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    • 22. 发明申请
    • Measurement device
    • 测量装置
    • US20050172503A1
    • 2005-08-11
    • US10501386
    • 2003-09-02
    • Kaoru KumagaiFumio Ohtomo
    • Kaoru KumagaiFumio Ohtomo
    • G01C15/00G01C5/00
    • G01C15/002
    • The present invention provides a surveying instrument (20), comprising a surveying instrument main unit (21) which projects a measuring light to an object to be measured and measures a position based on a reflection light from the object to be measured and an operation device (67) which is removably attached on the surveying instrument main unit, wherein the surveying instrument main unit comprises a distance measuring unit (54) and (55) for emitting the measuring light and for measuring a distance, an image pickup unit (51) and (53) for acquiring an image, a reflection mirror (45) rotatably mounted and used for directing the measuring light toward the object to be measured, for directing the reflected light from the object to be measured toward a light receiving unit, and for directing the image in a projecting direction toward the image pickup unit, a detecting means (31) for detecting a rotating position of the reflection mirror, and a control unit (74) for controlling at least the distance measuring unit, the image pickup unit and the rotating position of the reflection mirror, and wherein the operation device comprises a display unit for displaying the image acquired by the image pickup unit.
    • 本发明提供了一种测量仪器(20),其包括测量仪器主单元(21),该测量仪器主单元(21)将测量光投射到被测量物体上,并基于来自被测量物体的反射光测量位置;以及操作装置 (67),其可拆卸地安装在测量仪器主单元上,其中测量仪器主单元包括用于发射测量光并用于测量距离的测距单元(54)和(55),摄像单元(51) 和用于获取图像的(53),反射镜(45),可旋转地安装并用于将测量光朝向被测量物体引导,用于将待测物体的反射光导向光接收单元,并且 将图像沿投影方向引导到图像拾取单元;检测装置,用于检测反射镜的旋转位置;以及控制单元(74),用于对准 至少测量距离测量单元,图像拾取单元和反射镜的旋转位置,并且其中操作装置包括用于显示由图像拾取单元获取的图像的显示单元。
    • 24. 发明授权
    • Rotary laser irradiating system
    • 旋转激光照射系统
    • US06493067B1
    • 2002-12-10
    • US09473732
    • 1999-12-28
    • Jun-ichi KodairaFumio Ohtomo
    • Jun-ichi KodairaFumio Ohtomo
    • G01C308
    • G01C15/004G01C15/105
    • The rotary laser irradiating system according to the present invention comprises a main unit, a rotator rotatably mounted on said main unit, and a range-finding unit disposed on said main unit, wherein said main unit comprises a light emitting unit for emitting a laser beam, optical means for directing said laser beam and a range-finding light from said range-finding unit toward said rotator, and tilt sensors for detecting horizontality and verticality of a rotation axis of said rotator, said rotator comprises deflecting means for deflecting the laser beam and the range-finding light from said optical means and rotating position detecting means for detecting a rotating position of the rotator, and said rotating position detecting means being designed to project said laser beam and said range-finding light in a predetermined direction.
    • 根据本发明的旋转激光照射系统包括主单元,可旋转地安装在所述主单元上的旋转器和设置在所述主单元上的测距单元,其中所述主单元包括用于发射激光束的发光单元 ,用于将所述激光束引导的光学装置和来自所述测距单元的测距光朝向所述旋转体,以及倾斜传感器,用于检测所述旋转体的旋转轴的水平度和垂直度,所述旋转体包括偏转装置,用于偏转激光束 以及来自所述光学装置的测距光和用于检测旋转体旋转位置的旋转位置检测装置,并且所述旋转位置检测装置被设计成将预定方向的所述激光束和所述测距光投影。
    • 26. 发明授权
    • Inclination measuring apparatus
    • 倾角测量仪
    • US06473714B1
    • 2002-10-29
    • US09373316
    • 1999-08-12
    • Kaoru KumagaiFumio OhtomoMasayuki Nishi
    • Kaoru KumagaiFumio OhtomoMasayuki Nishi
    • G01C906
    • G01C15/002
    • An object of the present invention is to provide an inclination setting rotational laser apparatus and so on for use with a laser surveying instrument. According to the present invention, there is provided an arrangement in which a laser projector projects a laser beam, tilting means tilts the laser projector in at least one direction, a first optical system of inclination detecting means directs the light from a light source toward a liquid member having a free surface, light receiving means receives the light reflected on the liquid member, a second optical system guides the light reflected on the liquid member to the light receiving means, and arithmetic operation means calculates the inclination based on the received signal of the light receiving means, whereby the laser projector can be settled to have an inclination by driving the tilting means based on the inclination.
    • 本发明的目的是提供一种与激光测量仪一起使用的倾斜设定旋转激光装置等。 根据本发明,提供了一种激光投影仪投影激光束的装置,倾斜装置沿至少一个方向倾斜激光投射器,倾斜检测装置的第一光学系统将来自光源的光朝向 具有自由表面的液体构件,光接收装置接收在液体构件上反射的光,第二光学系统将在液体构件上反射的光引导到光接收装置,并且算术运算装置基于接收信号 光接收装置,由此通过基于倾斜度驱动倾斜装置,激光投影仪可以被安置成具有倾斜度。
    • 27. 发明授权
    • Construction equipment control system
    • 施工设备控制系统
    • US06450267B2
    • 2002-09-17
    • US09801152
    • 2001-03-07
    • Fumio OhtomoKazuaki Kimura
    • Fumio OhtomoKazuaki Kimura
    • E02F376
    • E02F3/842E02F3/847G01C15/004G01S17/023G05D1/0236G05D1/0272G05D1/0278G05D1/028
    • The present invention relates to a construction equipment control system, which comprises a plurality of rotary laser irradiating systems for forming laser reference planes by irradiating laser beams by rotary irradiation, a surveying system for measuring positions of the rotary laser irradiating systems, and a construction operation system for controlling and operating construction work of a construction equipment based on the laser reference planes, wherein the construction operation system comprises a photodetection sensor for receiving light beams from the rotary laser irradiating systems as reference positions for the construction operation, a global positioning system (GPS) for detecting a position of the construction equipment, and transmitting structure for transmitting detection results of said GPS to the surveying system, the surveying system comprises transmitting structure for transmitting data relating to the reference planes to be formed based on the results of measurement and results of detection of the GPS to the rotary laser irradiating systems, the rotary laser irradiating systems comprise receiving structure, the receiving structure receives data from the transmitting structrue, the rotary laser irradiating systems form the laser reference planes based on the data, and the construction equipment performs construction work using the laser reference planes as reference.
    • 本发明涉及一种施工设备控制系统,其包括通过旋转照射照射激光来形成激光参考平面的多个旋转激光照射系统,用于测量旋转激光照射系统的位置的测量系统和施工操作 用于控制和操作基于激光参考平面的施工设备的施工工作的系统,其中所述施工操作系统包括用于接收来自所述旋转激光照射系统的光束的光电检测传感器,作为用于施工操作的参考位置,全球定位系统 GPS),用于检测施工设备的位置,以及将所述GPS的检测结果发送到测量系统的传输结构,测量系统包括用于根据测量结果发送与要形成的参考平面相关的数据的传输结构 t和对旋转激光照射系统的GPS的检测结果,旋转激光照射系统包括接收结构,接收结构从发送结构接收数据,旋转激光照射系统基于数据形成激光参考平面,以及 施工设备使用激光参考平面作为参考。