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    • 1. 发明授权
    • Technique for platform-to-platform communication
    • 平台到平台通信技术
    • US08670758B2
    • 2014-03-11
    • US12744133
    • 2008-11-17
    • Jürgen LerzerBernd MoellerSeyed-Hami Nourbakhsh
    • Jürgen LerzerBernd MoellerSeyed-Hami Nourbakhsh
    • H04W4/00
    • H04W88/06H04L12/2854H04W92/16
    • A technique for inter-platform communication between functional components located on different network access platforms will be described. A method aspect of this technique comprises the step of providing a first network access platform comprising a first functional component adapted to provide and/or request a platform-based function to and/or from a second functional component located on a second network access platform. On the first network access platform an inter-platform communication application is installed that is adapted to control signalling between the first functional component and the second functional component. The inter-platform communication application is enabled to contact a first middleware function provided for accessing the second functional component. Then, a communication path is established between the first functional component and the second functional via the inter-platform communication application and the first middleware function.
    • 将描述位于不同网络访问平台上的功能组件之间的平台间通信的技术。 该技术的方法方面包括提供第一网络接入平台的步骤,该第一网络接入平台包括适于向和/或从位于第二网络接入平台上的第二功能组件提供和/或请求基于平台的功能的第一功能组件。 在第一网络接入平台上,安装适于控制第一功能组件和第二功能组件之间的信令的平台间通信应用。 平台间通信应用程序能够联系提供用于访问第二功能组件的第一中间件功能。 然后,经由平台间通信应用和第一中间件功能,在第一功能部件和第二功能部件之间建立通信路径。
    • 2. 发明申请
    • TECHNIQUE FOR PLATFORM-TO-PLATFORM COMMUNICATION
    • 平台平台通信技术
    • US20100291920A1
    • 2010-11-18
    • US12744133
    • 2008-11-17
    • Jürgen LerzerBernd MoellerSeyed-Hami Nourbakhsh
    • Jürgen LerzerBernd MoellerSeyed-Hami Nourbakhsh
    • H04W40/00H04W88/06
    • H04W88/06H04L12/2854H04W92/16
    • A technique for inter-platform communication between functional components located on different network access platforms will be described. A method aspect of this technique comprises the step of providing a first network access platform comprising a first functional component adapted to provide and/or request a platform-based function to and/or from a second functional component located on a second network access platform. On the first network access platform an inter-platform communication application is installed that is adapted to control signalling between the first functional component and the second functional component. The inter-platform communication application is enabled to contact a first middleware function provided for accessing the second functional component. Then, a communication path is established between the first functional component and the second functional via the inter-platform communication application and the first middleware function.
    • 将描述位于不同网络访问平台上的功能组件之间的平台间通信的技术。 该技术的方法方面包括提供第一网络接入平台的步骤,该第一网络接入平台包括适于向和/或从位于第二网络接入平台上的第二功能组件提供和/或请求基于平台的功能的第一功能组件。 在第一网络接入平台上,安装适于控制第一功能组件和第二功能组件之间的信令的平台间通信应用。 平台间通信应用程序能够联系提供用于访问第二功能组件的第一中间件功能。 然后,经由平台间通信应用和第一中间件功能,在第一功能部件和第二功能部件之间建立通信路径。
    • 4. 发明申请
    • POSITION DETERMINATION METHOD FOR A GEODETIC MEASURING DEVICE
    • US20100119161A1
    • 2010-05-13
    • US12598458
    • 2008-05-08
    • Bernd Moeller
    • Bernd Moeller
    • G06K9/68G01C15/00G06F15/00
    • G01C15/002
    • The invention relates to a position determination method for a geodetic device having a distance and angle measuring functionality, such as a total station (1), a determination being made of the relative location of the geodetic device and reference points (2) marked with reflectors (P1-Pn) of a quantity of reference points, by measuring the distance (D1-Dn) and at least one angle (φi-φn, θ1-θn) from the geodetic device to the reference points as reference variables, the reference variables being determined in a device-based reference system. For the reference point quantity formed by the reference points (P1-Pn) and a reference point quantity of measurable reference points (A-G), the positions of which are known in an external reference system, common elements are identified, the relative location of the reference points (P1-Pn) being derived from the reference variables and the common elements being identified and associated based on the relative location of the reference points (P1-Pn). The position (S) of the geodetic device in the external reference system is determined from the common elements and the positions thereof in an external reference system.
