Felici F, Goodman T, Sauter O, Shimozuma T, Ito S, Mizuno Y, Kubo S, Mutoh T
Centre de Recherches en Physique des Plasmas, Association EURATOM-Suisse, Ecole Polytechnique Federale de Lausanne, 1015 Lausanne, Switzerland.
Rev Sci Instrum. 2009 Jan;80(1):013504. doi: 10.1063/1.3073735.
Electron cyclotron heating (ECH) is widely used in magnetic fusion devices, and the polarization of the injected millimeter-wave beams plays a crucial role in the propagation and absorption of the beam energy by the plasma. This polarization can be adjusted by grating mirror polarizers placed in the transmission lines which carry the microwaves from the power source to the plasma. In long-pulse devices such as the Large Helical Device (LHD) and ITER, it is desirable to track changes in the plasma and adjust the polarization of the ECH in real time such as to keep the absorption as high as possible and avoid shine-through which may lead to overheating of vessel components. For this purpose a real-time feedback control scheme is envisioned in which a measure of the absorption efficiency can be used to adjust the orientation of the polarizing mirrors toward an optimum. Such a setup has been tested in a low-power test stand as preparation for future implementation in the LHD ECH system. It is shown that a simple search algorithm is efficient and can in principle be used to control either the absorption efficiency or the linear polarization angle.
电子回旋加热(ECH)在磁约束聚变装置中被广泛应用,注入的毫米波束的极化在束能量被等离子体传播和吸收过程中起着关键作用。这种极化可通过置于传输线中的光栅镜偏振器进行调节,传输线将微波从电源传输到等离子体。在诸如大型螺旋装置(LHD)和国际热核聚变实验堆(ITER)等长脉冲装置中,期望跟踪等离子体的变化并实时调整ECH的极化,以尽可能保持高吸收率并避免透穿,否则可能导致容器部件过热。为此设想了一种实时反馈控制方案,其中吸收率的测量值可用于将偏振镜的取向调整到最佳状态。这样的装置已在低功率试验台上进行了测试,为未来在LHD ECH系统中的实施做准备。结果表明,一种简单的搜索算法是有效的,原则上可用于控制吸收率或线性极化角。