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Low-Complexity Detection Exploiting Subcarrier Correlation in Multi-Layer STBC OFDM

机译:多层STBC OFDM中利用低复杂度检测子载波相关性的方法

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We propose a multi-layer space-time block coded orthogonal frequency division multiplexing (multi-layer STBC OFDM) scheme. It combines the spatial diversity and spatial multiplexing in order to exploit the benefits of both techniques. The transmit antennas are divided into several layers and each layer is encoded by STBC. The antennas transmit OFDM signals in order to deal with frequency-selective fading channels. In addition to exhaustive detection scheme which applies the same detection at each subcarrier independently, we exploit the subcarrier correlation to develop a subcarrier-grouping based detection scheme (SGD scheme). The subcarriers bound into the same group share the same detection parameters, e.g., layer detection order which is obtained at the center subcarrier of that group. This feature can significantly reduce the detection complexity with very small performance loss. The simulation results show that compared with exhaustive detection scheme, the proposed SGD scheme is capable of reducing 36.13% complexity with less than 1.0 dB performance loss for 4times4 system, and reducing 52.44% complexity with about 1.3 dB performance loss for 6times6 system, respectively
机译:我们提出了一种多层空时分组编码正交频分复用(多层STBC OFDM)方案。它结合了空间分集和空间复用,以利用两种技术的优势。发射天线分为几层,每一层由STBC编码。天线发送OFDM信号以处理频率选择性衰落信道。除了在每个子载波上独立应用相同检测的穷举检测方案之外,我们还利用子载波相关性来开发基于子载波分组的检测方案(SGD方案)。绑定到同一组中的子载波共享相同的检测参数,例如,在该组的中心子载波处获得的层检测顺序。此功能可以显着降低检测复杂性,而性能损失却很小。仿真结果表明,与详尽的检测方案相比,所提出的SGD方案在4×4系统中能够分别降低36.13%的复杂度和小于1.0 dB的性能损失,在6×6系统中能够降低52.44%的复杂度和大约1.3 dB的性能损失。

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