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    • 22. 发明公开
    • Arrangement and method to align two components
    • Anordnung und Verfahren zur Ausrichtung von zwei Komponenten
    • EP2918969A1
    • 2015-09-16
    • EP14159172.7
    • 2014-03-12
    • Siemens Aktiengesellschaft
    • Stege, Jason
    • G01B11/27
    • F03D11/04F03D13/10F03D13/20F16B17/00G01B11/272H04N5/2257H04N7/183Y10T29/49895Y10T403/1624
    • The invention relates to a method and to an arrangement to align a first component (C1) and a second component (C2). The first component (C1) comprises guiding means (GMC1) and the second component (C2) comprises guiding means (CMC2), while these guiding means are prepared and arranged to interact with each other. The guiding means (GMC1, GMC2) of the components (C1, C2) are prepared and arranged to align the components (C1, C2) to each other while the components (C1, C2) are moved towards each other for their final connection. The guiding means (GMC1) of the first component (C1) comprises an optical camera system (OCS), which is used to monitor the change of the position of the guiding means (GMC2) of the second component (C2) in reference to the position of the guiding means (GMC1) of the first component. The optical camera system (OCS) is connected with a remote display (DIS) enabling working personnel to direct the movement of the components (C1, C2) based on the monitored position changes.
    • 本发明涉及一种对齐第一部件(C1)和第二部件(C2)的方法和装置。 第一部件(C1)包括引导装置(GMC1),并且第二部件(C2)包括引导装置(CMC2),而这些引导装置被准备和布置成彼此相互作用。 组件(C1,C2)的引导装置(GMC1,GMC2)被准备并布置成使组件(C1,C2)彼此对准,同时组件(C1,C2)彼此相对移动用于最终连接。 第一部件(C1)的引导装置(GMC1)包括光学照相机系统(OCS),其用于监视第二部件(C2)的引导装置(GMC2)的位置变化,参照 第一部件的引导装置(GMC1)的位置。 光学照相机系统(OCS)与远程显示器(DIS)连接,使得工作人员能够基于所监视的位置变化来引导部件(C1,C2)的移动。
    • 26. 发明公开
    • Method to determine a site for a wind turbine
    • Verfahren zur Bestimmung eines风力发电机站
    • EP2527648A1
    • 2012-11-28
    • EP11167444.6
    • 2011-05-25
    • SIEMENS AKTIENGESELLSCHAFT
    • Stege, Jason
    • F03D11/00
    • F03D17/00F05B2260/80
    • The invention relates to a method to determine an optimum site for a wind turbine.
      According to the method an unmanned aerial vehicle is guided along a predetermined flight path. The flight-path is chosen in a way that high resolution images of the surrounding of a potential wind turbine site are gathered by the unmanned aerial vehicle. The images are used to obtain an actual digital surface model of the surrounding of the potential wind turbine site. The potential wind turbine site is evaluated based on the actual digital surface model to determine, if the potential wind turbine site is an optimum wind turbine site.
    • 本发明涉及确定风力涡轮机的最佳位置的方法。 根据该方法,沿着预定的飞行路径引导无人驾驶飞行器。 选择飞行路径的方式是通过无人驾驶飞行器收集潜在风力涡轮机场周围的高分辨率图像。 图像用于获得潜在风力涡轮机场周围的实际数字表面模型。 根据实际的数字表面模型评估潜在的风力发电机场点,以确定潜在的风力发电机组位置是否是最佳的风力发电机场点。