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Iterative Receiver with Low Complexity for Downlink Multicarrier Communications over Rapidly Time-Varying Channels

机译:低复杂度的迭代接收机,用于快速时变信道上的下行链路多载波通信

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This study proposes an iterative, joint channel estimation, equalization, and data detection method in the presence of high mobility for a multicarrier downlink system that communicates over rapidly time-varying channels. The proposed method uses a basis expansion method (BEM) which has low computational complexity and helps to reduce the number of coefficients needed to represent a time-varying channel and therefore is extremely easy to implement practically. Unlike the current literature, which is almost entirely focused on the uplink communication systems due to their computational costs, this method prioritizes the goal of being feasible in a downlink system with a reasonable performance. The proposed suboptimal algorithm is based on the space-alternating generalized expectation-maximization (SAGE) algorithm and the time-varying channel is represented by orthogonal basis functions obtained by means of discrete Walsh-Hadamard transform (DWHT). The resulting receiver iterates between maximum a posteriori (MAP) based channel estimation in the subspace spanned by the orthogonal basis functions and successive interference cancellation. Numerical examples show that the proposed algorithm has a satisfactory symbol error rate with low computational complexity and also has a reasonable peak-to-average power ratio (PAPR) reduction effect.
机译:这项研究提出了一种迭代,联合信道估计,均衡和数据检测的方法,该方法适用于在快速时变信道上通信的多载波下行链路系统。所提出的方法使用基本扩展方法(BEM),其具有较低的计算复杂度并且有助于减少表示时变信道所需的系数的数量,因此在实践中极其容易实现。与当前文献不同,由于其计算成本几乎全部集中在上行链路通信系统上,因此该方法优先考虑了在合理性能的下行链路系统中可行的目标。提出的次优算法基于空间交替广义期望最大化(SAGE)算法,时变信道由离散沃尔什-哈达玛变换(DWHT)获得的正交基函数表示。所得的接收器在由正交基函数跨越的子空间中的基于最大后验(MAP)的信道估计与连续干扰消除之间进行迭代。数值算例表明,该算法具有令人满意的符号误码率,计算复杂度低,并且具有合理的峰均功率比(PAPR)降低效果。

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