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Update on the DIII-D ECH system: experiments, gyrotrons, advanced diagnostics, and controls

机译:DIII-D ECH系统的更新:实验,回旋管,高级诊断和控制

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摘要

The ECH system on DIII-D is continuing to be upgraded, while simultaneously being operated nearly daily for plasma experiments. The latest major hardware addition is a new 117.5 GHz gyrotron, which generated 1.7 MW for short pulses during factory testing. A new gyrotron control system based on Field Programmable Gate Array (FPGA) technology with very high speed system data acquisition has significantly increased the flexibility and reliability of individual gyrotron operation. We have improved the performance of the fast mirror scanning, both by increasing the scan speeds and by adding new algorithms for controlling the aiming using commands generated by the Plasma Control System (PCS). The system is used for transport studies, ELM control, current profile control, non-inductive current generation, suppression of MHD modes, startup assist, plasma density control, and other applications. A program of protective measures, which has been in place for more than two years, has eliminated damage to hardware and diagnostics caused by overdense operation. Other activities not directly related to fusion research have used the ECH system to test components, study methods for improving production of semiconductor junctions and materials, and test the feasibility of using ground based microwave systems to power satellites into orbit.
机译:DIII-D上的ECH系统正在继续升级,同时几乎每天都在运行以进行血浆实验。最新的主要硬件添加是新的117.5 GHz陀螺仪,在工厂测试过程中产生了1.7 MW的短脉冲。基于现场可编程门阵列(FPGA)技术的新型回旋管控制系统具有非常高的系统数据采集速度,显着提高了单个回旋管运行的灵活性和可靠性。通过提高扫描速度和添加新的算法(使用等离子控制系统(PCS)生成的命令来控制瞄准),我们提高了快速镜像扫描的性能。该系统用于运输研究,ELM控制,电流分布控制,无感电流生成,MHD模式抑制,启动辅助,等离子体密度控制和其他应用。一项已经实施了两年以上的保护措施计划,已经消除了由于过度操作而造成的硬件和诊断损坏。与融合研究没有直接关系的其他活动也使用ECH系统测试组件,研究方法以改善半导体结和材料的生产,并测试使用地面微波系统将卫星送入轨道的可行性。

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