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    • 2. 发明授权
    • Steering assist apparatus for traveling in reverse
    • 转向辅助装置反向行驶
    • US06611744B1
    • 2003-08-26
    • US09807348
    • 2001-07-13
    • Kazunori ShimazakiKoji HikaSatoshi YamadaIsao SuzukiMasahiko AndoTomio KimuraKousuke TeramuraHisashi Kuriya
    • Kazunori ShimazakiKoji HikaSatoshi YamadaIsao SuzukiMasahiko AndoTomio KimuraKousuke TeramuraHisashi Kuriya
    • G06F700
    • B60R1/00B60R2300/207B60R2300/301B60R2300/302B60R2300/305B60R2300/404B60R2300/806B60R2300/8086B60T2201/10B62D15/028
    • A steering assist apparatus includes a camera for picking up the rear side of a vehicle, a monitor disposed in a driver's compartment of the vehicle, a steering angle sensor for detecting a steering angle of a steering wheel, and a display controlling unit for displaying on the monitor an image through said camera when the vehicle reverses and for superimposing and displaying on said monitor a guide display for assisting the drive of the vehicle when the vehicle is to be parked. The guide display includes a steering start guide line fixedly displayed in a predetermined position of an image field of the monitor for guiding a steering start position for parking, and a steering amount guide mark moved and displayed along the steering start guide line on the image field of the monitor in correspondence with a steering angle of the steering wheel detected by the steering angle sensor. The driver performs the steering operation of the vehicle while recognizing the position for the opposite turning of the steering wheel and the steering amount and the steering start position for parking on the basis of the image on the rear side of the vehicle and the steering amount guide mark and the steering start guide line.
    • 转向辅助装置包括用于拾取车辆后侧的照相机,设置在车辆的驾驶室中的监视器,用于检测方向盘的转向角的转向角传感器,以及用于显示方向盘的显示控制单元 当车辆反转时,通过所述摄像机监视图像,并且在所述监视器上叠加和显示用于当车辆停放时辅助车辆的驱动的引导显示器。 引导显示器包括固定地显示在监视器的图像场的预定位置的导向引导线,用于引导用于停车的转向开始位置,以及沿着转向启动引导线在图像场上移动和显示的转向量引导标记 与转向角传感器检测到的方向盘的转向角对应的监视器。 驾驶员在基于车辆后方的图像识别出方向盘的相对转动的位置和转向量以及用于停车的转向开始位置的位置时,执行车辆的转向操作,并且转向量引导件 标记和转向启动指导线。
    • 3. 发明授权
    • Vehicle backing support apparatus
    • 车载支撑装置
    • US06704653B2
    • 2004-03-09
    • US10030792
    • 2002-04-15
    • Hisashi KuriyaTakashi EndoIsao SuzukiMasahiko AndoKazunori Shimazaki
    • Hisashi KuriyaTakashi EndoIsao SuzukiMasahiko AndoKazunori Shimazaki
    • G05D100
    • B62D15/0275
    • An object of the present invention is to provide a vehicle backward movement assisting apparatus during parking, in which a steering assisting guide display is performed so that a driver can easily comprehend a steering rate and time frame, a steering amount or a backward movement amount in parking a vehicle. When a vehicle starts a turn, a detecting means of a rotation speed difference between a right wheel and a left wheel detects a rotation speed difference between a right wheel and a left wheel. When the difference becomes the predetermined value or larger, it is recognized that the vehicle starts the turn. The angle speed, which is detected by a yaw rate sensor since the start of the turn, is added as a yaw angle. Then, the vehicle is stopped and a shift lever is operated so as to be set to a backward movement position, whereby the yaw angle at this time is detected as the turn angle since the time of starting the turn. An image processor displays a parallel parking guide line and a vehicle space mark so as to be inclined on the screen of a monitor based on the turn angle.
    • 本发明的目的是提供一种在停车期间的车辆后退辅助装置,其中执行转向辅助引导显示,使得驾驶员能够容易地理解转向率和时间框架,转向量或后退移动量 停车 当车辆开始转弯时,右轮和左轮之间的转速差的检测装置检测右轮和左轮之间的转速差。 当差值成为规定值以上时,认识到车辆开始转弯。 由转弯开始以来的偏航率传感器检测出的角速度作为偏航角加上。 然后,车辆停止,并且变速杆被操作以被设置为向后移动位置,由此从开始转弯时起,此时的偏航角被检测为转向角。 图像处理器基于转角来显示平行停车引导线和车辆空间标记,以便在监视器的屏幕上倾斜。
    • 4. 发明申请
    • PARKING ASSISTANCE APPARATUS AND PARKING ASSISTANCE METHOD
    • 停车辅助设备和停车辅助方法
    • US20110298926A1
    • 2011-12-08
    • US13202004
    • 2010-02-25
    • Hiroshi KatsunagaKazunori ShimazakiTomio KimuraYutaka NakashimaKoji HikaKeisuke Inoue
    • Hiroshi KatsunagaKazunori ShimazakiTomio KimuraYutaka NakashimaKoji HikaKeisuke Inoue
    • H04N7/18
    • B62D15/027G06K9/00798G06K9/00912G06T7/73G06T2207/30208G06T2207/30264G08G1/16G08G1/168
    • Provided is a parking assistance apparatus utilizing a fixed target by taking an image thereof, the parking assistance apparatus being capable of recognizing the fixed target with high recognition accuracy while using simple image recognition processing. A mark (M) includes a plurality of illuminators (1). Sets of the plurality of illuminators (1) form characteristic points C1 to C4. Turn-ON request generation means (36) of a vehicle-side device (20) sequentially generates turn-ON requests for each characteristic point and transmits the generated turn-ON requests to a parking-lot-side device (10). A display control unit (11) of the parking-lot-side device (10) turns ON the characteristic points based on the turn-ON requests. An image recognition unit (31) of the vehicle-side device (20) performs image recognition for the characteristic points sequentially. Using the recognition result, positional parameter calculation means (34) of the vehicle-side device (20) calculates positional parameters of a camera with respect to the mark (M).
