Abstract

The experience of assessing the efficiency of quality management systems for the organizational structures, agricultural planning, and common approaches to solving this issue are currently insufficient. As a result, there was a contradiction between practice that recognizes the objective need for a periodic assessment of the efficiency of the quality management system in the organizational structures of agricultural companies and the state of the scientific and methodological base for resolving these issues. The need has arisen for creating an automated system for choosing rational organizational and technological solutions based on modern design technologies, planning and forming a new element base for economic development of a system-targeted approach to assessing the level of stability of net assets based on IPSAS. On the basis of the well-known BIM technology for information modeling of objects, a bank (information base) of standard implementation plans (IP) is created, from which the most rational IP for this type of work is selected using the criteria research method based on modified genetic algorithms (GA). Issues of choosing a method of managing agricultural planning by the totality of implementation plans are considered. An analysis of the selection of the main methods of production of works that are increasingly used in the practice of constructing agricultural facilities will ensure the formation of new approaches to the logistics of transport support in agriculture.

Highlights

  • The problems of accounting and reporting net assets and the procedure for their formation, taking into account the specifics of the economic and legal status of property, are some of the most controversial when accounting for agricultural sector enterprises

  • The basic principle of a 3D printer is to use additive technology, i.e. the layered construction of a building structure based on a digital model using robotic mechanisms. 3D printing is of great interest in the construction industry due to the insufficient automation of the production of building structures and materials [15,16,17,18,19], as well as technological processes associated directly with the construction site

  • The efficiency of construction production, its final results are largely determined by the degree of organization of the construction processes, which in turn depends on the quality of solving the design problems of the organization of construction and work and, first of all, the formation of models for the construction of objects and choice based on the most rational organizational and technological solutions (OTS)

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Summary

Introduction

The problems of accounting and reporting net assets and the procedure for their formation, taking into account the specifics of the economic and legal status of property, are some of the most controversial when accounting for agricultural sector enterprises. Solving the problems of organizational and technological design of construction (both with or without using a computer) is fraught with a number of difficulties that are caused by insufficient consideration of the existing methods of organization and technology of construction production, real conditions of work, and the capabilities of modern computer technology. As part of the automation of the choice of a method for performing construction work on the basis of totality of implementation plans (IP), a multi-criteria optimization model based on genetic algorithms was developed to select the most suitable analogue of a standard IP. Implementation plans (IP), which are part of the Method Statement, are usually developed for complex types of work and work performed by new methods They are the basis of the scientific organization of construction processes and are developed in accordance with existing Russian standards (SNiP, GOST, ENiR, instructions). In the production of stone work with the help of masonry robots, the work of which is carried out on the basis of the information model of the building by selecting the necessary IP

Efficiency criteria and restrictions
Results and Discussions
Conclusions

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