会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Storm top detection and prediction
    • 风暴顶部检测和预测
    • US07714767B1
    • 2010-05-11
    • US12346693
    • 2008-12-30
    • Kevin M. KronfeldDaniel L. WoodellKoji Katakura
    • Kevin M. KronfeldDaniel L. WoodellKoji Katakura
    • G01S13/95
    • G01S13/953G01W1/10Y02A90/18
    • A radar system is configured to predict future storm cell characteristics and display an indication of the characteristics on an electronic display. The system has an antenna configured to receive radar returns from radar scans of storm cells. The system includes processing electronics configured to determine a characteristic of a first storm cell from the radar returns and identify at least one second storm cell. The at least one second storm cell is in the same weather system as the first storm cell. The processing electronics are configured to determine the characteristic for the at least one identified second storm cell, compare the characteristic of the first storm cell with the characteristics of the at least one second storm cell, determine a growth rate of the first storm cell, and calculate a predicted height of the first storm cell at a future time based on the comparison and determined growth rate.
    • 雷达系统被配置为预测未来的风暴电池特性并且在电子显示器上显示特性的指示。 该系统具有被配置为从暴风电池的雷达扫描接收雷达返回的天线。 该系统包括处理电子器件,其被配置为确定来自雷达的第一暴风单元的特性返回并且识别至少一个第二暴风单元。 至少一个第二个风暴单元与第一个风暴单元处于相同的天气系统。 处理电子设备被配置为确定所述至少一个识别的第二暴风单元的特性,将第一风暴单元的特性与至少一个第二风暴单元的特性进行比较,确定第一风暴单元的增长率,以及 根据比较和确定的增长率计算未来时间的第一个风暴单元的预测高度。
    • 2. 发明授权
    • Storm top detection and prediction
    • 风暴顶部检测和预测
    • US07486220B1
    • 2009-02-03
    • US11528829
    • 2006-09-28
    • Kevin M. KronfeldDaniel L. WoodellKoji Katakura
    • Kevin M. KronfeldDaniel L. WoodellKoji Katakura
    • G01S13/95
    • G01S13/953G01W1/10Y02A90/18
    • A method of predicting storm cell characteristics at a future time is provided. A value relating to a characteristic of the storm cell is determined from reflectivity data processed from signals received from a radar scan of the storm cell. A second storm cell is identified that is part of the same weather system as the storm cell. A plurality of values relating to the characteristic for the identified second storm cell is received from a memory wherein the plurality of values were determined at a plurality of different times. The determined value of the storm cell is compared with the determined plurality of values of the identified second storm cell. A growth rate of the storm cell is determined. A maximum height of the storm cell at a third time in the future is calculated based on the comparison and the determined growth rate and presented to a user.
    • 提供了一种在未来时间预测风暴电池特性的方法。 根据从暴风单元的雷达扫描接收的信号处理的反射率数据确定与风暴单元的特性相关的值。 识别出与风暴单元相同的天气系统的一部分的第二个风暴单元。 从存储器接收与识别的第二暴风单元的特性相关的多个值,其中多个值在多个不同的时间被确定。 将所确定的暴风单元的值与确定的所识别的第二风暴单元的多个值进行比较。 确定风暴电池的增长率。 根据比较和确定的增长率计算未来第三次的风暴单元的最大高度,并呈现给用户。
    • 4. 发明授权
    • Storm top detection
    • 风暴顶部检测
    • US07307577B1
    • 2007-12-11
    • US11528803
    • 2006-09-28
    • Kevin M. KronfeldDaniel L. Woodell
    • Kevin M. KronfeldDaniel L. Woodell
    • G01S13/95G01S13/00
    • G01S7/411G01S13/953G01W2001/003Y02A90/18
    • A method of characterizing a maximum height of a storm cell for an aircraft is provided. First reflectivity data formed from a first scan of a storm cell by a radar is received and a first centroid of the storm cell is identified. Second reflectivity data formed from a second scan of the storm cell by the radar is received and a second centroid of the storm cell is identified. A scan axis for a third scan of the storm cell based on the first centroid and the second centroid is determined. Third reflectivity data formed from the third scan of the storm cell by the radar at a first time is received. The third reflectivity data is sampled to form pixel data that includes a reflectivity indicator determined for each pixel formed from the third reflectivity data. A maximum height of the storm cell is determined by processing the pixel data.
    • 提供了表征飞机的风暴单元的最大高度的方法。 接收到由雷达对暴风单元进行的第一扫描形成的第一反射率数据,并且识别暴风单元的第一重心。 接收由雷达对暴风单元的第二次扫描形成的第二反射率数据,并且识别暴风单元的第二重心。 确定基于第一重心和第二重心的风暴单元的第三次扫描的扫描轴。 接收第一次由雷达对风暴单元的第三次扫描形成的第三反射率数据。 第三反射率数据被采样以形成像素数据,其包括针对由第三反射率数据形成的每个像素确定的反射率指示符。 通过处理像素数据来确定风暴单元的最大高度。
    • 9. 发明授权
    • Multi-chip module architecture
    • 多芯片模块架构
    • US09478858B1
    • 2016-10-25
    • US13837934
    • 2013-03-15
    • James B. WestLee M. PaulsenDaniel L. WoodellMichael L. HagemanRussell D. WyseAdrian Hill
    • James B. WestLee M. PaulsenDaniel L. WoodellMichael L. HagemanRussell D. WyseAdrian Hill
    • H01Q3/00H01Q3/34
    • H01Q3/34G01S7/292G01S7/414G01S13/5244G01S13/581G01S13/953Y02A90/18
    • Electronically scanned arrays and multi-chip modules (MCMs) that may be used in such arrays are provided. One MCM may include a set of one or more first semiconductor components and a plurality of second semiconductor components. The first semiconductor component set is coupled to the plurality of second semiconductor components, and the first semiconductor component set is configured to control the plurality of second semiconductor components. Each of the plurality of second semiconductor components is accessible through a plurality of data strings providing communication between the first semiconductor component set and the plurality of second semiconductor components, each data string defining a unique path between the first semiconductor component set and the plurality of second semiconductor components, such that the plurality of data strings provide redundant data paths between the first semiconductor component set and the plurality of second semiconductor components.
    • 提供了可用于这种阵列的电子扫描阵列和多芯片模块(MCM)。 一个MCM可以包括一组一个或多个第一半导体部件和多个第二半导体部件。 第一半导体部件组耦合到多个第二半导体部件,并且第一半导体部件组被配置为控制多个第二半导体部件。 多个第二半导体部件中的每一个可通过提供第一半导体部件组和多个第二半导体部件之间的通信的多个数据串来访问,每个数据串在第一半导体部件组和多个第二半导体部件之间限定唯一的路径 半导体部件,使得多个数据串提供第一半导体部件组和多个第二半导体部件之间的冗余数据路径。