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An Efficient Blind Carrier Frequency Offset Estimation Algorithm for QAM
會議論文集

An Efficient Blind Carrier Frequency Offset Estimation Algorithm for QAM

Huang-Chang Lee, Yu-Ting Kuo, Hong-Yu You 和 Yeong-Luh Ueng
IEEE Vehicular Technology Conference, 頁碼.1-6
17/06/2025
Web of Science ID: WOS:001699882900407

摘要

Accuracy Blind Carrier Frequency Offset Estimation Complexity theory Estimation Frequency estimation Frequency modulation Interpolation Modulation Removal Quadrature amplitude modulation Quadrature Amplitude Modulation (QAM) Signal to noise ratio Symbols Vehicular and wireless technologies
This paper presents a method for blind carrier frequency offset (CFO) estimation for quadrature amplitude modulation (QAM). Our proposed algorithm has three major steps, including two-stage full modulation removal, symbol aggregation, and iterative parabolic interpolation. In the first step, a preliminary CFO estimate will be evaluated using the QPSK sub-constellations. The modulation values of the remaining constellation points are partially removed based on the preliminary CFO estimate, and the residual modulation values are quantized to achieve the full modulation removal. In the second step, modulation-removed symbols are paired and weighted based on their reliability levels. This symbol aggregation step improves the estimation accuracy and reduces the FFT size of the following FFT-based CFO estimation. A trade-off between performance and complexity can be achieved by adjusting the aggregation length. In the final step, an iterative parabolic interpolation technique is introduced to mitigate the estimation bias. Performance evaluation shows that the proposed method provides better mean square error (MSE) performance and comparable complexity compared to the existing CFO methods for QAM.

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