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首页> 外文期刊>Journal of near infrared spectroscopy >Transmission measurements on intact apples moving at high speed
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Transmission measurements on intact apples moving at high speed

机译:完整苹果在高速移动的变速器测量

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Two different near infared spectrometric systems, both based on readily available optical components, were investigated for direct transmission mode measurements on intact apples (Mains domestica Borkh.) moving at high speed (500 mm s{sup}(-1)). One system was based on the principle of time-delayed integration spectroscopy (TDIS) in which light emanating from a moving object was electronically tracked as it moved through the field of view of the spectrometer. The other system, a large aperture spectrometer (LAS), was a more conventional design in which the light from the object is accumulated in a series of one-shot measurements as the fruit progresses through the field of view. The systems were each optimally configured, using the same core optic components, to detect the low levels of light diffusely transmitted through apples between 650 and 950 nm. Performance comparisons were made in the context of dry-matter predictions; an important metric for apple quality. Modelling and validation statistics (R2, RMSEP) for dry-matter predictions were (0.87,0.43%) and (0.81,0.48%) for the LAS and TDIS systems, respectively. These accuracies are excellent and similar to what is normally achievable on the more common but slower interactance-type NIR fruit measurement systems. Hence, the results have demonstrated that use of a direct transmission mode is a viable option for high-speed fruit measurement, even for a very opaque fruit like apples.
机译:研究了两个不同的近刚度光谱系统,两者都是基于易于可获得的光学组件进行直接传输模式测量,完整的苹果(Mains Domestica Borkh。)以高速移动(500 mm s {sup}( - 1))。一个系统基于时间延迟积分光谱(TDIS)的原理,其中从移动物体发出的光在通过光谱仪的视野移动时被电动跟踪。另一个系统是一个大的孔径光谱仪(LAS),是一种更传统的设计,其中来自物体的光在一系列单次测量中累积,因为水果通过视野进行了进展。使用相同的芯光学元件,每个系统均得到最佳地配置,以检测通过650和950nm之间的苹果漫射漫射的低水平光。在干事物预测的背景下进行了性能比较;苹果质量的重要指标。用于干物质预测的建模和验证统计(R2,RMSEP)分别为LAS和TDIS系统的(0.81,0.43%)和(0.81,0.48%)。这些精度优异,类似于通常可实现的更常见但较慢的互动型NIR果实测量系统。因此,结果证明了使用直接传输模式是用于高速果实测量的可行选择,即使对于苹果这样的非常不透明的果实,也是如此。

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