Intellectualization of monitoring and regulation of the technological processes implementation in railway construction

A. Polyanskiy
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引用次数: 1

Abstract

The article presents abstract theorems and practical options for monitoring and regulating the technological process implementation of building a railway track object using artificial intelligence methods and tools. Railway construction as a complex dynamic system requires certain resources for its maintenance. Under these conditions, effective control over the construction work technology is of decisive importance. This can be achieved by improving the existing engineering and technical support system for railway construction through the introduction of an engineering and intellectual support subsystem for technological processes for railway facilities construction. One of the tasks of the subsystem is the effective use of automation tools with artificial intelligence elements. The deviations occurrence from planned requirements during construction work, due to the stochastic nature of railway construction, leads to violations of technology, an increase in labor costs, prime cost, an increase in duration, and as a result, a deterioration in the operational railway facility characteristics. To avoid such a development of events, a prompt review of the adopted technological solutions is necessary. To this end, within the scope of the methodology formation for engineering and intellectual support of railway construction technological processes, a system for monitoring and regulating work production has been developed. Intellectualization of monitoring the technological process implementation consists of the use of an expert system at the evaluation stage, built on a probabilistic inference model. The main purpose of the system is to process the monitoring results of the work progress during the railway track facility construction. The data obtained at the evaluation stage serve as the basis for predicting the implementation of the technological process. The essence of the forecast is based on the solution of general methodological issues of applying Markov processes. The regulation of the process implementation is based on the monitoring results. Adjusting the technological process to changing conditions of work provides flexibility in railway track facilities construction. This is achieved through rapid decision-making using the capabilities of an artificial neural network and subsequent adjustment of the work progress. Based on the theoretical study results, the article presents the practical aspects of monitoring and regulating the production of works in railway construction using intelligent technologies by the example of the construction of a flooded embankment section of a railway subgrade. The results presented in the article were obtained in the course of dissertation research carried out by the author.
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铁路建设工艺过程监控智能化的实施
本文提出了利用人工智能方法和工具监测和调节铁路轨道对象建设工艺过程实施的抽象定理和实用方案。铁路建设作为一个复杂的动态系统,需要一定的维护资源。在这种情况下,对施工工艺的有效控制具有决定性的意义。通过引入铁路设施建设工艺流程工程与智力支持子系统,完善现有的铁路建设工程技术支持体系,实现这一目标。该子系统的任务之一是有效地使用具有人工智能元素的自动化工具。由于铁路建设的随机性,在施工过程中出现与计划要求的偏差,导致技术违规、人工成本增加、主要成本增加、工期增加,从而导致铁路设施运营特性的恶化。为了避免这种事态的发展,必须迅速审查所采用的技术解决办法。为此,在铁路施工工艺过程的工程方法形成和智力支持范围内,建立了工程生产监测和调节系统。技术过程监控实施的智能化包括在评估阶段使用基于概率推理模型的专家系统。该系统的主要目的是对铁路轨道设施建设过程中施工进度的监测结果进行处理。在评价阶段获得的数据作为预测工艺过程实施的基础。预测的本质是基于应用马尔可夫过程的一般方法问题的解决。过程实施的规范是基于监控结果的。调整工艺流程以适应不断变化的工作条件,为铁路轨道设施建设提供了灵活性。这是通过使用人工神经网络的快速决策能力和随后的工作进度调整来实现的。本文在理论研究成果的基础上,以某铁路路基淹水路堤段施工为例,介绍了智能技术在铁路施工中对工程生产进行监控和调控的实践方面。本文的研究结果是作者在进行论文研究过程中得出的。
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