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Low-Complexity Equalization of MIMO-OSDM

机译:MIMO-OSDM的低复杂度均衡

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Orthogonal signal-division multiplexing (OSDM) is an attractive alternative to conventional orthogonal frequency-division multiplexing (OFDM) due to its enhanced ability in peak-to-average power ratio (PAPR) reduction. Combining OSDM with multiple-input multiple-output (MIMO) signaling has the potential to achieve high spectral and power efficiency. However, a direct channel equalization in this case incurs a cubic complexity, which may be expensive for practical use. To solve the problem, low-complexity per-vector and block equalization algorithms of MIMO-OSDM are proposed in this paper for time-invariant and time-varying channels, respectively. By exploiting the channel matrix structures, these algorithms have only a linear complexity in the transformed domain. Simulation results demonstrate their validity and the related performance comparisons.
机译:正交信号分割多路复用(OSDM)是传统正交频分多路复用(OFDM)的一种有吸引力的替代方法,因为它具有降低峰均功率比(PAPR)的能力。将OSDM与多输入多输出(MIMO)信令相结合具有实现高频谱和功率效率的潜力。然而,在这种情况下,直接信道均衡会导致三次复杂性,这对于实际使用可能是昂贵的。为解决这一问题,本文针对时不变信道和时变信道分别提出了MIMO-OSDM的低复杂度每矢量和块均衡算法。通过利用信道矩阵结构,这些算法在变换域中仅具有线性复杂度。仿真结果证明了它们的有效性以及相关的性能比较。

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