[1] |
Velten S, Leventon J, Jager N, Newig J. 2015. What is sustainable agriculture? A systematic review Sustainability 7(6):7833−65 doi: 10.3390/su7067833 |
[2] |
Zhang MA, Borjigin E, Zhang H. 2007. Mongolian nomadic culture and ecological culture: On the ecological reconstruction in the agro-pastoral mosaic zone in Northern China. Ecological economics 62(1):19−26 doi: 10.1016/j.ecolecon.2006.11.005 |
[3] |
Omer MM, Musa MT, Bakhiet MR, Perrett L. 2010. Brucellosis in camels, cattle and humans: associations and evaluation of serological tests used for diagnosis of the disease in certain nomadic localities in Sudan. Revue scientifique et technique (International Office of Epizootics) 29(3):663−69 doi: 10.20506/rst.29.3.2003 |
[4] |
Pryor FL. 1985. The invention of the plow. Comparative Studies in Society and history 27(4):727−43 doi: 10.1017/S0010417500011749 |
[5] |
Fountas S, Sorensen CG, Tsiropoulos Z, Cavalaris C, Liakos V, et al. 2015. Farm machinery management information system. Computers and electronics in agriculture 110:131−38 doi: 10.1016/j.compag.2014.11.011 |
[6] |
Heege HJ. 2013. Precision in Crop Farming. 1st Edition. Netherlands: Springer Dordrecht. https://doi.org/10.1007/978-94-007-6760-7 |
[7] |
Long E, Ketterings Q, Czymmek K. 2013. Survey of cover crop use on New York dairy farms. Crop Management 12(1):1−5 doi: 10.1094/CM-2013-0019-RS |
[8] |
Hoorman JJ. 2009. Using cover crops to improve soil and water quality. Lima, Ohio: Agriculture and Natural Resources, The Ohio State University Extension. pp. 1–4. https://ohioline.osu.edu/factsheet/anr-57 |
[9] |
Russel DA, Williams GG. 1977. History of chemical fertilizer development. Soil Science Society of America Journal 41(2):260−65 doi: 10.2136/sssaj1977.03615995004100020020x |
[10] |
White PA. 2014. The Growing Business of Cover Crops. Virginia, VA: National Wildlife Federation |
[11] |
Sustainable Agriculture Research and Education. 2020. 2019-2020 Annual Report. National Cover Crop Survey. Report. Conservation Technology Information Center, Indiana. www.sare.org/wp-content/uploads/2019-2020-National-Cover-Crop-Survey.pdf (Retrieved January 6, 2023) |
[12] |
Magdoff F, Van Es H. 2021. Building Soils for Better Crops: Ecological Management for Healthy Soils. 4th Edition. Maryland, MD: Sustainable Agriculture Research and Education (SARE) |
[13] |
Koudahe K, Allen SC, Djaman K. 2022. Critical review of the impact of cover crops on soil properties. International Soil and Water Conservation Research 10(3):343−54 doi: 10.1016/j.iswcr.2022.03.003 |
[14] |
Wu X, Wu W, Yang H. 2022. Effects of legume–grass ratio on C and nutrients of root and soil in common vetch–oat mixture under fertilization. Agronomy 12(8):1936 doi: 10.3390/agronomy12081936 |
[15] |
Bautista-Baños S. 2014. Postharvest Decay: Control Strategies. 1st Edition. Massachusetts, MA: Academic Press. https://doi.org/10.1016/C2012-0-07916-1 |
[16] |
Angus J, Kirkegaard J, Peoples M, Ryan M, Hufton L, et al. 2011. A review of break-crop benefits of brassicas. 17th Australian Research Assembly on Brassicas, Wagga wagga, 2011. Australia. pp. 15−17. |
[17] |
Amoabeng BW, Stevenson PC, Mochiah MB, Asare KP, Gurr GM. 2021. Economic analysis of habitat manipulation in Brassica pest management: Wild plant species suppress cabbage webworm. Crop Protection 150:105788 doi: 10.1016/j.cropro.2021.105788 |
