Mathematical Modeling of the Processes of Executing Packages of Tasks in Conveyor Systems with Intermediate Buffers of Limited Size

Kirill Krotov
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Abstract

Modern methods of process planning in conveyor systems with buffers of a certain size between processing devices allow optimizing schedules for single tasks or fixed task packages with a limited number of them and a limited number of devices. The use of mathematical models of the processes of performing single tasks (task packages) used by these methods in optimizing the composition of packages and schedules for their execution in systems with an arbitrary number of packages and devices is impossible. At the same time, mathematical models of the processes of executing task packages in conveyor systems in the presence of buffers of limited sizes between devices are the basis for the development of methods for optimizing their (package) compositions and schedules for the implementation of actions with them on the devices of conveyor systems. In this regard, the article develops mathematical models of multi-stage processes of performing an arbitrary number of task packages in conveyor systems in the presence of intermediate buffers of limited sizes for two and three devices, as well as for an arbitrary number of devices. The use of these models makes it possible to determine the time points of the start of the execution of task packages on the devices of conveyor systems, taking into account the limited size of intermediate buffers, as well as the duration of time intervals for the use of these resources and the efficiency of their use over time. An algorithm has also been developed for mathematical modeling of the processes of executing task packages in conveyor systems in the presence of intermediate buffers of limited size, which calculates the time characteristics of these processes based on a given order of implementation of actions with task packages on the devices of conveyor systems. An application has been developed that implements synthesized mathematical models of the processes of executing task packages in conveyor systems with intermediate buffers of limited sizes and an appropriate method for modeling these processes. Versatile testing of the developed application has shown that the obtained mathematical models and the modeling method adequately describe the course of multi-stage processes of task packages in pipeline systems, set using different values of their (processes) parameters.
具有有限尺寸中间缓冲器的输送系统中任务包执行过程的数学建模
在加工设备之间具有一定大小缓冲的输送系统中,现代工艺规划方法允许优化单个任务或固定任务包的时间表,其中具有有限数量的任务和有限数量的设备。这些方法使用数学模型来执行单个任务(任务包)的过程,以优化包的组成和在具有任意数量的包和设备的系统中执行的时间表,这是不可能的。同时,在设备之间存在有限大小缓冲区的情况下,在输送系统中执行任务包的过程的数学模型是开发优化其(包)组成和在输送系统设备上执行动作的时间表的方法的基础。在这方面,文章开发了在传送带系统中执行任意数量的任务包的多阶段过程的数学模型,其中存在两个和三个设备的有限尺寸的中间缓冲区,以及任意数量的设备。使用这些模型可以确定在输送系统设备上开始执行任务包的时间点,同时考虑到中间缓冲区的有限大小,以及使用这些资源的时间间隔的持续时间及其随时间的使用效率。还开发了一种算法,用于在存在有限大小的中间缓冲区的输送系统中执行任务包的过程的数学建模,该算法基于在输送系统设备上使用任务包执行动作的给定顺序计算这些过程的时间特征。开发了一种应用程序,该应用程序实现了在具有有限尺寸的中间缓冲区的输送系统中执行任务包的过程的综合数学模型,并为这些过程建模提供了适当的方法。开发的应用程序的通用测试表明,所获得的数学模型和建模方法充分地描述了管道系统中任务包的多阶段过程,这些过程使用不同的过程参数值进行设置。
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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