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Experimental Investigation of Microwave Imaging as Means to Assess Fruit Quality

机译:微波成像评估水果品质的实验研究

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The continuous increase in global food consumption brings forward the need for constant development of technologies to enhance the existing quality assessment methods. Such enhancement can both increase the safety of the consumers and decrease the product wastage. In recent decades, microwave imaging has emerged as a promising non-invasive and non-ionizing technology for a range of applications. In this paper, the applicability of a newly developed microwave radar algorithm for fruit imaging is proposed. The measurements have been performed using purpose built hardware and the image reconstruction has been performed through a Huygens principle based algorithm. The variation in the dielectric properties of the fruits’ internal body allows the algorithm to detect and capture the contrast when reconstructing their internal field. Experimental results on lemons and grapefruits indicate the capability of the algorithm to both detect seeds inside the fruits and distinguish between seeded and seedless samples.
机译:全球食品消费量的持续增长提出了不断开发技术以增强现有质量评估方法的需求。这种增强既可以增加消费者的安全性,又可以减少产品浪费。在最近的几十年中,微波成像已经成为一种有前景的无创,非电离技术,可用于多种应用。本文提出了一种新开发的微波雷达算法在水果成像中的适用性。已经使用专用硬件执行了测量,并且已经通过基于惠更斯原理的算法执行了图像重建。水果内部物体介电特性的变化使算法可以在重建其内部电场时检测并捕获对比度。在柠檬和葡萄柚上的实验结果表明,该算法既可以检测水果内部的种子,又可以区分有籽样品和无籽样品。

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