Design and implementation of a nonlinear robust controller based on the disturbance observer for the active spray boom suspension
Abstract
Keywords: robust control, sprayer boom, boom suspension, hydraulic control system, disturbance observer
DOI: 10.25165/j.ijabe.20231601.7007
Citation: Cui L F, Xue X Y, Kong W, Ding S M, Gu W, Le F X. Design and implementation of a nonlinear robust controller based on the disturbance observer for the active spray boom suspension. Int J Agric & Biol Eng, 2023; 16(1): 153–161.
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Carvalho F P. Pesticides, environment, and food safety. Food and Energy Security, 2017; 6(2): 48–60.
Duro J A, Lauk C, Kastner T, Erb K H, Haberl H. Global inequalities in food consumption, cropland demand and land-use efficiency: A decomposition analysis. Global Environmental Change, 2020; 64(7): 23–31.
Jia W, Zhang J, Yan M. Current situation and development trend of boom sprayer. Journal of Chinese Agricultural Mechanization, 2013; 34(4): 19–22. (in Chinese)
He X. Research progress and developmental recommendations on precision spraying technology and equipment in China. Smart Agriculture, 2020; 2(1): 133–146.
Lardoux Y, Sinfort C, Enfält P, Sevila F. Test method for boom suspension influence on spray distribution, Part I: Experimental study of pesticide application under a moving boom. Biosystems Engineering, 2007; 96(1): 29–39.
Lechenet M, Dessaint F P G, Makowski D, Munier-Jolain N. Reducing pesticide use while preserving crop productivity and profitability on arable farms. Nature Plants, 2017; 3(3): 1–6.
Mangus D L, Sharda A, Engelhardt A, Flippo D, Strasser R, Luck J D, et al. Analyzing the nozzle spray fan pattern of an agricultural sprayer using pulse width modulation technology to generate an on-ground coverage map. Transactions of the ASABE, 2017; 60(2): 315–325.
Clijmans L, Swevers J, De Baerdemaeker J, Ramon H. Sprayer boom motion, Part 1: derivation of the mathematical model using experimental system identification theory. Journal of Agricultural Engineering Research, 2000; 76(1): 61–69.
Ramon H, Ba Erdemaeker J D. Spray boom motions and spray distribution: Part 1, Derivation of a mathematical relation. Journal of Agricultural Engineering Research, 1997; 66(1): 23–29.
Jeon H Y, Womac A R, Gunn J. Sprayer boom dynamic effects on application uniformity. Transactions of the ASAE, 2004; 47(3): 647–659.
Herbst A, Osteroth H J, Stendel H. A novel method for testing automatic systems for controlling the spray boom height. Biosystems Engineering, 2018; 174: 115–125.
Anthonis J, Ramon H. Design of an active suspension to suppress the horizontal vibrations of a spray boom. Journal of Sound and Vibration, 2003; 266(3): 573–583.
Anthonis J, Ramon H. SVD H∞ controller design for an active horizontal spray boom suspension. Proc. 7th Mediterranean Conf. on Control and Automation, 1999: pp.90–102.
Anthonis J, Audenaert J, Ramon H. Design optimization for the vertical suspension of a crop sprayer boom. Biosystems Engineering, 2005; 90(2): 153–160.
Frost A R, O'Sullivan J A. Verification and use of a mathematical model of an active twin link boom suspension. Journal of Agricultural Engineering Research, 1988; 40(4): 259–274.
Višacki V V, Sedlar A D, Gil E, Bugarin R M, Turan J J, Janic T V, et al. Effects of sprayer boom height and operating pressure on the spray uniformity and distribution model development. Applied Engineering in Agriculture, 2016; 32(3): 341–346.
Balsari P, Gil E, Marucco P, van de Zande J C, Nuyttens D, Herbst A, Gallart M. Field-crop-sprayer potential drift measured using test bench: Effects of boom height and nozzle type. Biosystems Engineering, 2017; 154: 3–13.
Cui L F, Mao H P, Xue X Y. Hydraulic-drive roll movement control of a spray boom using adaptive robust control strategy. Advances in Mechanical Engineering, 2019; 11(2): 1–14.
