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首页> 外文期刊>Fusion Engineering and Design >Remediation of time-delay effects in tokamak axisymmetric control loops by optimal tuning and robust predictor augmentation
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Remediation of time-delay effects in tokamak axisymmetric control loops by optimal tuning and robust predictor augmentation

机译:通过优化调整和鲁棒预测器增强来补救托卡马克轴对称控制回路中的时滞效应

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摘要

It is sometimes incorrectly assumed that, because superconducting tokamaks already have significant intrinsic or imposed sources of control delay, introducing extra delays/lags into the axisymmetric control loops will have negligible detrimental impact on the plasma control. This study exposes and quantifies the detrimental effects imposed by time delays/lags in the control loop in superconducting tokamaks, using as an example the plasma current control and radial position control in a vertically stable circular plasma in the KSTAR tokamak. Delays and lags in the power supplies, data acquisition, and vessel structure are taken into account. Optimal tuning of PID controllers in combination with an ohmic-flux control strategy is proposed as a possible method for remediating the negative effects of time delays/lags. In addition, an augmentation of the control loop by the introduction of a robust predictor has been proposed to improve the performance of the time-delayed closed-loop system when the amount of delay/lag in the loop is unknown. The Nyquist dual locus technique based on the Argument Principle in complex theory is employed to assess stability of the optimally tuned closed-loop system in the presence of time delays.
机译:有时会错误地假定,由于超导托卡马克已经具有明显的固有或强加的控制延迟源,因此将额外的延迟/滞后引入轴对称控制回路中,对等离子体控制的影响可忽略不计。本研究以KSTAR托卡马克垂直稳定的圆形等离子体中的等离子体电流控制和径向位置控制为例,揭示并量化了超导托卡马克控制回路中的时间延迟/滞后所带来的有害影响。考虑到电源,数据采集和容器结构的延迟和滞后。提出了与欧姆磁通控制策略相结合的PID控制器的优化调整,作为补救时间延迟/滞后的负面影响的可能方法。另外,已经提出通过引入鲁棒的预测器来增强控制回路,以在回路中的延迟/滞后量未知时改善延时的闭环系统的性能。基于复杂理论中的论证原理的奈奎斯特双重轨迹技术被用于评估在存在时延的情况下最优调谐闭环系统的稳定性。

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