首页> 外文会议>IEEE/ASME International Conference on Advanced Intelligent Mechatronics >Tele-operative Task Environment Interface with Identification of Greenhouse Watermelon Under Natural Light
【24h】

Tele-operative Task Environment Interface with Identification of Greenhouse Watermelon Under Natural Light

机译:无需任务环境界面,自然光线识别温室西瓜

获取原文

摘要

Computer vision technology has been utilized as one of the most powerful tools to automate various agricultural operations. Though it has demonstrated successful results in various applications, the current status of technology is still far behind the human's capability typically for the unstructured and variable task environment. In this paper, a man-machine interactive hybrid decision-making system which utilized a concept of tele-operation was proposed to overcome limitations of computer image processing and cognitive capability. Tasks of greenhouse watermelon cultivation such as pruning, watering, pesticide application, and harvest require identification of target object. Identifying watermelons including position data from the field image is very difficult because of the ambiguity among stems, leaves, shades, and fruits, especially when watermelon is covered partly by leaves or stems. Watermelon identification from the cultivation field image transmitted by wireless was selected to realize the proposed concept. The system was designed such that operator (farmer), computer, and machinery share their roles utilizing their maximum merits to accomplish given tasks successfully. And the developed system was composed of the image monitoring and task control module, wireless remote image acquisition and data transmission module, and man-machine interface module. Once task was selected from the task control and monitoring module, the analog signal of the color image of the field was captured and transmitted to the host computer using R.F. module by wireless. Operator communicated with computer through touch screen interface. And then a sequence of algorithms to identify the location and size of the watermelon was performed based on the local image processing. And the system showed practical and feasible way of automation for the volatile bio-production process.
机译:计算机视觉技术已被用作自动化各种农业运营的最强大的工具之一。虽然它已经证明了各种应用中的成功结果,但目前的技术状态仍然远远落后于人类的能力,通常用于非结构化和可变任务环境。在本文中,提出了一种利用远程操作概念的人机交互式混合决策系统,以克服计算机图像处理和认知能力的限制。温室西瓜培养的任务如修剪,浇水,农药应用和收获需要识别目标物体。鉴定包括来自现场图像的位置数据的西瓜是非常困难的,因为茎,叶,色调和水果之间的模糊性,特别是当西瓜部分被叶子或茎部分覆盖时。选择由无线传输的培养场图像的西瓜识别来实现所提出的概念。该系统被设计成使得运营商(农民),计算机和机器共享其角色,利用其最大优点来成功完成给定任务。开发系统由图像监控和任务控制模块,无线远程图像采集和数据传输模块以及人机接口模块组成。从任务控制和监视模块中选择任务后,将捕获该字段的彩色图像的模拟信号并使用R.F发送到主计算机。模块通过无线。操作员通过触摸屏界面与计算机通信。然后基于局部图像处理执行以识别西瓜的位置和尺寸的一系列算法。而该系统对挥发性生物生产过程的自动化方式表现出实用和可行的方式。

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