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    • 1. 发明授权
    • Vehicle key system
    • 车辆钥匙系统
    • US06710700B1
    • 2004-03-23
    • US09648629
    • 2000-08-28
    • Hirofumi TatsukawaHisashi IshikuraToru MoritaKeiichi EnokiMasaru FukuFumitaka SatouKoji Nagao
    • Hirofumi TatsukawaHisashi IshikuraToru MoritaKeiichi EnokiMasaru FukuFumitaka SatouKoji Nagao
    • G05B1900
    • B60R25/252B60R25/04G07C9/00563G07C2009/00793
    • A vehicle key system comprises a transmitter including a fingerprint information capturing unit for capturing fingerprint information from a user's fingerprint, and a transmit unit for transmitting the fingerprint information captured by the fingerprint information capturing unit. The system also includes an attaching unit disposed in a vehicle, for attaching the transmitter thereto, and a receiver disposed in the vehicle, including a receive unit for receiving the fingerprint information transmitted from the transmit unit of the transmitter, a fingerprint verification unit for verifying the fingerprint information against a list of pieces of previously stored fingerprint information, an attaching detection unit for determining whether or not the transmitter is attached to the attaching unit, and a control unit for controlling pieces of equipment in the vehicle according to a verification result from the fingerprint verification unit and a detection result from the mounting detection unit. The user can manipulate the pieces of equipment, e.g. start the engine, by actuating a switch, only when the electronic key transmitter is attached to the attaching unit.
    • 车辆钥匙系统包括:发射器,包括用于从用户的指纹捕获指纹信息的指纹信息捕获单元;以及发送单元,用于发送由指纹信息捕获单元捕获的指纹信息。 该系统还包括设置在车辆中的用于将发射器附接到其上的附接单元和设置在车辆中的接收器,包括用于接收从发射机的发射单元发送的指纹信息的接收单元,用于验证的指纹验证单元 所述指纹信息针对先前存储的指纹信息的列表,用于确定所述发送器是否附接到所述附接单元的附着检测单元,以及用于根据来自所述附加单元的验证结果来控制所述车辆中的设备的控制单元 指纹验证单元和来自安装检测单元的检测结果。 用户可以操纵这些设备,例如, 只有当电子钥匙发射器连接到安装单元时,通过启动开关启动发动机。
    • 5. 发明授权
    • Face portion detecting apparatus
    • 面部检测装置
    • US06952498B2
    • 2005-10-04
    • US09987638
    • 2001-11-15
    • Hisashi Ishikura
    • Hisashi Ishikura
    • B60K28/06A61B3/14G06K9/00G06K9/20G06T1/00G06K9/46
    • G06K9/2027G06K9/00255G06K9/00604
    • In a face portion detecting apparatus, an image of an eye portion of a car driver can be properly extracted without adverse influences caused by a reflection image reflected from a luster reflection surface of spectacles worn by the car driver. The face portion detecting apparatus is arranged by a light source of an illumination for illuminating a face portion of a human being from different directions from each other; a camera for photographing the face portion which is illuminated by the light source; an illumination lighting control unit for controlling turn-ON operation of the light source; a camera control unit for controlling the camera in synchronism with the turn-ON operation of the illumination light source; and a retina reflection detecting unit for removing a reflection image of an article having a luster reflection surface by employing at least one image which is acquired by the camera in synchronism with the turn-ON operation of the illumination light source, whereby only a determined face portion is extracted.
    • 在面部检测装置中,可以适当地提取汽车驾驶员的眼睛部分的图像,而不会受到由驾驶员佩戴的眼镜的光泽反射面反射的反射图像的不利影响。 面部检测装置由照明用光源配置,用于照射来自彼此不同方向的人脸部分; 用于拍摄被光源照射的面部部分的照相机; 照明照明控制单元,用于控制光源的接通操作; 照相机控制单元,用于与照明光源的接通操作同步地控制照相机; 以及视网膜反射检测单元,用于通过采用与照明光源的接通操作同步的由照相机获取的至少一个图像来去除具有光泽反射表面的物品的反射图像,由此只有确定的面 部分被提取。
    • 8. 发明申请
    • VEHICLE-ONBOARD DRIVING LANE RECOGNIZING APPARATUS
    • 车载驾驶员识别装置
    • US20080175437A1
    • 2008-07-24
    • US12055132
    • 2008-03-25
    • Hisashi IshikuraYoshiyuki FujiiTakayuki YamamotoHideki Tsukaoka
    • Hisashi IshikuraYoshiyuki FujiiTakayuki YamamotoHideki Tsukaoka
    • G06K9/00
    • G06K9/00798G06K9/00973G06K9/4604G06T7/74
    • A vehicle-onboard driving lane recognizing apparatus of a small scale includes an image pick-up unit (1) mounted on a motor vehicle for picking up images of scenes making appearance in front of the motor vehicle, an image data selecting unit (2) for selecting image data only of a predetermined region from the image picked up by the image pick-up unit (1), an image data storing unit (3) for storing the image data, and a driving lane recognizing unit (4) for detecting lane markings (21) on the road from the image data stored in the image data storing unit (3) to thereby recognize a driving lane extending along the lane markings (21). The image data selecting unit (2), the image data storing unit (3) and the driving lane recognizing unit (4) are all implemented in a single chip.
