Model studies to identify input parameters of an algorithm controlling electric supply/consumption process by underground iron ore enterprises

IF 2.8 Q2 MINING & MINERAL PROCESSING Mining of Mineral Deposits Pub Date : 2023-09-30 DOI:10.33271/mining17.03.093
Oleh Sinchuk, Ryszard Strzelecki, Tetiana Beridze, Ihor Peresunko, Vladyslav Baranovskyi, Danyil Kobeliatskyi, Volodymyr Zapalskyi
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Abstract

Purpose is the development of the research format of a mathematical model to select and assess input parameters of an algorithm controlling distribution of electric energy flows in the monitoring structure of electricity supply/consumption by using equipment of mining enterprises engaged in underground iron ore raw materials extraction. Methods. The analytical research involved a theory of random processes adapted to the real conditions. For the purpose, results of experimental measurements have been applied obtained under the conditions of active iron ore enterprises using underground procedures of the raw materials mining. Methods of random functions (i.e. elements of correlation theory) have helped identify the basic input and output parameters characterizing rather completely electric supply consumption as a stochastic process to develop a control algorithm for the process. Findings. A mathematical model of an electric supply/consumption complex as a stochastic process has been developed to assess its features as well as its levels of influence on the economic operational indices of electric power system of under-ground mining enterprises. Formation of the algorithm to control distribution of electric power flows among consumers of the analyzed types of iron ore enterprises took into consideration stochastic nature of the mentioned complex activity. Originality. The procedure of electric supply/consumption by underground iron ore enterprises has been analyzed in the format of process of a stochastic process of their operation. For the first time, the synthesized mathematical model has been built; both average and disperse stochastic characteristics of electric consumption capacity have been identified; average period of electric energy consumption as a stationary random function during the specified time has been determined; and average number of electric consumption peaks for the interval has been defined as well as average duration of their surges. Analysis of the electric supply/consumption process as a stochastic process has helped solve a problem of the peak influence on the modes of electric energy consumption by receivers of the enterprises, i.e. the random function crossing the specified electric consumption level. Practical implications. According to the available computing formats, a calculation procedure of the operation parameters of electric supply/consumption is of insufficient accuracy since average values are applied and stochastic nature of the process is ignored, which is typical for the analyzed mining enterprises. The abovementioned restricts the possibility to develop adequate system to control the electric power process in terms of the types of mining enterprises and specificity of their operational technology. The developed methods of electric supply/consumption functioning dynamics as a stochastic process help expand its use while forming and making efficient managerial decisions in the context of the analyzed process.
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地下铁矿企业供/用过程控制算法输入参数辨识模型研究
目的是开发一种数学模型的研究格式,以选择和评估利用从事地下铁矿石原料开采的矿山企业设备在供/用电力监测结构中控制电能流分布的算法的输入参数。方法。分析性研究涉及一种适应实际情况的随机过程理论。为此,采用地下原料开采程序,在活性铁矿企业条件下进行了试验测量。随机函数的方法(即相关理论的要素)有助于确定基本的输入和输出参数,将相当完全的电力供应消耗表征为随机过程,并为该过程开发控制算法。发现。建立了供/用电力综合体作为随机过程的数学模型,以评价其特征及其对地下矿山企业电力系统经济运行指标的影响程度。在考虑了上述复杂活动的随机性的情况下,形成了控制所分析的各类铁矿石企业消费者之间的潮流分配的算法。创意。对地下铁矿企业的供/用电过程进行了随机过程分析。首次建立了综合数学模型;确定了电力消费容量的平均随机特征和分散随机特征;确定了指定时间内电能消耗的平均时段为平稳随机函数;并定义了间隔时间内的平均用电高峰数及其浪涌的平均持续时间。将电力供应/消费过程作为一个随机过程进行分析,有助于解决峰值对企业接受者用电模式的影响问题,即随机函数跨越规定的用电量水平。实际意义。根据现有的计算格式,供电/用电量运行参数的计算程序由于采用平均值,忽略了过程的随机性,精度不足,这在所分析的矿山企业中是典型的。上述情况限制了根据采矿企业的类型及其作业技术的特殊性制定适当系统来控制电力过程的可能性。作为随机过程的电力供应/消费功能动态的开发方法有助于扩大其使用,同时在分析过程的背景下形成和做出有效的管理决策。
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来源期刊
Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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