    • 提供一种通过拍摄图像来利用固定目标的停车辅助装置,在使用简单的图像识别处理的同时,能够以高识别精度识别固定目标的停车辅助装置。 标记(M)包括多个照明器(1)。 多个照明器(1)的组合形成特征点C1〜C4。 车辆侧设备(20)的接通请求产生装置(36)顺序地产生每个特征点的接通请求,并将生成的接通请求发送到停车场侧设备(10)。 停车场侧装置(10)的显示控制单元(11)基于接通请求接通特征点。 车辆侧装置(20)的图像识别单元(31)依次对特征点进行图像识别。 使用识别结果,车辆侧装置(20)的位置参数计算装置(34)计算相机相对于标记(M)的位置参数。
    • 7. 发明授权
    • Arrangement for guiding steering to assist parallel parking
    • 引导转向辅助平行停车的安排
    • US06825880B2
    • 2004-11-30
    • US09750815
    • 2000-12-28
    • Goro AsahiHisashi KuriyaKazunori Shimazaki
    • Goro AsahiHisashi KuriyaKazunori Shimazaki
    • H04N5222
    • B60Q9/005B60T2201/10B62D15/0275B62D15/028
    • When a vehicle is located in a predetermined position M, a steering amount guide mark is moved on a steering start guide line as a steering angle is increased by turning a steering wheel. The steering amount guide mark has a size according to the steering angle of the steering wheel at that time. When the steering angle becomes suitable, the steering amount guide mark has the same size as a target parking space T. Thus, a driver can more instinctively recognize the suitable steering angle of the steering wheel. Further, the driver can easily judge by observing the locus line of a left-hand forward corner portion of the vehicle whether or not the left-hand forward corner portion of the self-vehicle that particularly needed to be known in column parking on the left-hand side of a road interferes with a certain obstacle during a path until the target parking space T.
    • 当车辆位于预定位置M时,通过转动方向盘来提高转向角度,在转向启动引导线上移动转向量引导标记。 转向量引导标记具有与此时的方向盘的转向角度相对应的尺寸。 当转向角变得适当时,转向量引导标记具有与目标停车位T相同的尺寸。因此,驾驶员可以更直观地识别方向盘的合适的转向角。 此外,驾驶员可以通过观察车辆的左前角部的轨迹线来容易地判断在左侧的列停车场中特别需要知道的自车的左前角部分 道路的一侧在通往目标停车位T的路径间干扰某一障碍物。
    • 10. 发明授权
    • Optical thin film for solar cells and method of forming the same
    • 用于太阳能电池的光学薄膜及其形成方法
    • US07999177B2
    • 2011-08-16
    • US11416684
    • 2006-05-02
    • Kazunori Shimazaki
    • Kazunori Shimazaki
    • H01L31/0216
    • H01L31/02167H01L31/02168Y02E10/50
    • Disclosed is an optical thin film for a thin-film solar cell, which is formed directly on a top surface of the thin-film solar cell having a transparent conductive film layer to provide a high infrared emissivity and a lower solar absorptivity to the thin-film solar cell. The optical thin film is formed through a vacuum vapor deposition process. The thin film makes it possible to provide enhanced infrared emissivity based on its reduced thickness, while suppressing unnecessary incoming solar radiation in a simplified structure to achieve a reduced solar absorptivity so as to maintain desired cell efficiency. The optical thin film of the present invention is capable of achieving reduction in weight of a solar cell, and suitable for use, particularly, in space environments.
    • 公开了一种用于薄膜太阳能电池的光学薄膜,其直接形成在具有透明导电膜层的薄膜太阳能电池的顶表面上,以向薄膜太阳能电池提供高的红外发射率和较低的太阳能吸收率, 薄膜太阳能电池。 光学薄膜通过真空气相沉积工艺形成。 薄膜可以基于其减小的厚度提供增强的红外发射率,同时以简化的结构抑制不必要的进入的太阳辐射,以实现降低的太阳能吸收率,从而保持期望的电池效率。 本发明的光学薄膜能够实现太阳能电池的重量的减轻,特别适用于空间环境。