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Joint Channel Estimation and Equalization for Index-Modulated Spectrally Efficient Frequency Division Multiplexing Systems

机译:索引调制光谱频率分频系统的联合通道估计与均衡

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摘要

Spectrally efficient frequency division multiplexing (SEFDM) relying on index modulation (IM) has emerged as a promising multicarrier technique. In this paper, we develop a joint channel estimation and equalization method based on factor graphs for SEFDM-IM signaling over frequency-selective fading channels. By approximating the interference in the frequency domain, we reformulate the problem to obey a linear state-space model and construct a multi-layer factor graph. To support a reconfigurable architecture, non-orthogonal demodulation is adopted and the colored noise encountered is approximated by a complex auto-regressive (CAR) model. For deriving a low-complexity parametric Gaussian message passing (GMP)-based method, we exploit an expectation propagation (EP)-based technique for approximating the discrete a posteriori distributions of the transmitted symbols in a Gaussian form. To further simplify the result, variational message passing (VMP) is applied to an equivalent soft node to obtain a Gaussian form. Moreover, we also derive the Cramer-Rao lower bound (CRLB) in closed-form. The overall complexity only grows linearly with the number of subcarriers and logarithmically with the length of the channel's memory. Compared to its Nyquist signaling based counterpart, SEFDM-IM signaling relying on the proposed algorithm exhibits up to 25% higher bandwidth efficiency without any bit error rate (BER) performance degradation.
机译:依赖于索引调制(IM)的光谱有效的频分复用(SEFDM)已成为一种有前途的多载波技术。在本文中,我们基于频率选择性衰落通道的SEFDM-IM信令的因子图开发了一种联合信道估计和均衡方法。通过近似频域中的干扰,我们重构问题以遵循线性状态空间模型并构造多层因子图。为了支持可重新配置的架构,采用非正交解调,并且遇到的彩色噪声由复杂的自动回归(CAR)模型近似。用于导出通过(GMP)的低复杂度参数高斯消息,我们利用基于预期传播(EP)的技术,用于近似于在高斯形式中映射的离散的阳性分布。为了进一步简化结果,将变化消息传递(VMP)应用于等效软节点以获得高斯形式。此外,我们还在封闭形式中得出了克拉梅勒下限(CRLB)。整体复杂性仅与子载波的数量线性地增长,并以通道内存的长度对数进行对数。与其基于奈奎斯特信令的对应物相比,依赖于所提出的算法的SEFDM-IM信令呈现出高达25%的带宽效率,而无需任何比特错误率(BER)性能劣化。

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