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Joint Detection of Integral Carrier Frequency Offset and Preamble Index in OFDMA WiMAX Downlink Synchronization

机译:OFDMA WiMAX下行链路同步中整体载波频率偏移量和前导码索引的联合检测

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Initial downlink synchronization in orthogonal frequency-division multiple access (OFDMA)-based WiMAX transmission involves carrier frequency synchronization, timing synchronization, and preamble index identification. Due to the structure of the preamble signal, it is reasonable to take a two-stage approach in which one first estimates and compensates the timing offset and the so-called fractional carrier frequency offset (CFO) and then deals with the integral CFO and the preamble index. This paper considers joint detection of integral CFO and preamble index, under the assumption that timing and fractional CFO have been acquired to reasonable accuracy. Based on an optimization formulation, we derive a number of detection methods of different complexity and suboptimality. The methods exploit the quasi-orthogonality among the OFDMA WiMAX preamble sequences as well as the organization of the nonzero subcarriers in the preambles. Simulation results are presented to illustrate the performance of the methods.
机译:基于正交频分多址(OFDMA)的WiMAX传输中的初始下行链路同步涉及载波频率同步,时序同步和前导索引标识。由于前导信号的结构,采取两阶段方法是合理的,其中首先估算并补偿时序偏移和所谓的分数载波频率偏移(CFO),然后处理积分CFO和载波。前导索引。本文假设在定时和分数CFO已获得合理准确度的前提下,考虑对积分CFO和前导索引进行联合检测。基于优化公式,我们得出了许多不同复杂度和次优程度的检测方法。这些方法利用了OFDMA WiMAX前导序列之间的准正交性以及前导中非零子载波的组织。仿真结果表明了该方法的性能。

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