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    • 1. 发明授权
    • Signal processing system
    • 信号处理系统
    • US06707825B1
    • 2004-03-16
    • US09207746
    • 1998-12-08
    • Mark A. TurnerJoseph E. Anstett, IIINegar MoshiriDaniel S. SimpkinsCarl Symborski
    • Mark A. TurnerJoseph E. Anstett, IIINegar MoshiriDaniel S. SimpkinsCarl Symborski
    • H04J316
    • H04L49/606H04L12/6402H04L12/6418H04L49/108H04L2012/6408H04L2012/6475H04L2012/6489
    • A transcoder converts data between a telephony data format and a packet data format. The transcoder comprises: a digital logic telephony data engine receiving telephony data for the transcoder and transmitting telephony data for the transcoder, the digital logic telephony data engine comprising a frame accumulation buffer; a digital logic packet engine receiving packet data for the transcoder and transmitting packet data for the transcoder; a digital signal processing complex coupled to the digital logic telephony data engine and the digital logic packet engine, the digital signal processing complex comprising an array of digital signal processors; and a host processor coupled to the digital logic telephony data engine and the digital logic packet engine, wherein the digital logic telephony data engine, the digital logic packet engine, and the digital signal processing complex perform media channel processing, wherein the host processor performs control channel processing.
    • 代码转换器在电话数据格式和分组数据格式之间转换数据。 代码转换器包括:数字逻辑电话数据引擎,用于接收代码转换器的电话数据,并为代码转换器发送电话数据,数字逻辑电话数据引擎包括帧累积缓冲器; 数字逻辑分组引擎接收代码转换器的分组数据并发送代码转换器的分组数据; 耦合到数字逻辑电话数据引擎和数字逻辑分组引擎的数字信号处理复合体,数字信号处理复合体包括数字信号处理器阵列; 以及耦合到数字逻辑电话数据引擎和数字逻辑分组引擎的主机处理器,其中数字逻辑电话数据引擎,数字逻辑分组引擎和数字信号处理复合体执行媒体信道处理,其中主机处理器执行控制 频道处理。
    • 3. 发明授权
    • Apparatus and method for actuating control surfaces
    • 用于启动控制面的装置和方法
    • US07219579B2
    • 2007-05-22
    • US10797489
    • 2004-03-10
    • Mark A. Turner
    • Mark A. Turner
    • F16H37/06
    • F42B10/62F16H1/22Y10T74/19Y10T74/19135Y10T74/1914Y10T74/19144Y10T74/19651Y10T74/19684Y10T74/19702
    • An apparatus for actuating a control surface includes a first spur gear, a first drive assembly engaged with the first spur gear, a second spur gear, a second drive assembly engaged with the second spur gear, and a gear assembly capable of being coupled with the control surface and engaged with the spur gears. The gear assembly includes a first screw, a first gear engaged with the first spur gear, a thrust nut mounted to the first gear and threadedly engaged with the first screw, a second gear engaged with the second spur gear, a second screw mounted to the second gear and mechanically coupled with the thrust nut and a translation nut threadedly engaged with the second screw and capable of being coupled with the control surface. The second screw and the thrust nut rotate independently and translations of the thrust nut are transmitted to the second screw.
    • 用于致动控制表面的装置包括第一正齿轮,与第一正齿轮接合的第一驱动组件,第二正齿轮,与第二正齿轮啮合的第二驱动组件,以及能够与 控制表面并与正齿轮啮合。 齿轮组件包括第一螺钉,与第一正齿轮接合的第一齿轮,安装到第一齿轮并与第一螺钉螺纹接合的推力螺母,与第二正齿轮啮合的第二齿轮,安装到 第二齿轮并与推力螺母机械联接,以及与第二螺钉螺纹接合并能够与控制表面联接的平移螺母。 第二螺丝和推力螺母独立旋转,推力螺母的平移传递到第二螺丝。
    • 5. 发明授权
    • Non-coherent fresnel direction finding method and apparatus
    • 非相干菲涅耳测向方法和装置
    • US06851645B1
    • 2005-02-08
    • US10729066
    • 2003-12-05
    • Brett A. WilliamsBrian C. BakerMark A. Turner
    • Brett A. WilliamsBrian C. BakerMark A. Turner
    • F41G7/00
    • F41G7/2293F41G7/226
    • A method and apparatus for finding a relative direction of received radiation is described. The received radiation is incident upon a window system at an angle and is transmitted therethrough. The magnitude of the transmitted radiation decreases as a continuous function of increasing angle of incidence, known as Fresnel transmittance. Opposing radiation detectors then detect this transmitted radiation, thereby creating a pair of detection signals, By dividing the difference of the detection signals by the sum of the detection signals, a processor generates a beta angle error curve and finds the relative direction of the radiation. Based upon this beta angle error curve, the processor generates an appropriate error correction signal for guiding an object based upon the relative direction of the received radiation. The method and apparatus are readily applicable to guiding munitions using a laser monopulse to designate a target.
    • 描述了一种用于发现接收辐射的相对方向的方法和装置。 所接收的辐射以一定角度入射在窗户系统上并透过其中。 发射辐射的幅度随着入射角增加的连续函数而减小,称为菲涅耳透光率。 相反的辐射探测器然后检测这个发射的辐射,从而产生一对检测信号。通过将检测信号的差除以检测信号的和,处理器产生一个β角误差曲线并找到辐射的相对方向。 基于该β角度误差曲线,处理器基于所接收的辐射的相对方向产生用于引导对象的适当的纠错信号。 所述方法和装置可以容易地应用于使用激光单脉冲来指导弹药来指定目标。
    • 9. 发明授权
    • Doppler tracking optical monopulse
    • 多普勒跟踪光学单脉冲
    • US07397549B2
    • 2008-07-08
    • US11609085
    • 2006-12-11
    • Brett A. WilliamsMark A. TurnerBrian C. Baker
    • Brett A. WilliamsMark A. TurnerBrian C. Baker
    • G01C1/00G01S13/00
    • G01S17/50F41G7/226F41G7/2293G01S3/784
    • A method and apparatus for finding a relative direction to, a radial speed of, and a distance to a target is described. A laser source illuminates the target and the Doppler shifted return beam is incident upon a window system at an angle and is transmitted therethrough. The magnitude of the transmitted Doppler shifted beam decreases due to Fresnel transmittance. Opposing photomixers then detect this transmitted Doppler shifted beam, thereby creating a pair of detection signals that are mixed with a local oscillator signal. The mixing process creates Doppler frequency signals that are subsequently processed to determine the radial speed of the target. Due to the Doppler frequency component of the signals, objects in the same direction, but moving at different radial speeds, can be discriminated, as the relative direction processing occurs after the Doppler processing.
    • 描述用于找到与目标的相对方向,径向速度和距离的方法和装置。 激光源照亮目标,并且多普勒偏移返回光束以一定角度入射在窗系统上并透过其中。 由于菲涅耳透光率,传输的多普勒偏移波束的幅度减小。 相反的混色器然后检测该发射的多普勒偏移波束,从而产生与本地振荡器信号混合的一对检测信号。 混合过程创建多普勒频率信号,随后进行处理以确定目标的径向速度。 由于在多普勒处理之后发生相对方向处理,可以鉴别信号的多普勒频率分量,相同方向的物体,但以不同的径向速度移动。