Patent
Error burst decoder for convolutional correction codes
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The article was published on 1965-03-10. It has received 18 citations till now. The article focuses on the topics: Serial concatenated convolutional codes & Soft-decision decoder.read more
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Random and burst error-correcting arrangement with guard space error correction
TL;DR: In this article, information sequences are encoded in a first block code capable of correcting a certain number of random errors and then the information portion of the sequence is replaced with information derived from subsequently received sequences (i.e., sequences which are in the guard space).
Patent
Random error correcting system
TL;DR: In this article, a rate one half random error correcting convolutional coding system capable of correcting two out of any twelve information and parity bits having an encoder comprising a six stage shift register and a modulo 2 adder connected to the shift register for combining the first, fourth, fifth and sixth information bits present in the register to generate parity bits which are subsequently interleaved with the information bits.
Patent
Error detection and correction
TL;DR: In this article, an error detection and correction system in which at least the highest order bit of each data word is given a greater protection against errors in transmission than lower order bits was proposed.
Patent
Error corrector for a linear feedback shift register sequence
TL;DR: Disclosed as discussed by the authors is an error corrector for a linear feedback shift register sequence employing an open loop LFSR having selected bits "tapped" and combined to form a feedback signal.
Patent
Error-correcting systems utilizing rate {178 {11 diffuse codes
TL;DR: In this article, the interconnections between an information bit shift register in the encoder and decoder and their respective parity check bit generating circuits and between a syndrome register and a majority logic circuit in the decoder are specified by relatively simple formulas which are functions of t and B.