基于MSWOA优化的Fuzzy-LADRC大豆株间避苗除草控制系统
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1.广西高校先进制造与自动化技术重点实验室 桂林 541006; 2.桂林理工大学机械与控制工程学院 桂林 541006

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TP273;TN99

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国家自然科学基金(52467022)、广西自然科学基金(2021GXNSFAA220038)项目资助


Soybean inter-plant seedling avoidance and weeding controlbased on Fuzzy-LADRC optimized by MSWOA
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1.Key Laboratory of Advanced Manufacturing and Automation Technology, Guangxi Universities,Guilin 541006, China; 2.School of Mechanical and Control Engineering, Guilin University of Technology,Guilin 541006, China

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    摘要:

    针对田间复杂作业环境下的自动除草控制系统参数整定困难、抗干扰能力差、轨迹跟踪精度低,导致大豆株间机械避苗除草困难、伤苗率高的问题,提出了一种基于多策略改进的鲸鱼优化算法(MSWOA)优化的大豆株间避苗除草控制系统,以控制步进电机角速度实现除草刀精准的避苗除草。首先,对株间避苗除草建立数学模型,并将模糊控制器与线性自抗扰控制器(LADRC)进行结合,提升系统的抗扰动性能。其次,通过MSWOA整定模糊线性自抗扰控制器(Fuzzy-LADRC)的关键参数,通过多个基准函数的对比测试,证明了MSWOA具有更好的寻优性能和稳定性。最后,在株间除草控制系统模型上进行仿真实验分析,以确定最优的控制策略。仿真实验结果表明,改进后的算法控制方法较于其他控制方法收敛速度更快、收敛精度更高,有效提升了系统的控制性能;经过MSWOA优化的Fuzzy-LADRC控制系统相较于传统PID和LADRC受干扰恢复时间分别减少了86.0%、10.9%;通过将MSWOA与其他算法的参数整定进行对比,也验证了改进后算法在该控制系统中优越性。该控制系统在抗干扰能力、响应速度上有着明显的优势,能够适应复杂的田间工作环境,满足精准避苗除草的控制要求。

    Abstract:

    Aiming at the problems of difficult parameter tuning, poor anti-interference ability and low trajectory tracking accuracy of automatic weeding control systems in complex field operating environments, which lead to difficulties in mechanical seedling avoidance and weeding between soybean plants and a high seedling damage rate, a soybean inter-plant seedling avoidance and weeding control system optimized by (multi-strategyimproved whale optimization algorithm,MSWOA) is proposed. This system controls the angular velocity of the stepper motor to achieve precise seedling avoidance and weeding with the weeding knife. Firstly, a mathematical model for inter-plant seedling avoidance and weeding is established, and a fuzzy controller is combined with a linear active disturbance rejection controller (LADRC) to improve the anti-disturbance performance of the system. Secondly, the MSWOA is used to tune the key parameters of the fuzzy-linear active disturbance rejection controller (Fuzzy-LADRC). Comparative tests with benchmark functions prove that MSWOA has better optimization performance and stability. Finally, simulation experiments are conducted on the inter-plant weeding control system model to determine the optimal control method. The simulation results show that the improved algorithm-based control method exhibits faster convergence speed and higher convergence accuracy compared with other control methods, effectively enhancing the system′s control performance. Specifically, the Fuzzy-LADRC control system optimized by MSWOA reduces the disturbance recovery time by 86.0% and 10.9% respectively in contrast to the traditional PID and LADRC control systems. Additionally, by comparing the parameter tuning effects of MSWOA with other algorithms, the superiority of the improved algorithm in this control system is further verified. This control system possesses distinct advantages in antidisturbance capability and response speed, enabling it to adapt to complex field working environments and meet the control requirements for precise seedling avoidance and weeding operations.

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陆孝杰,王文成,余智科,许仕林,郑诗翰.基于MSWOA优化的Fuzzy-LADRC大豆株间避苗除草控制系统[J].电子测量技术,2026,49(13):63-74

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  • 在线发布日期: 2026-09-08
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