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    • 1. 发明申请
    • All-weather precision guidance and navigation system
    • 全天候精准导航和导航系统
    • US20050012660A1
    • 2005-01-20
    • US10706988
    • 2003-11-14
    • Ray NielsenStephen PhillipsRichard Kirchofor
    • Ray NielsenStephen PhillipsRichard Kirchofor
    • G01S19/48G01S1/00G01S5/14G01S19/04G01S19/07G01S19/18F41G7/00F42B10/00H01Q3/22
    • G01S19/18G01S19/04G01S19/07G01S19/41G01S19/52
    • A location of a target is generated by, at each of a plurality of reference sensors, receiving signals from a plurality of positioning system satellites. A set of error measurements are generated by generating, for each of the reference sensors, one or more error measurements based on a reference location of the reference sensor and information derived from the signals received at the reference sensors from the plurality of position system satellites. Single differenced velocity corrections are also generated. At a central processing node, a meta-correction surface is generated from the set of error measurements. The meta-correction surface is then transmitted to a non-reference sensor. At the non-reference sensor, signals are received from a plurality of the positioning system satellites. The meta-correction surface and the signals received from the plurality of position system satellites are used to generate the location of the target.
    • 目标的位置在多个参考传感器的每一个上由多个定位系统卫星接收信号产生。 通过针对每个参考传感器生成基于参考传感器的参考位置的一个或多个误差测量以及从在多个位置系统卫星处的参考传感器处接收的信号导出的信息来生成一组误差测量。 也产生单差分速度校正。 在中央处理节点,从该组误差测量产生元校正表面。 然后将元校正表面传送到非参考传感器。 在非参考传感器处,从多个定位系统卫星接收信号。 元校正表面和从多个位置系统卫星接收的信号用于产生目标的位置。
    • 2. 发明授权
    • Combustor liner with improved heat shield retention
    • 燃烧器衬管具有改进的隔热保持力
    • US07845174B2
    • 2010-12-07
    • US11737314
    • 2007-04-19
    • Kenneth ParkmanStephen Phillips
    • Kenneth ParkmanStephen Phillips
    • F02C1/00
    • F23R3/002F23D2211/00F23R3/60
    • A combustor liner including a dome section having a positioning hole defined at a first radial distance and sized to receive a first heat shield fastener to at least substantially prevent radial and circumferential motion of the first fastener, a circumferential slot sized to receive a second heat shield fastener to at least substantially prevent radial motion of the second fastener while allowing limited circumferential motion of the second fastener, and a clearance hole defined at a second radial distance and sized to receive a third heat shield fastener to allow limited radial and circumferential motion of the third fastener.
    • 一种燃烧器衬套,其包括具有定位孔的圆顶部分,所述定位孔以第一径向距离限定,并且其尺寸被设计成容纳第一热屏蔽紧固件以至少基本上防止所述第一紧固件的径向和周向运动;尺寸适于接收第二热屏蔽 紧固件至少基本上防止第二紧固件的径向运动,同时允许第二紧固件的有限的周向运动,以及限定在第二径向距离处的尺寸设置成容纳第三热屏蔽紧固件的间隙孔,以允许第二紧固件的有限的径向和周向运动 第三紧固件。
    • 8. 发明申请
    • Systems and methods for processing transaction data to perform a merchant chargeback
    • 用于处理交易数据以执行商家退款的系统和方法
    • US20070094137A1
    • 2007-04-26
    • US11258216
    • 2005-10-26
    • Stephen PhillipsCraig Chumney
    • Stephen PhillipsCraig Chumney
    • G06Q40/00
    • G06Q20/12G06Q20/102G06Q30/06
    • Systems and methods consistent with the present invention may be used as part of determining whether to chargeback a purchase transaction amount to a merchant. To this end, the system may heuristically analyze purchase transaction data to determine which transactions to analyze for chargeback processing. For instance, the system may identify purchase transactions that are likely to qualify for a chargeback. For the identified purchase transactions, the system may then determine an expected value for each transaction in terms of received revenue from chargeback processing and the costs for performing a chargeback. Using the expected values for this transaction data, the system may then prioritize which purchase transactions to review for chargeback to a respective merchant.
