一种新的毫米波WPAN OFDM系统自适应子载波交织技术(IST MAGNET Project)

I. Siaud, Anne-Marie Ulmer-Moll
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引用次数: 8

摘要

设计了一种新的自适应块交错算法,并将其应用于60 GHz超高数据速率无线个人区域网络(WPAN)的OFDM子载波中。OFDM系统源于IST-FP6 MAGNET项目第一阶段进行的UWB-OFDM WPAN研究。该算法利用模运算和基于涡轮的结构来优化多径信道上的频率交错传播。该算法采用动态设置,主动引入系统信道的时频分集。动态实现利用该算法的turbo结构,对N个OFDM符号依次生成N个不同的排列规则。在16-QAM和QPSK调制子载波上对该算法进行了测试,并与相对素数和随机交织器进行了比较。在考虑单个排列规则的静态配置中,该算法显示面对RP交织器的增益接近1 dB。动态设置将增益增强到2-4 dB。这项工作强调了动态和可扩展的交错处理在低成本实现下提高短距离WPAN链路级性能的好处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Adaptive Sub-Carrier Interleaving Application to Millimeter-Wave WPAN OFDM Systems (IST MAGNET Project)
A novel adaptive block interleaving algorithm is designed and applied to OFDM sub-carriers of a Very High Data Rate Wireless Personal Area Network (WPAN) operating at 60 GHz. The OFDM system arises from UWB-OFDM WPAN studies carried out within the phase 1 of the IST-FP6 MAGNET project. The algorithm utilizes modulo operations and a turbo-based structure to optimize the frequency interleaving spreading over multipath channels. The algorithm undertakes a dynamic set-up to Actively introduce a time-frequency diversity of the channel on the system. The dynamic implementation uses the turbo structure of the algorithm to generate N different permutation rules successively applied to N OFDM symbols. The algorithm is tested and compared to Relative Prime and random interleavers upon 16-QAM and QPSK modulated sub-carriers. In a static configuration where a single permutation rule is considered, the algorithm reveals gains near 1 dB facing to a RP interleaver. The dynamic set-up strengthens gains to 2-4 dB. This work highlights benefits of a dynamic and scalable interleaving processing to enhance short distance WPAN link level performance under a low cost implementation.
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