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device for the application of tidbasen in a digital informationssignal

机译:tidbasen在数字信息信号中的应用设备

摘要

1520311 Television AMPEX CORP 14 April 1975 [25 April 1974] 15276/75 Heading H4F Relates to a signal time-base compensator arranged to eliminate time-base errors present for example in a colour television signal reproduced by a video disc recorder. In Fig. 1 the uncorrected colour television signal is A to D converted 111 in response to a clocking signal over line 118 which is derived from the time-base component included in the television signal. After encoding in converter 111 the digitized signal is time buffered 156 and decoded at D/A converter 113 by a clock signal at a clock time coherent with a reference time-base signal such as a reference colour sub-carrier. The television-signal-related clock signal is derived from the colour bursts by coupling to a recyclable digital store 123 binary word representations of one or more cycles of the signal's colour burst available at output 112 of converter 111. From these stored colour burst samples a continuous colour burst signal is continuously regenerated and employed to digitize the remainder of the television signal. To ensure that this continuous signal remains in phase with the uncorrected television signal, the converter 111 is first clocked, during the sampling of the television signal's burst and storing of the resulting samples, by a clock signal at a clock time coherent with the reference clock signal. Thus the converter 111 is initially clocked during a sampling and storing mode (preferably lasting five colour burst cycles) over line 118 by a clock signal locked inphase to the reference clock signal. Then the converter is clocked by the derived clock signal during a following recycling mode lasting for the remainder of the horizontal line interval. These two modes of generation are rendered effective by operation of switch 126 which initially (i.e. sampling and storing mode) supplies reference clock signals from reference clock source 128 to the converter. In the second or recycling state (as shown) the clock signal is provided by store 123 via a D/A converter 133, a bandpass filter 132 and a signal clock 131. Switch 126 is operated in response to horizontal sync pulses (134, 136) in the uncorrected colour television signal, and the write enable input (WE) of the store 123 is enabled by detection 137 of colour bursts in the uncorrected colour television signal. The store 123, Fig. 2, includes a random access memory 139 and an address generator 141 which is responsive to the reference clocking signal over line 122 and provides address signals for write and read access to the memory. In addition a write clock generator 143, responsive to commands over line 138 from burst detector 137, issues over line 144 write enable signals to input (W) each time a reference clock is received. A counter 145 prevents the memory 139 receiving further binary words after 15 samples (5 colour burst cycles) of colour burst have been received. Following the termination of the sampling and storing mode, the address generator 141 continues to access memory 139 in response to the reference clocking signal over line 122 repeating in sequence the same 15 word locations accessed during the write operation, and thus the stored binary words are continuously read out over line 140. The read function is operational during the storage of new digital