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Inverse transient radiation analysis in one-dimensional non-homogeneous participating slabs using particle swarm optimization algorithms

机译:一维非均匀参与平板反瞬态辐射分析的粒子群算法

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摘要

Particle Swarm Optimization (PSO) algorithms, including standard PSO, Stochastic PSO, and Multi-Phase PSO, are applied to solve the time-domain inverse transient radiation problems in the present research. Time-resolved transmittance and reflectance signals of four different measuring models serve as the measurement data, which estimate absorption, scattering coefficients, and geometric position within one-dimensional non-homogeneous media by inverse simulation. To check retrieval performances and accuracies of PSO-based approaches, four different inverse transient radiation cases are investigated to deal with one homogeneous layer, two-layer, three-layer, and continuous non-homogenous media. The influences of different searching ranges, swarm sizes, and maximum fly velocities on the fitness function of PSO are discussed. Meanwhile, the effects of measurement errors on the reconstruction accuracy are also investigated. All the results confirm that radiative parameters could be estimated accurately with measurement noise using PSO-based approaches.
机译:粒子群优化算法包括标准粒子群算法,随机粒子群算法和多相粒子群算法,用于解决时域逆瞬态辐射问题。四种不同测量模型的时间分辨透射率和反射率信号用作测量数据,它们通过逆仿真来估计一维非均匀介质中的吸收,散射系数和几何位置。为了检查基于PSO的方法的检索性能和准确性,研究了四种不同的逆瞬态辐射情况,以处理一种均匀层,两层,三层和连续非均匀介质。讨论了不同搜索范围,群大小和最大飞行速度对PSO适应度函数的影响。同时,还研究了测量误差对重建精度的影响。所有结果都证明,使用基于PSO的方法可以通过测量噪声准确估计辐射参数。

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