Controlling the electrical power of an ore-smelting furnace based on controllers
DOI:
https://doi.org/10.51301/ce.2023.i1.06Keywords:
controller, ore smelting, ore thermal furnace, electricity, mathematical model, efficient management, energy savingAbstract
In the modern world, energy saving and optimization of production processes play a key role in increasing the efficiency of industrial enterprises. In this context, control of electrical power in ore-smelting furnaces based on controllers is one of the urgent tasks facing researchers and engineers. Ore-smelting furnaces play a key role in ore processing processes, representing an important link in metal production. Effective management of electrical power in these furnaces is critical to ensure process stability and increased productivity. This research article is devoted to the research and development of a control system for the electrical power of an ore-smelting furnace using controllers. Ore furnaces are an important part of metal production and their effective management is critical to ensure process stability and increased productivity. This paper examines the principles of operation of controllers in control systems, and also develops a technique for optimal control of the electrical power of the furnace in order to increase the efficiency of the production process. The results of the study are presented in the form of analytical data, mathematical models and practical recommendations that can be useful to engineers and specialists in the field of metallurgy and automation of industrial processes. An ore-smelting furnace is a complex technical structure designed for processing ore at high temperatures. However, using large amounts of electrical energy can cause the oven to malfunction and lose efficiency. Therefore, the development of methods and algorithms for controlling electrical power in ore-smelting furnaces is becoming an increasingly urgent task for optimizing the ore processing process. The objectives of this research article are to analyze existing methods for controlling electrical power in ore-smelting furnaces, develop new algorithms and test their effectiveness in practice. The main emphasis will be on the use of controllers to control the heating process and maintain optimal temperature in the oven. The research has the potential to lead to significant economic benefits for ore mining operations, as well as facilitating more efficient use of electrical power in industry.
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