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Improved architecture of complementary set of sequences correlation by means of an inverse generation approach

机译:通过逆生成方法改进序列相关的互补集的体系结构

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System coding is a growing trend in all fields of engineering. Many different algorithms have been developed and studied for applications in signal processing, radar and multi-emission systems, among others. One of the most interesting algorithms, among these, is the complementary sets of sequences (CSS) given their potential and simplicity. They are characterised by a distinctive correlation and orthogonality properties. Nowadays, sustained efforts are being devoted to reducing the calculations involved in the generation and/or correlation of these sequences by means of recursive algorithms. Some authors have brought forward efficient algorithms that are based on modular architectures made up of adders, multipliers and delays. This work introduces an inverse generation approach to perform the correlation of CSS. This approach allows one to substantially reduce calculations, and enables the simultaneous correlation of M sequences, adopting neither time-multiplexing schemes nor complex parallel implementations. This is theoretically demonstrated by means of generation and correlation algorithms. An analysis of the performance and efficiency is then conducted in a reconfigurable hardware platform. The proposal represents an advance in the practical application of these sequences in the above-mentioned fields.
机译:系统编码是所有工程领域中的增长趋势。已经开发和研究了许多不同的算法,用于信号处理,雷达和多发射系统等。在这些算法中,最有趣的算法之一是互补序列集(CSS),因为它们具有潜力和简单性。它们的特点是具有独特的相关性和正交性。如今,致力于通过递归算法来减少涉及这些序列的产生和/或相关的计算。一些作者提出了高效的算法,该算法基于由加法器,乘法器和延迟组成的模块化体系结构。这项工作介绍了一种逆生成方法来执行CSS的关联。这种方法可以大大减少计算量,并且可以同时采用M个序列进行相关处理,既不采用时分复用方案也不采用复杂的并行实现。理论上通过生成和相关算法证明了这一点。然后在可重新配置的硬件平台中进行性能和效率分析。该提议代表了在上述领域中这些序列的实际应用中的进步。

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