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    • 1. 发明专利
    • Prevention for falling of rock
    • 防止岩石倒塌
    • JPS58181923A
    • 1983-10-24
    • JP6595782
    • 1982-04-19
    • Yoshiaki Irie
    • IRIE YOSHIAKI
    • E02D17/20
    • E02D17/20Y02A10/24
    • PURPOSE:To prevent the falling of projected rocks by a method in which a joint with a given depth is formed in the apertures between the projected rocks and the adjacent stable rocks and then an adhesive mortar is packed into the joint. CONSTITUTION:A joint 3b with a given depth is formed in the peripheral edges of the faces 3a of the aperture 5 between a projected rock 3 and the adjacent stable rock 4, and an adhesive har mortar mix is packed into the joint 3b after being cleaned, etc. For example, when an adhesive mortar having a bonding strength of 12kg/cm and a design calculated strength of 2.4kg/cm is packed into the joint 3b with a depth of 10cm of the stone 3 of a specific gravity of 2.7 for cube of 1-m sides, the area of the joint becomes 1,900cm and the coupling force of the mortar becomes 2.4X1,900=4,560kg. Since the weight of the stone 3 is 2,700kg, the coupling force of the mortar can thus sufficiently withstand in case where simple tensile strength is taken into account.
    • 目的:通过在投影岩石和相邻稳定岩石之间的孔中形成具有给定深度的接头,然后将粘合砂浆包装在接头中的方法来防止投影岩石的坠落。 构成:在突出的岩石3和相邻的稳定岩石4之间的孔5的面3a的周缘形成有给定深度的接头3b,并且在清洁之后将粘合剂砂浆混合物包装到接头3b中 等等。例如,当粘合强度为12kg / cm 2和设计计算强度为2.4kg / cm 2的粘合剂砂浆被填充到具有10cm的石头3的深度10cm的接头3b中时 1米立方体的比重为2.7,关节面积为1900厘米2,砂浆的耦合力为2.4×1.99 = 4,560千克。 由于石3的重量为2700kg,因此考虑到简单的拉伸强度的情况下,砂浆的结合力能够充分地承受。
    • 2. 发明申请
    • IMAGE PICKUP APPARATUS AND CONTROL METHOD THEREFOR
    • 图像拾取装置及其控制方法
    • US20120314117A1
    • 2012-12-13
    • US13489608
    • 2012-06-06
    • Yoshiaki Irie
    • Yoshiaki Irie
    • H04N5/225
    • H04N5/23212G03B13/18G03B17/20H04N5/23241H04N5/23293H04N5/2351
    • The image pickup apparatus includes a finder optical system, a measuring part performing measurement relating to an object field image, a liquid crystal display element displaying in-finder information to be observed as an image superimposed on the object field image, and a temperature detector detecting temperature. A controller starts non-display control for causing the display element to change from a display state to a non-display state at a non-display control timing before start of the measurement, and starts display control for causing the display element to change from the non-display state to the display state at a display control timing before end of the measurement. The controller makes at least one of the non-display timing and the display timing earlier when a detected temperature acquired from the temperature detector is lower than a predetermined temperature as compared with when the detected temperature is higher than the predetermined temperature.
    • 图像拾取装置包括取景器光学系统,执行与物体场图像相关的测量的测量部件,显示作为叠加在物场图像上的图像的观察者信息的液晶显示元件以及温度检测器检测 温度。 控制器开始非显示控制,使得显示元件在开始测量之前的非显示控制定时从显示状态改变为非显示状态,并且开始显示控制,以使显示元件从 在测量结束之前的显示控制定时处于非显示状态到显示状态。 与当检测到的温度高于预定温度时相比,当从温度检测器获取的检测温度低于预定温度时,控制器进行至少一个非显示定时和显示定时。
    • 3. 发明申请
    • DRIVING ASSISTANCE DEVICE
    • 驾驶辅助装置
    • US20120277955A1
    • 2012-11-01
    • US13376601
    • 2009-12-28
    • Yoshiaki Irie
    • Yoshiaki Irie
    • G06F7/00B62D6/00G01C21/00
    • B60W30/02B60W30/146
    • Based on a requested target input by the driver using input means 14 (such as a destination, a travel method to the destination, for example, whether time is a priority or a fuel consumption is a priority), the driver plan creating ECU 1 selects the travel path based on the map information stored in map DB 13 and the current positional information of the vehicle obtained by the GPS 12. Additionally, the path information of the selected path is obtained, and the target track of the vehicle on the selected path is calculated. The variable area which is variable range of the calculated tracking based on the path information is obtained. The driving control ECU 2 uses the variable area information at the time of vehicle control.
