直接数字合成器与改善频谱在低频率

M. Taslakov
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引用次数: 4

摘要

在这项工作中,我们提出了一种在直接数字合成器(DDS)工作频率范围的较低子范围内获得较低失真输出频谱的新方法。在DDS中,输出正弦波是由离散步骤合成的。在DDS的高频子范围内,每步的持续时间等于时钟信号的一个周期。当这个离散正弦波通过低通滤波器(LPF)时,在其输出上得到一个连续的,接近理想的正弦波。在DDS的较低子范围内,每一步的持续时间大于时钟信号的一个周期。当这个信号通过同一个LPF时,输出信号不是正弦波。为了避免这种不连续,我们用线性逼近代替阶跃逼近。为此,我们使用自适应多电平脉宽调制。这个信号的周期等于时钟的周期。通过相同的LPF滤波该信号后,我们在DDS的较低子范围内获得连续正弦波。在相同频率下,该信号的失真小于标准DDS信号的失真。输出频谱的改善是使用相位累加器、正弦查找表和数模转换器(DAC)的位数的函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct digital synthesiser with improved spectrum at low frequencies
In this work, we suggest a new method for obtaining lower distortion of the output spectrum of a direct digital synthesiser (DDS) at lower sub ranges of its operating frequency range. In DDS, the output sine wave is synthesised from discrete steps. At the higher frequency sub range of DDS, the duration of each step is equal to one period of the clock signal. When this discrete sine wave is passed through a low pass filter (LPF), on its output is obtained a continuous, near ideal sine wave. At lower sub ranges of DDS, the duration of each step is more than one period of the clock signal. When this signal is passed through the same LPF the output signal is not sine wave. To avoid this discontinuity, we replace the step approximation with linear one. For this purpose, we use adaptive multilevel pulse-width modulation. The period of this signal is equal to the period of the clock. After filtering this signal through the same LPF, we obtain a continuous sine wave at lower sub range of the DDS. The distortion of this signal is less than the distortion of the standard DDS signal at the same frequency. The improvement of the output spectrum is a function of number of bits of used phase accumulator, sine lookup table and digital-to-analog converter (DAC).
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