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A Low-Complexity Synchronizer for OFDM-Based UWB System

机译:基于OFDM的UWB系统的低复杂度同步器

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摘要

In current ultra-wideband (UWB) baseband synchronizer approaches, the parallel architecture is used to achieve over 500 MSamples/s throughput requirement. Therefore achieving low power and less area becomes the challenge of UWB baseband design. In this paper, a low-complexity synchronizer combining data-partition-based correlation algorithms and dynamic-threshold design is proposed for orthogonal frequency division multiplexing based UWB system. It provides a methodology to reduce design complexity with an acceptable performance loss. Based on the data-partition algorithms, both single auto-correlator and moving-average-free matched filter are developed with 528 Msample/s throughput for the 480 Mb/s UWB design. Simulation results show the synchronization loss can be limited to 0.8-dB signal-to-noise ratio for 8% system packet-error rate
机译:在当前的超宽带(UWB)基带同步器方法中,并行体系结构用于实现超过500 MSamp / s的吞吐量要求。因此,实现低功耗和小面积成为UWB基带设计的挑战。针对基于正交频分复用的UWB系统,提出了一种基于数据分区的相关算法和动态阈值设计相结合的低复杂度同步器。它提供了一种方法来降低设计复杂度并降低性能。基于数据分区算法,针对480 Mb / s的UWB设计,开发了具有528 Msample / s吞吐率的单个自相关器和无移动平均的匹配滤波器。仿真结果表明,对于8%的系统误包率,同步损耗可以限制在0.8 dB的信噪比

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