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    • 5. 发明授权
    • Traveling environment recognition device
    • 旅行环境识别装置
    • US08620025B2
    • 2013-12-31
    • US13059741
    • 2009-06-24
    • Mirai HiguchiRyo OtaTakuya NakaMorihiko SakanoShoji MuramatsuTatsuhiko Monji
    • Mirai HiguchiRyo OtaTakuya NakaMorihiko SakanoShoji MuramatsuTatsuhiko Monji
    • G06K9/00G06K9/36G06K9/32
    • G06K9/00798B60W30/14B60W30/143B60W40/072B60W40/076B60W2420/42B60W2550/142G08G1/165G08G1/167
    • In order to perform vehicle control, a warning process, and the like which do not give a driver an uncomfortable feeling in speed adjustment, a warning process, and the like corresponding to a road shape such as a curve, it is necessary to recognize not only a near road shape but also a far road shape with high accuracy. A traveling environment recognition device includes: a measurement unit which measures a target object; a three-dimensional object detection unit which detects a three-dimensional object on the basis of a signal acquired by the measurement unit; a road shape prediction unit which predicts a road shape on which a target vehicle is traveling; a three-dimensional object selection unit which selects, from among the three-dimensional objects detected by the three-dimensional object detection unit, only a three-dimensional object within a predetermined range from a point of the road predicted by the road shape prediction unit; and a road shape estimation unit which estimates the road shape on the basis of position information of the three-dimensional object selected by the three-dimensional object selection unit.
    • 为了执行车辆控制,警告处理等,其不给驾驶员在与曲线等道路形状对应的速度调节,警告处理等中感到不舒适的感觉,因此不需要识别 只有近路形状,但也具有高精度的远道形状。 行驶环境识别装置包括:测量目标物体的测量单元; 三维物体检测单元,其基于由测量单元获取的信号来检测三维物体; 道路形状预测单元,其预测目标车辆行驶的道路形状; 三维物体选择单元,从三维物体检测单元检测到的三维物体中,仅从道路形状预测单元预测的道路上的预定范围内的三维物体中, ; 以及道路形状估计单元,其基于由三维物体选择单元选择的三维物体的位置信息来估计道路形状。
    • 6. 发明授权
    • Stereo image processing device and method
    • 立体图像处理装置及方法
    • US08548226B2
    • 2013-10-01
    • US12711787
    • 2010-02-24
    • Morihiko SakanoMirai HiguchiTakuya NakaTakeshi ShimaShoji Muramatsu
    • Morihiko SakanoMirai HiguchiTakuya NakaTakeshi ShimaShoji Muramatsu
    • G06K9/00G06K9/44
    • G06T7/593G06T2207/10012
    • In stereo matching based on standard area matching, in order to suppress a decrease in matching accuracy, it is effective to adaptively change a matching area in accordance with the local properties of an image. However, this requires high calculation costs. Thus, the present invention provides a stereo image processing apparatus including an image pickup unit 101 configured to take a plurality of image data using a plurality of cameras, an image memory 102 configured to store the plurality of image data taken by the image pickup unit 101, a calculated disparity storage unit 105 configured to store disparity data determined based on the plurality of image data, a matching area control unit 103 configured to set a matching area for each pixel based on the plurality of data read from the image memory 102 and the disparity data read from the calculated disparity storage unit 105, and a disparity calculating unit 104 configured to perform matching on the image data based on the plurality of image data read from the image memory 102 and the matching area for each pixel set by the matching area control unit 103 to calculate disparity data.
