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    • 8. 发明申请
    • MULTIDIMENSIONAL SYSTEM FOR MONITORING AND TRACKING STATES AND CONDITIONS
    • 用于监测和跟踪状态和条件的多维度系统
    • US20140292543A1
    • 2014-10-02
    • US14008147
    • 2011-03-28
    • Iris Lahyani
    • Iris Lahyani
    • G08B21/08B63B45/00G08B23/00
    • G08B21/08A61B5/0002A61B5/1123B63B45/00G08B21/088G08B23/00
    • A monitoring system, which comprises (a) a set of sensors comprising one or more orientation sensors and at least a state sensor mounted on a body, or in a relation to the body, the motion and state of which are monitored, wherein each of orientation sensor defines orientation and/or coordinates, where each state sensor measures the required state as a function of time for making decision based on a combination of orientation and state parameters; (b) a transmitter coupled to the one or more position sensors; (c) a control system including a timer, a processor for processing the measurement results and making decisions regarding the orientation and state of the body and a memory for storing data and operating software. The first transmitter is operable to transmit output data from the one or more position sensors and the control system is operable to receive the data by the second transmitter and compared the data to the data stored in the memory means for searching abnormal states, as well as to activate an alert system coupled to the control system, whenever an abnormal state is detected.
    • 一种监测系统,其包括(a)一组传感器,包括一个或多个取向传感器和至少一个状态传感器,所述至少一个状态传感器安装在主体上,或与身体相关,其运动和状态被监视,其中每个 方向传感器定义取向和/或坐标,其中每个状态传感器根据取向和状态参数的组合来测量作为时间的函数的所需状态; (b)耦合到所述一个或多个位置传感器的发射器; (c)控制系统,包括定时器,处理器,用于处理测量结果并作出关于身体的取向和状态的决定以及用于存储数据和操作软件的存储器。 第一发射机可操作以从一个或多个位置传感器传输输出数据,并且控制系统可操作以由第二发射机接收数据,并将数据与存储在存储装置中的数据进行比较,以搜索异常状态,以及 每当检测到异常状态时,激活耦合到控制系统的警报系统。
    • 9. 发明申请
    • SOLAR NAVIGATIONAL LIGHT
    • 太阳能导航灯
    • US20140191885A1
    • 2014-07-10
    • US13735097
    • 2013-01-07
    • LINDA DAUPHINKENNETH DAUPHIN
    • LINDA DAUPHINKENNETH DAUPHIN
    • G08G3/00
    • G08G3/00B63B45/00B63B45/02B63B45/04B63B2209/18
    • A solar powered navigational light including: a casing; at least one illuminated lenses on a front side of the casing; a battery compartment within the casing, where the battery compartment houses a rechargeable battery; and a solar panel array on a top side of the casing, where the solar panel array produces energy to charge the rechargeable battery. The solar panel array may function as a sensor to active the illumination of the at least one illuminated lenses. In one particular embodiment, the illuminated lenses may emit a combination of red, green or white lights. The illuminated lenses may include a first lenses and a second lenses in combination.
    • 太阳能导航灯,包括:外壳; 在所述壳体的前侧上的至少一个照明透镜; 壳体内的电池室,其中电池室容纳可充电电池; 以及在壳体的顶侧上的太阳能电池板阵列,其中太阳能电池板阵列产生能量以对可再充电电池充电。 太阳能电池板阵列可以用作传感器来激活至少一个照明透镜的照明。 在一个具体实施例中,照亮的透镜可以发射红色,绿色或白色光的组合。 照明透镜可以包括第一透镜和第二透镜组合。
    • 10. 发明授权
    • Electronically controlled gimbaled platform for steadying illumination sources on vehicles
    • 用于车辆照明源稳定的电子控制万向平台
    • US08577556B1
    • 2013-11-05
    • US12959353
    • 2010-12-02
    • Phares Azarael Noel, II
    • Phares Azarael Noel, II
    • B60Q1/00
    • B60Q1/18B60Q1/085B60Q2300/132B60Q2300/134B60Q2300/136B63B45/00
    • The invention is an electronically controlled gimbaled platform that is installed on a vehicle. An illumination source mounted on the gimbaled platform provides a steady source of illumination in a desired direction. The desired direction of illumination is initially set and stored in a digital control unit. Subsequently, the digital control unit receives real-time measurements of instantaneous rotations experienced by the vehicle. The digital control unit uses the instantaneous vehicle rotation measurements to compute control signals that compensate for vehicle's movements. The compensatory control signals are communicated to actuators that control the orientation of the gimbaled platform in real-time. The effect of the compensatory control signals is to correct for the dynamic disturbances experienced by the vehicle and thereby provide a steady source of illumination unaffected by changes in the vehicle dynamics. Therefore, the invention facilitates in safer operation of vehicles.
    • 本发明是安装在车辆上的电子控制万向平台。 安装在万向平台上的照明源在期望的方向上提供稳定的照明源。 所需的照明方向被初始设置并存储在数字控制单元中。 随后,数字控制单元接收车辆经历的瞬时转动的实时测量。 数字控制单元使用瞬时车辆旋转测量来计算补偿车辆运动的控制信号。 补偿控制信号被传送到执行器,其实时地控制万向平台的定向。 补偿控制信号的效果是校正车辆所经历的动态干扰,从而提供不受车辆动力学变化影响的稳定的照明源。 因此,本发明有利于车辆的更安全的操作。