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Real-Time Control of Beam Trajectories Using Digital Signal Processor for the Heavy Ion Beam Probe on the Large Helical Device

机译:使用数字信号处理器对大型螺旋装置上的重离子束探针进行束流轨迹的实时控制

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A real-time control system using a digital signal processor (DSP) was developed to control ion-beam trajectories of a heavy ion beam probe (HIBP) on the Large Helical Device (LHD). The electrostatic potential during temporal evolution of the magnetic field structure by a large plasma current was successfully measured with the help of this system for the first time. It has been demonstrated that the probe beam can be detected even in a plasma having a ~120 kA plasma current at the toroidal field of 1.3 T using the control system, while the beam is substantially lost by only ~40 kA current before arriving at the detector plate in the case without control. However, this system is unstable during operations when the probe beam is swept in time across the plasma cross section to obtain the time evolution of the potential profile. It is caused by a nonlinear character of the system due to the finite beam size.
机译:开发了使用数字信号处理器(DSP)的实时控制系统,以控制大型螺旋装置(LHD)上的重离子束探针(HIBP)的离子束轨迹。首次借助该系统成功地测量了大等离子体电流在磁场结构的时间演化过程中产生的静电势。已经证明,使用控制系统,即使在1.3 T的环形场中,即使在具有〜120 kA等离子体电流的等离子体中,也可以检测到探测光束,而在到达光束之前,该光束实际上仅被〜40 kA电流所损耗。检测板在无控制的情况下。然而,当探针束在时间上扫过等离子体横截面以获得电位分布的时间演变时,该系统在操作期间不稳定。它是由于光束大小有限而导致的系统非线性特性引起的。

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