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Fast demodulation of pattern images by spiral phase transform in structured-illumination reflectance imaging for detection of bruises in apples

机译:通过结构化照明反射率成像中的螺旋相位变换快速解调图案图像,以检测苹果中的瘀伤

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A structured-illumination reflectance imaging (SIRI) system was recently developed in our laboratory for enhanced quality evaluation of horticultural products. It was implemented using a digital camera to acquire reflectance images from food products subjected to sinusoidal patterns of illumination, instead of conventional diffuse or uniform illumination. The reconstruction of amplitude images is a key step in implementing SIRI technique. Conventional methods require acquisition and subsequent demodulation of three phase-shifted pattern images, which limits the speed of image acquisition. This study proposed the use of spiral phase transform (SPT) for demodulation of pattern images acquired by SIRI. Three SPT-based methods involving only one or two images were investigated through numerical simulation, followed with experiments on the detection of fresh bruises in apples. Compared to conventional three-phase based and two-phase based Gram-Schmidt (GS) orthonormalization demodulation methods, the two-phase SPT method achieved the same or even higher demodulation accuracy, which applies to two pattern images that can be arbitrarily phase-shifted. SPT also allowed single-image based demodulation, although its performance still needs to be improved. This study demonstrated that SPT for amplitude demodulation can increase the imaging speed of SIRI by using one or two pattern images, which is a significant step towards real-time implementation of the technique. Published by Elsevier B.V.
机译:最近在我们的实验室中开发了结构照明反射成像(SIRI)系统,用于增强园艺产品的质量评估。它是使用数码相机实现的,它是从食品中以正弦照明模式采集反射率图像,而不是传统的漫射或均匀照明。幅度图像的重建是实施SIRI技术的关键步骤。常规方法需要三个相移图案图像的采集和随后的解调,这限制了图像采集的速度。这项研究提出了使用螺旋相位变换(SPT)解调由SIRI采集的图案图像。通过数值模拟研究了三种仅基于一幅或两幅图像的基于SPT的方法,然后进行了检测苹果中新鲜挫伤的实验。与传统的基于三相和基于两相的Gram-Schmidt(GS)正交归一化解调方法相比,两相SPT方法实现了相同甚至更高的解调精度,适用于可以任意相移的两个图案图像。 SPT还允许基于单图像的解调,尽管其性能仍需要提高。这项研究表明,用于幅度解调的SPT可以通过使用一幅或两幅图案图像来提高SIRI的成像速度,这是该技术实时实施的重要一步。由Elsevier B.V.发布

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