information received from converter 111 by the operation of a by-pass switch 151 i.e. the binary words being stored in memory 139 are also passed directly to the output. To avoid errors in the re-timing of the digital signals by the A/D converter 111 during the recycling mode a time buffer 156 is employed having a 1-word serial to 3-word parallel converter at its input and a complementary 3-word parallel to 1-word serial converter at its output Fig. 4 (not shown) with a clock isolator and a random access memory therebetween. The clock isolator is supplied with two clock signals i.e. one in phase with the colour burst of the uncorrected television signal and the other comprising the reference clock signals so that the phase of the output of the isolator is re-timed and synchronized to the reference colour subcarrier phase. The random access memory is present so that large time-base errors may be corrected i.e. those greater than one cycle of the colour burst (time-base component cycle). This random access memory corrects the time-base by increments equal to integral whole numbers of the colour burst cycle in response to determination of the relative time of occurrence of the horizontal sync pulses in the uncorrected television signal and of reference horizontal sync pulses. A monochrome television signal may be corrected by inserting 174, Fig. 1, an artificial burst or pilot signal into the signal during the blanking intervals, and a modification of Fig. 1 for monochrome signal compensation is described with reference to Fig. 5 (not shown) so that artificial bursts are automatically and only added whenever a colour burst is not detected.
机译:1520311电视AMPEX CORP 1975年4月14日[1974年4月25日] 15276/75标题H4F涉及一种信号时基补偿器,该补偿器用于消除例如在视频录像机再现的彩色电视信号中出现的时基误差。在图1中,未校正的彩色电视信号响应于线路118上的时钟信号被A至D转换111,该时钟信号是从电视信号中包括的时基分量得出的。在转换器111中编码之后,数字化的信号被时间缓冲156并且在D / A转换器113处通过时钟信号在与参考时基信号例如参考颜色子载波相一致的时钟时间被解码。电视信号相关的时钟信号是通过与可循环利用的数字存储123耦合并从可再生的数字存储中获得的,该可再生的数字存储123表示在转换器111的输出112上可用的信号的一个或多个周期的二进制字表示。连续的色同步信号被连续地再生并用于数字化电视信号的其余部分。为了确保该连续信号与未校正的电视信号保持同相,在电视信号突发的采样和结果采样的存储期间,首先通过与参考时钟相一致的时钟时间的时钟信号为转换器111计时。信号。因此,转换器111最初是在采样和存储模式期间(最好持续五个颜色脉冲串周期)在线路118上通过与参考时钟信号同相锁定的时钟信号而被计时的。然后,在后续的循环模式期间,转换器将由导出的时钟信号提供时钟,并持续水平行间隔的其余时间。通过开关126的操作使这两种产生方式有效,开关126最初(即,采样和存储模式)从参考时钟源128向转换器提供参考时钟信号。在第二状态或回收状态(如图所示)中,时钟信号由存储器123经由D / A转换器133,带通滤波器132和信号时钟131提供。开关126响应于水平同步脉冲(134,136) )在未校正的彩色电视信号中),并且通过检测137未校正的彩色电视信号中的色同步信号来启用存储器123的写使能输入(WE)。图2的存储器123包括一个随机存取存储器139和一个地址产生器141,它响应线路122上的参考时钟信号,并提供用于对存储器进行写和读访问的地址信号。另外,响应于来自突发检测器137的线138上的命令,写时钟发生器143在每次接收到参考时钟时通过线144向输入(W)发出写使能信号。计数器145阻止存储器139在已经接收到15个颜色突发的样本(5个颜色突发周期)之后接收另外的二进制字。在采样和存储模式终止之后,响应于在线122上的参考时钟信号,地址生成器141继续访问存储器139,依次重复在写操作期间访问的相同的15个字位置,因此存储的二进制字为连续地通过线路140读出。在通过旁路开关151的操作存储从转换器111接收的新数字信息期间,即在存储在存储器139中的二进制字也直接传递到输出的过程中,读取功能是可操作的。为了避免在循环模式期间A / D转换器111重新定时数字信号时,采用了时间缓冲器156,在其输入端有一个1字串行到3字并行转换器和一个互补的3字在图4的输出(未示出)上与1字串行转换器并行,在它们之间具有时钟隔离器和随机存取存储器。向时钟隔离器提供两个时钟信号,即一个与未校正的电视信号的色同步同相,另一个包括参考时钟信号,以便将隔离器的输出相位重新定时并同步到参考色副载波相位。存在随机存取存储器,以便可以校正较大的时基误差,即大于色同步信号的一个周期(时基分量周期)的误差。该随机存取存储器响应于确定未经校正的电视信号中的水平同步脉冲和参考水平同步脉冲的相对发生时间,以等于色同步周期的整数倍的增量来校正时基。可以通过在消隐间隔期间在信号中插入174(图1),人工脉冲或导频信号来校正单色电视信号,并参考图5描述图1对单色信号补偿的修改(非如图所示),以便仅在未检测到色同步信号时才自动添加人工色同步信号。

著录项

  • 公开/公告号SE7803834A

    专利类型

  • 公开/公告日1978-04-05

    原文格式PDF

  • 申请/专利权人 * AMPEX CORPORATION;

    申请/专利号SE19780003834

  • 发明设计人 M G * LEMOINE;

    申请日1978-04-05

  • 分类号H04N5/78;

  • 国家 SE

  • 入库时间 2022-08-22 22:35:17

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