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    • 8. 发明授权
    • Automatic horizontal and vertical scanning radar
    • 自动水平和垂直扫描雷达
    • US5202690A
    • 1993-04-13
    • US892158
    • 1992-06-02
    • Philip R. Frederick
    • Philip R. Frederick
    • G01S7/20G01S13/95
    • G01S13/953
    • A Weather radar and map display system for use in aircraft includes a transmitter for transmitting radar signals outwardly from the aircraft, a receiver for receiving back reflected radar signals, a digitizer for digitizing the reflected radar signals, a processor for calculating the latitude and longitude coordinates of the locations in space from which the reflected radar signals were reflected based on detected range information of the reflected radar signals and detected heading, position and track information of the aircraft, and a storage device for storing the digitized signals and the latitude and longitude coordinates calculated for respective reflected radar signals. Also included is a second storage device for storing predetermined map and navigation data, reference to latitude and longitude, of the ground over which the aircraft will travel, and a display device responsive to the first and second storage devices for simultaneously displaying a plan view image over a selected horizontal range of weather, represented by digitized reflected radar signals, relative to the calculated latitude and longitude coordinates, and of the map and navigational data relative to the latitude and longitude of that data. The weather display and map and navigational data display are superimposed over one another to enable quick and efficient location of weather conditions and map and navigational aids such as airports, navigational stations, and other aircraft guiding structure.
    • 用于飞机的天气雷达和地图显示系统包括用于从飞机向外发射雷达信号的发射机,用于接收反射的雷达信号的接收机,用于数字化反射雷达信号的数字化仪,用于计算纬度和经度坐标的处理器 基于反射的雷达信号的检测范围信息和检测到的飞机的航向,位置和轨道信息,以及用于存储数字化信号和纬度和经度坐标的存储装置,反射的雷达信号从其反射的空间中的位置 针对各个反射雷达信号计算。 还包括第二存储装置,用于存储飞机将要行进的地面的经纬度的预定地图和导航数据;以及响应于第一和第二存储装置同时显示平面图像的显示装置 在相对于计算出的纬度和经度坐标的数字化反射雷达信号所表示的选定的水平范围内,以及相对于该数据的纬度和经度的地图和导航数据。 天气显示和地图和导航数据显示相互叠加,以便能够快速高效地定位天气状况,以及地图和导航辅助设备,如机场,导航站等飞机引导结构。
    • 9. 发明授权
    • Multi-dimensional data processing and display
    • 多维数据处理和显示
    • US5175710A
    • 1992-12-29
    • US628337
    • 1990-12-14
    • William H. Hutson
    • William H. Hutson
    • G01S3/80G01S3/802G01S7/20G01S7/526G01S7/56G01S7/62G01S15/66G01S15/88G01S15/89G06T11/00H04B1/10
    • G01S7/6245G01S15/89G01S3/8006G01S3/802G01S3/86G01S7/20G01S15/66G01S15/87G01S15/8977
    • A multi-dimensional processing and display system is used with a sonar tracking system to monitor ocean-going vessels. The system arranges data in a three-dimensional matrix, which is then reformatted into a two-dimensional matrix. The two-dimensional matrix is decomposed into singular vectors and singular values. Certain data elements in the two-dimensional matrix are enhanced or diminished by modifying selected angular values. A history database is maintained by saving certain of the singular vectors, which is concatenated with the two-dimensional matrix. An enhanced two-dimensional matrix is generated by multiplying the two-dimensional concatenated matrix by the modified singular values and the singular vectors. After data enhancement, the two-dimensional enhanced matrix is reformatted back into a three-dimensional matrix. All or portions of the enhanced three-dimensional matrix can then be displayed.
    • 使用多维处理和显示系统与声纳跟踪系统来监视远洋船只。 系统将数据排列在三维矩阵中,然后将其重新格式化为二维矩阵。 二维矩阵被分解为奇异向量和奇异值。 通过修改所选的角度值来增强或减少二维矩阵中的某些数据元素。 通过保存与二维矩阵连接的某些奇异向量来维护历史数据库。 通过将二维连接矩阵乘以修改的奇异值和奇异向量来生成增强的二维矩阵。 数据增强后,二维增强矩阵重新格式化为三维矩阵。 然后可以显示全部或部分增强的三维矩阵。
    • 10. 发明授权
    • Ultrasonic image system
    • 超声波图像系统
    • US4288866A
    • 1981-09-08
    • US83044
    • 1979-10-09
    • George L. Sackman
    • George L. Sackman
    • G01S7/62G01S15/89G01S7/20
    • G01S7/6245G01S15/8959
    • A contour map underwater ultrasonic image system simultaneously uses a la time-bandwidth product signal waveforms for extremely fine range resolution, and an image memory organized as a three-dimensional data base of object reflectivity. The transmitted waveform is a pseudo-random coded signal. A plurality of correlator receivers produce a time-compressed pulse for each angular resolution cell. An image memory receives the output of the correlator receivers and builds up a three-dimensional data base of echoes in the form of a set of contour lines for each range cell. Standard computer-graphic techniques are used to accept the three-dimensional data base and generate displays to assist an operator in identifying the object.
    • 水下超声波图像系统的等高线图同时使用大时间带宽乘积信号波形进行极细度分辨率,并将图像存储器组织为物体反射率的三维数据库。 发送的波形是伪随机编码信号。 多个相关器接收器为每个角度分辨率单元产生时间压缩的脉冲。 图像存储器接收相关器接收器的输出,并以每个范围单元的一组轮廓线的形式建立回波的三维数据库。 使用标准的计算机图形技术来接受三维数据库并生成显示器以帮助操作者识别对象。