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Inverse radiation problem with infrared images to monitor plasma-facing components temperature in metallic fusion devices

机译:具有红外图像的逆辐射问题,以监测金属融合装置中的等离子体组件温度

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摘要

Infrared (IR) diagnostics are used to measure plasma-facing components (PFC) surface temperature in fusion devices. However, the interpretation of such images is complex in all-reflective environments because of unknown emissivity and multiple reflections issues. In order to assess these challenges an iterative inversion method based on a fast photonic model, the radiosity method, has been developed. The radiosity method is based on strong hypotheses including all diffuse surfaces. The inversion method allows retrieving the true surface temperature of PFC in two steps: a step of the target emissivity estimation in a baking scene and the use of the emissivity map to retrieve the temperature of metallic components with errors up to 3% during a plasma scenario.
机译:红外(IR)诊断用于测量融合装置的面向等离子体的组件(PFC)表面温度。然而,由于未知的发射率和多次反射问题,对所有反射环境中这种图像的解释是复杂的。为了评估这些挑战,已经开发了一种基于快速光子模型的迭代反演方法,已经开发了光学性方法。光纤法基于包括所有漫射表面的强假设。反转方法允许以两个步骤检索PFC的真实表面温度:烘焙场景中的目标发射率估计的步骤以及发射率图的使用,以检索在等离子体场景期间具有高达3%的金属组件的温度。

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