Research of cognitive data processing in radio communication systems with permutation decoding

Dmitry V. Mishin, Anatoly A. Gladkikh, Vladislav I. Kutuzov, Aqeel Latif Khudair
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Abstract

Background. The need to use permutation decoding tools in radio communication systems is explained by the increased error correction capabilities of this method. In this case, complex matrix calculations during the search for equivalent codes according to the classical scheme of permutation decoding are replaced by a list of ready-made solutions. These solutions are calculated a priori and entered into the cognitive cards of the decoder processor, which makes the method a convenient tool in the procedure for ensuring information reliability when controlling, for example, unmanned vehicles via radio channels. In fact, matrix calculations on board are replaced by searching the list of cognitive maps for the right solution corresponding in real time to the current permutation of reliable character numerators. However, data processing in the decoder’s cognitive map requires a special description. Aim. The study of methods for identifying permutations of character numerators of code vectors in order to effectively transform them in a system of cognitive maps of a permutation decoder. Methods. The paper reveals the subtle structure of cognitive maps of productive and unproductive permutations of numerators, which allows on a regular basis to obtain an alternative solution for switching to a set of productive permutations when the receiver receives an unproductive permutation, thereby excluding the use of trial and error. Results. The efficiency of the permutation decoder increases due to the implementation of permutations that were originally included in a set of solutions introduced into the cognitive map of unproductive permutations. Conclusion. A family of microcontrollers is proposed to implement the principle of interaction of cognitive maps with a system of alternative solutions.
采用置换解码的无线电通信系统中的认知数据处理研究
背景。在无线电通信系统中使用置换译码工具的必要性在于这种方法所具有的更强的纠错能力。在这种情况下,根据经典的置换解码方案寻找等效编码时的复杂矩阵计算被一系列现成的解决方案所取代。这些解法都是事先计算好的,并输入解码器处理器的认知卡中,这使得该方法在通过无线电信道控制无人驾驶车辆等时,成为确保信息可靠性的便捷工具。事实上,机上的矩阵计算由在认知图列表中实时搜索与当前可靠字符数字排列相对应的正确解决方案所取代。然而,解码器认知图中的数据处理需要特别说明。目标研究识别代码矢量字符分子排列的方法,以便在排列解码器的认知图系统中有效地转换这些排列。方法。本文揭示了有成效和无成效的分子排列认知图的微妙结构,当接收器接收到无成效的排列时,可以定期获得切换到有成效排列集的替代解决方案,从而排除试错的使用。结果由于实施了原本包含在非生产性排列认知图中的一组解决方案中的排列,排列解码器的效率得到了提高。结论建议采用微控制器系列来实现认知图与替代解决方案系统的互动原则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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