Development of Boom Posture Adjustment and Control System for Wide Spray Boom

Author:

Li Jinyang12,Nie Zhenyu12,Chen Yunfei12,Ge Deqiang12,Li Meiqing12

Affiliation:

1. College of Agricultural Engineering, Jiangsu University, Zhenjiang 212013, China

2. Key Laboratory of Modern Agricultural Equipment and Technology, Ministry of Education, Zhenjiang 212013, China

Abstract

To obtain a more consistent droplet distribution and reduce spray drift, it is necessary to keep the entire spray boom parallel to the crop canopy or ground and maintain a certain distance from the spray nozzles to the crop canopy or ground. A high-performance boom active control system was developed for boom trapezoid suspension. The hydraulic system and hardware circuit of the boom control system were designed based on analyzing the configuration of active trapezoid suspension. The mathematical models of valve-controlled hydraulic cylinders and active boom suspensions were developed. Step response and frequency domain response analysis of passive suspension were conducted by Simulink simulations, and then key parameters of the boom suspension and hydraulic system were determined. A feedforward proportion integration differentiation (FPID) control algorithm was proposed to improve the tracking performance. The designed control system was assembled on a 24 m boom with trapezoid suspension. The response characteristic of the active boom control system was tested by the step signal and the sinusoidal signal from a six-degree-of-freedom hydraulic motion platform. Firstly, the tracking performance of the active balance control system for the PID (proportion integration differentiation) and FPID control algorithms was compared for a given 0.2 Hz sine signal. Then, for the ground-following control system, the response characteristics in challenging terrain and tracking performance in less challenging terrain were tested. Field experiment results indicate that the maximum rolling angle of the chassis was 3.896° while the maximum inclination angle of the boom was 0.453°. The results show that the designed boom adjustment and control system can effectively adjust the boom motion in real time and meet the requirements of field operation.

Funder

Key Research and Development Program of Zhenjiang city

Key Research and Development Program of Jiangsu Province

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference21 articles.

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3. Field-crop-sprayer potential drift measured using test bench: Effects of boom height and nozzle type;Balsari;Biosyst. Eng.,2017

4. Design and experiment of electro-hydraulic active suspension for controlling the rolling motion of spray boom;Cui;Int. J. Agric. Biol. Eng.,2019

5. Analysis of dynamic behavior of spray boom under step excitation;Yan;Appl. Sci.,2021

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