[18] |
Subbarao KV, Hubbard JC. 1996. Interactive effects of broccoli residue and temperature on Verticillium dahliae microsclerotia in soil and on wilt in cauliflower. Phytopathology 86(12):1303−10 doi: 10.1094/Phyto-86-1303 |
[19] |
Sassenrath GF, Little C, Roozeboom K, Lin X, Jardine D. 2019. Controlling soil-borne disease in soybean with a mustard cover crop. Kansas Agricultural Experiment Station Research Reports 5(2019):1−5 |
[20] |
Quemada M, Cabrera ML. 1995. Carbon and nitrogen mineralized from leaves and stems of four cover crops. Soil Science Society of America Journal 59(2):471−77 doi: 10.2136/sssaj1995.03615995005900020029x |
[21] |
Clark AJ, Decker AM, Meisinger JJ, Mulford FR, McIntosh MS. 1995. Hairy vetch kill date effects on soil water and corn production. Agronomy Journal 87(3):579−85 doi: 10.2134/agronj1995.00021962008700030031x |
[22] |
Clark AJ, Meisinger JJ, Decker AM, Mulford FR. 2007. Effects of a grass-selective herbicide in a vetch–rye cover crop system on nitrogen management. Agronomy Journal 99(1):36−42 doi: 10.2134/agronj2005.0361 |
[23] |
Vaughan JD, Evanylo GK. 1998. Corn response to cover crop species, spring desiccation time, and residue management. Agronomy Journal 90(4):536−44 doi: 10.2134/agronj1998.00021962009000040016x |
[24] |
Sainju UM, Singh BP, Whitehead WF, Wang S. 2007. Accumulation and crop uptake of soil mineral nitrogen as influenced by tillage, cover crops, and nitrogen fertilization. Agronomy Journal 99(3):682−91 doi: 10.2134/agronj2006.0177 |
[25] |
Sainju UM, Whitehead WF, Singh BP. 2005. Biculture legume–cereal cover crops for enhanced biomass yield and carbon and nitrogen. Agronomy Journal 97(5):1403−12 doi: 10.2134/agronj2004.0274 |
[26] |
Vyn TJ, Janovicek KJ, Miller MH, Beauchamp EG. 1999. Soil nitrate accumulation and corn response to preceding small-grain fertilization and cover crops. Agronomy Journal 91(1):17−24 doi: 10.2134/agronj1999.00021962009100010004x |
[27] |
Bannerjee G, Sarkar U, Das S, Ghosh I. 2018. Artificial intelligence in agriculture: A literature survey. International Journal of Scientific Research in Computer Science Applications and Management Studies 7(3):1−6 |
[28] |
Eli-Chukwu NC. 2019. Applications of artificial intelligence in agriculture: A review. Engineering, Technology & Applied Science Research, 9(4):4377−83 doi: 10.48084/etasr.2756 |
[29] |
Sharma R. 2021. Artificial Intelligence in Agriculture: A Review. Proceedings of the 2021 5th International Conference on Intelligent Computing and Control Systems (ICICCS), Madurai, India, 6-8 May 2021. USA: IEEE. pp. 937−42. https://doi.org/10.1109/ICICCS51141.2021.9432187 |
[30] |
Prasad AD, Ganasala P, Hernández-Guzmán R, Fathian F. 2022. Remote sensing satellite data and spectral indices: an initial evaluation for the sustainable development of an urban area. Sustainable Water Resources Management 8(1):19 doi: 10.1007/s40899-022-00607-2 |
[31] |
Oliveira LFP, Moreira AP, Silva MF. 2021. Advances in agriculture robotics: A state-of-the-art review and challenges ahead. Robotics 10(2):52 doi: 10.3390/robotics10020052 |
[32] |
Wakchaure M, Patle BK, Mahindrakar AK. 2023. Application of AI Techniques and Robotics in Agriculture: A Review. Artificial Intelligence in the Life Sciences 3:100057 doi: 10.1016/j.ailsci.2023.100057 |
[33] |