    • 基于驾驶员使用输入单元14(例如目的地,目的地的行驶方式,例如时间优先或燃料消耗为优先)的驾驶员的请求目标输入,驾驶员计划生成ECU 1选择 基于存储在地图DB 13中的地图信息的行驶路径和由GPS 12获得的车辆的当前位置信息。另外,获得所选路径的路径信息,并且选择路径上的车辆的目标轨迹 被计算。 获得基于路径信息的计算的跟踪的可变范围的可变区域。 驱动控制ECU2使用车辆控制时的可变区域信息。
    • 4. 发明授权
    • Brake controller
    • 制动控制器
    • US07988243B2
    • 2011-08-02
    • US11674774
    • 2007-02-14
    • Tetsuya MiyazakiYoshiaki IrieRio Suda
    • Tetsuya MiyazakiYoshiaki IrieRio Suda
    • B60T8/60
    • B60T13/662B60T17/22
    • A brake controller is provided that includes a braking force application mechanism that presses a friction member against a braked member so as to apply a braking force to a wheel of a vehicle; and a control unit. The control unit calculates an index, which indicates a difference between an expected braking effectiveness and an actual braking effectiveness, corrects a target value, which is set to control a pressing force of the friction member, in accordance with the index to reduce a variation in a braking effectiveness of the vehicle. The control unit further sets a variation range in accordance with a factor that causes the difference. The variation range limits a variation in a correction amount to correct the target value.
    • 提供一种制动控制器,其包括:制动力施加机构,其将摩擦构件压靠在制动部件上,以对车辆的车轮施加制动力; 和控制单元。 控制单元计算指示预期制动效果与实际制动效果之间的差的指标,根据指标来校正被设定为控制摩擦构件的按压力的目标值,以减小其变化 车辆的制动效果。 控制单元进一步根据引起差异的因素来设定变化范围。 变化范围限制校正量的变化以校正目标值。
    • 7. 发明授权
    • Control for variable magnification in an imaging apparatus
    • 成像设备中可变放大的控制
    • US5589908A
    • 1996-12-31
    • US338780
    • 1994-11-10
    • Yoshiaki Irie
    • Yoshiaki Irie
    • G03B3/12G02B7/08G02B7/10G02B7/28G03B13/02G03B13/34G03B13/36G03B3/00
    • G03B13/02G02B7/102G03B2213/025
    • In an imaging system having a variable magnification element, a controller for controlling magnification so as to achieve desirable image composition. An object image is projected onto a visual field of a camera view finder and divided into a number of small blocks. The distance to the image portion in each small block is detected by a multipoint range finder. Small blocks having the same detected distance, or small blocks whose distances differ by less than a predetermined threshold value, are grouped together into one or more medium block(s). An sight line detection sensor detects where, in the visual field of the view finder, a photographer's line of sight is directed. At least one medium block is selected as the final desired image to be photographed on the basis of the sight line determination. The focal length of a zoom lens is determined, depending on the size of the selected medium block and the distance to the image portion it contains, and the lens is automatically driven to the desired focal length and focus condition.
    • 在具有可变放大元件的成像系统中,用于控制放大倍数的控制器,以实现期望的图像组合。 物体图像被投影到照相机取景器的视野上并被分成许多小块。 通过多点测距仪检测每个小块中与图像部分的距离。 具有相同检测距离的小块或距离差小于预定阈值的小块被分组到一个或多个介质块中。 视线检测传感器检测在取景器的视场中拍摄者的视线的位置。 基于视线确定,选择至少一个媒体块作为要拍摄的最终期望图像。 取决于所选择的介质块的尺寸和其所包含的图像部分的距离来确定变焦透镜的焦距,并且镜头被自动驱动到期望的焦距和聚焦条件。
    • 10. 发明授权
    • Imaging apparatus and optical filter
    • 成像设备和滤光片
    • US08405902B2
    • 2013-03-26
    • US12273390
    • 2008-11-18
    • Yoshiaki Irie
    • Yoshiaki Irie
    • G06K7/10F21V9/04
    • G03B17/02
    • An imaging apparatus includes an image sensor, a first optical member disposed ahead of a front of the image sensor, a second optical member disposed between the first optical member and the image sensor, and a holder. The holder elastically retains the first optical member and retains the second optical member so that the second optical member is opposed to the elastically retained first optical member. The imaging apparatus further includes a film-like resin filter disposed between the first optical member and the second optical member that is bonded to at least one of the first optical member and the second optical member.
    • 成像装置包括图像传感器,设置在图像传感器的前方前方的第一光学构件,设置在第一光学构件和图像传感器之间的第二光学构件和保持器。 保持器弹性地保持第一光学构件并保持第二光学构件,使得第二光学构件与弹性保持的第一光学构件相对。 成像装置还包括设置在第一光学构件和第二光学构件之间的膜状树脂过滤器,其结合到第一光学构件和第二光学构件中的至少一个。