Original Article

GPS and Sensor Based Technologies in Variable Rate Fertilizer Application

Year: 2021 | Month: March | Volume 14 | Issue 1

References (26)

Alameen, A.A., Al-Gaadi, K.A. and Tola, E. 2019. Development and performance evaluation of a control system for variable rate granular fertilizer application. Comput. Electron. Agric., 160: 31-39.

View at Google Scholar

Alameen, A.A., Al-Gaadi, K.A. and Tola, E. 2019. Development and performance evaluation of a control system for variable rate granular fertilizer application. Comput. Electron. Agric., 160: 31-39.

View at Google Scholar

Barreiro, P. and Ruiz-Altisent, M. 2002. Innovative Biomechatronics aspects of mechanization, pp. 51-53.

View at Google Scholar

Benji, S. 2015. Innovative Agricultural Mechatronics [Online]. Available: http://courseofthefuture.com.au/contest/1/ entry/255

View at Google Scholar

Braunack, M.V. 1986. The residual effects of tracked vehicles on soil surface properties. J. Terramechanics, 23(1): 37-50.

View at Google Scholar

Chandel, N.S., Mehta, C.R., Tewari, V.K. and Nare, B. 2016. Digital map-based site-specific granular fertilizer application system. Curr. Sci., 111(7): 1208-1213.

View at Google Scholar

Chattha, H.S., Zaman, Q.U., Chang, Y.K., Read, S., Schumann, A.W., Brewster, G.R. and Farooqu, A.A. 2014. Variable rate spreader for real-time spot-application of granular fertilizer in wild blueberry. Comput. Electron Agric., 100: 70–78.

View at Google Scholar

Erdélyi and Jánosi. 2017. Mechatronics in Agriculture, Scientific Bulletin, Serie C, Fascicle: Mechanics, Tribology, Mach. Manuf. Technol., ISSN 1224-3264.

View at Google Scholar

Forouzanmehr, E. and Loghavi, M. 2012. Design, development and field evaluation of a map-based variable rate granular fertilizer application control system. Int. J. Aric. Eng., 14(4): 255– 261.

View at Google Scholar

Hamid, A., Ahmad, D. and Rukunuddin, I.H. 2010. Performance of sweet potato transplanting machine on mineral and bris soils. Agric. Mechanization in Asia, Afr. and Latin Am., 41(1):55-59.

View at Google Scholar

Ishak and Hudzari, R.M. 2010. Image Based modeling for oil palm fruit maturity prediction. Jr. Food, Agric. Env., 8(2): 469-476.

View at Google Scholar

Jaime Cuauhtemoc Negrete. 2015. Mechatronics in Mexican Agriculture Current Status and Perspectives. Int. J. Agric. & Environ. Sci., 2(3).

View at Google Scholar

Kim, Y.J., Kim, H.J., Rye, K.H. and Rhee, J.Y. 2008. Fertilizer application performance of a variable-rate pneumatic granular applicator for rice production. Biosyst. Eng., 100: 498– 510.

View at Google Scholar

Mohd Ekhwan Hj Toriman, Mazlin B. Mokhtar, Muhammad Barzani Gazim, Norazlina Abd Aziz. 2009. Analysis of the Physical Characteristics of BRIS soil. Res. J. Earth Sci., pp. 1-2.

View at Google Scholar

Mouazen, A.M., Karoui, R., Decksers, J., De Baerdemaeker, J. and Ramon, H. 2007. Potential of visible and near-infrared spectroscopy to derive colour groups utilising the Munsell soil colour charts. Biosyst. Eng., 97(2): 131–143.

View at Google Scholar

Prem Veer Gautam, H.L. Kushwaha, Adarsh Kumar and Kushwaha, D.K. 2019. Mechatronics Application in Precision Sowing. Int. J. Curr. Microbiol. App. Sci., 8(4): 1793-1807.

View at Google Scholar

Razali M.H., Wan Ismail W.I., Ramli A.R. and Sulaiman M.N. 2008. Modeling of Oil Palm Fruit Maturity for the Development of an Outdoor Vision System. Int. J. Food Eng., 4(3): 1396-1396.

View at Google Scholar

Razali, M.H.H., Noor, N.A.M., Othman, N.I. and Hamdan, H.I. 2012. Mechatronic application for agriculture mechanization analysis and education. Software Eng., 2(4): 106-111.

View at Google Scholar

Rooney, D., Stelford, M. and Landolt, D. Undated. SiteSpecific Soil Compaction Mapping Using a Digital Soil Penetrometer. Site-Specific Management Guidelines (SSMG) Potash and Phosphate Institute (http://www. ppi-far.org/ssmg).

View at Google Scholar

Rui Zhang, Xiu Wang, Jianhua Guo, Liping Chen, Jianjun Zhou and Wei Ma. 2014. Development of Variable Rate Fertilizer System Based on Optical Sensor. Sens. Transducers, 26: 1-6.

View at Google Scholar

Sebastian, S. 2014. Laboratory tests of force sensor applied in agricultural mechatronic equipment. Teka. Commission of Motorization and Energetic Agric., 14(3): 111-114.

View at Google Scholar

Shankha Koley, Y.C. Bhatt, Gajendra Singh, Sunil Joshi and Jain, H.K. 2017. Development of Electronic Metering Mechanism for Precision Planting of Seeds Int. J. Curr. Microbiol. App. Sci., 6(8): 3481-3487.

View at Google Scholar

Sinder, K.O. and Tekin, A.B. 2002. Economics of variable rate fertilizer application. International Scientific Conference, Rousse, Bulgaria.

View at Google Scholar

Su Ning, Xu Taosheng, Song Liangtu, Wang Rujing and Wei Yuanyuan. 2015. Variable rate fertilization system with adjustable active feed-roll length. Int. J. Agric. Bio Eng., 8(4): 19-26.

View at Google Scholar

Tola, E., Kataoka, T., Burce, M., Okamoto, H. and Hata, S. 2008. Granular fertilizer application rate control system with integrated output volume measurement. Biosyst. Eng., 101(4): 411-416.

View at Google Scholar

Yang, L., Xiantao, H., Tao, C., Dongxing, Z., Song, S., Rui, Z. and Mantao, W. 2012. Development of the mechatronic driving system for seed meters equipped on conventional precision corn planter, Int. J. Agric. Biol. Engg., 8(4): 1-9.

View at Google Scholar

Economic Affairs, Quarterly Journal of Economics| In Association with AESSRA

76077380 - Visitors since February 20, 2019