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引用次数: 1

摘要

MFSK (m - ry频移键控)信号具有恒定的包络,适合于功率高效的非线性放大。然而,将MFSK信号应用于频谱高效、可靠的MIMO (Multiple Input Multiple Output,多输入多输出)通信方案目前还没有得到广泛的应用。这可能是因为空间复用MIMO信号的信号处理通常使用线性矩阵代数,而线性信号处理技术在非线性调频信号(如MFSK)中的应用是困难的。本文研究了基于MLD (Maximum Likelihood detection)方法的MIMO选频信道中MFSK信号的相干检测。在该接收机中,产生频率和相位同步的接收副本信号,并使接收信号与接收副本信号之间的信号距离最小。通过延长接收信号的观测长度,改善了误码率特性。我们还使用Sphere解码的SE (Schnorr Euchner)算法来降低MLD的复杂度,从而获得ML (Maximum Likelihood)解。
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Coherent MFSK detection on MIMO frequency selective channels
MFSK (M-ary Frequency Shift Keying) signal has a constant envelope and is suited to power efficient nonlinear amplification. However, the application of MFSK signals to spectrally efficient and reliable MIMO (Multiple Input Multiple Output) communication schemes has not been so popular up to now. Maybe this comes from the fact that the signal processing for spatially multiplexed MIMO signal is usually done using linear matrix algebra and the application of linear signal processing techniques to nonlinear FM signals such as MFSK is difficult. In this paper, we study the coherent detection of MFSK signals based on MLD (Maximum Likelihood Detection) approach on MIMO frequency selective channels. In the proposed receiver, the receive replica signal which is frequency and phase synchronized is generated and the signal distance between the receive signal and the receive replica signal is minimized. By extending the observation length of receive signal, we improved the BER characteristics. We also reduced the complexity of MLD by using the SE (Schnorr Euchner) algorithm of Sphere Decoding to obtain ML (Maximum Likelihood) solution.
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