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Frequency control using binary rate multipliers for automatic testing on c.w. radar systems

机译:使用二进制速率乘法器进行频率控制以在c.w上进行自动测试。雷达系统

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R.F. signals with certain defined characteristics have to be generated for ground testing on f.m. c.w. radar airborne-guidance systems. Normally in flight, two r.f. signals would be received; one direct from the ground transmitter and the other originating at the same transmitter, but reflected from a target. A lowfrequency wide-deviation frequency modulator is applied to the carrier at the ground transmitter. Owing to a difference in the path lengths of the two signals, a difference in phase angle of the modulating signal results, and, owing to the Doppler effect, the carrier frequencies are slightly separated. For testing therefore two r.f. signals with a precise and variable difference frequency have to be generated. Also both signals must be frequency modulated at the same frequency to the same deviation, but with a variable phase angle between the two modulating signals. For this purpose, a study has been made of the behaviour of binary rate multipliers used partly to shift the frequency, and partly to frequency modulate the r.f. carriers. A common crystal oscillator would feed into two b.r.m.s each shifting the carrier by a different amount, and each frequency modulating the shifted carriers with the same deviation. The b.r.m. operates by removing pulses from an uninterrupted pulse train according to the digital address. Thus the mean output frequency is lower than the input, but is contaminated with phase jitter. Jitter magnitude varies considerably with the address pattern, and it increases with the number of address lines. A graph of maximum jitter is given for increasing numbers of address lines up to 13. It isshown how phase jitter may be reduced to an acceptable limit, and how a system to meet the requirements may be designed.
机译:R.F.为了在f.m上进行地面测试,必须生成具有某些定义特性的信号。 c.w.雷达机载制导系统。通常在飞行中,两架R.f.信号将被接收;一个直接来自地面发射器,另一个来自同一发射器,但从目标反射。低频宽偏差频率调制器应用于地面发射机的载波。由于两个信号的路径长度不同,导致调制信号的相位角不同,并且由于多普勒效应,载波频率被稍微分开。因此,为了进行测试,有两个r.f.必须生成具有精确且可变的差频信号。同样,两个信号必须以相同的频率进行频率调制至相同的偏差,但是两个调制信号之间具有可变的相位角。为此目的,已经对二进制速率乘法器的性能进行了研究,该速率部分用于移动频率,另一部分用于对射频进行频率调制。运营商。一个普通的晶体振荡器会馈入两个b.r.m.s中,每个都将载波移位不同的量,并且每个频率以相同的偏差调制移位后的载波。下午通过根据数字地址从不间断的脉冲序列中删除脉冲来进行操作。因此,平均输出频率低于输入频率,但受到相位抖动的污染。抖动幅度随地址模式而变化很大,并且随地址线的数量而增加。给出了最大抖动的图表,其中增加了多达13条的地址线。它显示了如何将相位抖动降低到可接受的极限,以及如何设计满足要求的系统。

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