MODELING OF THE FLOW ADAPTIVE SYSTEM FOR CONTROLLING THE SOIL TILLAGE

Mykhailo Ivaniuta
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Abstract

It is well known that one of the significant disadvantages of the development of modern technological processes is the use of aspects of thinking associated with the use of already used design positions. From a practical point of view, there is no single optimal solution for tillage in agriculture. The methodology for solving complex, multipolar problems of quality and efficiency of technology must take into account a significant number of factors and be presented in an accessible form for the response of the working bodies of tillage machines. Precision tillage has great potential. The result of tillage operations can be improved depending on the optimal solution of construction working bodies and technological parameters of cultivating, which, in addition, can be adapted to the tillage technology depending on the local agro-climatic conditions. The article presents the results of the synthesis of the system of adaptive control of soil cultivation by creating a complex technological system with modeling of the structural-matrix schemes and on-stream technological influences of working bodies of machines and external agro-climatic conditions on the agrophysical state of the soil. The research methods are methods of analysis of structural schemes of technological process control systems; system-analog modeling of tillage control systems; structural analysis and synthesis of technological changes in agrophysical indicators of soil tillage. The main results are the structural diagram of the on-stream adaptive control system of the tillage unit for the requirements of precise agriculture; matrix diagram of the imaging and generalized system of equations of on-stream adaptive control of working bodies of tillage machines; system-analog model of the machine-tractor unit with the adaptive control system of working bodies.
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控制土壤耕作的流动自适应系统建模
众所周知,现代技术进程发展的一个重要缺点是使用与已经使用的设计位置相关的思维方面。从实际的角度来看,农业耕作没有单一的最佳解决方案。解决技术质量和效率的复杂多极问题的方法必须考虑到许多因素,并以易于理解的形式提出,以供耕作机械工作机构作出反应。精准耕作潜力巨大。根据施工作业主体和栽培技术参数的最优解,提高耕作作业效果,并根据当地农业气候条件与耕作技术相适应。本文介绍了通过创建一个复杂的技术系统,对结构-矩阵方案进行建模,并对机器工作体和外部农业气候条件对土壤农业物理状态的流上技术影响进行建模,从而综合土壤栽培自适应控制系统的结果。研究方法为工艺过程控制系统结构方案分析方法;耕作控制系统的系统模拟建模土壤耕作农业物理指标技术变化的结构分析与综合。研究的主要成果是:给出了符合精准农业要求的耕作单元流上自适应控制系统结构图;耕作机械工作体流态自适应控制的成像与广义方程组矩阵图机拖拉机机组的系统模拟模型及工作体的自适应控制系统。
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