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Synchronization of OFDM with null subcarriers in channels with significant ICI

机译:具有重要ICI的通道中NULL子载波的OFDM同步

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In this paper we propose and analyze a new approach for synchronization of OFDM based underwater communication systems with significant Doppler spread. In order to keep cyclic prefix overhead low - long OFDM symbols are needed which in turn leads to significant inter-carrier interference (ICI). For signal acquisition and synchronization we propose the use of a special OFDM symbol which has regions of null subcarriers i.e. subcarriers where no power is transmitted but also still has subcarriers for channel estimation and payload data. By estimating the signal to noise ratio on candidate demodulation positions we can calculate a “would-be” signal to noise ratio by adding up the power on the active subcarriers and dividing it by the power in the null subcarriers. By only using the inner subcarriers in a region of null subcarreries resistance against Doppler spread is achieved. We optimize and compare the proposed solution against a base-line solution which uses a pre-amble with a hyperbolic frequency modulated signal. We find our solution to compare well and present bit error rate and frame error rate results on a complete system which uses our proposed acquisition and synchronization scheme.
机译:本文提出并分析了一种新的多样性多普勒传播的基于OFDM水下通信系统的新方法。为了保持循环前缀,需要高度低 - 长的OFDM符号,这又导致了显着的载波间干扰(ICI)。对于信号采集和同步,我们提出了使用具有Null子载波的区域的特殊OFDM符号,即不发送电力但仍然具有用于信道估计和有效载荷数据的子载波的子载波。通过将信号估计到候选解调位置的信噪比,我们可以通过在活动子载波上增加电源并将其除以空节载波中的功率来计算“是”信号到噪声比。通过使用零子载体区域中的内部子载波,实现了对多普勒扩展的电阻。我们优化并将提出的解决方案与基线解决方案进行了优化,并将其与双曲线频率调制信号预先使用的基线解决方案进行了比较。我们发现我们的解决方案可以比较良好,并出现误码率和帧错误率,从而实现了使用我们所提出的采集和同​​步方案的完整系统。

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