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procedures for the transfer of datensignalen corresponding binary digits, and installation for implementation of the procedure

机译:datensignalen相应二进制数字的传输程序,以及用于执行该程序的安装

摘要

1,190,067. Digital facsimile transmission systems. XEROX CORP. 28 Sept., 1967 [3 Oct., 1966 (4)], No. 44135/67. Headings H4F and H4P. The time-bandwidth product of binary signals, e.g. facsimile signals, is reduced at a transmitter by run-length encoding, the signals being coded into words the lengths of which depend on the statistical distribution of the runlengths of the data. The system is such that run lengths which occur frequently are represented by short words. At the transmitter, Fig. 1, binary data from scanner 101 is fed to a unit 103 comprising a shift register associated with circuitry which determines whether the length of a sequence of 0-bits is 1, 2, 3, or more than 3 bits long and feeds units 107, 105. The register output feeds unit 109. Unit 109 comprises a shift register/ counter, its output feeding a buffer store 119 and transmission unit 121. The stages of the register in 109 are monitored by units 107, 105. The bits from 103 are counted at 109 and when the counter contains a certain bit pattern the pattern is shifted one or more steps and, under control of units 105, 107, counting continues until another certain pattern is reached, whereupon the count is again shifted. Thus the generated code word length increases for each additional n 0-bits from 101, n varying with the run length. Run lengths consisting of 1-bits are encoded in a different code. The codes used for 0 and 1 bit runs are shown in Fig. 8 (not shown). Each run code transmitted is preceded by the code word for a run one bit long of 1 or 0 state as appropriate to the run. The receiver, Fig. 2, comprises an encoder 201 identical to that at the transmitter, driven by binary data on line 209. At the start of a run register 109 contains the code word of a one bit run in 1-bit or 0-bit code as appropriate (e.g. each line scan starts with one or more 0-bits) and register 203 is filled by a like number of bits from input buffer 213. If the registers do not contain the same words, gate 205 detects the inequality and drives unit 207 to print a 1 or 0 bit as appropriate at printer 215. The bit from 207 also drives encoder 201 so that register 109 now shows the second code word of the appropriate 1- or 0-bit code. If there is still inequality a second bit is printed, the encoder stepped and the cycle repeated. Hence register 109 exhibits successively the successive words of the appropriate 1 or 0 code-register 109 being shifted after every n bits, as at the transmitter, and such shifting causing corresponding shift in register 203-until gate 205 determines equality of the registers' contents. Unit 207 then causes printing of the other bit state and sets encoder 201 to encode according to the other code.
机译:1,190,067。数字传真传输系统。 XEROX CORP.1967年9月28日[1966年10月3日(4)],第44135/67号。标题H4F和H4P。二进制信号的时间带宽积,例如在传真机上,通过游程长度编码来减少传真信号,该信号被编码为字,其长度取决于数据游程的统计分布。该系统使得经常出现的游程长度用短字表示。在图1的发射机处,来自扫描器101的二进制数据被馈送到单元103,该单元103包括与电路相关的移位寄存器,该电路确定0位序列的长度是1、2、3还是大于3位long并向单元107、105馈送。寄存器输出向单元109馈送。单元109包括移位寄存器/计数器,其输出向缓冲存储器119和传输单元121馈送。109中的寄存器级由单元107、105监视。来自103的位在109进行计数,当计数器包含某个位模式时,该模式将移动一个或多个步长,并在单元105、107的控制下继续计数,直到达到另一个特定模式为止,然后再次计数转移了。因此,对于从101开始的每n个额外的n 0位,生成的代码字长度增加,n随游程长度而变化。由1位组成的游程长度以不同的代码编码。用于0和1位行程的代码在图8中示出(未示出)。传输的每个运行代码前面都有一个代码字,用于运行,该比特长为1或0状态,适合于该运行。图2的接收机包括一个与发射机相同的编码器201,该编码器由线209上的二进制数据驱动。在运行寄存器109的开头,包含以1位或0-位运行的一位的代码字。适当的位代码(例如,每个行扫描都从一个或多个0位开始),寄存器203被来自输入缓冲区213的相同数量的位填充。如果寄存器中不包含相同的字,则门205检测不等式,并且驱动单元207在打印机215上适当地打印1或0位。来自207的位还驱动编码器201,使得寄存器109现在显示适当的1位或0位代码的第二代码字。如果仍然存在不等式,则打印第二个位,编码器步进并重复循环。因此,寄存器109连续地显示出适当的1或0代码寄存器109的连续字在发送器上每n位之后被移位,并且这种移位导致寄存器203中的相应移位,直到门205确定寄存器内容的相等性。 。然后,单元207引起另一位状态的打印,并且将编码器201设置为根据另一代码进行编码。

著录项

  • 公开/公告号CH534459A

    专利类型

  • 公开/公告日1973-02-28

    原文格式PDF

  • 申请/专利权人 XEROX CORPORATION;

    申请/专利号CH19670013726

  • 发明设计人 DANIEL CENTANNIJAMES;

    申请日1967-10-02

  • 分类号H04L3/00;H04N1/38;H03K13/24;

  • 国家 CH

  • 入库时间 2022-08-23 07:18:15

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