渡线
串扰
高光谱成像
热的
非线性系统
衰减
光学
二极管
发光二极管
电子工程
光电子学
奇异值分解
计算机科学
物理
材料科学
灵敏度(控制系统)
温度测量
热辐射计
非线性光学
算法
替代模型
宽带
作者
Quanji Xie,Songsheng Lin,Zining Lin,Cihai Chen,Huichuan Lin,Shuo Lin,Yan Li,Huanting Chen
标识
DOI:10.1109/ted.2026.3668724
摘要
This article presents a physics-informed framework to model and efficiently predict 2-D photo–thermal crosstalk in multichip light-emitting diode (LED) display modules. A closed-form opto-thermal decomposition is derived that separates direct photoluminescent gain from indirect photo$\boldsymbol {\to }$thermal attenuation and explicitly represents thermal coupling, photoabsorption, and the temperature sensitivity of emission. The model is calibrated with microscopic hyperspectral imaging ($\boldsymbol {\mu }$-HSI) and compressed into a hardware-friendly$7~\boldsymbol {\times }7$order-space grayscale–spatial polynomial surrogate fit by constrained least squares with spatial regularization. Experiments reproduce the nonlinear crossover from optical-dominated to thermal-dominated crosstalk across the full 0–255 gray range. The block surrogate attains average relative errors below 1% (localized maxima up to 11%) and enables accurate pre-compensation and actionable diagnostics for thermal and optical design.
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