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A modified spectral method for simulating arbitrary directional radiative intensity in participating media with graded refractive index

机译:一种改进的光谱方法,用于模拟折射率渐变的参与介质中的任意方向的辐射强度

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摘要

Accurate simulation of the arbitrary directional radiative intensity in participating media with graded refractive index (GRI) is important for solving the inverse radiation problem. The conventional spectral method (SM) can be applied to solve the radiative transfer problem of graded index media with limit-fixed discrete directions, which cannot obtain arbitrary directional radiative intensities required in inverse estimation. From the conventional SM, a modified spectral method (MSM) is proposed to simulate the arbitrary directional radiative intensity of participating media with GRI accurately. The detailed derivation process of MSM is illustrated and verified by solving the radiative transfer problem involving three different kinds of GRI distributions. All results show that the arbitrary directional radiative intensity can be calculated accurately based on the fixed directional radiative intensities of SM. Furthermore, the GRI distribution was reconstructed accurately by using the stochastic particle swarm optimization with noisy data and the MSM as forward method.
机译:准确地模拟具有渐变折射率(GRI)的参与介质中任意方向的辐射强度对于解决反辐射问题很重要。可以应用常规的光谱方法来解决具有有限方向离散的梯度折射率介质的辐射传递问题,该方法不能获得反估计所需的任意方向的辐射强度。从传统的SM方法出发,提出了一种改进的光谱方法(MSM),可以精确地模拟GRI参与介质的任意方向的辐射强度。通过解决涉及三种不同GRI分布的辐射传递问题,说明并验证了MSM的详细推导过程。所有结果表明,基于固定的SM方向辐射强度,可以准确地计算任意方向的辐射强度。此外,通过使用带有噪声数据的随机粒子群优化算法和MSM作为正向方法,可以准确地重建GRI分布。

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