大蒜四行播种机播种监测系统的设计与试验

    Design and testing of a seeding monitoring system for four-row garlic planter

    • 摘要:
      目的 基于江苏省大蒜种植农艺要求,设计研发一种四行大蒜播种机的实时播种监测系统,融合多种传感器技术,以实现对大蒜播种过程的实时监测,为后续机械或人工补种提供决策依据。
      方法 以4DS-4四行大蒜播种机为基础,根据实际需求,确定监测系统的设计和选型,包括播种机作业速度监测模块、播种监测模块、显示模块、报警模块以及数据存储模块等;监测系统以STM32F103单片机为主控制器,应用多种传感器技术,根据播种机作业速度和漏种监测的原理,编写播种系统监测程序,实现大蒜播种机作业信息的采集;最后对监测系统进行台架试验完成对监测系统的调试,并利用土槽试验进行测试和验证,检测播种监测系统在实际工作状态下的稳定性和准确性。
      结果 台架试验表明,当播种机的播种速度为1 km/h时,已播监测准确度可达96.7%,漏播监测准确度可达97.4%,满足了播种监测系统性能指标需求;土槽试验结果表明,在不同的作业速度下,监测系统测量的播种量相对误差为2.4%~5.2%、平均相对误差为3.86%,漏播量相对误差为2.1%~5.9%、平均相对误差为4.06%。
      结论 该播种监测系统能在长时间的持续工作过程中保证监测结果的准确性,满足了大蒜播种机监测系统的要求,能够实现播种过程的实时监测。

       

      Abstract:
      Objective Based on the agronomic requirements of garlic planting in Jiangsu Province, this study designs and develops a real-time seeding monitoring system for a four-row garlic planter, which integrates a variety of sensor technologies. The study aims to realize real-time monitoring of the garlic sowing process, and provide a decision-making basis for the subsequent mechanical or manual replanting.
      Method Based on a 4DS-4 four-row planter, the design and selection of the monitoring system were determined according to the actual requirements. The system included the planter operating speed monitoring module, seeding monitoring module, display module, alarm module and data storage module, etc. The monitoring system was designed with the STM32F103 microcontroller as the main controller, and a variety of sensor technologies were used to design the monitoring principle of speed and seeding. The system monitoring program was written to collect the operation information of the garlic seeder based on the working speed of the seeder and the principle of missed seed monitoring. Finally, the bench test was performed for the monitoring system to complete the commissioning of the monitoring system, and the soil trench test was conducted for further test and validation of the stability and accuracy of the seeding monitoring system in the actual working condition.
      Result The bench test showed that when the seeding speed of the planter was 1 km/h, the accuracy of the seeding monitoring reached 96.7%, and the accuracy of the missed seeding monitoring reached 97.4%, which met the performance indicators of the seeding monitoring system. The soil trench test results showed that, at different operating speeds, the relative error of the seeded quantity for the measurement by the seeding monitoring system was 2.4%−5.2%, with an average relative error of 3.86%, and the relative error of missed seeding was 2.1%−7.3%, with an average relative error of 4.66%.
      Conclusion This seeding monitoring system can ensure the accuracy of the measurement results during a long period of continuous work, which meets the requirements of the monitoring system for garlic planter and can realize the real-time monitoring of the sowing process.

       

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