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Simultaneous control of effective atomic number and electron density in non-burning tokamak plasmas

机译:同时控制非燃烧托卡马克等离子体中的有效原子序数和电子密度

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The control of plasma density profiles is one of the most fundamental problems in fusion reactors. During reactor operation, the density profiles of hydrogen ions and heavier impurity ions must be precisely regulated, and while the uncontrolled open-loop behavior of these profiles is stable in non-burning plasmas, the system response time may be very slow. In this work, a controller is sought to improve the response of ion density profiles in a non-burning plasma and to track reference profiles for the electron density and effective atomic number, a set of coupled variables that are directly dependent on the hydrogen and impurity ion density profiles. A one-dimensional approximation of the transport equation for ion densities is represented in cylindrical coordinates by a partial differential equation (PDE). To control the density profiles, the PDE is discretized in space using a finite difference method and a backstepping design is applied to obtain a discrete transformation from the original system into an asymptotically stable target system. Numerical simulations of the resulting control law show that density profiles can be successfully controlled with just one step of backstepping. Tracking of electron density and effective atomic number profiles is then simulated by first transforming the profiles into corresponding ion density profiles for use by the backstepping controller. Simulations show the successful tracking of reference profiles.
机译:等离子体密度分布图的控制是聚变反应堆中最基本的问题之一。在反应堆运行期间,必须精确调节氢离子和较重杂质离子的密度曲线,并且尽管这些曲线的不受控制的开环行为在非燃烧等离子体中是稳定的,但系统响应时间可能非常慢。在这项工作中,寻求一种控制器来改善非燃烧等离子体中离子密度曲线的响应,并跟踪电子密度和有效原子序数的参考曲线,这是一组直接取决于氢和杂质的耦合变量离子密度分布图。离子密度传输方程的一维近似值在圆柱坐标系中由偏微分方程(PDE)表示。为了控制密度分布,使用有限差分方法在空间上离散PDE,并应用反推设计以获得从原始系统到渐近稳定目标系统的离散转换。所得控制律的数值模拟表明,只需一步反推即可成功控制密度分布。然后,通过首先将电子图和有效原子序数图转换为相应的离子密度图以供反推控制器使用,来模拟电子密度和有效原子序数图的跟踪。仿真显示成功跟踪了参考配置文件。

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