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SEEN INDICATING COUNCIL SCIENCES.

机译:SEEN指示理事会科学。

摘要

1487221 Pulse radar MARCONI CO Ltd 15 Oct 1974 [4 July 1974] 29620/74 Heading H4D Radar video signals have their instantaneous amplitudes sampled and measured at a first predetermined rate, their measured instantaneous magnitudes are stored, and are read out at a second predetermined rate, which is greater than the first predetermined rate. A retimed video signal is thereby obtained, which is used in a display unit. As described, a computer system 10, Fig. 1, comprises an arithmetic and logic processor 12, a display processor and buffer 14, a store 16, and a radar service module 18 connected to a common highway 20. The system 10 receives azimuth and sync information and provides, by way of an X-Y integrator and deflection generator unit 22, one output which controls the scanning of a display unit 26, and another output which controls the retiming of the incoming video signal in a unit 24. The computer system is programmed according to the off-centre and expansion conditions required in the display. The module 18 utilizes azimuth and sync information derived from the radar head to update information held in the store 16, from the contents of which the display processor and buffer 14 produces digital signals representative of the starting position of the scanning spot on the display unit 26 and of the X and Y scanning speeds. The unit 22 produces corresponding scanning circuit voltages from said digital signals. In the video retimer 24 an analogue/digital converter 30, Fig. 2, samples the incoming video signal each time it receives a command signal from an encode rate and control circuit 32, and produces a digital output which is fed into one or other of two shift registers 34, 36 via a changeover switch 38. Whilst a video signal is being written into one shift register the immediately previous video signal, recorded in the other shift register, is being read out at a different rate by a digital/analogue converter 39 responsive to a decode rate and control circult 40. The retimed video output appears on an output terminal 42. The encode rate and control circuit 32 is connected to the computer 10, to a sync terminal 48, and to a start range circuit 46, which is also connected to the computer, and which has stored in it a number indicative of the range from which display is to commence. Upon receiving a sync pulse, the circuit 32 sets a counter 44, which then counts pulses fed to it from a clock 50. When the stored number value is reached, the circuit acts on the converter 30 to commence sampling. The decode rate and control circuit 40 is enabled by the aforesaid output from the unit 22 to read the information in the other shift register at the rate determined by the computer to match the read out rate to the speed of movement on the scanning spot. As with the encode rate and control circuit 32, the decode rate and control circuit 40 is connected to a counter 52, which counts the pulses from the clock 50. Changeover of the switches 38, and consequently of the functions of the shift registers 34, 36, is effected by the sync pulses. By making the read out rate greater than the write in rate, a dead time is created, which may be utilized for inserting additional information in the display.
机译:1487221 MARCONI CO Ltd脉冲雷达1974年10月15日[1974年7月4日] 29620/74标题H4D雷达视频信号以第一预定速率采样和测量其瞬时幅度,存储其测量的瞬时幅度,并以第二预定的速率读出速率,该速率大于第一预定速率。由此获得重新定时的视频信号,其在显示单元中使用。如所描述的,图1的计算机系统10包括算术和逻辑处理器12,显示处理器和缓冲器14,商店16以及连接到公共高速公路20的雷达服务模块18。系统10接收方位角和同步信息并通过XY积分器和偏转发生器单元22提供一个输出,该输出控制显示单元26的扫描,另一个输出控制单元24中输入视频信号的重定时。根据显示屏所需的偏心和扩展条件进行编程。模块18利用从雷达头获得的方位角和同步信息来更新存储在商店16中的信息,显示处理器和缓冲器14从其内容中产生表示扫描点在显示单元26上的开始位置的数字信号。和X和Y扫描速度。单元22从所述数字信号产生相应的扫描电路电压。在视频重定时器24中,图2中的模/数转换器30每次在接收到来自编码速率和控制电路32的命令信号时对输入视频信号进行采样,并产生数字输出,该数字输出被馈送到一个或另一个中。通过转换开关38将两个移位寄存器34、36进行交换。在将视频信号写入一个移位寄存器的同时,数字/模拟转换器以不同的速率读出记录在另一移位寄存器中的紧接在前的视频信号。响应于解码速率和控制循环40的图39所示。重新定时的视频输出出现在输出端子42上。编码速率和控制电路32连接到计算机10,同步端子48和起始范围电路46,它也连接到计算机,并在其中存储了一个数字,该数字指示开始显示的范围。在接收到同步脉冲时,电路32设置计数器44,该计数器然后对从时钟50馈送给其的脉冲进行计数。当达到所存储的数值时,电路作用于转换器30以开始采样。解码速率和控制电路40由单元22的上述输出启动,以计算机确定的速率读取另一个移位寄存器中的信息,以使读出的速率与扫描点上的移动速度相匹配。如同编码率和控制电路32一样,解码率和控制电路40连接到计数器52,该计数器对来自时钟50的脉冲进行计数。开关38的转换,以及因此移位寄存器34的功能的转换,在图36中,由同步脉冲影响。通过使读出速率大于写入速率,可以创建空载时间,该空载时间可以用于在显示器中插入其他信息。

著录项

  • 公开/公告号SE7507680L

    专利类型

  • 公开/公告日1976-01-05

    原文格式PDF

  • 申请/专利权人 THE MARCONI CO. LTD;

    申请/专利号SE19750007680

  • 发明设计人 GASKELL T E;

    申请日1975-07-03

  • 分类号G01S7/44;

  • 国家 SE

  • 入库时间 2022-08-23 02:42:59

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