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Properties of a Class of Signaling Waveforms for Digital Phase Modulation

机译:一类用于数字相位调制的信号波形的特性

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This paper is concerned with the performance of partially coherent digital phase modulation (DPM) systems employing a class of binary signaling waveforms containing a zero crossing within each bit period. The class of waveforms includes the Manchester II bit code and sinusoidal bit code as well as an infinite number of other nonrectangular bit shapes. We wish to study the tradeoff between the RF bandwidth and the probability of bit errorP(E)as a function of bit shape. The equation describing the RF power spectrum for these DPM signals is obtained using a two-dimensional Fourier transform technique and is shown to contain both continuous and discrete terms. The spectra are evaluated numerically for a typical bit rate showing the effect of different bit shapes. An original technique is presented for including the effects of modulation interference on the extraction of the carrier-phase reference from these DPM signals using a partially coherent phase-locked-loop receiver. The expression for theP(E)is obtained for the class of signals and is a function of the phase deviation angle and the modulation interference. This expression is evaluated numerically to obtain sets of curves that show the optimal phase deviation angles for five members of the class. The tradeoff between the RF bandwidth and theP(E)is given by a curve that indicates the increase inP(E)for a reduction in RF bandwidth as a function of the bit shape.
机译:本文关注的是部分相干数字相位调制(DPM)系统的性能,该系统采用在每个位周期内包含零交叉点的一类二进制信令波形。波形类别包括曼彻斯特二世位代码和正弦位代码以及无限数量的其他非矩形位形状。我们希望研究RF带宽和作为比特形状的函数的比特错误概率P(E)之间的权衡。使用二维傅立叶变换技术可获得描述这些DPM信号的RF功率谱的方程式,该方程式包含连续项和离散项。对于典型的比特率,对频谱进行数字评估,以显示不同比特形状的影响。提出了一种原始技术,其中包括使用部分相干锁相环接收器从这些DPM信号中提取调制干扰对载波相位参考的提取的影响。 P(E)的表达式是针对信号类别而获得的,并且是相位偏移角和调制干扰的函数。对该表达式进行数字化评估以获得一组曲线,这些曲线显示出该类别中五个成员的最佳相位偏差角。 RF带宽和P(E)之间的折衷由一条曲线给出,该曲线表明P(E)的增加表示RF带宽的减少是位形状的函数。

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