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A Synchronization Design for UWB-Based Wireless Multimedia Systems

机译:基于UWB的无线多媒体系统的同步设计

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Multi-band orthogonal frequency-division multiplexing (MB-OFDM) ultra-wideband (UWB) technology offers large throughput, low latency and has been adopted in wireless audio/video (AV) network products. The complexity and power consumption, however, are still major hurdles for the technology to be widely adopted. In this paper, we propose a unified synchronizer design targeted for MB-OFDM transceiver that achieves high performance with low implementation complexity. The key component of the proposed synchronizer is a parallel auto-correlator structure in which multiple ACF units are instantiated and their outputs are shared by functional blocks in the synchronizer, including preamble signal detection, time-frequency code identification, symbol timing, carrier frequency offset estimation and frame synchronization. This common structure not only reduces the hardware cost but also minimizes the number of operations in the functional blocks in the synchronizer as the results of a large portion of computation can be shared among different functional blocks. To mitigate the effect of narrowband interference (NBI) on UWB systems, we also propose a low-complexity ACF-based frequency detector to facilitate the design of (adaptive) notch filter in analog/digital domain. The theoretical analysis and simulation show that the performance of the proposed design is close to optimal, while the complexity is significantly reduced compared to existing work.
机译:多频带正交频分复用(MB-OFDM)超宽带(UWB)技术提供大吞吐量,低延迟,并已在无线音频/视频(AV)网络产品中采用。然而,复杂性和功耗仍然是该技术被广泛采用的主要障碍。在本文中,我们提出了一种针对MB-OFDM收发器的统一同步器设计,该设计可实现高性能且实现复杂度低。所提出的同步器的关键组件是并行自相关器结构,其中实例化多个ACF单元,并由同步器中的功能块共享它们的输出,包括前导信号检测,时频代码识别,符号定时,载波频率偏移估计和帧同步。由于可以在不同的功能块之间共享大部分计算的结果,因此这种通用结构不仅降低了硬件成本,而且还最小化了同步器中功能块的操作数量。为了减轻窄带干扰(NBI)对UWB系统的影响,我们还提出了一种基于低复杂度ACF的频率检测器,以简化模拟/数字域中(自适应)陷波滤波器的设计。理论分析和仿真表明,所提出的设计的性能接近最佳,而与现有工作相比,其复杂性大大降低。

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