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A blind CFO estimator based on smoothing power spectrum for OFDM systems | IEEE Journals & Magazine | IEEE Xplore

A blind CFO estimator based on smoothing power spectrum for OFDM systems


Abstract:

Carrier frequency offset (CFO) estimation is a critical problem in orthogonal frequency-division multiplexing (OFDM) systems. This letter proposes a blind CFO estimator b...Show More

Abstract:

Carrier frequency offset (CFO) estimation is a critical problem in orthogonal frequency-division multiplexing (OFDM) systems. This letter proposes a blind CFO estimator based on smoothing the signal power spectrum. A closed-form CFO estimate is also presented, which greatly reduces the computational complexity of the proposed method. Analysis and simulation results show that the proposed estimator is very effective for OFDM systems.
Published in: IEEE Transactions on Communications ( Volume: 57, Issue: 7, July 2009)
Page(s): 1924 - 1927
Date of Publication: 17 July 2009

ISSN Information:

Citations are not available for this document.

I. Introduction

Orthogonal frequency-division multiplexing (OFDM) is very sensitive to carrier frequency offset (CFO) [1]. Existing CFO estimators can be classified as the data-aided ones [2]–[3] and the blind ones [4]–[8]. Recently, blind estimators have received much attention due to the high bandwidth efficiency. The blind method in [4] takes advantage of the redundant information within the cyclic prefix (CP). Yao and Giannakis have developed the Kurtosis estimator in [5] by measuring the non-Gaussian property of the received signal. However, these two methods usually suffer from performance degradation in frequency-selective fading channels. The Variance (VE) method [6] exploits the interference among subcarriers due to the CFO. And the Subspace method [7], proposed for the constant modulus (CM) constellations, utilizes the correlation of the channel. However, one main drawback of such schemes is the high computational complexity.

Cites in Papers - |

Cites in Papers - IEEE (21)

