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Carrier Frequency Offset Tracking in the IEEE 802.16e OFDMA Uplink

机译:IEEE 802.16e OFDMA上行链路中的载波频率偏移跟踪

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The IEEE 802.16e standard for nomadic wireless metropolitan area networks adopts orthogonal frequency-division multiple-access (OFDMA) as an air interface. In these systems, residual carrier frequency offsets (CFOs) between the uplink signals and the base station local oscillator give rise to interchannel interference (ICI) as well as multiple access interference (MAI). Accurate CFO estimation and compensation is thus necessary to avoid a serious degradation of the error-rate performance. In this work, we address the problem of CFO tracking in the IEEE 802.16e uplink and present a closed-loop solution based on the least-squares (LS) principle. In doing so, we exploit a set of pilot tones that are available in each user's subchannel. The resulting scheme can be implemented with affordable complexity and is able to reliably track the CFOs of all active users. When used in conjunction with a frequency offset compensator, it can effectively mitigate ICI and MAI, thereby allowing channel equalization and data detection to follow directly. Numerical simulations are used to demonstrate the effectiveness of the proposed solution in the presence of residual time-varying frequency offsets.
机译:游牧无线城域网的IEEE 802.16e标准采用正交频分多址(OFDMA)作为空中接口。在这些系统中,上行链路信号与基站本地振荡器之间的残留载波频率偏移(CFO)引起信道间干扰(ICI)以及多址干扰(MAI)。因此,需要准确的CFO估算和补偿,以避免严重的误码率性能下降。在这项工作中,我们解决了IEEE 802.16e上行链路中CFO跟踪的问题,并提出了基于最小二乘(LS)原理的闭环解决方案。为此,我们利用了每个用户子信道中可用的一组导频音。可以以可承受的复杂性实施最终方案,并且能够可靠地跟踪所有活动用户的CFO。与频偏补偿器配合使用时,它可以有效地减轻ICI和MAI的负担,从而可以直接进行信道均衡和数据检测。数值模拟用于证明在存在残余时变频率偏移的情况下所提出解决方案的有效性。

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