Design and test of laser-controlled paddy field levelling-beater
Abstract
Keywords: laser control, levelling, beating, paddy field, flatness
DOI: 10.25165/j.ijabe.20201301.4989
Citation: Zhou H, Hu L, Luo X W, Tang L M, Du P, Mao T, et al. Design and test of laser-controlled paddy field levelling-beater. Int J Agric & Biol Eng, 2020; 13(1): 57–65.
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Agarwal M C, Goel A C. Effect of field leveling quality on irrigation efficiency and crop yield. Agric. Water Manage, 1981; 4(1-3): 89–97.
Aryal J P, Mehrotra M B, Jat M L, Sidhu H S. Impacts of laser land leveling in rice-wheat systems of the north–western indo-gangetic plains of India. Food Security, 2015; 7(3): 725–738.
Finney C. The benefits of land leveling on irrigation schemes in Turkey and Sindh Province, Pakistan. ICID J. 1996; 45(1): 1523–1539.
Li F X, Xu D, Li Y N. Research on the land levelling design and suitability of laser control technique in land levelling. China Rural Water and Hydropower, 2002; 2: 27–29. (in Chinese with)
Jat M L, Gathala M K, Ladha J K, Saharawat Y S, Jat A S, Vipin Kumar, et al. Evaluation of precision land leveling and double zero-till systems in the rice-wheat rotation: water use, productivity, profitability and soil physical properties. Soil Tillage Res., 2009; 105(1): 112–121
Towa J J, Guo X P. Effects of irrigation and weed-control methods on growth of weed and rice. Int J Agric & Biol Eng, 2014; 7(5): 22–33.
Luo X W, Zhao Z X, Li Q. Study on leveling control for a paddy laser leveler. 2007 ASAE Annual Meeting Presentation. USA, July, 2007. Paper No. 071078.
Li Q, Luo X W, Wang M H, Zhao Z X, Xu Y J, Ou Y G, et al. Design of a laser land leveler for paddy field. Transactions of the CSAE, 2007; 23(4): 88–93. (in Chinese)
Zhao Z X, Luo X W, Li Q, Chen B, Tian X, Hu L, et al. Leveling control system of laser-controlled land leveler for paddy field based on MEMS inertial sensor fusion. Transactions of the CSAE, 2008; 24(6): 119–124. (in Chinese)
Tang L M, Hu L, Zang Y, Luo X W, Zhou H, Zhao R M, et al. Method and experiment for height measurement of scraper with water surface as benchmark in paddy field. Computers and Electronics in Agriculture, 2018; 152: 198–205.
Hu L, Yang W W, He J, Zhou H, Zhang Z G, Luo X W, et al. Roll angle estimation using low cost MEMS sensors for paddy field machine. Computers and Electronics in Agriculture, 2019; 158: 183–188.
Chen J M, Zhao Z X, Chen J Q, Yu L, Ye J. Design of nonlinear leveling control system for paddy land leveler. Transactions of the CSAM, 2014; 45(7): 79–84. (in Chinese)
Chen J Q, Zhao Z X, Shi L, Ke X R, Wu Z W, Liu X. Dynamic modeling of leveling system of paddy field laser leveler. Transactions of the CSAE, 2015; 31(7): 18–23. (in Chinese)
Hu L, Lin C X, Luo X W, Yang W W, Xu Y, Zhou H, et al. Design and experiment on auto leveling control system of agricultural implements. Transactions of the CSAE, 2015; 31(8): 15–20. (in Chinese)
Zhao Z X, Tu H, Feng R, Song J W. Dynamic modeling and verification of paddy leveler based on rigid flexible coupling multibody systems. Transactions of the CSAE, 2017; 33(19): 27–33. (in Chinese)
Hu L, Luo X W, Lin C X, Yang W W, Xu Y, Li Q. Development of 1PJ-4.0 laser leveler installed on a wheeled tractor for paddy field. Transactions of the CSAM, 2014; 45(4): 146–151. (in Chinese)
Xu Y, Hu L, Zhou H, Yang W W, Lin C X, Ke X R. Finite element analysis and optimization of the swing type laser leveler for paddy field. Journal of Chinese Agricultural Mechanization, 2015; 36(4): 1–4. (in Chinese)
Onodera T, Tsuruta M, Osari H. Leveling rice paddies using a laser land leveler when tilling. Trans. of JSIDRE, 2002; 6: 1–8. (in Japanese)
Di W M, Sun Y H, Zhao S Q, Xiong J D. Design and test of automatic leveling system of plough rotary machine. Transactions of the CSAE, 2018; 34(17): 25–31. (in Chinese)
Liu L. Studies on the leveling system of tillage implement based on tractor three-point suspension system. Changsha: Hunan Agricultural University, 2014. (in Chinese)
Wang Y X. Research and development of the hydraulic horizontal auto-control system of the rotary cultivator unit. Hangzhou: Zhejiang Sci-Tech University, 2015. (in Chinese)
Zhang T C. Design of horizontal control system of rotary tiller based on fuzzy PID. Hangzhou: Zhejiang Sci-Tech University, 2016. (in Chinese)
Yang Q F. Design of laser grouting flat system. Kunming: Kunming University of Science and Technology, 2018. (in Chinese)
Yu Z C, Wang X. The research and design of automatic leveling device of tillage equipment in paddy field. Journal of Agricultural Mechanization Research, 2017; 8: 175–179. (in Chinese)
Kovacev I, Kosutic S, Jejcic V, Copec K, Gospodaric Z, Pliestic S. Impact of electronic-hydraulic hitch control on rational exploitation of tractor in ploughing. Strojarstvo, 2008; 50(5): 287–294.
Lee J, Yamazaki M, Oida A, Nakashima H, Shimizu H. Electro-hydraulic tillage depth control system for rotary implements mounted on agricultural tractor Design and response experiments of control system. Journal of Terramechanics, 1998; 35(4): 229–238.
Lee J, Yamazaki M, Oida A, Nakashima H, Shimizu H. Field performance of proposed foresight tillage depth control system for rotary implements mounted on an agricultural tractor. Journal of Terramechanics, 2000; 37(2): 99–111.
Du Q L, Xiong X C, Wei J H. Design and experiment on the control system of electro-hydraulic plow depth of tractor hydraulic hitch mechanism. Transactions of the CSAM, 2008; 39(8): 62–65. (in Chinese)
Li M J. The design and experiment of flatting device of stir-slurry machine in paddy field. Heilongjiang Bayi Agricultural University, 2014. (in Chinese)
Xu C L, Zhang C L, Li L H, Li M J. Optimization of working parameters for puddling and flatting machine in paddy field. Int J Agric & Biol Eng, 2016; 9(3): 88–96.
Wan S, Chen Z L, Zhan P C, Lao S F, Lu M Q, Xia J F, et al. Designing the levelling system of paddy field rotary cultivator based on tilt angle sensor control technology. Journal of Huazhong Agricultural University, 2016; 35(4): 129–135. (in Chinese)
Li Q. Study on laser leveler for paddy field. Guangzhou: South China Agricultural University, 2012. (in Chinese)
Zhou H, Hu L, Luo X W, Zhao R M, Xu Y, Yang W W. Design and experiment on auto leveling system of rotary tiller. Transactions of the CSAM, 2016; S1: 117–123. (in Chinese)
Li Y N, Xu D, Li F X, Du P, Li W C. Application and evaluation of laser-controlled land leveling technology. Transactions of the CSAE, 1999; 15(2): 85–90. (in Chinese)
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