Madakam S, Ramaswamy R, Tripathi S. 2015. Internet of Things (IoT): A literature review. Journal of Computer and Communications 3(05):164−73 doi: 10.4236/jcc.2015.35021 |
[34] |
Stetter JR, Penrose WR, Yao S. 2003. Sensors, chemical sensors, electrochemical sensors, and ECS. Journal of The Electrochemical Society 150(2):S11−S16 doi: 10.1149/1.1539051 |
[35] |
Ugoji KU, Isaac OE, Nkoi B, Wofuru-Nyenke OK. 2022. Improving the Operational Output of Marine Vessel Main Engine System through Cost Reduction using Reliability. International Journal of Engineering and Modern Technology (IJEMT) 8(2):36−52 doi: 10.56201/ijemt.v8.no2.2022.pg36.52 |
[36] |
Wofuru-Nyenke OK. 2021a. Leading-edge production engineering technologies. Journal of Newviews in Engineering and Technology (JNET) 3(4):9−17 |
[37] |
Wofuru-Nyenke OK. 2021b. Value stream mapping: A tool for waste reduction. International Journal of Innovative Research and Development 10(6):13−20 doi: 10.24940/ijird/2021/v10/i6/jun21009 |
[38] |
Wofuru-Nyenke OK, Nkoi B, Oparadike FE. 2019. Waste and Cost Reduction for a Water Bottling Process Using Lean Six Sigma. European Journal of Engineering and Technology Research 4(12):71−77 doi: 10.24018/ejeng.2019.4.12.1682 |
[39] |
Farooq MS, Riaz S, Abid A, Abid K, Naeem MA. 2019. A Survey on the Role of IoT in Agriculture for the Implementation of Smart Farming. IEEE Access 7:156237−71 doi: 10.1109/ACCESS.2019.2949703 |
[40] |
Shenoy J, Pingle Y. 2016. IOT in agriculture. Proceedings of the 2016 3rd International Conference on Computing for Sustainable Global Development (INDIACom), New Delhi, India, 2016. India: IEEE. pp. 1456−58. https://ieeexplore.ieee.org/document/7724508 |
[41] |
Baumhardt RL, Wendt CW, Keeling JW. 1992. Chisel tillage, furrow diking, and surface crust effects on infiltration. Soil Science Society of America Journal 56(4):1286−91 doi: 10.2136/sssaj1992.03615995005600040046x |
[42] |
Creamer NG, Plassman B, Bennett MA, Wood RK, Stinner BR, et al. 1995. A method for mechanically killing cover crops to optimize weed suppression. American Journal of Alternative Agriculture 10(4):157−62 doi: 10.1017/S0889189300006408 |
[43] |
Edwards AM. 2015. Cover crop tools: Equipment for conservation farming. Iowa Farmer Today. www.agupdate.com/iowafarmertoday/news/crop/cover-crop-tools-equipment-for-conservation-farming/article_c5f0efd2-c231-5f1e-b653-9bf35025b26d.html (Retrieved January 6, 2023) |
[44] |
Kornecki TS, Kichler CM. 2022. Influence of recurrent rolling/crimping of a cereal rye/crimson clover cover crop on no-till bush bean yield. AgriEngineering 4(4):855−70 doi: 10.3390/agriengineering4040055 |
[45] |
Kornecki TS, Price AJ, Raper RL, Arriaga FJ. 2009. New roller crimper concepts for mechanical termination of cover crops in conservation agriculture. Renewable Agriculture and Food Systems 24(3):165−73 doi: 10.1017/S1742170509002580 |
[46] |
Ashford DL, Reeves DW. 2003. Use of a mechanical roller-crimper as an alternative kill method for cover crops. American Journal of Alternative Agriculture 18(1):37−45 |
[47] |
Khan R, Farooque AA, Brown HCP, Zaman QU, Acharya B, et al. 2021. The role of cover crop types and residue incorporation in improving soil chemical properties. Agronomy 11(10):2091 doi: 10.3390/agronomy11102091 |
[48] |
Stewart RE. 2022. Tillage. Encyclopedia Britannica. www.britannica.com/topic/tillage (Retrieved January 6, 2023) |