组成高效业务模型的算法

IF 0.4 Q4 MATHEMATICS, APPLIED Journal of Applied Mathematics & Informatics Pub Date : 2023-06-16 DOI:10.37791/2687-0649-2023-18-3-5-21
V. Khalin, A. Yurkov, S. Kalayda, G. Chernova
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引用次数: 0

摘要

解决有效的企业管理问题与当前面临的各种目标相关联,言下之意就是需要构建合适的高效企业模型。本文提出了做生意的两个问题,除了它们的共同目标是提高业务效率外,它们的当前目标不同。任何业务的创建或发展都涉及到为其构建特定的业务计划,包括业务发展领域的列表,实施这些领域将提高其效率。本文考虑的第一个问题是分阶段实施各个领域的效率改进,以最终获得其实现的最大效率。第二种方法是考虑到一定的局限性,例如在公司资源有限的情况下,通过部分实施最初清单中的效率改进方向来解决效率提高的问题。为了构建满足问题集的模型,本文证实并提出了一个效率标准,并开发了算法1和算法2,使构建考虑到当前目标差异的高效商业模型成为可能。作者开发了一种多阶段算法1,用于生成单独的区域集,以提高效率,用于解决手头的任务。在算法1的每个阶段实现的算法2是由作者通过使用帕累托最优方法开发的,但通过考虑当前业务任务集的特征和目标来补充。使用这些算法可以建立高效的商业模型,不仅可以获得每个效率改进领域固有的经济效果,而且还可以确保由所开发算法的特性驱动的额外增长。
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Algorithms for composing efficient business models
Solving the problems of effective business management is associated with a variety of current goals facing the same and, by implication, requires the construction of appropriate models of efficient business. The article presents two problems of doing business which, apart from their common target being an improvement of business efficiency, have different current goals. The creation or development of any business involves the construction of a specific business plan for it, including a list of those areas of business development, the implementation of which will increase its efficiency. The first problem considered in the article is related to the phased implementation of all areas of efficiency improvement in order to ultimately obtain the greatest efficiency of their realization. The second one solves the problem of increasing efficiency by partially implementing efficiency improvement directions from the initial list, taking into account certain limitations, for example, in conditions of limited company resources. For the construction of models which would meet the problems set, an efficiency criterion is substantiated and proposed in the article, and Algorithms 1 and 2 are developed which made it possible to build the efficient business models which take into account the difference in its current goals. The authors have developed a multi-stage Algorithm 1 for the generation of individual sets of areas for improvement of efficiency to be used to solve the tasks at hand. Algorithm 2 implemented at each stage of Algorithm 1 has been developed by the authors by using the Pareto optimality method but supplemented by taking into account the features and objectives of the current tasks set for the business. The use of such algorithms has made it possible to build efficient business models enabling not only to obtain an economic effect inherent to each efficiency improvement area, but also to ensure additional growth thereof driven by the properties of the developed algorithms.
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