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Topological Derivative Improved Partial Differential Equation for Infrared Spectral Data Denoising

机译:红外光谱数据去噪的拓扑导数改进型偏微分方程

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To reduce the influence of noise in infrared spectral signal measurement, a topological derivative improved partial differential equation method for infrared spectral data denoising is proposed. As an indicator function, topological derivative through a minimization process to find the best position to introduce disturbance, where are spectral edge points, then select the most excellent diffusion coefficient, so the cost of the minimum functional value. Based on the idea of topological optimization, it makes the lowest topological derivative to be optimum one. Then the diffusion is applied by using partial differential equation. Several simulated infrared spectral sequences are utilized to verify the performance of the proposed method. The experiment results show that our method is better in denoising.
机译:为了减少噪声对红外光谱信号测量的影响,提出了一种对红外光谱数据去噪的拓扑微分改进偏微分方程方法。作为指标函数,拓扑导数通过最小化过程找到引入干扰的最佳位置,这里是光谱的边缘点,然后选择最优良的扩散系数,因此成本最小。基于拓扑优化的思想,它使最低的拓扑导数成为最优的。然后使用偏微分方程进行扩散。利用几个模拟的红外光谱序列来验证所提出方法的性能。实验结果表明,该方法具有较好的去噪效果。

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