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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >A Technique for Dominant Path Delay Estimation in an OFDM System and Its Application to Frame Synchronization in OFDM Mode of WMAN
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A Technique for Dominant Path Delay Estimation in an OFDM System and Its Application to Frame Synchronization in OFDM Mode of WMAN

机译:OFDM系统中主要路径延迟估计的技术及其在WMAN OFDM模式下的帧同步中的应用

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Orthogonal frequency division multiplexing (OFDM) is a parallel transmission scheme for transmitting data at very high rates over time dispersive radio channels. In an OFDM system, frame synchronization and frequency offset estimation are extremely important for maintaining orthogonality among the subcarriers. Recently, several techniques have been proposed for frame synchronization in OFDM system. In multipath environment, the transmitted signal arrives at the receiver through direct and multiple delayed paths. In some cases, it is possible that power of the signal arriving through delayed path may be larger than that of the direct path (earliest path if there is no direct path). In those cases, estimate of the frame boundary may be shifted by a quantity equal to the delay of the dominant path. In such cases, there will be intersymbol interference (ISI) in the demodulated symbols unless the frame boundary estimate is preadvanced such that it dwells in the ISI-free portion of cyclic prefix or at the symbol boundary. In this paper, we propose a method for estimating the shift in the frame boundary estimate using a preamble having two identical halves. We assume that frame boundary and frequency offset estimation have been performed prior to the estimation of the shift. We also examine the quality of the frequency offset estimate when the frame boundary estimate is shifted from the desired value. The proposed method is applied to downlink synchronization in OFDM mode of WMAN (IEEE 802.16-2004). We use simulations to illustrate the usefulness of the method and also to support our assertions.
机译:正交频分复用(OFDM)是一种并行传输方案,用于在时间分散的无线电信道上以很高的速率传输数据。在OFDM系统中,帧同步和频率偏移估计对于维持子载波之间的正交性极为重要。近来,已经提出了几种用于OFDM系统中的帧同步的技术。在多径环境中,传输的信号通过直接和多个延迟路径到达接收器。在某些情况下,通过延迟路径到达的信号的功率可能会大于直接路径的功率(如果没有直接路径,则是最早的路径)。在那些情况下,帧边界的估计值可能会偏移等于主导路径延迟的数量。在这种情况下,除非预先进行帧边界估计以使它驻留在循环前缀的无ISI部分中或在符号边界处,否则解调的符号中将存在符号间干扰(ISI)。在本文中,我们提出了一种使用具有两个相同一半的前导码来估计帧边界估计中的偏移的方法。我们假设在偏移估计之前已经执行了帧边界和频率偏移估计。当帧边界估计从期望值偏移时,我们还检查了频率偏移估计的质量。所提出的方法被应用于WMAN(IEEE 802.16-2004)的OFDM模式下的下行链路同步。我们使用仿真来说明该方法的有用性,并支持我们的断言。

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