首页> 外国专利> ARRANGEMENT FOR MEASURING THE LAG BETWEEN TWO TIMED SIGNALS BY ELECTRONIC CORRELATION

ARRANGEMENT FOR MEASURING THE LAG BETWEEN TWO TIMED SIGNALS BY ELECTRONIC CORRELATION

机译:电子相关测量两个定时信号之间的滞后的安排

摘要

1514039 Delay measuring by correlation THOMSON-CSF 7 Oct 1976 [10 Oct 1975] 41827/76 Heading G1U A system of the type in which the phase lag # between a received cyclically recurring pulse-coded signal S2, Fig. 1, (for example, an echo signal in a radar system) and a transmitted signal S 1 of which the received signal is ideally a perfect copy, is determined by correlating 4, 5, the received signal with two locally generated signals S3, S4, each of which is a copy of the transmitted signal but shifted in phase therefrom by lags of #1 and #2, where #2-#1 is constant, by subtracting 6 the resulting correlation signals to produce a difference signal S5 having an amplitude-lag characteristic as shown in Fig. 2, in which the amplitude axis is drawn through the value #3 of # and not at the origin of # which is on the far left, and by adjusting the lags #1 and #2 so that the difference signal S5 is maintained zero, which means that the unknown phase lag # has the value #3 as shown, given by #3 = #1 + ¢ (#2-#1) is characterized in that this lag is determined by producing 9 a reference pulse S6 at a particular position within each cycle of the transmitted signal and a data pulse S7 at the same position within the locally generated signal S3 (which is phase-locked to the received signal S2), delaying 12 the data pulse S7 by an amount equal to half the constant difference #2-#1, and measuring the time between the reference pulse S6 and the delayed data pulse S8 by counting 11 relatively high frequency clockpulses. As described a 15-bit pseudo-random signal (S1), Fig. 3a (not shown), is repeatedly produced and transmitted by a generator 1 driven by clockpulses (HE, Fig. 3a). The received signal (S2), Fig. 3f (not shown), which lags the transmitted signal S1 by # is correlated 4, 5, with two signals S3, S4 produced by a generator 7 driven by clockpulses (HR), Fig. 3c (not shown). The clockpulses HR are controlled by the difference signal S6 so that the lag # of the received signal S2 always lies between the lags #1 and #2 of signals S3 and S4 as shown in Figs. 3d and 3e (not shown) respectively. At a particular time within each cycle of the transmitted signal S 1 and the locally generated signal (S3), pulses (S6) and (S7), Figs. 3g and 3h (not shown), respectively, are produced, the pulses S7 are delayed to give pulses (S8) Fig. 3i (not shown), and the phase lag between pulses S6 and S8 is measured by counting clockpulses Fig. 3j (not shown). The clockpulse generator 8 may include means e.g. Fig. 5 (not shown) to effect the initial acquisition of the received signal S2 to bring its lag # into the operative portion of the characteristic shown in Fig. 2.
机译:1514039通过相关性进行的延迟测量THOMSON-CSF 1976年10月7日[1975年10月10日] 41827/76标题G1U一种类型的系统,其中接收到的循环重复脉冲编码信号S2(图1)之间的相位滞后#(例如) (雷达系统中的回波信号)和发射信号S 1(其接收信号理想情况下是理想副本),是通过将接收信号与两个本地生成的信号S3,S4进行相关的4、5确定的,每个信号分别为通过减去6所得的相关信号以产生具有幅值滞后特性的差分信号S5,从而复制发送信号的副本,但从其中移相#1和#2,其中#2-#1不变在图2中,其中振幅轴是通过#的值#3而不是在最左端的#的原点绘制的,并且通过调节滞后#1和#2使得差信号S5为保持零,这意味着未知相位滞后#的值为#3,如图所示,由#给出3 =#1 +¢(#2-#1)的特征在于,通过在发送信号的每个周期内的特定位置产生9个参考脉冲S6和在该信号内的相同位置产生一个数据脉冲S7来确定此滞后。本地产生的信号S3(与接收信号S2锁相),将数据脉冲S7延迟12等于常数差#2-#1的一半,并测量参考脉冲S6和延迟后的时间通过计数11个相对较高的时钟脉冲来获得数据脉冲S8。如所描述的,图3a(未示出)的15位伪随机信号(S1)被由时钟脉冲(HE,图3a)驱动的发生器1重复地产生和发送。与发送信号S1相比滞后#的图3f(未示出)的接收信号(S2)与由图3c时钟脉冲(HR)驱动的发生器7产生的两个信号S3,S4相关4、5 (未显示)。时钟脉冲HR由差信号S6控制,使得接收信号S2的滞后#总是位于信号S3和S4的滞后#1和#2之间,如图1和2所示。分别为3d和3e(未示出)。在发射信号S 1和本地产生的信号(S3)的每个周期内的特定时间,脉冲(S6)和(S7),如图1和2所示。分别产生3g和3h(未显示),延迟脉冲S7以产生图3i(未显示)的脉冲(S8),并且通过计数图3j的时钟脉冲来测量脉冲S6和S8之间的相位滞后(未显示)。时钟脉冲发生器8可以包括例如一个或多个装置。图5(未示出)实现接收信号S2的初始获取,以将其滞后#带入图2所示的特性的有效部分。

著录项

  • 公开/公告号GB1514039A

    专利类型

  • 公开/公告日1978-06-14

    原文格式PDF

  • 申请/专利权人 THOMSON CSF;

    申请/专利号GB19760041827

  • 发明设计人

    申请日1976-10-07

  • 分类号G06G7/19;

  • 国家 GB

  • 入库时间 2022-08-22 21:37:38

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