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    • 6. 发明公开
    • DUAL MODE OPTICAL RAIN SENSING DEVICE
    • 双模式光学雨量检测装置
    • EP3285063A1
    • 2018-02-21
    • EP17184289.1
    • 2017-08-01
    • Delphi Technologies, Inc.
    • LOW, Yew KwangYEO, Kok WeeTAN, Ke
    • G01N21/47B60S1/02G01N21/552G01N21/958B60S1/08
    • B60S1/0837G01N21/474G01N21/552G01N21/958G01N2021/4735G01N2021/945G01N2021/9586
    • An illustrative example embodiment of a device (30) for detecting rain or a substance on a windshield (22) includes at least one radiation source (32), an internal reflection sensor (42) situated to detect at least some of a first portion of the radiation (32) that reflects from the windshield (22). The internal reflection sensor (42) provides a first output that has a characteristic that differs based on whether at least one raindrop (60) is on the windshield (22). A scattered reflection sensor (44) is situated to detect at least some of a second portion of the radiation (32) reflecting from rain near the windshield (22) or a substance on the windshield (22). The scattered reflection sensor (44) provides a second output indicative of an amount of radiation (32) incident on the scattered reflection sensor (44). A processor is configured to determine a condition of the windshield (22) based on the first output and the second output.
    • 用于检测雨水或挡风玻璃(22)上的物质的装置(30)的说明性示例实施例包括至少一个辐射源(32),内部反射传感器(42),该内部反射传感器设置成检测至少一些 从挡风玻璃(22)反射的辐射(32)。 内部反射传感器(42)提供具有基于至少一个雨滴(60)是否位于挡风玻璃(22)上而不同的特性的第一输出。 散射反射传感器(44)位于检测从挡风玻璃(22)附近的雨水或挡风玻璃(22)上的物质反射的辐射(32)的第二部分的至少一些。 散射反射传感器(44)提供指示入射在散射反射传感器(44)上的辐射量(32)的第二输出。 处理器被配置成基于第一输出和第二输出来确定挡风玻璃(22)的状况。
    • 10. 发明公开
    • IMAGE CAPTURING SYSTEM AND ELECTRONIC ENDOSCOPE SYSTEM
    • BILDERFASSUNGSSYSTEM UND ELEKTRONISCHES ENDOSKOPSYSTEM
    • EP3106079A1
    • 2016-12-21
    • EP16175262.1
    • 2015-09-01
    • HOYA CORPORATION
    • CHIBA, Toru
    • A61B1/00A61B1/06A61B5/1455A61B5/1459G06T7/00G01N33/49
    • A61B1/0638A61B1/00009A61B1/0002A61B1/0005A61B1/00059A61B1/00186A61B1/0646A61B5/0075A61B5/14546A61B5/14551A61B5/14552A61B5/1459G01N21/314G01N21/474G01N33/4925G01N2021/3148
    • An image capturing system, comprising: a light source device (208) that emits illumination light containing wavelength regions; an image pickup device (108) having an RGB filter; and an image processing unit (220) to calculate a first index representing a molar concentration ratio of a first biological substance and a second biological substance contained in the living tissue, wherein the wavelength regions comprise: a first wavelength region corresponding to a B filter; and a second wavelength region corresponding to a G filter, wherein: in the first wavelength region, a value of image data B varies depending on the molar concentration ratio; the second wavelength region contains a plurality of isosbestic points of the living tissue, and, in the second wavelength region, a value of image data G takes a constant value without depending on the molar concentration ratio. The second index is defined as a value obtained by deviding the image data G by the image data R. The image processing unit is configured to calculate a third index representing a degree of possibility of malignant tumor of the living tissue based on the first index and the second index.
    • 一种图像捕获系统,包括:发射包含波长区域的照明光的光源装置; 具有RGB滤光器的图像拾取装置(108) 以及图像处理单元,计算表示生物体中含有的第一生物物质和第二生物物质的摩尔浓度比的第一指标,其中所述波长区域包括:对应于B滤光器的第一波长区域; 以及对应于G滤波器的第二波长区域,其中:在所述第一波长区域中,图像数据B的值根据摩尔浓度比而变化; 所述第二波长区域包含所述活体组织的多个等位点,并且在所述第二波长区域中,所述图像数据G的值不依赖于所述摩尔浓度比而为一定值。 第二指标被定义为通过图像数据R去除图像数据G而获得的值。图像处理单元被配置为基于第一指标计算表示生物体组织的恶性肿瘤的可能性程度的第三指数,以及 第二个指标。