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1.
Shivani Singh, Sushant Kumar, Sudhan Majhi, Udit Satija, Chau Yuen, "Blind Carrier Frequency Offset Estimation Techniques for Next-Generation Multicarrier Communication Systems: Challenges, Comparative Analysis, and Future Prospects", IEEE Communications Surveys & Tutorials, vol.27, no.1, pp.1-36, 2025.
2.
Xinwei Du, Changyuan Yu, Pooi-Yuen Kam, "A Simplified Blind Carrier Frequency Offset Estimation Algorithm Based on the Power of Zero-Subcarriers for CO-OFDM Systems", 2020 Asia Communications and Photonics Conference (ACP) and International Conference on Information Photonics and Optical Communications (IPOC), pp.1-3, 2020.
3.
Liu Yang, Hang Zhang, Yang Cai, Hua Yang, "Blind Carrier Frequency Offset Estimation for MIMO-OFDM Systems Based on the Banded Structure of Covariance Matrices for Constant Modulus Signals", IEEE Access, vol.6, pp.51804-51813, 2018.
4.
Xinwei Du, Tianyu Song, Pooi-Yuen Kam, "Carrier Frequency Offset Estimation for CO-OFDM: The Matched-Filter Approach", Journal of Lightwave Technology, vol.36, no.14, pp.2955-2965, 2018.
5.
Muyiwa B. Balogun, Olutayo O. Oyerinde, Fambirai Takawira, "Efficient Constant Modulus Based Carrier Frequency Offset Estimation for CO-OFDM Systems", IEEE Photonics Journal, vol.9, no.5, pp.1-15, 2017.
6.
Hua Yang, Wallace K. S. Tang, Guanrong Chen, Guo-Ping Jiang, "Multi-Carrier Chaos Shift Keying: System Design and Performance Analysis", IEEE Transactions on Circuits and Systems I: Regular Papers, vol.64, no.8, pp.2182-2194, 2017.
7.
Tzu-Chiao Lin, See-May Phoong, "A New Cyclic-Prefix Based Algorithm for Blind CFO Estimation in OFDM Systems", IEEE Transactions on Wireless Communications, vol.15, no.6, pp.3995-4008, 2016.
8.
P. M. Deepak, C. K. Ali, "Using firefly algorithm for total ICI cancellation of OFDM communication system", 2015 IEEE International Conference on Signal Processing, Informatics, Communication and Energy Systems (SPICES), pp.1-5, 2015.
9.
Weikun Hou, Xianbin Wang, Jean-Yves Chouinard, Ahmed Refaey, "Physical Layer Authentication for Mobile Systems with Time-Varying Carrier Frequency Offsets", IEEE Transactions on Communications, vol.62, no.5, pp.1658-1667, 2014.
10.
John Ellinger, Zhiqiang Wu, "Cost Function Analysis for FD-MC-CDMA Blind Frequency Offset Estimation in High Speed Aerial Communication", MILCOM 2013 - 2013 IEEE Military Communications Conference, pp.797-802, 2013.
11.
Zhiwen Zhu, Henry Leung, Xinping Huang, "Challenges in Reconfigurable Radio Transceivers and Application of Nonlinear Signal Processing for RF Impairment Mitigation", IEEE Circuits and Systems Magazine, vol.13, no.1, pp.44-65, 2013.
12.
Qian Han, Xue Li, Michael Temple, Zhiqiang Wu, "Intercarrier interference cancellation for wideband OFDM in high speed aerial vehicle communication", 2013 International Conference on Computing, Networking and Communications (ICNC), pp.23-27, 2013.
13.
Xue Li, Steven Hong, Vasu D. Chakravarthy, Michael Temple, Zhiqiang Wu, "Intercarrier Interference Immune Single Carrier OFDM via Magnitude-Keyed Modulation for High Speed Aerial Vehicle Communication", IEEE Transactions on Communications, vol.61, no.2, pp.658-668, 2013.
14.
John Ellinger, Randy Depoy, Josh Sanderson, Kaiyu Huang, Zhiqiang Wu, "Blind frequency offset estimation and intercarrier interference cancelation for FD-MC-CDMA systems in aerial vehicle communication", MILCOM 2012 - 2012 IEEE Military Communications Conference, pp.1-6, 2012.
15.
Divya Penmetsa, P. Muthuchidambaranathan, "A novel method for Complete Inter-carrier Interference cancellation for MC-CDMA systems", 2012 Third International Conference on Computing, Communication and Networking Technologies (ICCCNT'12), pp.1-5, 2012.
16.
Kilbom Lee, Sung-Hyun Moon, Inkyu Lee, "A Low-Complexity Semi-Blind Joint CFO and Data Estimation Algorithm for OFDM Systems", 2012 IEEE 75th Vehicular Technology Conference (VTC Spring), pp.1-5, 2012.
17.
Yen-Chang Pan, See-May Phoong, "A subspace-based method for blind CFO estimation in OFDM systems", 2012 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), pp.3017-3020, 2012.
18.
Jun-Han Oh, Jin-Goog Kim, Jong-Tae Lim, "Blind Carrier Frequency Offset Estimation for OFDM Systems with Constant Modulus Constellations", IEEE Communications Letters, vol.15, no.9, pp.971-973, 2011.
19.
Xue Li, Ruolin Zhou, Steven Hong, Zhiqiang Wu, "Total Inter-Carrier Interference Cancellation for MC-CDMA System in Mobile Environment", 2010 IEEE Global Telecommunications Conference GLOBECOM 2010, pp.1-6, 2010.
20.
X. Li, E. Like, Z. Wu, M. Temple, "Highly Accurate Blind Carrier Frequency Offset Estimator for Mobile OFDM Systems", 2010 IEEE International Conference on Communications, pp.1-5, 2010.
21.
Xue Li, Ruolin Zhou, Vasu Chakravarthy, Steven Hong, Zhiqiang Wu, "Total Intercarrier Interference Cancellation for OFDM Mobile Communication Systems", 2010 7th IEEE Consumer Communications and Networking Conference, pp.1-5, 2010.

Cites in Papers - Other Publishers (5)

1.
K. Seshadri Sastry, K. Baburao, A.V. Prabu, G.Naveen Kumar, "Comparison of SPS and FA methods for Blind Carrier Frequency Offset Estimation in OFDM systems", International Journal of Mathematical Models and Methods in Applied Sciences, vol.16, pp.7, 2022.
2.
Xinwei Du, Changyuan Yu, Pooi-Yuen Kam, "A Simplified Blind Carrier Frequency Offset Estimation Algorithm Based on the Power of Zero-Subcarriers for CO-OFDM Systems", Asia Communications and Photonics Conference/International Conference on Information Photonics and Optical Communications 2020 (ACP/IPOC), pp.M4A.244, 2020.
3.
Xinwei Du, Jing Zhang, Changyuan Yu, Pooi Yuen Kam, "Blind Carrier Frequency Offset Estimation for Coherent Optical OFDM Systems", Advanced Photonics 2016 (IPR, NOMA, Sensors, Networks, SPPCom, SOF), pp.SpW2G.3, 2016.
4.
Kyunghoon WON, Dongjun LEE, Wonjun HWANG, Hyung-Jin CHOI, "A New Non-data Aided Frequency Offset Estimation Method for OFDM Based Device-to-Device Systems", IEICE Transactions on Communications, vol.E97.B, no.4, pp.896, 2014.
5.
Ruiyan Du, Jinkuan Wang, Fulai Liu, "Unitary-ESPRIT Algorithm for Carrier Frequency Offset Estimation for Interleaved OFDMA Uplink Systems", Wireless Personal Communications, vol.69, no.4, pp.1615, 2013.
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References

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