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    • 1. 发明授权
    • Fault-tolerant control system
    • 容错控制系统
    • US07960934B2
    • 2011-06-14
    • US12236326
    • 2008-09-23
    • Dwayne M. BensonJames Neil QuitmeyerWilliam Daugherty
    • Dwayne M. BensonJames Neil QuitmeyerWilliam Daugherty
    • G05B9/03
    • G05B9/03G05B2219/37297G05B2219/42318H02P6/16
    • A fault-tolerant position feedback filter may be used in an actuation control system to limit the authority of a first position signal, should the first position signal become erroneous, and thereby prevent a postulated runaway condition of an acuator. The filter includes a difference function, a limited integrator, and a summer. The difference function supplies a first position error signal representative of a mathematical difference between a first position signal and a combined position signal. The limited integrator supplies an integrated position error signal that is limited in magnitude to a predetermined limit. The summer supplies the combined position error signal that is representative of a mathematical sum of the integrated position error signal and the second position signal.
    • 如果第一位置信号变得错误,则可以在致动控制系统中使用容错位置反馈滤波器来限制第一位置信号的权限,从而防止推动器的假设失控状态。 滤波器包括差分函数,有限积分器和夏季。 差分功能提供表示第一位置信号和组合位置信号之间的数学差异的第一位置误差信号。 有限积分器提供一个集成的位置误差信号,该信号的幅度受限于预定的极限。 夏季提供表示积分位置误差信号和第二位置信号的数学和的组合位置误差信号。
    • 2. 发明申请
    • FAULT-TOLERANT CONTROL SYSTEM
    • 容错控制系统
    • US20100072934A1
    • 2010-03-25
    • US12236326
    • 2008-09-23
    • Dwayne M. BensonJames Neil QuitmeyerWilliam Daugherty
    • Dwayne M. BensonJames Neil QuitmeyerWilliam Daugherty
    • G05B9/03H02P6/16
    • G05B9/03G05B2219/37297G05B2219/42318H02P6/16
    • A fault-tolerant position feedback filter may be used in an actuation control system to limit the authority of a first position signal, should the first position signal become erroneous, and thereby prevent a postulated runaway condition of an acuator. The filter includes a difference function, a limited integrator, and a summer The difference function is coupled to receive a first position signal and a combined position error signal and is operable to supply a first position error signal representative of a mathematical difference between the first position signal and the combined position signal. The limited integrator is coupled to receive the first position error signal and operable to supply an integrated position error signal that is limited in magnitude to a predetermined limit. The summer is coupled to receive the integrated position error signal and a second position signal and is operable to supply the combined position error signal. The combined position error signal is representative of a mathematical sum of the integrated position error signal and the second position signal.
    • 如果第一位置信号变得错误,则可以在致动控制系统中使用容错位置反馈滤波器来限制第一位置信号的权限,从而防止推动器的假设失控状态。 滤波器包括差分函数,有限积分器和加法器。差分函数被耦合以接收第一位置信号和组合位置误差信号,并且可操作以提供表示第一位置和第二位置之间的数学差的第一位置误差信号 信号和组合位置信号。 有限积分器被耦合以接收第一位置误差信号并且可操作以将限制在大小上的集成位置误差信号提供给预定极限。 加法器耦合以接收积分位置误差信号和第二位置信号,并且可操作以提供组合的位置误差信号。 组合位置误差信号表示积分位置误差信号和第二位置信号的数学和。
    • 7. 发明申请
    • Actuator assembly including a single axis of rotation locking member
    • 执行器组件包括单个旋转轴锁定构件
    • US20080179971A1
    • 2008-07-31
    • US11700271
    • 2007-01-31
    • James N. QuitmeyerDwayne M. BensonKellan P. Geck
    • James N. QuitmeyerDwayne M. BensonKellan P. Geck
    • H02K7/06
    • H02K7/06B64C13/28
    • An actuator assembly including an actuator housing assembly and a single axis of rotation locking member fixedly attached to a portion of the actuator housing assembly and an external mounting structure. The single axis of rotation locking member restricting rotational movement of the actuator housing assembly about at least one axis. The single axis of rotation locking member is coupled at a first end to the actuator housing assembly about a Y axis and at a 90° angle to an X and Z axis providing rotation of the actuator housing assembly about the Y axis. The single axis of rotation locking member is coupled at a second end to a mounting structure, and more particularly a mounting pin, about an X axis and at a 90° angle to a Y and Z axis providing rotation of the actuator housing assembly about the X axis. The actuator assembly is thereby restricted from rotation about the Z axis.
