The Digital Twin for Agricultural Machinery Restoration Processes

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY
Yuriy G. Sledkov, L. Khoroshko, P. Kuznetsov, A. Butko
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引用次数: 3

Abstract

Introduction. Agricultural machinery provides the required level of mechanization. Sand abrasive, dirt, and open-air operations considerably accelerate the wear of mechanisms. An improper work plan and lack of complete information about the state of specific equipment units increase the time for repair and maintenance operations. The purpose of the study is to develop a digital twin model for the repair and restoration system of enterprises. The model will reduce material costs and allow for the best solutions to organize the work. Materials and Methods. The model is developed on the basis of simulation modeling. The authors used the approach based on discrete-event modeling with the logical-mathematical apparatus for describing events occurring in a real object. Results. Information support is formed taking into account the parameters of the production systems of repair enterprises and a mathematical model, which is a digital twin of the production system. This approach made it possible to automate the development of optimal plans for organizing repair work by repair enterprises, taking into account their interrelationships. Discussion and Conclusion. The digital twin for the generalized production system of repair organizations allows developing options for the resource allocation and verifying them promptly to choose the best options through accumulating information about the most successful solutions. This will reduce the time for repair and restoration works, improve their quality and save labor.
农业机械修复过程的数字孪生
介绍。农业机械提供了所需的机械化水平。砂粒、磨料、污垢和露天作业大大加速了机械装置的磨损。不适当的工作计划和缺乏关于特定设备单元状态的完整信息会增加维修和维护操作的时间。本研究的目的是建立企业维修与修复系统的数字孪生模型。该模型将降低材料成本,并允许最佳解决方案来组织工作。材料与方法。该模型是在仿真建模的基础上建立的。作者使用基于离散事件建模的方法和逻辑数学装置来描述发生在真实物体中的事件。考虑到维修企业生产系统的参数和生产系统的数字孪生数学模型,形成了信息支持。这种方法使得考虑到维修企业之间的相互关系,自动制定组织维修工作的最佳计划成为可能。讨论与结论。维修组织广义生产系统的数字孪生允许开发资源分配方案,并通过积累有关最成功解决方案的信息及时进行验证,以选择最佳方案。这将减少维修和修复工作的时间,提高其质量,节省劳动力。
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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
29
审稿时长
12 weeks
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