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Modification of plasma control system and hot-wall temperature control system for long-duration plasma sustainment in QUEST

机译:在QUEST中对等离子体控制系统和热壁温度控制系统进行修改以实现长期等离子体维持

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In tokamaks, the temperature of the plasma-facing wall is an important parameter for achieving particle balance and therefore steady-state operation. QUEST, which is a middle-sized spherical tokamak, has hot walls that act as plasma-facing walls. They can be actively heated with sheath heaters and actively cooled with water. To control the wall temperature, heating and cooling systems have been developed. These systems adjust the power of the sheath heaters and the motor valves of the cooling system, respectively. The two systems communicate via Ethernet through UDP and control the hot-wall temperature cooperatively. The plasma control system (PCS) in QUEST has also been modified, especially with respect to gas fueling, in order to enable long-duration plasma sustainment. A feedback controller has been installed in the PCS, together with a mass flow controller, allowing Ha emission from the plasma which is used as a reference signal, to be well controlled. Plasma density calculations using a field-programmable gate array are proposed for the feedback control system.
机译:在托卡马克中,面向等离子体的壁的温度是实现粒子平衡并因此达到稳态运行的重要参数。 QUEST是一种中等大小的球形托卡马克,具有热壁,可作为面向等离子体的壁。它们可以用护套加热器主动加热,并用水主动冷却。为了控制壁温,已经开发了加热和冷却系统。这些系统分别调节鞘管加热器和冷却系统的电动阀的功率。这两个系统通过UDP通过以太网进行通信,并共同控制热墙温度。 QUEST中的等离子控制系统(PCS)也已进行了修改,尤其是在气体燃料方面,以实现长期的等离子维持。反馈控制器已与质量流量控制器一起安装在PCS中,可以很好地控制从用作参考信号的等离子体发出的Ha辐射。提出了使用现场可编程门阵列进行等离子体密度计算的反馈控制系统。

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