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CONTROL PERFORMANCE OF LARGE SCALE STEAM POWER PLANTS AND IMPROVEMENTS

机译:大规模蒸汽发电厂的控制性能及改进

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Current energy market developments stimulate a dual electric power supply, which correspondingly increases the demands concerning flexibility and manoeuvrability of large-scale steam power plants. For these purposes, a joint research project between the University of Stuttgart and Vattenfall Europe has been initiated with the objective of creating an improved unit control concept, using advanced control techniques like nonlinear model-based and flatness-based feed-forward control. In a first step, however, the dynamic behaviour of existing large-scale generating units had to be analysed, which not only included an isolated analysis of each considered unit, but also the novel approach of a comparing analysis. Discrepancies in the control behaviour even between structurally identical units were detected. Considering the mentioned background, the overall results show that the currently dominating linear unit control concepts have several dynamic and static restrictions, especially when a unit is participating in the network frequency control.
机译:目前的能源市场发展刺激了双电力供应,相应地增加了大型蒸汽发电厂的灵活性和机动性的需求。出于这些目的,斯图加特大学和Vattenfall欧洲之间的联合研究项目已经开始采用创建改进的单位控制概念,采用高级控制技术,如非线性模型的基于平坦的前馈控制等更好的控制技术。然而,在第一步中,必须分析现有大规模生成单元的动态行为,其不仅包括每个考虑的单元的隔离分析,而且还包括比较分析的新方法。即使在结构相同的单元之间检测到控制行为的差异也被检测到。考虑到提到的背景,整体结果表明,当前主导的线性单元控制概念具有多种动态和静态限制,尤其是当一个单元参与网络频率控制时。

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