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    • 4. 发明授权
    • Attached matter detector and in-vehicle device controller using the same
    • 附件物质检测器和使用其的车载设备控制器
    • US09215427B2
    • 2015-12-15
    • US13763980
    • 2013-02-11
    • Hideaki HiraiIzumi ItohMasanori Kobayashi
    • Hideaki HiraiIzumi ItohMasanori Kobayashi
    • H04N7/18B60S1/08G06K9/00
    • H04N7/18B60S1/0844G06K9/00825
    • An attached matter detector includes a light source; an imager receiving transmitted light from a predetermined imaging region on a light-receiving region for an imaging region and imaging an image of the imaging region, and receiving reflected light on a light-receiving region for attached matter detection when light from the light source is reflected by attached matter and imaging an image of the attached matter; a parameter calculator of an image for an attached matter image region calculating a parameter of an image for an attached matter image region as information of an image region of the attached matter; a parameter calculator of an image for an imaging region calculating a parameter of an image for an imaging region as information of the imaging region; and an output device of an attached matter state signal outputting a signal showing a state of the attached matter based on the calculated parameters.
    • 附件检测器包括光源; 成像器接收来自用于成像区域的光接收区域上的预定成像区域的透射光并且对成像区域的图像进行成像,并且当来自光源的光为来自接收物体检测的光接收区域时,接收反射光 由附件反映并成像附件的图像; 计算附着物图像区域的图像的参数的附着图像区域的图像的参数计算器,作为附着物的图像区域的信息; 用于计算成像区域的图像的参数的成像区域的图像的参数计算器,作为成像区域的信息; 以及附加状态信号的输出装置,根据计算出的参数输出表示附件的状态的信号。
    • 6. 发明申请
    • DETECTION APPARATUS AND METHOD
    • 检测装置和方法
    • US20130027557A1
    • 2013-01-31
    • US13549917
    • 2012-07-16
    • Hideaki HiraiIzumi Itoh
    • Hideaki HiraiIzumi Itoh
    • H04N7/18
    • B60S1/0844G01N21/21G06K9/00791
    • A substance detection apparatus and method including a light source to emit light to a planar transparent member having a proximal first face and a distal second face opposite the first face, the light from the light source first striking the first face of the planar transparent member. The substance detection apparatus and method including an image capture lens, a polarization filter, an image sensor, and a substance detection processor. The light emitted from the light source is reflected at the substance present on the second face of the planar transparent member, and the image sensor receives light reflected from the substance, via the image capture lens and the polarization filter, to capture an image of the substance present on the second face of the planar transparent member.
    • 一种物质检测装置和方法,其特征在于,包括向具有近端第一面和与第一面相反的远端第二面的平面状透明部件发光的光源,来自光源的光首先撞击平面状透明部件的第一面。 物质检测装置和方法包括图像拍摄透镜,偏振滤光器,图像传感器和物质检测处理器。 从光源发射的光在平面透明构件的第二面上存在的物质反射,并且图像传感器经由图像拍摄透镜和偏振滤光器接收从物质反射的光,以捕获图像 存在于平面透明构件的第二面上的物质。
    • 7. 发明授权
    • Optical fiber probe, optical detection device, and optical detection method
    • 光纤探头,光学检测装置和光学检测方法
    • US07586084B2
    • 2009-09-08
    • US11547032
    • 2006-02-02
    • Izumi ItohMasato TakadaTaroh TerashiMotoichi OhtsuTakashi YatsuiMotonobu Kourogi
    • Izumi ItohMasato TakadaTaroh TerashiMotoichi OhtsuTakashi YatsuiMotonobu Kourogi
    • G02B6/26
    • G01Q60/22
    • An optical detection device image is disclosed that allows fast measurements using near-field light at high resolution and high efficiency but without necessity of position alignment of an optical fiber probe. The optical detection device includes an optical fiber probe having a core for propagating light with an optical probe being formed at a front end of the core; a movement control unit to move the optical fiber probe to approach or depart from a sample; and a detection unit to detect light from the sample surface, wherein on the front end surface of the core of the optical probe, there are a first exit section on a peripheral side for emitting propagating light and a second exit section for seeping out the near-field light, the first exit section and the second exit section are formed in a concentric manner, and the tilt angle of the first exit section is different from the tilt angle of the second exit section.