    • 与本发明一致的系统和方法可以用作确定是否向商家退还购买交易金额的一部分。 为此,系统可以启发式地分析采购交易数据,以确定哪些交易要进行退款处理。 例如,系统可以识别可能符合退款条件的购买交易。 对于所识别的购买交易,系统可以根据从拒付处理的收到收入和执行退款的成本来确定每个交易的期望值。 使用该交易数据的期望值,系统可以优先考虑哪些购买交易来审查对相应商家的退款。
    • 9. 发明申请
    • Multiple independent coherence planes for maintaining coherency
    • 多个独立的相干平面,用于维持一致性
    • US20070043911A1
    • 2007-02-22
    • US11205652
    • 2005-08-17
    • Ricky HetheringtonStephen Phillips
    • Ricky HetheringtonStephen Phillips
    • G06F13/28
    • G06F13/28G06F12/0811G06F12/0813G06F12/0815G06F12/0831G06F12/0851
    • In one embodiment, a node comprises at least one processor core and a plurality of coherence units. The processor core is configured to generate an address to access a memory location. The address maps to a first coherence plane of a plurality of coherence planes. Coherence activity is performed within each coherence plane independent of other coherence planes, and a mapping of the address space to the coherence planes is independent of a physical location of the addressed memory in a distributed system memory. Each coherence unit corresponds to a respective coherence plane and is configured to manage coherency for the node and for the respective coherence plane. The coherence units operate independent of each other, and a first coherence unit corresponding to the first coherence plane is coupled to receive the address if external coherency activity is needed to complete the access to the memory location.
    • 在一个实施例中,节点包括至少一个处理器核心和多个相干单元。 处理器核心被配置为生成访问存储位置的地址。 地址映射到多个相干平面的第一相干平面。 在每个相干平面内独立于其他相干平面执行相干活动,并且地址空间与相干平面的映射与分布式系统存储器中所寻址的存储器的物理位置无关。 每个相干单元对应于相应的相干平面,并且被配置为管理节点和相应的相干平面的一致性。 相干单元彼此独立地操作,并且如果需要外部一致性活动来完成对存储器位置的访问,则耦合对应于第一相干面的第一相干单元以接收地址。
    • 10. 发明申请
    • Modular imaging download system
    • 模块化影像下载系统
    • US20060218547A1
    • 2006-09-28
    • US11090637
    • 2005-03-25
    • Matthew PurkeypileJeffrey SulmStephen PhillipsVictor Reha
    • Matthew PurkeypileJeffrey SulmStephen PhillipsVictor Reha
    • G06F9/44G06F9/445
    • G06F8/63G06F8/61
    • A system and method of modular image downloading (MINDS) from a network for configuring computers, or computer-based devices. The program images typically comprise a foundation image (operating system) and application module images. The system is configured as software which executes in response to a tree of actions defined in configuration data and not embedded within the executable of the MINDS program. The action tree can be controlled by the user interface, started, paused, terminated, stepped forward or backward, and so forth. The executable operates on the action tree and need not be re-compiled for each action tree change, the modules for the action trees are dynamically linked prior to execution. The action tree approach allows the user to readily change, add, or delete actions, or entire action trees from the system without the need of recoding or additional program testing.
    • 用于配置计算机的网络或基于计算机的设备的模块化图像下载(MINDS)的系统和方法。 程序图像通常包括基础图像(操作系统)和应用模块图像。 该系统被配置为响应于在配置数据中定义的动作树执行而不嵌入MINDS程序的可执行程序中的软件。 动作树可以由用户界面控制,开始,暂停,终止,前进或后退等等。 可执行文件在动作树上运行,无需为每个动作树更改重新编译,动作树的模块在执行之前动态链接。 动作树方法允许用户从系统中轻松地更改,添加或删除动作或整个动作树,而不需要重新编码或附加的程序测试。