    • 致动器组件包括致动器壳体组件和固定地附接到致动器壳体组件的一部分的单个旋转锁定构件轴和外部安装结构。 单个轴旋转锁定构件限制致动器壳体组件围绕至少一个轴线的旋转运动。 单个轴旋转锁定构件在第一端处围绕Y轴联接到致动器壳体组件,并且与X轴和Z轴成90度角,从而提供致动器壳体组件围绕Y轴的旋转。 单轴旋转锁定构件在第二端处联接到安装结构,更具体地,安装销围绕X轴并且与Y和Z轴成90°角,从而提供致动器壳体组件围绕 X轴。 因此,致动器组件被限制绕Z轴的转动。
    • 8. 发明授权
    • Flow control valve with integral sensor and controller and related method
    • 带集成传感器和控制器的流量控制阀及相关方法
    • US06892745B2
    • 2005-05-17
    • US10119686
    • 2002-04-10
    • Dwayne M. Benson
    • Dwayne M. Benson
    • G01F1/36G05D7/06G05D7/01
    • G01F1/363G05D7/005Y10T137/0318Y10T137/7762Y10T137/7764
    • A flow control valve assembly, and a method of determining and controlling fluid flow through the valve, that is relatively simple in design, is relatively inexpensive, is accurate, and has a relatively wide measurement range. The flow control valve is relatively compact and includes all of the flow measurement and control components in a single, relatively compact assembly. Such components may include a differential pressure sensor, pressure sensor, a temperature sensor, a position sensor, and a processor. The differential pressure sensor senses differential pressure across the variable area flow orifice. The pressure sensor senses fluid pressure within the valve and supplies a fluid pressure signal. The temperature sensor senses fluid temperature and supplies a fluid temperature signal. The position sensor senses the position of the variable area flow orifice and supplies a position signal. The processor receives the differential pressure signal, the fluid pressure signal, the fluid temperature signal, and the position signal and uses these signals to determine and control fluid flow parameter in the passageway.
    • 流量控制阀组件和确定和控制通过阀的流体流动的方法相对简单的设计是相对便宜的,是准确的,并且具有相对较宽的测量范围。 流量控制阀相对紧凑,并且包括在单个相对紧凑的组件中的所有流量测量和控制部件。 这样的部件可以包括差压传感器,压力传感器,温度传感器,位置传感器和处理器。 差压传感器感测可变区域流量孔口两端的差压。 压力传感器感测阀内的流体压力并提供流体压力信号。 温度传感器检测流体温度并提供流体温度信号。 位置传感器检测可变面积流量孔口的位置并提供位置信号。 处理器接收差压信号,流体压力信号,流体温度信号和位置信号,并使用这些信号来确定和控制通道中的流体流动参数。
    • 9. 发明授权
    • Aircraft flight control surface actuation system communication architecture
    • 飞机飞行控制面驱动系统通讯架构
    • US07770842B2
    • 2010-08-10
    • US11207250
    • 2005-08-19
    • Dwayne M. Benson
    • Dwayne M. Benson
    • B64C13/00
    • B64C13/503
    • A flight control surface actuation system includes a plurality of smart actuators to move aircraft flight control surfaces between extended and retracted positions. The system includes a high availability network between the flight control avionics and the smart actuators, and between each of the smart actuators. The system configuration allows network nodes associated with each smart actuator to monitor and control one another, under higher level control of the aircraft flight control avionics, to provide multiple levels of health monitoring, control, and shutdown capability.
    • 飞行控制表面致动系统包括多个智能致动器,用于在延伸位置和缩回位置之间移动飞行器飞行控制表面。 该系统包括飞行控制航空电子设备和智能执行器之间以及每个智能执行器之间的高可用性网络。 系统配置允许与每个智能执行器相关联的网络节点在飞机飞行控制航空电子设备的较高级别控制下相互监视和控制,以提供多级健康监控,控制和关闭能力。