中国农业机械化科学研究院集团有限公司 主管

北京卓众出版有限公司 主办

基于多传感器融合与闭环控制的小麦精量播种系统设计与试验

Design and experiment of wheat precision seeding system based on multi-sensor fusion and closed-loop control

  • 摘要: 针对传统小麦播种作业中播种精度低、环境适应性差的问题,设计基于多传感器融合与闭环控制的小麦自动化精量播种控制系统。通过集成毫米波雷达、GNSS定位及机器视觉传感器,结合PID控制算法与气吸式排种机构,实现播种深度与株距的高精度控制。试验结果表明,在机具行进速度8 km/h高速作业下,自动化精量播种控制系统单位面积耗时较传统方法降低33.33%,并且在高湿度与秸秆覆盖等复杂工况下仍保持深度偏差≤0.6 cm、株距变异系数≤12%的性能优势,提升了播种均匀性与作业效率。

     

    Abstract: In response to problems of low seeding accuracy and poor environmental adaptability in traditional wheat seeding operations, an automated wheat precision seeding control system was designed based on a multi-sensor fusion and closed-loop control.By integrating millimeter wave radar, GNSS positioning, and machine vision sensors, combined with PID control algorithm and an air-suction seeding mechanism, high-precision control of seeding depth and plant spacing was achieved.Experimental results showed that at high-speed operation of 8 km/h, system's unit area time consumption was reduced by 33.33% compared to traditional methods.Performance advantages of depth deviation ≤0.6 cm and plant row spacing variation coefficient ≤12% were maintained under complex working conditions such as high humidity and straw coverage, which improved seeding uniformity and operating efficiency.

     

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