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Theory of Flying-Adder Frequency Synthesizers—Part I: Modeling, Signals' Periods and Output Average Frequency

机译:飞加频率合成器理论—第一部分:建模,信号周期和输出平均频率

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This is a rigorous mathematical theory of the operation of the flying-adder (FA) frequency synthesizer (also called direct digital period synthesizer). The paper consists of two parts: Part I presents a detailed mathematical model of the FA synthesizer, capturing the relationships between the properties of the FA's output and internal signals and the FA's parameters. The counting of the rising edges in the FA's multiplexer's output establishes a discrete-time index that is used to analytically derive the fundamental discrete-time periods of all FA's signals. The continuous-time intervals between the rising edges are calculated and used to derive the fundamental continuous-time periods of the signals from the corresponding discrete-time ones. It is shown that the FA behaves differently within different ranges of the frequency word, and the practically useful range is identified. The FA's output average frequency, along with its maximum and minimum values, is analytically derived by calculating the number of cycles in the output signal within a fundamental continuous-time period of it. The relationship between the average and the fundamental output frequencies is also established, indicating the potential frequencies and density of output spurious frequency components. Part II of the paper characterizes the timing structure of the output signal, providing analytical expressions of the pulses' locations, analytical strict bounds of the timing irregularities, and exact analytical expressions of several standard jitter metrics. Spectral properties of the output waveform are presented, including the dominance of the frequency component at the average frequency, and analytical expressions of the dc value and average power of the output signal are derived. The FA has been implemented in a Xilinx Spartan-3E field-programmable gate array, and spectral measurements are presented, confirming the theoretical results. Extensive MATLAB simulation has also been used to gener-n-nate numerous examples illustrating the developed theory.
机译:这是飞行加法器(FA)频率合成器(也称为直接数字周期合成器)操作的严格数学理论。本文包括两个部分:第一部分介绍了FA合成器的详细数学模型,捕获了FA输出和内部信号的特性与FA参数之间的关系。 FA的多路复用器输出中上升沿的计数建立了一个离散时间索引,该索引用于分析得出所有FA信号的基本离散时间周期。计算上升沿之间的连续时间间隔,并将其用于从相应的离散时间信号中得出信号的基本连续时间周期。结果表明,FA在频率词的不同范围内表现不同,并确定了实用范围。 FA的输出平均频率及其最大值和最小值是通过在其基本连续时间段内计算输出信号中的周期数来解析得出的。还建立了平均值和基本输出频率之间的关系,表明了潜在频率和输出杂散频率分量的密度。本文的第二部分描述了输出信号的时序结构,提供了脉冲位置的解析表达式,时序不规则性的严格解析边界以及几种标准抖动指标的精确解析表达式。给出了输出波形的频谱特性,包括频率分量在平均频率上的优势,并导出了直流值和输出信号的平均功率的解析表达式。 FA已在Xilinx Spartan-3E现场可编程门阵列中实现,并进行了光谱测量,从而证实了理论结果。广泛的MATLAB仿真也已用于生成许多示例,说明了已开发的理论。

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