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An adaptive algorithm for differentially coherent detection in the presence of intersymbol interference

机译:存在符号间干扰的差分相干检测的自适应算法

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摘要

An adaptive equalization method is proposed for use with differentially coherent detection of M-ary differential phase-shift keying (DPSK) signals in the presence of unknown carrier frequency offset. A decision-feedback or a linear equalizer is employed, followed by the differentially coherent detector. The equalizer coefficients are adjusted to minimize the post-detection mean squared error. The error, which is a quadratic function of the equalizer vector, is used to design an adaptive algorithm of stochastic gradient type. The approach differs from those proposed previously, which linearize the post-detection error to enable the use of least mean squares (LMS) or recursive least squares (RLS) adaptive equalizers. The proposed quadratic-error (Q) algorithm has complexity comparable to that of LMS, and equal convergence speed. Simulation results demonstrate performance improvement over methods based on linearized-error (L) algorithm. The main advantages of the technique proposed are its simplicity of implementation and robustness to carrier frequency offset, which is maintained for varying modulation level.
机译:提出了一种自适应均衡方法,用于在未知载波频率偏移的情况下对M元差分相移键控(DPSK)信号进行差分相干检测。采用判决反馈或线性均衡器,然后是差分相干检测器。调节均衡器系数以使检测后的均方误差最小。该误差是均衡器矢量的二次函数,用于设计随机梯度类型的自适应算法。该方法与先前提出的方法不同,后者使检测后误差线性化,从而可以使用最小均方(LMS)或递归最小二乘(RLS)自适应均衡器。提出的二次误差(Q)算法具有与LMS相当的复杂度,并且收敛速度相同。仿真结果表明,与基于线性误差(L)算法的方法相比,该方法的性能有所提高。所提出的技术的主要优点是其实现的简单性和对载波频率偏移的鲁棒性,对于变化的调制级别,该频率得以保持。

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