APPLICATION OF DIGITAL TECHNOLOGIES IN AGRICULTURAL PRODUCTION

Olena Solona
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引用次数: 1

Abstract

The key group of innovations from the standpoint of sustainable development are technological innovations, which are represented by innovations in technology or (innovation-process). They are the basis of meeting the growing needs of society, increasing production efficiency, changing models and generations of equipment and technological methods of production. Modern agriculture cannot be imagined without the use of IT technologies. Today, the robotization of agriculture is inevitable. Agriculture will benefit from the revolution in the field of information and communication technologies, which is happening in all areas: robotics, sensory perception, more intelligent decision support systems, data analytics, etc. For the geospatial industry, fieldwork robotics is a particularly important task. It is a huge operation to control robots - on wheels or in the air - using navigation systems and sensors, to store all data and integrate them into relevant applications. Technological renewal of the agrarian sector of the economy is usually based on the use of high-tech systems of management, monitoring, control, management and automation of production processes, with the use of highly integrated SMART systems and the involvement of artificial intelligence technologies. Taking into account the significant volumes of cargo processing, agricultural enterprises, in particular in warehouses, a promising direction and reserve for ensuring high labor productivity is the use of robotic manipulators, and research is devoted to increasing their functionality and maneuverability, including through the use of intelligent control systems and optimization of the structure of executive mechanisms. relevant and will have practical value. In the article substantiates the kinematic parameters and dynamic characteristics of the angular manipulator.
数字技术在农业生产中的应用
从可持续发展的角度来看,创新的关键群体是技术创新,它以技术创新或(创新-过程)创新为代表。它们是满足日益增长的社会需求、提高生产效率、改变生产模式和一代又一代设备和技术方法的基础。现代农业离不开信息技术的应用。今天,农业的机器人化是不可避免的。农业将受益于信息和通信技术领域的革命,这在所有领域都在发生:机器人、感官知觉、更智能的决策支持系统、数据分析等。对于地理空间行业来说,野外工作机器人是一项特别重要的任务。使用导航系统和传感器来控制机器人——无论是在轮子上还是在空中——存储所有数据并将其集成到相关应用程序中,这是一项浩大的工程。农业经济部门的技术更新通常基于使用管理、监测、控制、管理和生产过程自动化的高科技系统,并使用高度集成的智能系统和人工智能技术的参与。考虑到大量的货物处理,农业企业,特别是仓库,确保高劳动生产率的一个有前途的方向和储备是使用机器人机械手,研究致力于提高其功能和可操作性,包括通过使用智能控制系统和优化执行机制的结构。相关的,将有实用价值。给出了角度机械手的运动学参数和动力学特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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