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Active real-time control of Alfven eigenmodes by neutral beam and electron cyclotron heating in the DIII-D tokamak

机译:在DIII-D托卡马克中通过中性束和电子回旋加速器加热对Alfven本征模式进行主动实时控制

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摘要

A real-time Alfven cigemnode (AE) controller is designed and implemented for the first time in DIII-D. The experimental test consists of two parts: (i) open-loop and feedback control using neutral beam power as an actuator and (ii) open-loop control using electron cyclotron heating (ECH) as an actuator. Part (i) demonstrates the feasibility of varying neutral beam power injected into plasma to control overall AE amplitude as well as the successful application of real-time electron cyclotron emission (ECE) as the process controller's AE amplitude sensor. The temporal evolution of AE amplitude at a specific radial location has also been controlled by selecting a subset of the radial ECE array. Part (ii) finds a complicated dependence of AE evolution on ECH power and more dedicated investigation is needed to explore the dynamical ECM-control model. Additionally, the ratio between TRANSP calculated neutron rate and measured neutron rate is found to correspond closely with AE amplitudes in discharges with feedback control, verifying that this ratio can be another sensor for the control system.
机译:实时Alfven cigemnode(AE)控制器是在DIII-D中首次设计和实现的。实验测试包括两个部分:(i)使用中性束功率作为执行器的开环和反馈控制,以及(ii)使用电子回旋加速器(ECH)作为执行器的开环控制。 (i)部分展示了改变注入等离子体的中性束功率以控制整体AE振幅的可行性,以及成功地将实时电子回旋加速器发射(ECE)用作过程控制器的AE振幅传感器的可行性。通过选择径向ECE阵列的子集,也可以控制特定径向位置处AE振幅的时间演变。第(ii)部分发现了AE演化对ECH功率的复杂依赖关系,需要更深入的研究以探索动态ECM控制模型。此外,通过反馈控制,发现TRANSP计算的中子速率与测得的中子速率之间的比率与放电中的AE振幅非常接近,从而证明该比率可以作为控制系统的另一个传感器。

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