Blind Recognition for Rate below 1/2 Binary Cyclic Codes

2014 ◽  
Vol 511-512 ◽  
pp. 1163-1166
Author(s):  
Hong Wei Wang ◽  
Lin Yang ◽  
Yi Bing Cai

The blind recognition of channel coding is playing more and more important roles in smart communications. The paper took rate below 1/2 binary cyclic codes to research, we established a model using counter of continuous bits 0. At the basic of studying the features of binary cyclic codes, when the condition about the rate is satisfied, we made a statistics of the continuous bits 0 in a long sequence of code words to get the length of code word n and the length of information k. In the condition of higher BER simulations, we improved the method to make it suitable for estimating the parameter.

2014 ◽  
Vol 602-605 ◽  
pp. 2308-2312
Author(s):  
Tong Li ◽  
Cheng Lin Miao ◽  
Jun Lv

The acquisition of information about channel coding sequences is the research emphasis and difficulties at present, and recognizing the channel coding parameters is the prerequisite for information acquisition. RS Codes are a class of linear block codes as well as a special class of BCH Codes and cyclic codes. It regards a group of symbols with a length of n as a unit to process with, and the n symbols are generated by k transmitting information symbols under some proper associated rules. RS Codes are widely used in various communication systems. In this paper, an algorithm of RS Codes blind recognition is researched. And a blind recognition model is established on MATLAB. At last, the paper presents the recognition rates of situations with different error rates.


Author(s):  
Zhou Jing ◽  
Huang Zhiping ◽  
Su Shaojing ◽  
Yang Shaowu

Author(s):  
Juliy Boiko ◽  
Oleksander Eromenko

<span lang="IN">The development of mechanisms of increase efficiency of frequency-shift keying signals processing in telecommunications using algorithms of noise immunity channel coding in obstacle effect conditions is held in the article. The synthesis of the frequency-shift keying signal processing unit accounting intersymbol communication which is inherent for such signals with continuous phase is held. The conditions of the compromise implementation in the telecommunication information transmission channel with frequency shift keying and error correction coding for setting the optimal encoding rate in the range of the bandwidth of the information transmission system are explored. Linear cyclic codes Bose-Chaudhuri-Hocquenghem (BCH) are used for studying. By means of Matlab the article focuses on the definition of energetic benefit compared to uncoded system in case of equality of the bandwidth of the information transmission system with coding and without coding.</span>


2020 ◽  
Vol 68 ◽  
pp. 2328-2339
Author(s):  
Zhaojun Wu ◽  
Zhaogen Zhong ◽  
Limin Zhang

2020 ◽  
Vol 2 (1) ◽  
pp. 66-72
Author(s):  
V. V. Riznyk ◽  
◽  
D. Yu. Skrybaylo-Leskiv ◽  

The methods of improving the cyclic codes efficiency constructed on the basis of combinatorial configurations of the type "ideal ring bundles" (IRB) s by three factors – correction ability, power of coding method and complexity of the decoding procedure are considered. The method is based on the principle of combinatorial optimization, grounded on the algebraic theory of ordered integer sequences with a circular structure, all the numbers, as well as all sums of consecutive numbers exhaust the value sofnatural row numbers. Two theoretically grounded approaches to increase of noise immunity of cyclic codes are offered: implementation of optimized IRB-code, as well as monolithic and group one. Optimized cyclic IRB-code favorably differs from the rest of the codes of this class by the highest correction capacity at the same length of code words. Optimized IRB-codes constitute a large group of cyclic codes designed on a combinatorial models with selection of corresponding relationships between the parameters of the code to achieve its specified technical characteristics. Noise protected monolithic and group codes belong to the group of self-correcting codes with a ring structure and probabilistic assessment of the level of noise protection. This property allow so instant lydetect a particular part or all invalid characters in the code word by the majority principle. Mathematical calculations have been performed to calculate the optimized ratios between the parameters of cyclic IRB-codes, under which they reach maximum correction capacity. The algorithm of constructing and increasing the power of coding methods of optimized noise-resistant IRB-codes is examined and analyzed. The concrete examples of increase efficiency of combinatorial optimization cyclic codes methods with appropriate calculations and tables are given. The comparative analysis of the IRB-codes with the Golay codes and Bose – Chaudhuri – Hocquenghe (BCH) codes with respect to correction ability, power encoding method and computational complexity of decoding procedures is carried out. The advantages and disadvantages of cyclic, and ringmonolithic and group IRB-codes in comparison with classical analogues are determined. The prospect so fusing the research results in the problems of information and communication technologies are outlined.


2008 ◽  
Author(s):  
Guy Keshet ◽  
Yossef Steinberg ◽  
Neri Merhav

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