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Improving the Efficiency of the Three-Stage Technique of Mathematical Model Identification of Complex Thermal Power Equipment

机译:改善复杂热电设备数学模型识别三阶段技术的效率

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摘要

The problems of state estimation of thermal power system operation and identification of mathematical model parameters have not been acceptably solved due to the complexity of studied objects and their mathematical models, and the lack of effective methods, algorithms and computer programs to solve the required mathematical problems. The results of solving the indicated problems are of importance as such, and play a great part in the qualitative solution to the problems of thermal power equipment control, e.g., the problems of optimal load dispatch among thermal power plant units and optimal control of thermal power equipment operation conditions. The paper describes an effective three-stage technique of mathematical model identification of complex thermal power equipment. The technique allows us to more effectively detect gross errors in measurements of control parameters used for identification of the mathematical model of the studied equipment, to evaluate correctness and rectify errors in the mathematical model construction, and to improve identification accuracy. The article presents a new formulation of the optimization problem for more efficient identification of mathematical models of heat power equipment. An effective three-stage technique of mathematical model identification of complex thermal power equipment was tested on a detailed mathematical model of the present-day 225 MW generating unit that was constructed by the author. The paper presents results of solving the identification problem of mathematical model parameters of a generating unit.
机译:由于研究对象的复杂性及其数学模型的复杂性,以及缺乏有效方法,算法和计算机程序来解决所需数学问题的复杂性,缺乏有效方法,缺乏有效方法,缺乏有效方法,算法和计算机程序的状态估算和数学模型参数的识别问题。 。解决所示问题的结果是重要的,因此在定性解决热力设备控制问题的定性解决方案中,例如,热电厂单元之间最佳载荷调度问题以及热功率的最佳控制设备运行条件。本文介绍了复杂热电力设备数学模型识别的有效三级技术。该技术允许我们更有效地检测用于识别所研究设备的数学模型的控制参数的测量中的总误差,以评估数学模型结构中的正确性和整流误差,并提高识别精度。本文提出了一种新的制定,用于更有效地识别热电设备数学模型的优化问题。在由作者构建的本周225 MW生成单元的详细数学模型上测试了复杂的热电设备的数学模型识别的有效三阶段技术。本文提出了解决生成单元的数学模型参数识别问题的结果。

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