MFSK demodulation using parallel IIR ALE with a time-varying step size factor

M. T. Kilani, J. Chicharo
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Abstract

Infinite impulse response (IIR) adaptive line enhancers (ALEs) are employed for the task of detecting M-ary frequency shift keying (MFSK) signals. First, a new gradient search technique using a time-varying step size factor is presented which provides faster convergence rate when compared with conventional approaches. Secondly, a new parallel ALE (PALE) structure is proposed for the detection of a set or comb of frequencies which is used in frequency comb multiple access (FCMA) scheme. In FCMA, for efficient use of bandwidth, the information is carried within the phase, amplitude and frequency of each sinusoid. The proposed solution provides faster acquisition time when compared with the fast Fourier transform (FFT) method in situations where the mutual common factor of the input frequencies is small.<>
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使用具有时变步长因子的并行IIR ALE进行MFSK解调
无限脉冲响应(IIR)自适应线增强器(ALEs)被用于检测任意移频键控(MFSK)信号。首先,提出了一种基于时变步长因子的梯度搜索方法,与传统方法相比,该方法的收敛速度更快。其次,提出了一种用于频率梳式多址(FCMA)方案的一组或一梳频率检测的并行ALE (PALE)结构。在FCMA中,为了有效地利用带宽,信息被携带在每个正弦波的相位、幅度和频率内。在输入频率互公因子较小的情况下,与快速傅里叶变换(FFT)方法相比,该方法具有更快的采集时间。
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