首页> 外文会议>2019 26th International Workshop on Electric Drives: Improvement in Efficiency of Electric Drives >IsoAgLibSE Study and Implementation of the Manure Spreader Machine Control System
【24h】

IsoAgLibSE Study and Implementation of the Manure Spreader Machine Control System

机译:IsoAgLibSE撒肥机控制系统的研究与实现

获取原文
获取原文并翻译 | 示例

摘要

The objectives of this research work were to improve the performances of the agriculture manure spreader electrical control system. A modern agricultural vehicle's electronic control units (ECU) communicated based on the ISO 11783 standards. The connection of different machines, implements, different manufacturers into a single bus for the exchange of control commands and sensor data are a challenge for precision agriculture. The principal aim of this paper is to show the chosen way to implement distribution control of this machinery. A prototype was developed and evaluated in Greenmax Manure Spreader at Jeonju in the Republic of Korea. The method consists in controlling the speed of the beaters, conveyor regarding the height of the gate during the manure spreading to the field and measuring the weight-meter by using differential load cells. The gate height control is able to follow the power-take-off (PTO) speed and inductive sensors attached on the gate. It is technically based on an electronic and automatic system, which is the sequence control algorithm of the hydraulic valves for the gate height control, the conveyor speed in regard with the beaters and the spreader velocity into the field. The main electrical control unit (client-side ECU) applications were developed through the IsoAglib-SE (safety edition) library known as ISOBUS-stack. An ARM Cortex M4 microcontroller based hydraulic control system client ECU for manure spreader consisting of a load sensor for weight, belt speed sensor, and the hydraulic belt motor controller was also designed. The hardware porting of the IsoAgLib Safety edition to an embedded board as well as the analysis of network protocol traffic for twenty ECU's connected to an ISO 11783 intelligent monitoring display is also presented. Using this technique, the improving productivities and its allow the communicated with precision farming machinery.
机译:这项研究工作的目的是提高农业撒肥机电气控制系统的性能。现代农业车辆的电子控制单元(ECU)根据ISO 11783标准进行通信。将不同的机器,工具,不同的制造商连接到一条总线中以交换控制命令和传感器数据是精密农业的一个挑战。本文的主要目的是展示实现该机器的分布控制的所选方法。在大韩民国全州市的Greenmax肥料撒播机中开发并评估了原型。该方法包括控制打浆机的速度,在粪肥扩散到田间时考虑浇口高度的传送带以及使用差动式称重传感器测量重量计。闸门高度控制能够跟随动力输出(PTO)速度和闸门上安装的感应传感器。从技术上讲,它是基于电子和自动系统的,该系统是液压阀的顺序控制算法,用于控制闸门高度,与打浆机有关的输送机速度和进入田间的撒布机速度。主电气控制单元(客户端ECU)应用程序是通过称为ISOBUS-stack的IsoAglib-SE(安全版)库开发的。还设计了基于ARM Cortex M4微控制器的撒肥机液压控制系统客户端ECU,它由重量传感器,皮带速度传感器和液压皮带电机控制器组成。还介绍了IsoAgLib安全版到嵌入式板的硬件移植,以及与ISO 11783智能监控显示器相连的20个ECU的网络协议流量分析。使用这种技术,提高了生产率,并使其可以与精密农业机械进行通信。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号