Fast feedforward SVC controller for improving power quality of super proton synchrotron

D. Jovcic, K. Kahle
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引用次数: 2

Abstract

This paper describes firstly the principles of dynamic modeling of CERN's super proton synchrotron (SPS) accelerator. The SPS dynamic model adequately represents internal power system structure and SPS interactions with the supply grid. Since the SPS consists of 48 converters and 48 transformers, the modeling goal is the development of an equivalent model with a reasonably low number of converters in order to reduce model complexity. The SPS control system is also simplified in accordance with the modeling aims. The model is implemented in PSCAD/EMTDC and tested against CERN measurements where accurate model responses are observed. The SPS model is used to gain understanding of the power quality issues at CERN's 18 kV bus. A new controller is developed for the 150 MVAr SVC which is normally used for SPS reactive power compensation. The feedforward controller is based on fast measurements of DC side SPS variables enabling estimation of SPS power variations. The new controller demonstrates reduction in the 18 kV AC voltage peaks during SPS cycles
用于改善超质子同步加速器电能质量的快速前馈SVC控制器
本文首先介绍了欧洲核子研究中心(CERN)超级质子同步加速器(SPS)的动力学建模原理。该动态模型充分反映了电力系统内部结构以及与电网的相互作用。由于SPS由48个变流器和48个变压器组成,因此建模目标是开发具有合理较少变流器数量的等效模型,以降低模型复杂性。根据建模目标,对SPS控制系统进行了简化。该模型在PSCAD/EMTDC中实现,并针对CERN测量结果进行了测试,观察到准确的模型响应。SPS模型用于了解欧洲核子研究中心18kv母线的电能质量问题。针对通常用于SPS无功补偿的150 MVAr SVC,设计了一种新的控制器。前馈控制器基于直流侧SPS变量的快速测量,可以估计SPS功率的变化。在SPS周期中,新控制器显示了18 kV交流电压峰值的降低
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