Optimal Power Allocation and Precoding Design for Channel Estimation in OFDM System

Qingbo Wang, Gaoming Huang, Gaoqi Dou, Jun Gao, Jiali Liu
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引用次数: 0

Abstract

To improve the bandwidth efficiency, a semi-blind channel estimation method using data nulling superimposed pilots (DNSP) is designed for orthogonal frequency division multiplexing (OFDM) system without data rate loss. However, the data distortion is introduced by rank-deficient precoding. To minimize the data distortion, the optimal precoder is found to minimize the Euclidean distance between precoded sequence and source sequence. Further, the impact of power allocation between training sequence and data information on effective signal noise ratio (SNR) is analytically derived, effective SNR is found to be a quadratic function for the percentage allocated for training sequence, and the optimal power allocation is provided to maximize the effective SNR. Simulation results show that our optimal precoder design and power allocation scheme obtain the optimal performance of symbol detection.
OFDM系统中信道估计的最优功率分配和预编码设计
为了提高带宽效率,设计了一种基于数据零化叠加导频(DNSP)的正交频分复用(OFDM)系统半盲信道估计方法。但是秩缺失预编码会导致数据失真。为了使数据失真最小化,找到了使预编码序列与源序列之间的欧氏距离最小的最优预编码器。进一步,解析推导了训练序列与数据信息之间的功率分配对有效信噪比的影响,发现有效信噪比是训练序列分配百分比的二次函数,并给出了最优功率分配,使有效信噪比最大化。仿真结果表明,本文提出的最优预编码器设计和功率分配方案获得了最优的符号检测性能。
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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