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    • 51. 发明授权
    • Projection apparatus and optical ranging method
    • 投影仪和光学测距方法
    • US08038303B2
    • 2011-10-18
    • US12208499
    • 2008-09-11
    • Hideaki Inoue
    • Hideaki Inoue
    • G03B21/00G03B21/14G03B3/00H04N3/26H04N3/23H04N3/223H04N3/227
    • H04N9/3194G03B21/53H04N9/317H04N9/3185
    • Disclosed is a projection apparatus including: a video display control section 53 to project and display a video according to input video data; and a projection distance obtainment section 14 to irradiate to a projection plane where the video is projected with a laser and displayed by the video display control section 53, and to obtain a projection distance to the projection plane, wherein when the projection distance is obtained by the projection distance obtainment section 14, the video display control section 53 adjusts a display status of at least a first video area 66 corresponding to a laser ranging point 63 which is an area where the laser is irradiated to a display status for obtaining the projection distance so that the distance from the projection apparatus to the projection plane can be measured fast and with high accuracy.
    • 公开了一种投影设备,包括:视频显示控制部分53,用于根据输入的视频数据投影和显示视频; 以及投影距离获取部分14,用激光照射到视频投射的投影平面并由视频显示控制部分53显示,并且获得到投影平面的投影距离,其中当投影距离通过 投影距离获取部分14,视频显示控制部分53调整与激光测距点63相对应的至少第一视频区域66的显示状态,激光测距点63是激光照射的区域,以获得投影距离的显示状态 使得能够快速且高精度地测量从投影装置到投影平面的距离。
    • 52. 发明申请
    • LIGHT SOURCE DEVICE AND PROJECTOR
    • 光源设备和投影机
    • US20100328632A1
    • 2010-12-30
    • US12773163
    • 2010-05-04
    • Hideyuki KurosakiHideaki Inoue
    • Hideyuki KurosakiHideaki Inoue
    • G03B21/28F21V9/16
    • G03B21/204F21V9/30G03B21/28
    • A light source device includes: a light emitting plate that has a plurality of segment regions including a transmissive portion that transmits light and a reflective portion on which a fluorescent substance layer; a light source that irradiates the fluorescent substance layer of the light emitting plate with the excitation light; a dichroic mirror that is disposed between the light source and the light emitting plate to transmit the excitation light and reflect fluorescent light from fluorescent substances of the fluorescent substance layer; and an optical device that condenses the excitation light transmitted by the transmissive portion of the light emitting plate and the fluorescent light reflected by the dichroic mirror on a single optical path to form a condensed light and radiate the condensed light toward the same direction.
    • 光源装置包括:发光板,其具有包括透射光的透射部分和具有荧光物质层的反射部分的多个分割区域; 用激发光照射发光板的荧光物质层的光源; 分光镜,设置在光源和发光板之间,以透射激发光并反射来自荧光物质层的荧光物质的荧光; 以及光学装置,其将由发光板的透射部分透射的激发光和由分色镜反射的荧光聚光在单个光路上,以形成聚光,并朝向相同方向辐射聚光。
    • 54. 发明申请
    • Projection apparatus, elevation angle control method therefor and recording medium
    • 投影仪,仰角控制方法及记录介质
    • US20070171377A1
    • 2007-07-26
    • US11655481
    • 2007-01-19
    • Hideaki Inoue
    • Hideaki Inoue
    • G03B21/26
    • G03B21/56G03B21/147
    • A projection apparatus includes a distance measuring unit that measures a distance to a screen on which an image is to be projected; a projection unit that has a zoom mechanism unit capable of changing a zoom magnification of a projection image, executes focusing based on the distance measured by the distance measuring unit and projects an image on the screen; and an elevation angle control unit that controls an elevation angle of the distance measuring unit based on the zoom magnification set by the zoom mechanism unit in such a way that a distance measuring center line of the distance measuring unit corresponds to a center point of a projection area of the projection image, wherein the center point of a projection area is determined according to the zoom magnification of the zoom mechanism unit.
    • 一种投影装置,包括距离测量单元,其测量与投影图像的屏幕的距离; 具有能够改变投影图像的变焦倍率的变焦机构单元的投影单元基于距离测量单元测量的距离来执行聚焦,并将图像投影在屏幕上; 以及仰角控制单元,其基于由变焦机构单元设定的变焦倍率来控制距离测量单元的仰角,使得距离测量单元的距离测量中心线对应于投影的中心点 投影图像的区域,其中根据变焦机构单元的变焦倍率来确定投影区域的中心点。
    • 57. 发明授权
    • Engine speed control for a hybrid electric vehicle
    • 混合动力汽车的发动机转速控制
    • US07040434B2
    • 2006-05-09
    • US10964892
    • 2004-10-15
    • Susumu KomiyamaTaketora NegomeHiroshi IwanoHideaki Inoue
    • Susumu KomiyamaTaketora NegomeHiroshi IwanoHideaki Inoue
    • B60K1/00
    • B60W20/11B60K6/365B60K6/445B60W10/06B60W10/08B60W20/00B60W2510/0638B60W2710/0677Y02T10/6239Y02T10/6286
    • A hybrid vehicle comprises a drive wheel (5), an internal combustion engine (1), a power generating motor (2) that generates an electric power by using an output power of the engine (1), and a planetary gear set (13) that comprises a combination of a gear element that is driven by the engine (1), a gear element that is connected to the power generating motor (2), and a gear element that is connected to the drive wheel (5). A target engine power is computed based on an accelerator operation amount. The engine (1) is controlled based on the target engine power. And control a rate of variation in the rotation speed of the engine (1) to be smaller, when the rotation speed of the power generating motor (2) increases than when the rotation speed of the power generating motor (2) decreases toward zero as a result of controlling the engine (1) based on the target engine power. Fuel consumption rate is thus improved.
