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Advanced frequency-domain compensator design for subsystems within a nuclear generating station

机译:核发电站内部系统的高级频域补偿器设计

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Like all electrical generating stations, nuclear plants possess many feedback structures. Application of frequency-domain control design techniques has the potential to improve the performance of these feedback systems, thus improving the overall resiliency of the generating station and the grid at large. Typically the applicability of such design techniques are limited by the availability of detailed plant descriptions. In this work, an analysis is performed of several control structures of a nuclear generating station from a frequency-domain control perspective. The model used is that of a training simulator for reactor operators. The applicability of high performance control techniques to a number of subsystems is assessed and compensators are developed for the most promising systems. In recent years there has been renewed work in the application of classical control techniques to systems where the plant model is not fully known. One such technique is the Cloud technique, which is used to develop a type of controller known as a Modified Bode Optimal (MBO) controller. This technique is applied to develop large feedback compensators for two control systems within a simulated nuclear generating station. The relative performance of these systems is assessed using traditional time-domain metrics.
机译:与所有发电站一样,核电站具有许多反馈结构。频率域控制设计技术的应用具有提高这些反馈系统的性能的潜力,从而提高了发电站和栅格的总体弹性。通常,这种设计技术的适用性受到详细植物描述的可用性的限制。在这项工作中,从频域控制角度对核生成站的若干控制结构进行分析。使用的模型是电抗器操作员的训练模拟器。评估高性能控制技术对许多子系统的适用性,并为最有前途的系统开发了补偿器。近年来,在植物模型不完全已知的系统中,在应用古典控制技术的应用中已经更新了工作。一种这样的技术是云技术,用于开发称为修改的BODE最佳(MBO)控制器的控制器类型。应用该技术以在模拟核发电站内的两个控制系统开发大型反馈补偿器。使用传统的时域度量评估这些系统的相对性能。

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