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Joint estimation of carrier frequency and phase offset based on pilot symbols in quasi-constant envelope OFDM satellite systems

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TLDR
A joint CFO and CPO estimation method based on the pilot symbols in the frequency domain is proposed according to the minimum Cramer- Rao bound (CRB) criterion and results show that the estimation accuracy is close to the CRB.
Abstract
Spectral efficiency and energy efficiency are two important performance indicators of satellite systems. The Quasi-Constant Envelope Orthogonal Frequency Division Multiplexing (QCE-OFDM) technique can achieve both high spectral efficiency and low peak-to-average power ratio (PAPR). Therefore, the QCE-OFDM technique is considered as a promising candidate multi-carrier technique for satellite systems. However, the Doppler effect will cause the carrier frequency offset (CFO), and the non-ideal oscillator will cause the carrier phase offset (CPO) in satellite systems. The CFO and CPO will further result in the bit-error-rate (BER) performance degradation. Hence, it is important to estimate and compensate the CFO and CPO. This paper analyzes the effects of both CFO and CPO in QCE-OFDM satellite systems. Furthermore, we propose a joint CFO and CPO estimation method based on the pilot symbols in the frequency domain. In addition, the optimal pilot symbol structure with different pilot overheads is designed according to the minimum Cramer- Rao bound (CRB) criterion. Simulation results show that the estimation accuracy of the proposed method is close to the CRB.

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Citations
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Joint optimization of satisfaction index and spectrum efficiency with cache restricted for resource allocation in multi-beam satellite systems

TL;DR: A modified strategy SA-NSGAII which combines simulated annealing and non-dominated sorted genetic algorithm-II (NSGA II) is proposed to approximate the Pareto solution to this MOP problem where the satisfaction index and the spectrum efficiency are jointly optimized.
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Efficient Cross-Correlation Algorithm for Correction of Common Phase Error Employing Preamble for Orthogonal Frequency Division Multiplexing (OFDM) Receivers

TL;DR: The proposed cross-correlation algorithm for correction of common phase error (CPE) in orthogonal frequency division multiplexing (OFDM) systems with high implementation efficiency and better estimation performance in additive white Gaussian noise (AWGN) channel.
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High-Mobility Satellite-UAV Communications: Challenges, Solutions, and Future Research Trends

TL;DR: In this paper , the authors focus on the physical layer operation problem in satellite-UAV communications from three perspectives: time-varying channel estimation, the high-mobility transceiver, and highmobility multiple access.
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Neural network joint capacity-power control strategy based on NSGAII-BP for interference suppression in LEO satellite uplinks

TL;DR: In this article , a dual-objective optimization model is established based on the maximum transmission power constraint and the minimum signal-to-interference ratio (SIR) constraint.
References
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Journal ArticleDOI

Constant Envelope OFDM

TL;DR: Constant envelope OFDM (CE-OFDM) transforms the OFDM signal, by way of phase modulation, to a signal designed for efficient power amplification, and is shown to compare favorably to conventional OFDM.
Journal ArticleDOI

Cramer-Rao lower bounds for QAM phase and frequency estimation

TL;DR: It is shown that new minimum distance estimator performs close to the QAM bound and provides a large improvement over the power law estimator at moderate to high signal-to-noise ratios.

EHF for Satellite Communications: The New Broadband Frontier The current state of research and technology in EHF satellite communications are discussed in this paper along with related future perspectives, applications, and services.

TL;DR: An overview of the current status of research and technology in EHF satellite communications is presented, taking a look at future perspectives in terms of applications and services and the need for a reliable propagation model based on experimental data acquired in orbit is highlighted.
Journal ArticleDOI

Phase and frequency estimation for PSK packets: bounds and algorithms

TL;DR: New Cramer-Rao lower bounds (CRBs) are derived for the estimation of phase offset, and frequency offset, from a block of random BPSK or QPSK symbols at low signal-to-noise (SNR) ratios.
Journal ArticleDOI

Optimal periodic training signal for frequency offset estimation in frequency-selective fading channels

TL;DR: The optimal periodic training signal structure and the optimal training subblock signal are presented and a robust training structure design is presented in order to reduce the occurrence of outliers at low signal-to-noise ratio values.
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