淘客熙熙

主题:【讨论】凑热闹说说谷爱凌 -- 孟词宗

共:💬107 🌺778 🌵2
全看分页树展 · 主题 跟帖
家园 使用深度强化学习对托卡马克等离子体进行磁控制

DeepMind 发表在 Nature 上的使用深度强化学习对托卡马克等离子体进行磁控制

https://www.nature.com/articles/s41586-021-04301-9

Magnetic control of tokamak plasmas through deep reinforcement learning

Jonas Degrave, Federico Felici, …Martin Riedmiller Show authors

Nature volume 602, pages414–419 (2022)Cite this article

Metricsdetails

Abstract

Nuclear fusion using magnetic confinement, in particular in the tokamak configuration, is a promising path towards sustainable energy. A core challenge is to shape and maintain a high-temperature plasma within the tokamak vessel. This requires high-dimensional, high-frequency, closed-loop control using magnetic actuator coils, further complicated by the diverse requirements across a wide range of plasma configurations. In this work, we introduce a previously undescribed architecture for tokamak magnetic controller design that autonomously learns to command the full set of control coils. This architecture meets control objectives specified at a high level, at the same time satisfying physical and operational constraints. This approach has unprecedented flexibility and generality in problem specification and yields a notable reduction in design effort to produce new plasma configurations. We successfully produce and control a diverse set of plasma configurations on the Tokamak à Configuration Variable1,2, including elongated, conventional shapes, as well as advanced configurations, such as negative triangularity and ‘snowflake’ configurations. Our approach achieves accurate tracking of the location, current and shape for these configurations. We also demonstrate sustained ‘droplets’ on TCV, in which two separate plasmas are maintained simultaneously within the vessel. This represents a notable advance for tokamak feedback control, showing the potential of reinforcement learning to accelerate research in the fusion domain, and is one of the most challenging real-world systems to which reinforcement learning has been applied.

全看分页树展 · 主题 跟帖


有趣有益,互惠互利;开阔视野,博采众长。
虚拟的网络,真实的人。天南地北客,相逢皆朋友

Copyright © cchere 西西河