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    • 1. 发明公开
    • Surveying system
    • 测量系统
    • EP2813814A1
    • 2014-12-17
    • EP14180053.2
    • 2011-11-18
    • Sokkia Topcon Co., Ltd.
    • MOMIYAMA, HomareMuraki, MasaruMomiyama, Homare
    • G01C15/00G01C15/06G01C5/06G01S19/51G01S19/14
    • G01C15/008G01C5/06G01C15/002G01S19/14G01S19/51
    • A controller (26) of a surveying instrument including a GPS receiver (28) and a transmitter and receiver section (24) for communicating with a prism device including a GPS receiver (58), an atmospheric pressure sensor (60), a temperature sensor (32), and a transmitter and receiver section (54) for communicating with the surveying instrument calculates an azimuth angle of the prism device when viewed from the surveying instrument and a distance therebetween from positions of the prism device and surveying instrument obtained from the GPS receivers, further calculates an elevation angle of the prism device when viewed from the surveying instrument from the distance and atmospheric pressures at the positions of the prism device and surveying instrument, and issues a rotation command to a horizontal drive section (16) and a vertical drive section (18), so that a collimating telescope can be immediately and automatically directed toward a reflecting prism for measurement.
    • 一种测量仪器的控制器(26),包括GPS接收器(28)和用于与包括GPS接收器(58),大气压力传感器(60),温度传感器(58)的棱镜装置通信的发射器和接收器部分 (32)和用于与测量仪器通信的发射器和接收器部分(54)计算当从测量仪器观察时棱镜装置的方位角以及从棱镜装置和测量仪器从GPS获得的位置之间的距离 根据棱镜装置和测量仪器的位置处的距离和大气压力,进一步计算从测量仪器观看时的棱镜装置的仰角,并且向水平驱动部分(16)和垂直驱动部分 驱动部分(18),使得准直望远镜可以立即自动地指向反射棱镜进行测量。