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A Novel and Robust Timing Synchronization Method for SC-FDE 60GHz WPAN Systems

机译:SC-FDE 60GHz WPAN系统的一种新颖且鲁棒的定时同步方法

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This paper addresses a training-sequence-based timing synchronization algorithm for 60GHz wireless personal area networks (WPAN) systems based on single-carrier transmission with frequency domain equalization (SC-FDE),and the training sequence adapts Frank-Zadoff preamble structure.The proposed method includes two parts.First,a coarse timing synchronization (CTS) is achieved.The start of frame can be found where the exact position is in AWGN channel and most LOS channels.Further,rather than estimate channel impulse response,we propose a fine timing synchronization (FTS) based on crosscorrelation property,where we can find the first significant channel tap or the region that causes less inter-block-interference (IBI) in 60GHz NLOS channel Models(the maximum channel delay spread is larger than the length of CP).Compared with current FTS methods,our algorithm has lower complexity while better performance.The simulation results confirm that our algorithm is robust,and has excellent performance in different 60GHz channel Models.
机译:本文针对基于频域均衡的单载波传输(SC-FDE)的60GHz无线个人局域网(WPAN)系统,基于训练序列的时序同步算法,该训练序列采用Frank-Zadoff前导码结构。所提出的方法包括两部分。首先,实现粗略的定时同步(CTS)。可以在帧的开始位置找到准确的位置,该位置在AWGN信道和大多数LOS信道中。此外,我们提出了一个而不是估计信道冲激响应的方法。基于互相关特性的精细定时同步(FTS),在这里我们可以找到60 GHz NLOS信道模型中的第一个有效信道抽头或引起较少块间干扰(IBI)的区域(最大信道延迟扩展大于长度与目前的FTS方法相比,我们的算法具有更低的复杂度和更好的性能。仿真结果证实了我们的算法是鲁棒的,并且具有出色的性能可以在不同的60GHz信道型号中使用。

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