gainesville, pp 3–11

    Google Scholar 

  • Monson RJ (1997) A methodology for quantifying the capabilities of a GPS navigation system. ASAE paper no. 97–3060. American Society Agricultural Engineering, St. Joseph, p 21

    Google Scholar 

  • Paice MER, Miller PCH, Day W (1996) Control requirements for spatially selective herbicide sprayers. Comput Electron Agric 14:163–177

    Article  Google Scholar 

  • Paz SM, Cugnasca CE, Saraiva AM et al (1997) Development of a simulation tool for a GPS receiver. In: Stafford JV (ed) Proceeding of the first European conference on precision agriculture. Sheffield Academic Press, Sheffield, pp 603–610

    Google Scholar 

  • Qiu W, Watkins GA, Sobolik CJ et al (1998) A feasibility study of direct injection for variable-rate herbicide application. Trans ASAE 41(2):291–299

    Google Scholar 

  • Rockwell AD, Ayers PD (1996) A variable rate, direct nozzle injection field sprayer. Appl Eng Agric 12(5):531–538

    Google Scholar 

  • Scholberg JMS, Parsons LR, Wheaton TA (2000) Citrus nitrogen nutrition: some production considerations for more efficient nitrogen use. Citrus Ind 81(2):18–19

    Google Scholar 

  • Schueller JK, Wang MW (1994) Spatially-variable fertilizer and pesticide application with GPS and DGPS. Comput Electron Agric 11:69–83

    Article  Google Scholar 

  • Schumann AW, Hostler K, Tunbo S (2010) What’s new in variable rate technology? Citrus Ind 90:

    Google Scholar 

  • Sudduth KA, Borgelt SC, Hou J (1995) Performance of a chemical injection spraying system. Appl Eng Agric 11(3):343–348

    Google Scholar 

  • Tyler DA, Roberts DW, Nielsen GA (1997) Location and guidance for site-specific management. In: Pierce FJ, Sadler EJ (eds) The state of site-specific management for agriculture. ASA CSSA/SSSA, Madison, pp 161–182

    Google Scholar 

  • Whitney JD, Miller WM, Wheaton TA et al (1998) Precision farming applications in Florida citrus. ASAE paper no. 98–1097. ASAE, St. Joseph

    Google Scholar 

  • Whitney JD, Miller WM, Wheaton TA et al (1999) Precision farming applications in Florida citrus. Appl Eng Agric 15(5):399–403

    Google Scholar 

  • Zhu H, Fox RD, Ozkan HE et al (1998) Time delay for injection sprayers. Trans ASAE 41(3):525–530

    Google Scholar 

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Acknowledgments and Disclaimer

We would like to thank the various supporters of this work, including the Malaysian Agricultural Research and Development Institute (MARDI) and the Florida Citrus Production Research Advisory Council. The assistance of Professor J. K. Schueller, Professor W. M. Miller, Professor J. D. Whitney, Professor J. David Martsolf, Professor J. Wayne Mishoe, Professor T. Adair Wheaton, Professor J. A. Cornell, Mary Beth Freeman, Greg Drouillard, and Douglass Thompson is gratefully acknowledged. Comments on the integrated model from Mr. Ahmad Shokri Othman are also acknowledged. The mention of commercial products is for information purposes only and does not constitute an endorsement.

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Correspondence to C. W. Chan .

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© 2012 Springer Science+Business Media B.V.

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Chan, C.W. (2012). Variable Rate Application of Fertilizer in Citrus. In: Srivastava, A. (eds) Advances in Citrus Nutrition. Springer, Dordrecht. https://doi.org/10.1007/978-94-007-4171-3_18

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