    • 小型车载行车道识别装置包括安装在机动车辆上的摄像单元(1),用于拾取机动车辆前方出现的场景的图像,图像数据选择单元(2) 用于从由图像拾取单元(1)拾取的图像中仅选择预定区域的图像数据,用于存储图像数据的图像数据存储单元(3)和用于检测图像数据的行驶车道识别单元(4) 根据存储在图像数据存储单元(3)中的图像数据在道路上的车道标记(21),从而识别沿着车道标记(21)延伸的行驶车道。 图像数据选择单元(2),图像数据存储单元(3)和行驶车道识别单元(4)都被实现在单个芯片中。
    • 9. 发明申请
    • Lane deviation prevention apparatus
    • 车道偏离防止装置
    • US20070100551A1
    • 2007-05-03
    • US11411928
    • 2006-04-27
    • Hisashi Ishikura
    • Hisashi Ishikura
    • B62D6/00G06F17/10
    • B62D15/029B60T8/17551B60T8/17557B60T2201/083B60T2201/087B60W10/18B60W10/20B60W30/12B62D15/025G08G1/167
    • There is provided a lane deviation prevention apparatus which can make a lane deviation prediction judgment more accurately. The lane deviation prevention apparatus includes driving lane shape recognition means to detect a lane mark on a road included in a front image within a lane mark detection distance range and to recognize a shape of a driving lane boundary, and a deviation prediction judgment means that judges, based on the shape of the driving lane boundary, whether the vehicle deviates from a driving lane after a previously set deviation prediction time and outputs a deviation prevention output in a case where it is judged that the vehicle deviates, and the driving lane shape recognition means dynamically sets the position of the lane mark detection distance range in accordance with a vehicle speed of the vehicle and the deviation prediction time.
    • 提供一种能够更准确地进行车道偏离预测判断的车道偏离防止装置。 车道偏离防止装置包括驾驶车道形状识别装置,用于检测车道标记检测距离范围内的前方车道中包含的道路上的车道线,并识别行驶车道边界的形状;以及偏差预测判断装置,其判断 基于驾驶车道边界的形状,在预先设定的偏差预测时间之后车辆是否偏离行驶车道,并且在判断为车辆偏离的情况下输出偏差防止输出,并且行驶车道形状识别 意味着根据车辆的车速和偏差预测时间来动态地设定车道线检测距离范围的位置。
    • 10. 发明授权
    • Image input apparatus
    • 图像输入装置
    • US07889274B2
    • 2011-02-15
    • US11188641
    • 2005-07-26
    • Kenichi FujieYoshiyuki FujiiHisashi IshikuraTomoko KondaTakayuki Yamamoto
    • Kenichi FujieYoshiyuki FujiiHisashi IshikuraTomoko KondaTakayuki Yamamoto
    • H04N5/238H04N5/235G03B7/00
    • H04N5/2351H04N5/2355
    • An image input apparatus can acquire an image with a high contrast without saturating a camera output even for a subject having a large light and dark difference while achieving a wide dynamic range. An image sensor has an input-output characteristic varying with a plurality of regions delimited according to a difference in the amount of incident light. A video luminance signal level is detected from a video signal of the image sensor. An amount of light on a screen is calculated from the image luminance signal level. The image sensor is adjusted to make the amount of light on the screen coincide with a target light amount. The target light amount is set such that a relation between the target light amount R and an amount of light Q at a change point that is at the lowest luminance in an input-output characteristic of the image sensor satisfies R
    • 图像输入装置可以获得具有高对比度的图像,即使对于具有大的明暗差异的对象,也不会使相机输出饱和,同时实现宽的动态范围。 图像传感器具有根据入射光量的差定义的多个区域而变化的输入 - 输出特性。 从图像传感器的视频信号检测视频亮度信号电平。 根据图像亮度信号电平计算屏幕上的光量。 调整图像传感器以使屏幕上的光量与目标光量一致。 目标光量被设定为使得目标光量R与在图像传感器的输入输出特性中处于最低亮度的变化点处的光量Q之间的关系满足R