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Timing and Carrier Frequency Offset Estimation Using Selective Extended Cyclic Prefix for Correlation Sequence for OFDM Systems

机译:使用选择性扩展循环前缀对OFDM系统相关序列的选择性扩展循环前缀时序和载波频率偏移估计

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摘要

In this paper a novel technique for timing and carrier frequency offset (CFO) estimation for orthogonal frequency division multiplexing (OFDM) systems is presented. This technique is a modification of extended cyclic prefix for correlation sequence?(ECPCS) based technique, called as selective extended cyclic prefix for correlation sequence (SECPCS) based technique. In cyclic prefix (CP) based technique, magnitude of timing metric near the exact starting point of CP is quite similar which causes problem in timing estimation. SECPCS is utilized in order to increase the difference between magnitudes of timing metric at the exact starting point of time of CP and its adjacent timing instants. In SECPCS technique, first of all correlation length of CP is extended using available CP samples and then those sequences which enlarge the difference in the magnitude of timing metric is selected. In the proposed technique the difference between magnitude of timing metric at exact starting point and its adjacent timing instants is significantly large compared to the previous techniques. The performance of different techniques is evaluated in terms of mean square?error (MSE) in estimation of timing and CFO estimate. Further signal-to-interference-plus-noise ratio (SINR) loss of different techniques in different channel conditions is also estimated. From the simulation results it is observed that under different channel conditions, performance of the proposed SECPCS based technique is significantly better than previous techniques.
机译:本文介绍了一种新颖的正交频分复用(OFDM)系统的定时和载波频率偏移(CFO)估计技术。该技术是关于相关序列的扩展循环前缀的修改,基于相关序列(ECPC)技术,称为基于相关序列(SECPC)的选择性扩展循环前缀。在基于循环前缀(CP)的技术中,CP的确切起点附近的定时度量幅度非常相似,其在定时估计中引起问题。利用SECPC来增加CP和其相邻时刻的精确起始时间点的定时度量幅度之间的差异。在SECPCS技术中,首先使用可用的CP样本扩展CP的所有相关长度,然后选择扩大定时度量幅度差的那些序列。在所提出的技术中,与先前的技术相比,精确起点处的定时度量和其相邻时刻的定时度量幅度之间的差异显着大。在均方估计的均线和CFO估计中,在均方α误差(MSE)方面评估不同技术的性能。还估计了不同信道条件中不同技术的进一步发信号到干扰 - 噪声比(SINR)丢失。从仿真结果看,观察到在不同的信道条件下,所提出的基于SECPC的技术的性能明显优于以前的技术。

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