基于高频移动网络技术的OFDM低复杂度动态信道均衡

Redhwan Mawari, M. Zohdy
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引用次数: 0

摘要

本文提出了一种增强动态信道均衡的方法。动态信道的特点是接收机和发射机之间的相对速度高,波传播的环境条件变化快。在Jakes模型的基础上,对这种动态系统建立了自回归模型(AR)[1],即时变信道。更具体地说,我们提出的增强均衡方法是一个多阶段的时间和频域均衡器与前馈回路的组合。本文提出了一种统一的均衡方法,该方法采用时域和频域数据来增强均衡方案。在OFDM系统中,每个分接的信道系数在连续块的时域内是部分独立的,因此是相关的。如果考虑到这种相关性,可以改善信道估计。该方法基于多普勒频率动态选择OFDM前一码数,提高了均衡性能。为了降低系统模型的复杂性,我们利用自相关和多普勒频率来动态选择将存储在存储器中的先前OFDM符号。除了以统一的方式推导早期的结果外,所提出的方法还可以提高性能结果,而不会对OFDM系统施加任何限制或限制,例如增加导频或循环前缀的数量。
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Low Complexity Dynamic Channel Equalization in OFDM with High Frequency Mobile Network Technologies
We present in this paper a method for enhancing equalization of a dynamic channel. A dynamic channel is characterized and modeled by a high relative velocity between transmitter and receiver and fast changes of environment conditions for wave propagation. Based on Jakes model, an auto-regressive model (AR) [1] for such a dynamic system, i.e., a time variant channel is developed. More specifically, the enhanced equalization method we are proposing is a combination of a multi-stage time and frequency domain equalizer with a feed-forward loop. The underlined wok presents a unified approach to the equalization method that employs both time and frequency domains data to enhance the equalization scheme. In an OFDM system, the channel coefficients for each tap, in time domain for consecutive blocks, are partially independent thus correlated. Such correlation can improve the channel estimation if it is taken into account. The method in this paper enhances the performance of equalization by dynamically selecting the number of previous OFDM symbols based on the Doppler frequency. In order to decrease the complexity of the system model, we utilize the autocorrelation and Doppler frequency to dynamically select the previous OFDM symbols that will be stored in the memory. In addition to deriving earlier results in a unified manner, the approach presented also leads to enhanced performance results without imposing any restrictions or limitations on the OFDM system such as increasing the number of pilots or cyclic prefix.
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