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Design of a control system for a mini-automatic transplanting machine of plug seedling

机译:塞子幼苗迷你自动移植机的控制系统设计

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In China, vegetable production system has been dominated by small and medium-sized agricultural facilities over the open-field cultivational practices. Low ceiling height and narrow width are dimensional attributes associated with most of these facilities. Due to these dimensional parametric constraints, the application of available field transplanting machinery in such facilities is a problematic subject which leads the vegetable growers towards manual transplanting. In order to meet the needs of small and medium-sized agricultural facilities for automatic vegetable transplanting, a smaller size wireless remote-controlled automatic transplanting machine was designed, which can transplant seedlings quickly in the greenhouse and by considering the stainability of environment electric power was adopted to drive all the mechanisms. In the process of agricultural production, the control system of agricultural machinery plays an important role in the degree of automation of mechanical equipment. Therefore, this paper focuses on the design of the control system of the newly premeditated automatic transplanting machine. The hardware of the control system is separated into three portions: the sensors for signal acquisition, the programmable controller for signal processing, and the driving elements for specific actions. PLC (Programmable logic controller) is adopted as the central control system of the transplanting machines which controls the automatic movement of seedlings tray carrier, seedlings extraction and feeding, and seedlings transmission to the planting units automatically. In order to control the overall movement of seedling transplanting machine, a microcontroller is adapted to control the hub and steering motor. The key driving elements of the control system are solenoid valves and electric motors which controls the action of pneumatic air cylinders and linear movement of different parts of machine respectively. The overall software design of the control system is accomplished, together with coordinated motion between components, control flow design and control program writing. In order to test the motion coordination of each component and the rationality of the control system of the Mini-Automatic transplanting machine, different planting frequencies were set to record the success rate of seedling collection and transplanting. The results of the trials exhibited that at the planting frequencies of 40, 50 and 60 plants/row/min the overall success rates were noted 98.6%, 97.2% and 96.5% respectively. It shows that the key parts of the transplanting machine are synchronized in motion, accurate in positioning, reasonable in assembling the control system and stable in operation, which meets the requirements of transplanting seedlings in the dry land.
机译:在中国,蔬菜生产制度一直在开放式培养实践上由中小型农业设施主导。低天花板高度和窄宽度是与大多数这些设施相关的尺寸属性。由于这些尺寸参数约束,在这些设施中的可用场移植机械的应用是一个有问题的主题,其导致植物种植者朝向手动移植。为了满足中小型农业设施的自动蔬菜移植的需求,设计了一种较小尺寸的无线遥控自动移植机,可以在温室中快速移植幼苗,并考虑环境电力的可照性是采用驱动所有机制。在农业生产过程中,农业机械控制系统在机械设备自动化程度起着重要作用。因此,本文重点介绍了新型预先预防的自动移植机的控制系统的设计。控制系统的硬件分为三个部分:用于信号采集的传感器,用于信号处理的可编程控制器,以及用于特定动作的驱动元件。采用PLC(可编程逻辑控制器)作为移植机的中央控制系统,其控制幼苗托盘载体,幼苗提取和饲养的自动移动,以及自动向种植单位传递幼苗。为了控制幼苗移植机的整体运动,微控制器适于控制轮毂和转向马达。控制系统的关键驱动元件是电磁阀和电动机,其分别控制气动气缸的动作和不同部件的机器线性运动。控制系统的整体软件设计是完成的,以及组件之间的协调运动,控制流程设计和控制程序写入。为了测试每个组分的运动协调和迷你自动移植机的控制系统的合理性,设定不同的种植频率以记录幼苗收集和移植的成功率。试验结果表明,在40,50和60株植物/行/分钟的种植频率下,总成功率分别注意到98.6%,97.2%和96.5%。它表明,移植机的关键部件在运动中同步,准确地定位,合理地组装控制系统并在操作中稳定,这满足了干旱地区移植幼苗的要求。

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