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首页> 外文期刊>IEEE Transactions on Signal Processing >Time-Variant Channel Estimation Using Discrete Prolate Spheroidal Sequences
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Time-Variant Channel Estimation Using Discrete Prolate Spheroidal Sequences

机译:使用离散扁球面序列的时变信道估计

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We propose and analyze a low-complexity channel estimator for a multiuser multicarrier code division multiple access (MC-CDMA) downlink in a time-variant frequency-selective channel. MC-CDMA is based on orthogonal frequency division multiplexing (OFDM). The time-variant channel is estimated individually for every flat-fading subcarrier, assuming small intercarrier interference. The temporal variation of every subcarrier over the duration of a data block is upper bounded by the Doppler bandwidth determined by the maximum velocity of the users. Slepian showed that time-limited snapshots of bandlimited sequences span a low-dimensional subspace. This subspace is also spanned by discrete prolate spheroidal (DPS) sequences. We expand the time-variant subcarrier coefficients in terms of orthogonal DPS sequences we call Slepian basis expansion. This enables a time-variant channel description that avoids the frequency leakage effect of the Fourier basis expansion. The square bias of the Slepian basis expansion per subcarrier is three magnitudes smaller than the square bias of the Fourier basis expansion. We show simulation results for a fully loaded MC-CDMA downlink with classic linear minimum mean square error multiuser detection. The users are moving with 19.4 m/s. Using the Slepian basis expansion channel estimator and a pilot ratio of only 2percent, we achieve a bit error rate performance as with perfect channel knowledge.
机译:我们提出并分析了时变频率选择信道中用于多用户多载波码分多址(MC-CDMA)下行链路的低复杂度信道估计器。 MC-CDMA基于正交频分复用(OFDM)。假设载波间干扰较小,则针对每个平坦衰落子载波分别估算时变信道。每个子载波在数据块持续时间内的时间变化由用户的最大速度确定的多普勒带宽上限确定。 Slepian表明,带限序列的限时快照跨越了低维子空间。该子空间还被离散的球状球体(DPS)序列所覆盖。我们根据正交的DPS序列扩展时变子载波系数,我们称其为Slepian基展开。这实现了时变信道描述,避免了傅立叶基础扩展的频率泄漏效应。每个副载波的Slepian基展开的平方偏差比Fourier基展开的平方偏差小三个数量级。我们显示了具有经典线性最小均方误差多用户检测的满载MC-CDMA下行链路的仿真结果。用户以19.4 m / s的速度移动。使用Slepian基扩展信道估计器和仅2%的导频比,我们可以获得具有完善信道知识的误码率性能。

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