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Algebraic method for blind recovery of punctured convolutional encoders from an erroneous bitstream

机译:从错误的比特流中盲恢复收缩的卷积编码器的代数方法

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摘要

To enhance the quality of transmissions, all digital communication systems use error-correcting codes. By introducing some redundancy in the informative binary data stream, they allow one to better withstand channel impairments. The design of new coding schemes leads to a perpetual evolution of the digital communication systems and, thus, cognitive radio receivers have to be designed. Such receivers will be able to blind estimate the transmitter parameters. In this study, an algebraic method dedicated to the blind identification of punctured convolutional encoders is presented. The blind identification of such encoders is of great interest, because convolutional encoders are embedded in most digital transmission systems where the puncturing principle is used to increase the code rate to reduce the loss of the information data rate because of the redundancy introduced by the encoder. After a brief recall of the principle of puncturing codes and the construction of the equivalent punctured code, a new method dedicated to the blind identification of both the mother code and the puncturing pattern is developed when the received bits are erroneous. Finally, case studies are presented to illustrate the performances of our blind identification method.
机译:为了提高传输质​​量,所有数字通信系统都使用纠错码。通过在信息二进制数据流中引入一些冗余,它们可以更好地抵抗信道损害。新编码方案的设计导致了数字通信系统的不断发展,因此,必须设计认知无线电接收机。这样的接收机将能够盲目估计发射机参数。在这项研究中,提出了一种专用于穿孔卷积编码器盲识别的代数方法。这种卷积编码器的盲目识别引起了极大的兴趣,因为卷积编码器嵌入在大多数数字传输系统中,在该系统中,由于编码器引入了冗余,使用删余原理来提高编码率以减少信息数据率的损失。在简要回顾了穿孔码的原理和等效穿孔码的构造之后,当接收到的位错误时,便开发了一种专门用于盲目识别母码和穿孔码型的新方法。最后,通过案例研究来说明我们盲目识别方法的性能。

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