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    • 91. 发明申请
    • LAYOUT METHOD
    • 布局方法
    • US20100123892A1
    • 2010-05-20
    • US12274876
    • 2008-11-20
    • Robert MillerLawrence Smith
    • Robert MillerLawrence Smith
    • G01C3/08
    • G01C15/002
    • The location of one of a series of construction points at an indoor construction site is established using a robotic total station and a handheld device. Construction data is inputted into the handheld device with the construction data defining a plurality of construction points at the construction site. One of the plurality of construction points is selected with the handheld device. Data regarding the selected construction point is then transmitted wirelessly from the handheld device to a robotic total station. The robotic total station generates a beam of laser light, and directs the beam of laser light from the robotic total station to the construction point. The construction point is defined by x and y coordinates, and by an assumed z coordinate. The actual z coordinate is that of a point on a horizontal surface, such as a ceiling or floor, having the same x and y coordinates. Through an iterative process, the location of the construction point is established.
    • 使用机器人全站仪和手持设备建立室内施工现场一系列施工点之一的位置。 施工数据输入到手持装置中,施工数据在施工现场定义了多个施工点。 用手持设备选择多个施工点中的一个。 然后,从手持设备向机器人全站仪无线地传送关于所选择的构造点的数据。 机器人全站仪产生一束激光,并将来自机器人全站仪的激光束引导到施工点。 施工点由x和y坐标以及假定的z坐标定义。 实际的z坐标是具有相同x和y坐标的水平表面上的点,例如天花板或地板。 通过迭代过程,建立施工点的位置。
    • 93. 发明申请
    • Apparatus for mounting a motorcycle on a carrier
    • 用于将摩托车安装在载体上的装置
    • US20090232628A1
    • 2009-09-17
    • US12231267
    • 2008-09-02
    • Robert Miller
    • Robert Miller
    • B60P3/077
    • B60P3/077
    • A capturing mechanism useful to retain a motorcycle on a variously inclined ramp includes an over-center spring loaded mechanism that is a self-triggered to deploy a hinged restraint compressing a motorcycle wheel against a conforming slip by the rolling translation thereof towards the forward end of the deployed ramp. Once thus temporarily fixed to the ramp the motorcycle and the ramp are then lifted onto the transport vehicle and then further restrained for transport by a rear bracket. At the destination the ramp, with the motorcycle fixed thereon, is lowered to the ground again and a detachable lever is then useful to fully release the spring loaded restraint.
    • 用于将摩托车保持在各种倾斜的斜坡上的捕获机构包括过中心的弹簧加载机构,其是自触发的,以通过其摩擦转动朝向前端的滚动平移来展开将摩托车轮压靠在合格滑动件上的铰接约束 部署的坡道。 一旦这样临时固定到斜坡上,摩托车和斜坡然后被提升到运输车辆上,然后被后支架进一步限制运输。 在目的地,摩托车固定在其上的斜坡再次下降到地面,然后可拆卸的杠杆可用于完全释放弹簧加载的限制。
    • 94. 发明申请
    • Method and apparatus for monitoring a material medium
    • 用于监测材料介质的方法和装置
    • US20090167522A1
    • 2009-07-02
    • US12006331
    • 2008-01-02
    • Constance CotyLusheng JiRobert MillerHarry Worstell
    • Constance CotyLusheng JiRobert MillerHarry Worstell
    • G08B21/00
    • G01R31/085G01D21/00G01D21/02G01R31/08H04B10/079
    • A material medium, such as an optical fiber or electrical cable, is commonly used to carry services, such as telecommunications or energy service. The current invention identifies the following problems which may be encountered when monitoring a material medium. They are: (1) requiring a time and labor intensive investigation to find a fault, (2) needing a significant change in a current material medium infrastructure to support a monitoring effort, or (3) reducing available bandwidth in a material medium due to a monitoring device intruding into the material medium to send data. These problems are solved, in accordance with a feature of the current invention, by monitoring a material medium with at least one diagnostic sensor, and using an electromagnetic (EM) signal, such as radio frequency (RF), signal to wirelessly transmit the sensor data. The diagnostic sensor may measure the operational health of the material medium, or may measure local environmental conditions around the material medium. Using an EM signal, such as RF, to wirelessly transmit sensor data allows for a fast, low labor monitoring approach. Additionally, it avoids a need to either; (1) transfer the data by intruding into the monitored material medium, or (2) set up an independent material medium system to transfer the data.
    • 诸如光纤或电缆的材料介质通常用于承载诸如电信或能量服务的服务。 本发明鉴定了在监测材料介质时可能遇到的以下问题。 它们是:(1)需要进行时间和劳动密集的调查来发现故障,(2)需要对现有的材料性媒介基础设施进行重大改变以支持监测工作,或(3)减少材料介质中的可用带宽,由于 一个监测装置侵入材料介质中发送数据。 根据本发明的特征,通过用至少一个诊断传感器监测材料介质,并使用诸如射频(RF)的电磁(EM)信号来无线地传输传感器来解决这些问题 数据。 诊断传感器可以测量材料介质的操作健康状况,或者可以测量材料介质周围的局部环境条件。 使用诸如RF的EM信号无线传输传感器数据可以实现快速,低劳动监控的方法。 此外,它避免了任何一种需要; (1)通过侵入监控的材料介质传输数据,或(2)建立独立的材料介质系统来传输数据。