    • 公开了一种光学检测装置图像,其允许使用高分辨率和高效率的近场光进行快速测量,但不需要光纤探针的位置对准。 光学检测装置包括光纤探针,其具有用于传播光的芯,光纤探针形成在芯的前端; 移动控制单元,用于移动光纤探针以接近或离开样本; 以及检测单元,用于检测来自所述样品表面的光,其中在所述光学探针的所述芯的前端表面上,在用于发射传播光的外围侧上具有第一出射部分,以及用于渗出所述近端的第二出射部分 第一出口部和第二出口部以同心方式形成,第一出口部的倾斜角度与第二出口部的倾斜角度不同。
    • 8. 发明申请
    • IMAGING UNIT AND METHOD FOR INSTALLING THE SAME
    • 成像单元及其安装方法
    • US20150054954A1
    • 2015-02-26
    • US14372061
    • 2013-02-12
    • Izumi ItohHideaki HiraiMasanori Kobayashi
    • Izumi ItohHideaki HiraiMasanori Kobayashi
    • G02B5/08B60R11/04H04N7/18
    • G02B5/0816B60R11/04B60R2011/0026B60S1/0844G01N21/21G01N2021/435H04N7/18
    • An imaging unit includes a light source, an imaging element to receive a light having entered an outer surface of the transparent plate-like member from a predetermined imaging area and transmitted through the transparent plate-like member and a light from the light source reflected by an attached matter on the outer surface, to capture an image of the predetermined imaging area and that of the attached matter, a mirror module fixed on the internal surface of the transparent plate-like member to fixedly support a reflective mirror to reflect the light from the light source, an imaging module to fixedly support the light source and the imaging element, fixed relative to the internal surface of the transparent plate-like member so that the imaging element captures an image in a certain direction, and a positioning mechanism to determine relative positions of the mirror module and the imaging module.
    • 成像单元包括光源,成像元件,用于从预定的成像区域接收从透明板状构件进入透明板状构件的外表面并透过透明板状构件的光和来自光源反射的光 在外表面上附着物体,以捕获预定成像区域和附着物的图像,固定在透明板状构件的内表面上的反射镜模块,以固定地支撑反射镜以反射来自 光源,用于固定地支撑光源和成像元件的成像模块,其相对于透明板状部件的内表面固定,使得成像元件在某个方向上捕获图像;以及定位机构,用于确定 镜模块和成像模块的相对位置。
    • 9. 发明申请
    • ATTACHED MATTER DETECTOR AND IN-VEHICLE DEVICE CONTROLLER USING THE SAME
    • 使用相同的附件检测器和车载设备控制器
    • US20130208120A1
    • 2013-08-15
    • US13763980
    • 2013-02-11
    • Hideaki HiraiIzumi ItohMasanori Kobayashi
    • Hideaki HiraiIzumi ItohMasanori Kobayashi
    • H04N7/18
    • H04N7/18B60S1/0844G06K9/00825
    • An attached matter detector includes a light source; an imager receiving transmitted light from a predetermined imaging region on a light-receiving region for an imaging region and imaging an image of the imaging region, and receiving reflected light on a light-receiving region for attached matter detection when light from the light source is reflected by attached matter and imaging an image of the attached matter; a parameter calculator of an image for an attached matter image region calculating a parameter of an image for an attached matter image region as information of an image region of the attached matter; a parameter calculator of an image for an imaging region calculating a parameter of an image for an imaging region as information of the imaging region; and an output device of an attached matter state signal outputting a signal showing a state of the attached matter based on the calculated parameters.
    • 附件检测器包括光源; 成像器接收来自用于成像区域的光接收区域上的预定成像区域的透射光并且对成像区域的图像进行成像,并且当来自光源的光为来自接收物体检测的光接收区域时,接收反射光 由附件反映并成像附件的图像; 计算附着物图像区域的图像的参数的附着图像区域的图像的参数计算器,作为附着物的图像区域的信息; 用于计算成像区域的图像的参数的成像区域的图像的参数计算器,作为成像区域的信息; 以及附加状态信号的输出装置,根据计算出的参数输出表示附件的状态的信号。