基于波束形成准则选择的室内无线局域网时空均衡方法

K. Hayashi, S. Hara
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引用次数: 1

摘要

时空均衡是一种利用接收信号的时空信息来补偿多径衰落引起的码间干扰的技术。考虑到时空均衡器在高速无线通信系统(如无线局域网)中的应用,本文提出了一种新的时空均衡器方法,该方法采用自适应阵列和决策反馈均衡器(DFE)的级联结构,可以用较少的权值来实现,从而降低了计算复杂度。但是,它的简单性是要付出代价的,即误差性能曲面成为权重的四阶函数,并且可能有两个最小值。为了避免基于最小均方误差(MMSE)的自适应算法在任意初始值的自适应过程中被局部最小值错误捕获,该均衡器分两步分别计算自适应阵列和DFE的权重,自适应阵列根据信道条件选择捕获路径。计算机仿真结果表明,该方法在基于测量报告的各种信道模型中均能取得较好的性能,且计算复杂度较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A spatio-temporal equalization method for indoor wireless LANs with beamforming criterion selection
Spatio-temporal equalization is a technique which utilizes both spatial and temporal information of the received signal to compensate for intersymbol interference due to multipath fading. Considering the application of a spatio-temporal equalizer to high speed wireless communications systems, such as wireless LANs, this paper proposes a new spatio-temporal equalization method using a cascade configuration of an adaptive array and a DFE (decision feedback equalizer), which can be realized with small number of weights, and hence, low computational complexity. However, it has to pay a price for the simplicity, namely, the error performance surface becomes a fourth-order function of the weights, and possibly has two minima. In order to avoid a wrong trap by a local minimum during the adaptation of the MMSE (minimum mean-squared error) based adaptation algorithm with any initial values, the proposed equalizer calculates the weights of the adaptive array and the DFE separately in two steps, and the adaptive array selects a path or paths to capture depending on channel conditions. Computer simulation results show that the proposed method can achieve good performance in various channel models, which are based on measurement reports, in low computational complexity.
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