A method for searching the best static program for nuclear power unit control in the event of perturbations of different nature

K. Beglov, Yevhenia O. Odrekhovska, T. Petik, V. Vataman
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Abstract

Considering the current state of Ukraine's energy sector in a dangerous and unstable environment, the operation of nuclear power plants is one of the most important sources of electricity supply for the state. The development of the theory of optimal control and the technical level of automated process control systems in the current state of affairs make it possible not to reduce the efficiency of controlling a nuclear power unit, not only by changing the parameters at any load, but also by changing the structure of automation equipment capable of implementing a certain static control program of power, which currently eliminates the influence of internal and external disturbances, without reducing safety indicators. The article considers the situation when the linear programming method is not applicable for solving the control problem. In this case, the decision at each stage does not depend on the decision at the previous one. This is where target programming comes in handy –this is one of the methods of multi-criteria optimization, in the theory of which decision-making problems are solved simultaneously according to several criteria. The purpose of the work is to ensure the safe and efficient operation of a nuclear power unit in an energy system that is not constant in operational states. Using a mathematical model of a nuclear power unit, experiments were carried out to simulate the switching of controlprograms. The simulation model of the automated power control system, based on the bumpless switching of static programs according to the technological methods of operating power equipment, made it possible to form a change in the current model of the control program, as well as eliminate the static control error and get the response of process dependent parameters to program switching. Also, based on the results of the research, an objective function was proposed, which includes three normalized criteria with different objectives. In particular, the problem of optimizing the switching of static power control programs was solved by minimizing the objective function, which combines such characteristics as the efficiency and safety of the operation of a nuclear power unit.
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在不同性质的扰动情况下,寻找核电机组最佳静态控制方案的方法
考虑到乌克兰能源部门目前处于危险和不稳定的环境中,核电站的运行是该国最重要的电力供应来源之一。最优控制理论的发展和自动化过程控制系统的技术水平,在目前的情况下,使得不降低控制核电机组的效率成为可能,不仅可以通过改变任何负载下的参数,而且可以通过改变自动化设备的结构来实现一定的功率静态控制程序,目前消除了内部和外部干扰的影响。不降低安全指标。本文考虑了线性规划方法不适用于求解控制问题的情况。在这种情况下,每个阶段的决策不依赖于前一个阶段的决策。这就是目标规划派上用场的地方——这是多准则优化的一种方法,在理论中,决策问题是根据几个准则同时解决的。该工作的目的是确保核电机组在运行状态不恒定的能源系统中安全有效地运行。利用核电机组的数学模型,对控制程序的切换进行了仿真实验。根据电力设备运行的工艺方法,建立基于静态程序无颠簸切换的自动化电力控制系统仿真模型,使控制程序的现有模型形成变化,消除静态控制误差,得到过程相关参数对程序切换的响应成为可能。在此基础上,提出了一个目标函数,该函数包含三个不同目标的归一化准则。特别是,结合核电机组运行的效率和安全等特点,通过目标函数的最小化,解决了静功率控制程序切换的优化问题。
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