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COMPARISON ON EGGPLANT FRUIT GRADING BETWEEN NIR-COLOR CAMERA AND COLOR CAMERA

机译:NIR彩色相机与彩色相机茄子果实分级的比较

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An eggplant grading system was introduced in a JA (agricultural cooperative association) at Okayama, 2002. 6 CCD color cameras were installed to evaluate fruit appearance (fruit color, size, shape, bruise, and diseases), before and after turning over in a line and connected to 2 PCs through 6 image grabber boards. Physical properties of the fruits such as fruit length, average, maximum, and minimum diameters, area, apparent volume, fruit color, calyx color, fruit shape, degree of fruit bend, bruise number, bruise area, and so on were extracted from the images. The 6 CCD color cameras were divided into 2 units, which consisted of 3 cameras each set, were installed for complete surface inspection. However it is not easy to detect several kinds of defects on eggplant fruit surface because the fruit has very dark purple color and several defects are very similar colors with normal skin. In this paper, a new color camera whose sensitivity ranges from visible region to infrared region was used. Most of the fruits have higher spectral reflectance in infrared region (700-1200nm). The color CCD camera had the same G and B components with usual color camera, but R signal includes infrared region was specially ordered. Although a color balance among R, G, and B is lost, it was considered that slight color changes of defects and discrimination from dark background were easier than the usual color CCD camera. HSI and chromaticity conversions were tested as a preprocessing to detect various defects. With the improvement on the detections of bruises and defects, this will further increase the effectiveness of the current eggplant-grading machine.
机译:在2002年的冈山的JA(农业合作社协会)中引入了茄子分级系统.6 CCD彩色相机安装,以评估果实外观(果子颜色,尺寸,形状,瘀伤和疾病),之前和之后通过6图像抓取板连接到2个PC。水果长度,平均,最大值和最小直径,面积,表观体积,水果颜色,花萼颜色,水果形状,水果弯曲程度,瘀伤数,瘀伤等等等的物理性质从中提取图片。将6个CCD彩色摄像头分为2个单元,该单元由每组3个摄像机组成,安装完整的表面检查。然而,在茄子果实表面上检测几种缺陷并不容易,因为水果具有非常暗的紫色颜色,并且几种缺陷是非常相似的皮肤颜色。在本文中,使用了一种新的彩色相机,其灵敏度范围从可见区域到红外区域。大多数果实在红外区域(700-1200nm)中具有更高的光谱反射率。彩色CCD摄像机具有常用彩色摄像机的相同G和B组件,但R信号包括红外区域被特殊订购。虽然R,G和B之间的色彩平衡丢失,但是认为虽然来自暗背景的缺陷和歧视的略微颜色变化比通常的颜色CCD相机更容易。 HSI和色度转换被测试为预处理以检测各种缺陷。随着瘀伤和缺陷的检测的改善,这将进一步提高当前茄子分级机的有效性。

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