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Max-SINR ISI/ICI-Shaping Multicarrier Communication Over the Doubly Dispersive Channel

机译:双色散信道上的Max-SINR ISI / ICI成形多载波通信

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For communication over doubly dispersive channels, we consider the design of multicarrier modulation (MCM) schemes based on time-frequency shifts of prototype pulses. We consider the case where the receiver knows the channel state and the transmitter knows the channel statistics (e.g., delay spread and Doppler spread) but not the channel state. Previous work has examined MCM pulses designed for suppression of inter-symbol/inter-carrier interference (ISI/ICI) subject to orthogonal or biorthogonal constraints. In doubly dispersive channels, however, complete suppression of ISI/ICI is impossible, and the ISI/ICI pattern generated by these (bi)orthogonal schemes can be difficult to equalize, especially when operating at high bandwidth efficiency. We propose a different approach to MCM pulse design, whereby a limited expanse of ISI/ICI is tolerated in modulation/demodulation and treated near-optimally by a downstream equalizer. Specifically, we propose MCM pulse designs that maximize a signal-to-interference-plus-noise ratio (SINR) which suppresses ISI/ICI outside a target pattern. In addition, we propose two low-complexity turbo equalizers, based on minimum mean-squared error and maximum likelihood criteria, respectively, that leverage the structure of the target ISI/ICI pattern. The resulting system exhibits an excellent combination of low complexity, low bit-error rate, and high spectral efficiency.
机译:对于在双色散信道上的通信,我们考虑基于原型脉冲的时频偏移的多载波调制(MCM)方案的设计。我们考虑接收机知道信道状态而发射机知道信道统计量(例如,延迟扩展和多普勒扩展)而不知道信道状态的情况。先前的工作已经检查了设计用于抑制正交或双正交约束下的符号间/载波间干扰(ISI / ICI)的MCM脉冲。然而,在双色散信道中,不可能完全抑制ISI / ICI,并且由这些(双)正交方案生成的ISI / ICI模式可能难以均衡,尤其是在以高带宽效率运行时。我们提出了一种不同的MCM脉冲设计方法,即在调制/解调中可以容忍ISI / ICI的有限范围,并由下游均衡器对其进行近乎最佳的处理。具体来说,我们提出了MCM脉冲设计,该设计可使信号干扰加噪声比(SINR)最大化,从而抑制了目标模式之外的ISI / ICI。此外,我们分别基于最小均方误差和最大似然准则,提出了两个低复杂度涡轮均衡器,它们利用了目标ISI / ICI模式的结构。所得系统展现出低复杂度,低误码率和高频谱效率的极佳组合。

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