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METHODS, SYSTEMS, AND COMPUTER PROGRAM PRODUCTS FOR OPTIMIZATION OF PROBES FOR SPECTROSCOPIC MEASUREMENT IN TURBID MEDIA

机译:用于优化湍流介质中光谱测量问题的方法,系统和计算机程序产品

摘要

The presently disclosed subject matter provides methods, systems, and computerprogram products for optimizing a probe geometry for spectroscopic measurementin a turbid medium. According to one method, a probe geometry comprising oneemitting entity for emitting electromagnetic radiation into a turbid mediumand at least on collecting entity for collecting the electromagnetic radiationthat has interacted with the turbid medium is selected. A simulation isperformed with inputs of the probe geometry and a plurality of sets of opticalproperty values associated with the turbid medium to generate outputcomprising optical parameter values measured by the probe geometry for eachset of input optical property values. The measured optical parameter valuesare input to an inversion algorithm to produce corresponding opticalproperties as output. The produced optical properties are compared withoptical properties known to correspond to the measured optical parametervalues and a degree of matching between the produced optical properties andthe known optical properties is determined. The simulation and inversion stepsare repeated for a plurality of additional probe geometries. Each additionalprobe geometry differs from the previously tested probe geometry in at leastone property. The property may be a quantity of collecting entities, adiameter of at least one emitting or collecting entity, a linear between theemitting and collecting entities, or combinations thereof. An optimizationalgorithm is applied at each iteration to select a probe geometry such thatthe resulting degree of matching will converge to an optimum value. An optimalgeometry is selected based on the degree of matching determined for eachgeometry.
机译:当前公开的主题提供方法,系统和计算机程序产品,用于优化光谱测量的探头几何形状在浑浊的介质中。根据一种方法,一种探针几何形状包括一个用于将电磁辐射发射到混浊介质中的发射实体至少在收集实体上收集电磁辐射选择与混浊介质相互作用的介质。模拟是通过探头几何形状和多组光学元件的输入来执行与混浊介质关联的属性值以生成输出包括由每个探针的几何形状测量的光学参数值输入光学特性值的集合。测得的光学参数值被输入反演算法以产生相应的光学属性作为输出。将产生的光学性能与已知与测得的光学参数相对应的光学特性值以及所产生的光学特性与确定已知的光学性质。仿真和反演步骤对多个其他探针几何形状重复进行。每增加探头几何形状与先前测试的探头几何形状至少在以下方面有所不同一处物业。该财产可能是一定数量的收集实体,至少一个发射或收集实体的直径,发射和收集实体,或其组合。优化在每次迭代中应用算法以选择探针几何形状,从而结果匹配度将收敛到最佳值。最佳选择根据为每个对象确定的匹配程度选择几何形状几何。

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