    • 混合动力车辆包括通过使用发动机(1)的输出动力产生电力的驱动轮(5),内燃机(1),发电电动机(2)和行星齿轮组(13) ),其包括由发动机(1)驱动的齿轮元件,连接到发电电动机(2)的齿轮元件和连接到驱动轮(5)的齿轮元件的组合。 基于加速器操作量来计算目标发动机功率。 基于目标发动机功率来控制发动机(1)。 并且,当发电电动机(2)的转速比发电电动机(2)的转速向零下降时,发动机(1)的转速的变动率变小, 基于目标发动机功率来控制发动机(1)的结果。 燃油消耗率因此得到改善。
    • 58. 发明申请
    • Inclination angle detection device and inclination angle detection method
    • 倾角检测装置和倾斜角检测方法
    • US20050030523A1
    • 2005-02-10
    • US10912843
    • 2004-08-06
    • Hideaki Inoue
    • Hideaki Inoue
    • G01C9/06G01B11/00G01B11/24G01B11/26G01C1/00G01C3/06G01S17/06G01S17/87G03B21/56H04N17/00
    • H04N9/3185G01S17/06G01S17/87H04N9/3194
    • Each of a horizontal chart generating unit and a vertical chart generating unit generate eight charts #0 to #7, the bright/dark sections being placed sequentially in equal distances. Each pattern of each charts #0 to #7, is shifted little by little. Each chart #0 to #7 is sequentially projected on a screen, and each of the sensor controllers obtains an average phase difference, by obtaining the sensor data obtained by the result of measuring, from the distance-measuring sensors, and obtains the angle between an ideal screen that is vertical to a center line of distance-measuring sensors and the screen, by obtaining the distance to the two distance-measuring points on the screen, based on the obtained average phase difference. A projector control unit replaces the angles that each of the sensor controllers obtains, to inclination angles θH and θV of the screen, and supplies the angles to a trapezoidal correction unit.
    • 水平图生成单元和垂直图表生成单元中的每一个生成八个图表#0至#7,亮/暗区域以相等的距离顺序放置。 每个图表#0至#7的每个图案都逐渐移动。 每个图表#0至#7依次投影在屏幕上,并且每个传感器控制器通过从距离测量传感器获得由测量结果获得的传感器数据而获得平均相位差,并获得平均相位差 基于获得的平均相位差,通过获得与屏幕上的两个距离测量点的距离,垂直于距离测量传感器和屏幕的中心线的理想屏幕。 投影仪控制单元将每个传感器控制器获得的角度替换为屏幕的倾斜角度θH和thetaV,并将角度提供给梯形校正单元。
    • 60. 发明授权
    • Motion controller
    • 运动控制器
    • US6133705A
    • 2000-10-17
    • US168436
    • 1998-10-07
    • Hideaki InoueKentaro FujibayashiYusaku Yamada
    • Hideaki InoueKentaro FujibayashiYusaku Yamada
    • G05D3/12G05B19/414H02P7/00
    • G05B19/4147G05B2219/43174
    • A numeric array of move command data Qi constituting a reference cam diagram F (.theta.) is stored in advance in a data table of a CMOS memory. Alternatively, a shift position of a cam corresponding to a rotational angle .theta. of the cam is stored in advance so that move command data can be generated by obtaining the shift position of the cam from the rotational angle of the cam based on the rotational angle value. In response to the input of a shift Ka in the lift direction, shift Kb in the pitch-circle direction, maximum lift Kc, and data number n as a criterion for extension or compression in the pitch-circle direction, the move command data can be corrected by automatic processing by means of a motion controller. Thus, final move command data Pk can be generated and outputted as position commands.
    • 构成基准凸轮图F(theta)的移动指令数据Qi的数字列被预先存储在CMOS存储器的数据表中。 或者,预先存储对应于凸轮的旋转角θ的凸轮的换档位置,从而可以通过基于旋转角度值从凸轮的旋转角度获得凸轮的换档位置来生成移动指令数据 。 响应于提升方向上的换档Ka的输入,在节圆方向上的移位Kb,最大提升Kc和数据编号n作为俯仰方向上的伸展或压缩的标准,移动指令数据可以 通过运动控制器进行自动处理来纠正。 因此,可以生成最终移动指令数据Pk并作为位置指令输出。