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首页> 外文期刊>IEEE Transactions on Signal Processing >Parametric Channel Estimation for Pseudo-Random Tile-Allocation in Uplink OFDMA
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Parametric Channel Estimation for Pseudo-Random Tile-Allocation in Uplink OFDMA

机译:上行OFDMA中伪随机图块分配的参数信道估计

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摘要

We consider the uplink channel estimation of a multipath wireless channel used for orthogonal frequency division multiple access (OFDMA) transmission, where the uplink uses a pseudo-random “tile” allocation pattern. A tile is made of small number of physically adjacent data subcarriers along with a few embedded pilot subcarriers and an uplink sub-channel allocated to an user in OFDMA systems such as IEEE 802.16d/e wireless MAN consists of several such pseudo-randomly chosen tiles. While the embedded pilots enable intra-tile channel interpolation, such an estimation will have an error floor which degrades performance substantially for highly frequency selective channels. We propose a parametric channel estimation method applicable to such irregular and sparsely spaced pilots, that does not exhibit an error-floor over the nominal operating range of signal to noise ratios, even for highly selective channels. The proposed algorithm exploits the pilot structure in each tile in estimating the delay subspace corresponding to the parametric channel description. Although this algorithm is more computationally complex when compared to the intra-tile linear interpolator, it offers a greatly enhanced bit-error probability (BEP) performance with a significantly lower pilot overhead. The uncoded BEP expression for the proposed estimator are analytically derived. Simulation results provided compares the mean squared error performance of this parametric channel estimator with the Cramer–Rao bound and also illustrates the significantly improved BEP performance over the existing methods.
机译:我们考虑用于正交频分多址(OFDMA)传输的多径无线信道的上行链路信道估计,其中上行链路使用伪随机“平铺”分配模式。磁贴由少量物理上相邻的数据子载波以及一些嵌入式导频子载波组成,并且在OFDMA系统(例如IEEE 802.16d / e无线MAN)中分配给用户的上行链路子信道由几个伪随机选择的磁贴组成。尽管嵌入式导频能够实现块内信道内插,但这种估计将具有错误底限,这会严重降低高频选择性信道的性能。我们提出了一种适用于这种不规则和稀疏间隔的导频的参数信道估计方法,即使对于高度选择性的信道,该方法也不会在信噪比的标称工作范围内展现出误差层。所提出的算法在估计与参数信道描述相对应的延迟子空间中利用了每个瓦片中的导频结构。尽管与块内线性插值器相比,该算法在计算上更加复杂,但是它提供了大大增强的误码率(BEP)性能,并且导频开销明显降低。分析性地推导了拟议的估算器的未编码BEP表达式。提供的仿真结果将该参数通道估计器的均方误差性能与Cramer-Rao边界进行了比较,还说明了与现有方法相比,BEP性能得到了显着改善。

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