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    • 1. 发明授权
    • Power transmission monitoring and maintenance systems and methods
    • 电力传输监控和维护系统及方法
    • US08604776B2
    • 2013-12-10
    • US12803332
    • 2010-06-24
    • William David Lynn
    • William David Lynn
    • G01P3/48
    • G01M13/023
    • Power transmission monitoring systems includes rotation speed sensors mounted to hubs of a power transmission pulley. A sensor comprises a rotation sensing device, and a controller receiving rotation data therefrom and determining rotation speed of the pulley. A transmitter transmits rotational speed of the pulley to a receiver, which may include or be connected to a device that compares the rotational speed to rotational speed in transmissions from other sensors to determine slip in the power transmission system. The rotation speed sensing device may be an accelerometer, or a gravitational torque harvester. A harvester might include a rotor body rotating with the pulley and mounting induction coils, and a gravitational torque stator mounting an induction magnet and including an air vane damper maintaining the stator stationary with respect to the rotor, through air resistance. The transmissions may be employed to monitor, maintain and repair the power transmissions system.
    • 动力传递监测系统包括安装在动力传动滑轮的轮毂上的转速传感器。 传感器包括旋转感测装置和从其接收旋转数据的控制器,并确定滑轮的转速。 发射机将滑轮的旋转速度传送到接收机,接收机可以包括或连接到将来自其它传感器的传输中的转速与转速进行比较的设备,以确定电力传输系统中的滑差。 转速感测装置可以是加速度计或重力扭矩收割机。 收割机可以包括与滑轮和安装感应线圈一起旋转的转子体,以及安装感应磁铁的重力矩定子,并且包括通过空气阻力保持定子相对于转子固定的气叶片减震器。 可以使用变速器来监测,维护和修理动力传动系统。
    • 2. 发明申请
    • Power transmission monitoring and maintenance systems and methods
    • 电力传输监控和维护系统及方法
    • US20110316525A1
    • 2011-12-29
    • US12803332
    • 2010-06-24
    • William David Lynn
    • William David Lynn
    • G01P3/42
    • G01M13/023
    • Power transmission monitoring systems includes rotation speed sensors mounted to hubs of a power transmission pulley. A sensor comprises a rotation sensing device, and a controller receiving rotation data therefrom and determining rotation speed of the pulley. A transmitter transmits rotational speed of the pulley to a receiver, which may include or be connected to a device that compares the rotational speed to rotational speed in transmissions from other sensors to determine slip in the power transmission system. The rotation speed sensing device may be an accelerometer, or a gravitational torque harvester. A harvester might include a rotor body rotating with the pulley and mounting induction coils, and a gravitational torque stator mounting an induction magnet and including an air vane damper maintaining the stator stationary with respect to the rotor, through air resistance. The transmissions may be employed to monitor, maintain and repair the power transmissions system.
    • 动力传递监测系统包括安装在动力传动滑轮的轮毂上的转速传感器。 传感器包括旋转感测装置和从其接收旋转数据的控制器,并确定滑轮的转速。 发射机将滑轮的旋转速度传送到接收机,接收机可以包括或连接到将来自其它传感器的传输中的转速与转速进行比较的设备,以确定电力传输系统中的滑差。 转速感测装置可以是加速度计或重力扭矩收割机。 收割机可以包括与滑轮和安装感应线圈一起旋转的转子体,以及安装感应磁铁的重力矩定子,并且包括通过空气阻力保持定子相对于转子固定的气叶片减震器。 可以使用变速器来监测,维护和修理动力传动系统。
    • 3. 发明申请
    • Tire pressure sensing devices, systems and methods employing an acoustic amplifier
    • 轮胎压力感测装置,采用声学放大器的系统和方法
    • US20100102944A1
    • 2010-04-29
    • US12290278
    • 2008-10-29
    • William David Lynn
    • William David Lynn
    • B60C23/00
    • G01L17/00B60C23/0408B60C23/0494
    • A pressure sensing device, such as a tire pressure monitoring unit comprises a pressure sensor for measuring pressure of a fluid, such as air or an inert gas, in an environment external to the device, such as within the cavity of a tire. A hollow resonator, or standing wave tube, is coupled to the pressure sensor. The resonator has a free end exposed to the external environment to the extent that pressure variations in the fluid are propagated through the hollow resonator to the pressure sensor via the free end. The hollow resonator has a resonant frequency substantially matching a target frequency such that resonance is established in the tube at the resonant frequency in response to the presence of an audio signal in the fluid having a frequency that substantially matches the target frequency.
    • 诸如轮胎压力监测单元的压力感测装置包括用于在设备外部的环境(例如轮胎的空腔内)测量流体(例如空气或惰性气体)的压力的压力传感器。 空心谐振器或驻波管耦合到压力传感器。 谐振器具有暴露于外部环境的自由端,使得流体中的压力变化通过空心谐振器经由自由端传播到压力传感器。 中空谐振器具有基本上与目标频率匹配的谐振频率,使得响应于具有基本上与目标频率匹配的频率的流体中的音频信号的存在,谐振频率处在管中建立谐振。
    • 4. 发明授权
    • Tire pressure sensing devices, systems and methods employing an acoustic amplifier
    • 轮胎压力感测装置,采用声学放大器的系统和方法
    • US08072321B2
    • 2011-12-06
    • US12290278
    • 2008-10-29
    • William David Lynn
    • William David Lynn
    • B60Q1/00
    • G01L17/00B60C23/0408B60C23/0494
    • A pressure sensing device, such as a tire pressure monitoring unit comprises a pressure sensor for measuring pressure of a fluid, such as air or an inert gas, in an environment external to the device, such as within the cavity of a tire. A hollow resonator, or standing wave tube, is coupled to the pressure sensor. The resonator has a free end exposed to the external environment to the extent that pressure variations in the fluid are propagated through the hollow resonator to the pressure sensor via the free end. The hollow resonator has a resonant frequency substantially matching a target frequency such that resonance is established in the tube at the resonant frequency in response to the presence of an audio signal in the fluid having a frequency that substantially matches the target frequency.
    • 诸如轮胎压力监测单元的压力感测装置包括用于在设备外部的环境(例如轮胎的空腔内)测量流体(例如空气或惰性气体)的压力的压力传感器。 空心谐振器或驻波管耦合到压力传感器。 谐振器具有暴露于外部环境的自由端,使得流体中的压力变化通过空心谐振器经由自由端传播到压力传感器。 中空谐振器具有基本上与目标频率匹配的谐振频率,使得响应于具有基本上与目标频率匹配的频率的流体中的音频信号的存在,谐振频率处在管中建立谐振。