A cyclic correlation-based time domain channel estimation scheme

A. Khan, V. Jeoti, M. Rehman, M. Jilani, M. Zakariya
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引用次数: 4

Abstract

In the presence of guard band sub-carriers, the existing correlation-based time-domain channel estimation schemes do not perform well and suffer from high computational complexity. Herein, we proposed an optimized time domain channel estimation scheme with high accuracy and low complexity. In proposed correlation error cancellation (CEC) solution, the larger part of actual channel estimation solution is estimated from no-guard band (without null sub-carriers) solution, which can be easily obtained by choosing appropriate pilot design. In order to estimate the complete actual solution, the correction term can be obtained from the difference in the actual transmitted pilot and the pilot used for no-guard-band solution. The theoretical analysis and simulation results show that the proposed CEC solution reduces the complexity up to 0(L2) in one-step of iteration and achieves accuracy close to Cramer Rao Bound (CRB).
一种基于循环相关的时域信道估计方案
在存在保护带子载波的情况下,现有的基于相关的时域信道估计方案计算量大,性能差。在此基础上,提出了一种高精度、低复杂度的优化时域信道估计方案。在提出的相关误差抵消(CEC)方案中,实际信道估计解的大部分来自无保护带(无零子载波)方案,通过选择适当的导频设计可以很容易地获得。为了估计完整的实际解,可以从实际发射导频与无保护带解所用导频的差中得到校正项。理论分析和仿真结果表明,所提出的CEC方法在一步迭代中将复杂度降低到0(L2),精度接近Cramer Rao界(CRB)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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