    • 在基于标准区域匹配的立体匹配中,为了抑制匹配精度的降低,根据图像的局部特性自适应地改变匹配区域是有效的。 然而,这需要很高的计算成本。 因此,本发明提供了一种立体图像处理装置,其包括被配置为使用多个摄像机拍摄多个图像数据的图像拾取单元101,被配置为存储由图像拾取单元101拍摄的多个图像数据的图像存储器102 被配置为存储基于多个图像数据确定的视差数据的计算出的视差存储单元105,匹配区域控制单元103,被配置为基于从图像存储器102读取的多个数据来设置每个像素的匹配区域, 从计算出的视差存储单元105读取的视差数据和视差计算单元104,被配置为基于从图像存储器102读取的多个图像数据和由匹配区域设置的每个像素的匹配区域对图像数据进行匹配 控制单元103来计算视差数据。
    • 7. 发明申请
    • STEREO IMAGE PROCESSING DEVICE AND METHOD
    • 立体图像处理装置和方法
    • US20100328427A1
    • 2010-12-30
    • US12711787
    • 2010-02-24
    • Morihiko SAKANOMirai HiguchiTakuya NakaTakeshi ShimaShoji Muramatsu
    • Morihiko SAKANOMirai HiguchiTakuya NakaTakeshi ShimaShoji Muramatsu
    • H04N13/02H04N13/00
    • G06T7/593G06T2207/10012
    • In stereo matching based on standard area matching, in order to suppress a decrease in matching accuracy, it is effective to adaptively change a matching area in accordance with the local properties of an image. However, this requires high calculation costs. Thus, the present invention provides a stereo image processing apparatus including an image pickup unit 101 configured to take a plurality of image data using a plurality of cameras, an image memory 102 configured to store the plurality of image data taken by the image pickup unit 101, a calculated disparity storage unit 105 configured to store disparity data determined based on the plurality of image data, a matching area control unit 103 configured to set a matching area for each pixel based on the plurality of data read from the image memory 102 and the disparity data read from the calculated disparity storage unit 105, and a disparity calculating unit 104 configured to perform matching on the image data based on the plurality of image data read from the image memory 102 and the matching area for each pixel set by the matching area control unit 103 to calculate disparity data.
    • 在基于标准区域匹配的立体匹配中,为了抑制匹配精度的降低,根据图像的局部特性自适应地改变匹配区域是有效的。 然而,这需要很高的计算成本。 因此,本发明提供了一种立体图像处理装置,其包括被配置为使用多个摄像机拍摄多个图像数据的图像拾取单元101,被配置为存储由图像拾取单元101拍摄的多个图像数据的图像存储器102 被配置为存储基于多个图像数据确定的视差数据的计算出的视差存储单元105,匹配区域控制单元103,被配置为基于从图像存储器102读取的多个数据和每个像素设置匹配区域, 从计算出的视差存储单元105读取的视差数据和视差计算单元104,被配置为基于从图像存储器102读取的多个图像数据和由匹配区域设置的每个像素的匹配区域对图像数据进行匹配 控制单元103来计算视差数据。
    • 9. 发明申请
    • Detection Device of Planar Area and Stereo Camera System
    • 平面和立体相机系统检测装置
    • US20110267430A1
    • 2011-11-03
    • US13094239
    • 2011-04-26
    • Morihiko SAKANOMirai HiguchiTakeshi ShimaShoji Muramatsu
    • Morihiko SAKANOMirai HiguchiTakeshi ShimaShoji Muramatsu
    • H04N13/02G01C11/12
    • G01C11/06G06T5/006G06T7/33G06T7/73G06T7/97G06T2207/10012G06T2207/10021G06T2207/30252H04N13/133
    • An object of the present invention is to provide a detection device of a planar area, which suppresses matching of luminance values in areas other than a planar area, and non-detection and erroneous detection of the planar area arising from an error in projection transform.The detection device of a planar area includes an image obtaining section for obtaining a left image 100 and a right image 110; a planar area aligning section 30 for setting given regions of interest to the obtained left image 100 and the right image 110, and through use of a geometric transform function that matches the region of interest of the right image with the region of interest of the left image, performing geometric transform to generate a geometric transform image 130; and a planar area detecting section 55 for detecting a planar area 140 based on the geometric transform image 130 and the region of interest of the right image 110. The planar area aligning section 30 sets the planar area 140 detected by the planar area detecting section 55 as a given region of interest.
    • 本发明的目的是提供一种平面区域的检测装置,其抑制平面区域以外的区域中的亮度值的匹配以及由投影变换中的误差引起的平面区域的非检测和错误检测。 平面区域的检测装置包括用于获得左图像100和右图像110的图像获取部分; 平面区域对准部分30,用于设置所获得的左图像100和右图像110的感兴趣区域,并且通过使用与右图像的感兴趣区域匹配的几何变换函数与左侧的关注区域 图像,执行几何变换以生成几何变换图像130; 以及用于基于几何变换图像130和右图像110的感兴趣区域来检测平面区域140的平面区域检测部分55.平面区域对准部分30设置由平面区域检测部分55检测到的平面区域140 作为一个给定的感兴趣的区域。