Fault-tolerant control system for the formation of carbon products

L. Zhuchenko
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Abstract

The production of carbon products is largely resource- and energy-intensive. That is why increasing the efficiency of this production is an urgent scientific and practical task, especially in modern conditions of constant growth of energy costs. An effective way to solve this problem is to create a modern process control system, taking into account possible failures of system components. A method for the synthesis of a fault-tolerant control system for the cyclic formation of carbon products has been developed, which takes into account control errors that are caused by malfunctions of controllers under conditions of unknown disturbances. According to the cyclic nature of the technological process under consideration, a control method with iterative learning was used in the synthesis of the control system. This method considers cyclic processes based on a two-dimensional model (2D model). The proposed control algorithm ensures the convergence of the control process with the task both in time and in each work cycle in order to promote the required quality of control even in the event of unknown disturbances and errors in the performance of controllers. The synthesis of the control system is based on the solution of a system of linear matrix inequalities. Based on the combination of a control method with iterative learning and a control method that takes into account failures in controllers, a method of constructing a fault-tolerant control system for the cyclic formation of carbon products has been synthesized to ensure acceptable operation of the control object in abnormal conditions. The control system has been synthesized by solving a system of linear matrix inequalities with the MATLAB software. In the future, it is necessary to consider optimal settings of the proposed control system and examine its effectiveness in comparison with conventional fault-tolerant systems for non-cyclic processes.
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碳产物形成的容错控制系统
碳产品的生产在很大程度上是资源和能源密集型的。这就是为什么提高这种生产的效率是一项紧迫的科学和实际任务,特别是在能源成本不断增长的现代条件下。解决这一问题的有效途径是建立一个现代化的过程控制系统,考虑到系统组件可能出现的故障。本文提出了一种碳产物循环生成容错控制系统的合成方法,该方法考虑了在未知干扰条件下由控制器故障引起的控制误差。根据所考虑的工艺过程的循环特性,采用迭代学习控制方法对控制系统进行综合。该方法考虑基于二维模型(2D模型)的循环过程。所提出的控制算法保证了控制过程在时间和每个工作周期内与任务的收敛,以便在控制器性能出现未知干扰和错误的情况下也能提高控制质量。控制系统的综合是基于一个线性矩阵不等式系统的解。基于迭代学习控制方法和考虑控制器失效的控制方法相结合,合成了一种构建碳产物循环生成容错控制系统的方法,以保证控制对象在异常情况下的可接受运行。利用MATLAB软件对一个线性矩阵不等式系统进行求解,合成了控制系统。在未来,有必要考虑所提出的控制系统的最优设置,并将其与传统的非循环过程容错系统进行比较,以检查其有效性。
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