高级检索+

基于行星轮系的玉米穴施肥自动对种系统设计与试验

Design of Maize Automatic Hole Fertilization System Targeting at Seed Based on Planetary Gear Train

  • 摘要: 玉米播种同步穴施肥是提高肥料利用率的有效手段,本文针对现有穴施肥装置用于精量播种作业时种肥相对位置无法实时检测和控制的难题,设计了一种玉米自动对种穴施肥装置。提出了基于行星轮系的自动对种方法,在确保种距和肥距相等的前提下实时调节排种盘和排肥盘相位差,实现播种作业过程中种肥相对位置的实时调控。通过分析机具前进速度、排种器排肥器间距、株距等对落种落肥位置的影响,得到种肥相对位置计算方法,设计了穴施肥自动对种控制算法。搭建了基于STM32F103的控制系统,并完成硬件系统和软件系统的设计,可完成落种落肥等信息的检测和种肥相对位置的实时调控。验证试验结果表明,当前进速度分别为3、4、5、6 km/h时,种肥纵向平均间距分别为8.6、6.1、11.7、8.5 mm,满足对种穴施肥需求。

     

    Abstract: Maize hole fertilization synchronizing with seeding is an effective means to improve fertilizer utilization efficiency. To solve the problem that the relative position of seed and fertilizer could not be detected and controlled in real time with the present hole fertilization device, a maize automatic hole fertilization device was designed, and an automatic targeting at seed method based on planetary gear train was put forward. On the premise of the same seed distance and fertilizer distance, the phase difference between seed trays and fertilizer trays was adjusted in real time to realize the real-time control of the relative position of seeds and fertilizers during seeding. The influence of the advancing speed, the distance between the seed metering device and fertilizer discharging device and the spacing in the rows on the position of seed and fertilizer dropping was analyzed, the calculation method of the relative position of seed and fertilizer was obtained, and the automatic seed control algorithm of hole fertilization was designed. A control system based on STM32F103 was built, and the hardware system and software system were designed, seed and fertilizer dropping information was detected and controlled in real time. The experiment result showed that the average distance of seed and fertilizer was 8.6 mm, 6.1 mm, 11.7 mm and 8.5 mm, while the forward speed was 3 km/h, 4 km/h, 5 km/h and 6 km/h, respectively, which met the requirements of seed hole fertilization.

     

/

返回文章
返回