首页> 外文期刊>International Journal of Thermal Sciences >Combined lock-in thermography and SQP algorithm for non-intrusive reconstruction of optical and thermal properties in semitransparent medium
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Combined lock-in thermography and SQP algorithm for non-intrusive reconstruction of optical and thermal properties in semitransparent medium

机译:结合锁定热学和SQP算法,用于半透明培养基中的光学和热性能的非侵入性重建

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摘要

A combined lock-in thermography (LIT) technique with sequential quadratic programming (SQP) algorithm is proposed for simultaneous reconstruction of the optical and thermal property distributions in a 2D semi-transparent medium. The LIT technique is applied to identify the positions of inclusions in media, in which the discrete correlation method is employed to extract the amplitude and phase angle of thermal wave signals. The SQP algorithm is employed as the main optimization method to simultaneously reconstruct the absorption coefficient, scattering coefficient, and thermal conductivity distributions in the medium. The LIT-SQP technique combines the advantages of rapid identification of inclusion position of the LIT technique and accurate reconstruction of inclusion properties of the SQP algorithm. The inclusions of various positions, shapes, numbers, and sizes are investigated. All the inclusions can be accurately reconstructed by the proposed LIT-SQP technique, which is proved to be more efficient and accurate than the LIT technique and the SQP algorithm alone.
机译:提出了一种具有顺序二次编程(SQP)算法的组合锁定热成像(LIT)技术,用于同时重建2D半透明介质中的光学和热性分布。应用了LIT技术以识别介质中夹杂物的位置,其中采用离散相关方法提取热波信号的幅度和相位角。使用SQP算法作为主要优化方法,以便在介质中同时重建吸收系数,散射系数和导热性分布。 LIT-SQP技术结合了LIT技术的快速识别的优点,并精确地重建了SQP算法的包涵特性。研究了各种位置,形状,数字和尺寸的夹杂物。所有夹杂物可以通过所提出的LIT-SQP技术精确重建,这被证明比单独的LIT技术和SQP算法更有效和准确。

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