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Improvements in or relating to time-modulated pulse communication systems

机译:时间调制脉冲通信系统或与之相关的改进

摘要

582,324. Pulse modulation. STANDARD TELEPHONES & CABLES, Ltd., CHATTERJEA, P. K., and SCULLY, C. T. Nov. 24,1941, No. 15145. [Class 40 (v)] In a duration-modulated pulse communication system, pulses modulated on each edge in accordance with different portions of a signal wave form are produced by combining two trains of pulses of the same frequency displaced in time so that the leading edges of one train coincide with the trailing edges of the other, the other edges of each train being modulated. The two trains may be produced by modulating a saw-toothed or other " analysing " wave and a similar " image " or reversed wave, or two similar analysing waves may be modulated by the signal wave and a reversed signal wave. As shown diagrammatically in Fig. 3, if a signal wave having instantaneous amplitudes varying between lines 24, 25 about a mean value 17, and a saw-tooth wave 15, are applied to a grid or separate grids of a back-biassed valve, the output comprises pulses which by amplification and limitation may be converted into a pulse-series 19 varying in width as the signal wave form varies between the limits 24, 25, the leading (right hand) edges of the pulses occurring at fixed intervals of time, and the trailing edges being modulated. If this operation is performed on a reversed saw-tooth wave 16, a similar pulse series 20 is produced but the trailing edges are at fixed intervals and the leading edges are modulated in accordance with portions of the signal wave form intermediate of those producing the modulation of 19. A combination of the two pulse series provides the doubly-modulated series 22 each edge being independently modulated between the limits indicated at 21, 23. Instead of reversing the saw-tooth wave, two such identical waves may be modulated respectively by the signal wave form S, and S reversed, as indicated in Fig. 4. Improved representation of the wave form can be obtained if, instead of taking the instantaneous amplitude of the signal wave at the point of intersection with the sloping edge of the saw-tooth as the modulating factor, an average or an R.M.S. value of a portion of the wave form is used. Such an arrangement used in conjunction with a sawtooth wave and its reverse is shown in Fig. 5, the reference on the leads indicating the wave forms, Figs. 6 to 8, which they carry. The averaging is effected with the help of a sawtooth wave H of ten times the frequency of the main saw-tooth wave B generated at 40. The wave H and the signal wave A are applied to a limiter 33 producing a duration-modulated series J in the way previously described which is applied to two channels denoted by suffixes B and A in which after integration during alternate periods in the two channels it is ultimately used to modulate the main sawtooth wave and this wave reversed. The channel B will now be fully described. The wave J together with an equal pulse interval wave E derived from the original saw-tooth wave is applied to a switch 34B which comprises a limiter-amplifier producing a wave K1 (full lines), Fig. 7, in which alternate groups of pulses extending over half periods of the original saw-tooth are lost, the remaining groups being fed to an integrator (condenser) 35B. This integrator is periodically discharged by a pulse wave G, produced at 45B by combining wave E with a delayed copy thereof, so as to produce a wave L1 comprising a building up (integrating) portion t-t1, and a steady portion t1-t2 followed by discharge and repetition of the cycle. Wave L1 and wave D are then combined and limited at 36B to produce wave M1 which comprises pulses of equal duration (half the main period) but of amplitude representative of the mean value of the signal wave during the preceding half period. The wave M1 is then used to modulate the main saw-tooth wave B to produce pulses 01, Fig. 8, with fixed leading edges and modulated trailing edges in accordance with said mean value represented at P1, P2. Similar operations are performed on the main reversed sawtooth wave in channel A using the pulse groups corresponding to those referred to as " lost " in wave K1, the wave form 02, Fig. 8, ultimately produced, having fixed trailing edges and modulated leading edges in accordance with averages P3, P4. The pulse forms O1, 02 are then combined at 38 to produce R. The combined pulse form may be transmitted as short pulses marking the positions of the leading and trailing edges in known manner. The Provisional Specification describes the use of a single isoceles triangular analysing wave to produce the same result as the two analysing waves.
机译:582,324。脉冲调制。标准电话和电缆有限公司,CHATTERJEA,PK和SCULLY,CT,1941年11月24日,编号15145。[Class 40(v)]在持续时间调制的脉冲通信系统中,按照信号波形的不同部分是通过组合两个在时间上移位的相同频率的脉冲序列而产生的,以使一个序列的前沿与另一个序列的后沿重合,而每个序列的其他沿均被调制。可以通过调制锯齿形或其他“分析”波和相似的“图像”或反向波来产生两个序列,或者可以通过信号波和反向信号波来调制两个相似的分析波。如图3所示,如果将瞬时振幅在直线24、25之间大约平均值17变化的信号波和锯齿波15施加到反向偏置阀的一个或多个单独的网格上,输出包括脉冲,这些脉冲通过放大和限制可以转换为宽度随信号波形在极限24、25之间变化而变化的脉冲序列19,脉冲的前沿(右手边)以固定的时间间隔出现,并且对后沿进行调制。如果对该反向锯齿波16执行该操作,则产生相似的脉冲序列20,但是后沿以固定间隔进行,并且前沿根据产生调制的信号波形中间的信号波形部分进行调制。 19个脉冲序列的组合提供了双调制序列22,每个边沿在21、23所示的极限之间被独立调制。除了反转锯齿波,两个相同的波也可以分别由两个信号波形S和S反转,如图4所示。如果不是采用与锯齿的倾斜边缘相交的点处的信号波的瞬时振幅,而是采用以下方法,则可以获得波形的改进表示:牙齿作为调节因子,是平均值或RMS使用一部分波形的值。结合锯齿波及其反向使用的这种布置在图5中示出,在引线上的参考指示波形,图3和4。他们携带的6至8。借助于在40处产生的主锯齿波B的频率的十倍的锯齿波H来实现平均。该波H和信号波A被施加到产生持续时间调制序列J的限幅器33上。以先前描述的方式,将其应用于以后缀B和A表示的两个通道,其中在两个通道中的交替周期内积分之后,其最终用于调制主锯齿波,并且该波被反转。现在将完全描述通道B。将波J与从原始锯齿波得到的相等的脉冲间隔波E一起施加到开关34B,该开关34B包括产生波K1(实线)的限幅放大器,在图7中,脉冲的交替组延伸超过原始锯齿一半周期的部分将丢失,其余的组将被馈送到积分器(冷凝器)35B。该积分器被在45B通过将波E与其延迟副本组合而产生的脉冲波G周期性地放电,从而产生包括集结(积分)部分t-t1和稳定部分t1-t2的波L1。然后放电并重复循环。然后,将波L1和波D组合并限制在36B以产生波M1,其包括持续时间相等(主周期的一半)但幅度表示前半周期信号波平均值的脉冲。然后波M1用于调制主锯齿波B,以根据在P1,P2表示的所述平均值产生具有固定的前沿和调制的后沿的脉冲01,图8。使用与在波K1中最终称为“丢失”的那些脉冲群相对应的脉冲组,对通道A中的主反向锯齿波执行类似的操作,最终产生的波形为02,具有固定的后沿和调制的前沿根据平均值P3,P4。然后在38处将脉冲形式O 1,O 2组合以产生R。可以以已知方式将短脉冲形式的标记后沿和后沿位置的短脉冲发送出去。临时规范描述了使用单个等腰三角形分析波来产生与两个分析波相同的结果。

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