Cui L F, Xue X Y, Ding S M, Le F X. Development of a DSP-based electronic control system for the active spray boom suspension. Computers and Electronics in Agriculture, 2019; 166: 1–12.
Deprez K, Anthonis J, Ramon H. System for vertical boom corrections on hilly fields. Journal of Sound and Vibration, 2003; 266(3): 613–624.
Anthonis J, Ramon H. Design of an active suspension to suppress the horizontal vibrations of a spray boom. Journal of Sound and Vibration, 2003; 266(3): 573–583.
Gohari M, Tahmasebi M. Active off-road seat suspension system using intelligent active force control. Journal of Low Frequency Noise, Vibration and Active Control, 2015; 34(4): 475–489.
Lu Z, Li S, Wang X. A tracking control of plant spray boom system with semi-active suspension. In 2019 IEEE 3rd Information Technology, Networking, Electronic and Automation Control Conference, 2019; pp.1755–1759.
Yao J, Deng W. Active disturbance rejection adaptive control of hydraulic servo systems. IEEE Transactions on Industrial Electronics, 2017; 64(10): 8023–8032.
Yao B, Tomizuka M. Adaptive robust control of SISO nonlinear systems in a semi-strict feedback form. Automatica, 1997; 33(5): 893–900.
Yao J, Jiao Z, Ma D. Extended-state-observer-based output feedback nonlinear robust control of hydraulic systems with backstepping. IEEE Transactions on Industrial Electronics, 2014; 61(11): 6285–6293.
Guo Q, Zhang Y, Celler B G, Su S W. Backstepping control of electro-hydraulic system based on extended-state-observer with plant dynamics largely unknown. IEEE Transactions on Industrial Electronics, 2016; 63(11): 6909–6920.
Deng W, Yao J. Extended-state-observer-based adaptive control of electro-hydraulic servomechanisms without velocity measurement. IEEE/ASME Transactions on Mechatronics, 2019; 25(3): 1151–1161.
Tahmasebi M, Mailah M, Gohari M, Abd Rahman R. Vibration suppression of sprayer boom structure using active torque control and iterative learning. Part I: Modeling and control via simulation. Journal of Vibration and Control, 2018; 24(20): 4689–4699.
Tahmasebi M, Gohari M, Mailah M, Abd Rahman R. Vibration suppression of sprayer boom structure using active torque control and iterative learning. Part II: Experimental implementation. Journal of Vibration and Control, 2018; 24(20): 4740–4750.
Xue T, Li W, Du Y F, Mao E R, Wen H J. Adaptive fuzzy sliding mode control of spray boom active suspension for large high-clearance sprayer. Transactions of the CSAE, 2018; 34(21): 47–56.
Shtessel Y B, Shkolnikov I A, Levant A. Smooth second-order sliding modes: Missile guidance application. Automatica, 2007; 43(8): 1470–1476.
Khan I, Bhatti A I, Arshad A, Khan Q. Robustness and performance parameterization of smooth second-order sliding mode control. International Journal of Control, Automation and Systems, 2016; 14(3): 681–690.
Ren B, Zhong Q C, Dai J. Asymptotic reference tracking and disturbance rejection of UDE-based robust control. IEEE Transactions on Industrial Electronics, 2016; 64(4): 3166–3176.
Manring N D, Fales R C. Hydraulic control systems. John Wiley & Sons, 2019; pp146–153.
Xu Z, Ma D, Yao J, Ullah N. Feedback nonlinear robust control for hydraulic system with disturbance compensation. Proceedings of the Institution of Mechanical Engineers, Part I. Journal of Systems and Control Engineering, 2016; 230(9): 978–987.
Ma R, Zhao J. Backstepping design for global stabilization of switched nonlinear systems in lower triangular form under arbitrary switchings. Automatica, 2010; 46(11): 1819–1823.
Tao G. A simple alternative to the Barbalat lemma. IEEE Transactions on Automatic Control, 1997; 42(5): 698–701.
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