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    • 6. 发明授权
    • Vertically-disposed exercise machine
    • 垂直运动的机器
    • US5342262A
    • 1994-08-30
    • US122003
    • 1993-09-13
    • Mark D. Hansen
    • Mark D. Hansen
    • A63B21/005A63B21/22A63B22/06A63B22/12A63B23/04A63B21/00
    • A63B22/0605A63B22/0005A63B22/0012A63B2022/0623A63B2022/0647A63B21/0053A63B21/225A63B22/0046A63B2225/093
    • The invention is a vertically-disposed exercise machine that is designed to accommodate a user who is in a standing position. The machine includes a lower crankset having pedals adapted to receive a user's feet. The machine has an height adjustable upper crankset that is independent from the lower crankset and includes outwardly-extending handles that are designed to be grasped by the user. Each crankset is operatively connected to its own flywheel by a chain or belt. Each flywheel has its own manually adjustable resistance mechanism that allows the user to independently adjust the resistance to rotation of each crankset. When operating the machine, a user can selectively cause the rotation of the upper and/or lower cranksets by appropriate movement of his hands and/or feet.
    • 本发明是一种垂直布置的运动器械,其设计成容纳处于站立位置的使用者。 该机器包括具有适于接收用户脚部的踏板的下部曲柄组。 该机器具有独立于下部曲柄组件的高度可调式上部曲柄组件,并且包括设计成由使用者掌握的向外延伸的把手。 每个曲柄组通过链条或皮带与其自身的飞轮可操作地连接。 每个飞轮都有自己的可手动调节的电阻机构,允许用户独立地调整每个曲柄组的旋转阻力。 当操作机器时,用户可以通过其手和/或脚的适当移动来选择性地引起上部和/或下部曲柄的旋转。
    • 8. 发明授权
    • Effective road profile control method for a spindle-coupled road
simulator
    • 主轴耦合道路模拟器的有效道路剖面控制方法
    • US5610330A
    • 1997-03-11
    • US586449
    • 1996-01-16
    • David M. FrickeMark D. HansenRakan C. Chabaan
    • David M. FrickeMark D. HansenRakan C. Chabaan
    • G01M7/02G01M13/02G01M17/007G01M17/04G01M7/06
    • G01M13/027G01M17/007G01M17/0074G01M17/04G01M7/022
    • A method for testing an automotive vehicle on a vehicle spindle-coupled simulator comprises the steps of driving a first vehicle over a test road surface, collecting spindle dynamics data from at least one spindle of said first vehicle, developing a first tire model for the first vehicle, estimating a road profile for the road surface based upon the spindle dynamics data and the first tire model, developing a second tire model for a second vehicle, coupling the second vehicle to the spindle-coupled simulator, and generating a set of control signals for driving the spindle-coupled simulator with the second vehicle coupled thereto so that a road response generated by the spindle-coupled simulator is consistent with the road profile. The method allows accurate testing of the second vehicle without driving it over the test road. The tire model is developed using system identification techniques.
    • 一种用于在车辆主轴耦合模拟器上测试机动车辆的方法包括以下步骤:在测试路面上驱动第一车辆,从所述第一车辆的至少一个主轴收集主轴动态数据,为第一车辆开发第一轮胎模型 车辆,基于所述主轴动力学数据和所述第一轮胎模型估计所述路面的道路轮廓,开发用于第二车辆的第二轮胎模型,将所述第二车辆联接到所述主轴耦合模拟器,以及生成一组控制信号 用于驱动与第二车辆联接的主轴耦合模拟器,使得由主轴耦合模拟器产生的道路响应与道路轮廓一致。 该方法允许对第二车辆进行精确测试,而不会在测试道路上行驶。 使用系统识别技术开发轮胎模型。
    • 9. 发明申请
    • TOUCHSCREEN WRITING SYSTEM
    • 触控笔记系统
    • US20130278537A1
    • 2013-10-24
    • US13450906
    • 2012-04-19
    • Mark D. HansenYossi Y. CohenSanjay Gupta
    • Mark D. HansenYossi Y. CohenSanjay Gupta
    • G06F3/044G06F3/041
    • G06F3/03545G06F3/041
    • A touchscreen writing system includes a shaft having on-screen circuitry configured to communicate with an electronic display in an on-screen condition, and off-screen circuitry configured to communicate with the electronic display in an off-screen condition. A stylus controller sends signals to a touch-sensitive interface of the electronic display for determining a coarse approximate position for the writing nib. The stylus controller also determines relative fine approximate position coordinates for the writing nib, which are sent to the computing device. A touch-sensitive interface controller provides a starting reference point for fine positioning of the writing nib based on a last coarse approximate position as determined by the on-screen circuitry for the off-screen condition. The stylus controller sends fine positioning information to the touch-sensitive interface and a detector determines whether the writing nib has been engaged on an off-screen writing surface.
    • 触摸屏写入系统包括具有屏幕上电路的轴,其被配置为在屏幕状态下与电子显示器进行通信,以及被配置为在离屏状态下与电子显示器进行通信的离屏电路。 触控器控制器向电子显示器的触敏界面发送信号,以确定用于写笔尖的粗略近似位置。 触笔控制器还确定写入笔尖的相对精细近似位置坐标,这些坐标被发送到计算设备。 触敏界面控制器提供起始参考点,用于基于由屏幕外电路进行屏幕外条件确定的最后粗略近似位置来精细定位写笔尖。 触控器控制器将精细定位信息发送到触摸敏感界面,并且检测器确定写笔尖是否已经在屏幕外书写面上。