    • 8. 发明申请
    • ROTATING LASER
    • 旋转激光
    • US20130229643A1
    • 2013-09-05
    • US13884587
    • 2011-11-24
    • Bernd Moeller
    • Bernd Moeller
    • G01C3/08
    • G01C3/08G01C15/004
    • A rotating laser has a source of electromagnetic radiation for production of a reference beam, and deflection means, which can rotate about a rotation axis, by which means a laser area is defined when rotated, and with the reference beam passing over a reference path. The rotating laser has a functionality for perpendicular alignment of the laser area relative to the surface, with the control means being designed such that the laser area is automatically variably inclined relative to the surface by swiveling means swiveling the rotation axis, with a reference line range from the reference line to the rotating laser being determined for each of the respective inclination angles, and with that inclination angle of the laser area being determined as the perpendicular inclination angle at which the laser area includes the reference line with the respective shortest determined reference line range, and therefore being perpendicular to the surface.
    • 旋转激光器具有用于产生参考光束的电磁辐射源,以及可围绕旋转轴线旋转的偏转装置,通过该偏转装置旋转时限定激光区域,并且参考光束通过参考路径。 旋转激光器具有用于激光区域相对于表面的垂直对准的功能,其中控制装置被设计成使得激光区域通过使旋转轴线旋转的旋转装置以参考线范围自动地相对于表面倾斜 从参考线到针对各个倾斜角度的旋转激光器,并且将激光区域的倾斜角度确定为激光区域包括具有相应的最短确定参考线的参考线的垂直倾斜角度 范围,因此垂直于表面。
    • 9. 发明授权
    • Position determination method for a geodetic measuring device
    • 大地测量装置的位置确定方法
    • US08483512B2
    • 2013-07-09
    • US12598458
    • 2008-05-08
    • Bernd Moeller
    • Bernd Moeller
    • G06K9/36G06K9/00G01B11/275G01C9/00
    • G01C15/002
    • The invention relates to a position determination method for a geodetic device having a distance and angle measuring functionality, such as a total station (1), a determination being made of the relative location of the geodetic device and reference points (2) marked with reflectors (P1-Pn) of a quantity of reference points, by measuring the distance (D1-Dn) and at least one angle (φi-φn, θ1-θn) from the geodetic device to the reference points as reference variables, the reference variables being determined in a device-based reference system. For the reference point quantity formed by the reference points (P1-Pn) and a reference point quantity of measurable reference points (A-G), the positions of which are known in an external reference system, common elements are identified, the relative location of the reference points (P1-Pn) being derived from the reference variables and the common elements being identified and associated based on the relative location of the reference points (P1-Pn). The position (S) of the geodetic device in the external reference system is determined from the common elements and the positions thereof in an external reference system.
    • 本发明涉及一种具有距离和角度测量功能的大地测量装置的位置确定方法,例如全站仪(1),确定大地测量装置的相对位置和标有反射体的参考点(2) 通过测量从大地测量装置到参考点的距离(D1-Dn)和至少一个角度(phii-phin,θ1-thetan)作为参考点,参考点(P1-Pn),参考变量 在基于设备的参考系统中确定。 对于由参考点(P1-Pn)形成的参考点数量和可测量参考点(AG)的参考点数量,其位置在外部参考系统中是已知的,识别公共元素,相对位置 参考点(P1-Pn)从参考变量导出,公共元素根据参考点(P1-Pn)的相对位置被识别和相关联。 外部参考系统中大地测量装置的位置(S)根据外部参考系统中的共同要素及其位置确定。