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Comparison of the accuracy of the calibration model on the double and single integrating sphere systems

机译:双积分球系统和单积分球系统校准模型精度的比较

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The accuracy of the calibration model for the single and double integrating sphere systems are compared for a white light system. A calibration model is created from a matrix of samples with known absorption and reduced scattering coefficients. In this instance the samples are made using different concentrations of intralipid and black ink. The total and diffuse transmittance and reflectance is measured on both setups and the accuracy of each model compared by evaluating the prediction errors of the calibration model for the different systems. Current results indicate that the single integrating sphere setup is more accurate than the double system method. This is based on the low prediction errors of the model for the single sphere system for a He-Ne laser as well as a white light source. The model still needs to be refined for more absorption factors. Tests on the prediction accuracies were then determined by extracting the optical properties of solid resin based phantoms for each system. When these properties of the phantoms were used as input to the modeling software excellent agreement between measured and simulated data was found for the single sphere systems.
机译:对于白光系统,比较了单积分球系统和双积分球系统的校准模型的准确性。从具有已知吸收和减小的散射系数的样品矩阵创建校准模型。在这种情况下,样品是使用不同浓度的脂质和黑色墨水制成的。在这两种设置上测量总和漫透射率和反射率,并通过评估不同系统的校准模型的预测误差来比较每个模型的准确性。当前结果表明,单积分球设置比双系统方法更准确。这是基于He-Ne激光器和白光源的单球系统模型的低预测误差。对于更多的吸收因子,仍然需要对模型进行完善。然后,通过提取每个系统的基于固体树脂的体模的光学特性,确定对预测精度的测试。当将体模的这些属性用作建模软件的输入时,对于单球体系统,在实测数据和仿真数据之间发现了极好的一致性。

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