Parallel Control Strategy for Flexible Operation of Ultra-supercritical Units Under Digital Twin Theory

Ting Huang, G. Hou
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Abstract

With the rapid development of big data and cloud technology, the coordinate control of thermal power plants is fast changing to a flexible and adaptive intelligent control model. In order to improve the operational flexibility of ultra supercritical (USC) units, a parallel control scheme based on ACP method is constructed in this paper. Firstly, an artificial control system that can reflect the operational conditions of units in real-time is constructed by the digital twin technology. Then, the precise model and active disturbance rejection control method are chosen for artificial system to guide the operation of USC units using computation experiments. Afterwards, the operational stability is ensured by the parallel execution of the artificial control system and actual USC units. Finally, the remarkable control performance of USC units based on the proposed parallel control scheme is successfully confirmed on a 1000MW units.
数字双生理论下超超临界机组柔性运行并联控制策略
随着大数据和云技术的快速发展,火电厂的协调控制正迅速向灵活、自适应的智能控制模式转变。为了提高超超临界机组的运行灵活性,提出了一种基于ACP方法的并联控制方案。首先,利用数字孪生技术构建了能实时反映机组运行状况的人工控制系统;然后,通过计算实验,选择了人工系统的精确模型和自抗扰控制方法来指导超超临界机组的运行。然后,通过人工控制系统和实际超超临界机组的并行执行,保证了系统的运行稳定性。最后,在一台1000MW机组上成功验证了基于该并联控制方案的超超临界机组显著的控制性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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