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    • 62. 发明公开
    • SELF-CALIBRATION OF AN INTERTIAL SYSTEM
    • 自我校准的一个系统
    • EP3299769A1
    • 2018-03-28
    • EP17001442.7
    • 2017-08-28
    • Northrop Grumman Systems Corporation
    • Trusov, AlexanderPhillips, Mark R.McCammon, George H.
    • G01C25/00
    • G01C25/00G01C21/18G01C25/005
    • One embodiment describes an inertial system. The system includes a gyroscope system comprising a plurality of gyroscopes. The gyroscope system can be configured to provide rotation rate data associated with rotation of the plurality of gyroscopes about a respective plurality of sensitive axes. The system also includes a rotation sensor system configured to calculate navigation data based on the rotation rate data. The rotation sensor system includes a self-calibration component configured to designate a first gyroscope of the plurality of gyroscopes for self-calibration during operation of the inertial system and to inject a calibration input signal into the first gyroscope. The self-calibration component being configured to calibrate the first gyroscope based on the rotation rate data of the first gyroscope corresponding to the calibration input signal relative to the rotation rate data associated with a remaining at least one of the plurality of gyroscopes.
    • 一个实施例描述了惯性系统。 该系统包括包含多个陀螺仪的陀螺仪系统。 陀螺仪系统可以被配置成提供与多个陀螺仪围绕相应的多个敏感轴的旋转相关联的旋转速率数据。 该系统还包括配置成基于旋转速率数据计算导航数据的旋转传感器系统。 旋转传感器系统包括自校准组件,其被配置为在惯性系统的操作期间指定多个陀螺仪中的第一陀螺仪用于自校准并且将校准输入信号注入到第一陀螺仪中。 自校准组件被配置为基于与校准输入信号相对应的第一陀螺仪的旋转速率数据相对于与多个陀螺仪中剩余的至少一个相关联的旋转速率数据来校准第一陀螺仪。
    • 67. 发明授权
    • GLOBAL POSITIONING SYSTEM PHASED ARRAY USING ALL-DIGITAL BEAM FORMING AND DIRECT DIGITAL WAVEFORM SYNTHESIS METHODS
    • 采用全数字波束成形和直接数字波形综合方法的全球定位系统相控阵雷达
    • EP3120165B1
    • 2017-10-04
    • EP15808041.6
    • 2015-06-01
    • Northrop Grumman Systems Corporation
    • NGO, Kiet, D.KORETZKY, Edward, V.HALL, Dennis, M.COCKFIELD, Douglas, S.
    • G01S19/02H01Q3/30
    • G01S19/02G01S1/042H01Q3/30H01Q21/0093
    • An apparatus includes: a Global Positioning System (GPS) phased array comprising a plurality of digital beam forming elements (DBFEs), wherein at least one of the DBFEs includes: an antenna configured to transmit a GPS signal; a radio frequency (RF) electronics section operably connected to the antenna and digital electronics sections; and a digital electronics section operably connected to the RF electronics section. An apparatus includes: a GPS phased array comprising a plurality of DBFEs, wherein at least one of the DBFEs includes: an antenna configured to transmit a GPS signal; an RF electronics section operably connected to the antenna and digital electronics sections; and a digital electronics section operably connected an RF electronic section; a navigation encoder and frequency generator (NEFU) unit operably connected to the GPS phased array; and an atomic frequency standard operably connected to the NEFU unit.
    • 一种装置包括:包括多个数字波束形成单元(DBFE)的全球定位系统(GPS)相控阵列,其中至少一个DBFE包括:天线,被配置为发送GPS信号; 可操作地连接到天线和数字电子部分的射频(RF)电子部分; 以及可操作地连接到RF电子部分的数字电子部分。 一种装置包括:包括多个DBFE的GPS相控阵列,其中至少一个DBFE包括:天线,被配置为发送GPS信号; 可操作地连接到天线和数字电子部分的RF电子部分; 和可操作地连接RF电子部分的数字电子部分; 导航编码器和频率发生器(NEFU)单元,可操作地连接到GPS相控阵列; 以及可操作地连接到NEFU单元的原子频率标准。
    • 68. 发明公开
    • RECIPROCAL QUANTUM LOGIC (RQL) CIRCUIT SYNTHESIS
    • 互惠量子逻辑(RQL)电路综合
    • EP3213238A1
    • 2017-09-06
    • EP14802538.0
    • 2014-10-29
    • Northrop Grumman Systems Corporation
    • SHAUCK, Steven B.PHIFER, Gary L.
    • G06F17/50H03K3/38
    • G06F17/505G06F17/5031G06F17/5072G06F17/5077G06F17/5081G06F2217/06G06N99/002H03K3/38
    • A method for generating a Reciprocal Quantum Logic (RQL) circuit design via a synthesis tool. The method includes providing data associated with behavior and constraints of the RQL circuit design and a component library to the synthesis tool. The method also includes generating an RQL netlist circuit comprising a flip-flop device placeholder and a circuit system coupled to at least one of an input and an output of the flip-flop device placeholder via the synthesis tool based on the data and a component library. The method also includes separating the circuit system into circuit subsystems that are each associated with a separate respective phase of a clock signal via the synthesis tool based on inputs. The method further includes removing the flip-flop device placeholder from the RQL netlist circuit via the synthesis tool to generate the RQL circuit design from the RQL netlist circuit.
    • 本发明的一个实施例包括用于经由合成工具生成互惠量子逻辑(RQL)电路设计的方法。 该方法包括将与RQL电路设计和组件库的行为和约束相关联的数据提供给合成工具。 该方法还包括基于数据和组件库生成包括触发器设备占位符和耦合到触发器设备占位符的输入和输出中的至少一个的电路系统的RQL网表列表电路, 。 该方法还包括基于输入将电路系统分离成电路子系统,每个电路子系统经由合成工具与时钟信号的单独的相应相位相关联。 该方法还包括通过合成工具从RQL网表电路中去除触发器设备占位符,以从RQL网表电路产生RQL电路设计。