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Spurious signals in direct digital frequency synthesizers due to the phase truncation

机译:由于相位截断,直接数字频率合成器中的杂散信号

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Direct digital frequency synthesizers (DDS or DDFS) are widely used in modern communications and measurement devices. Their advantages are small size and power consumption together with excellent frequency stability, high frequency resolution, and short switching times. The difficulties are rather low output frequencies (500 MHz at the present state of the art) and a large set of the spurious signals very often above the -80 dB level. One source of spurious signals in DDS is the use of smaller number, W, of the most significant bits (MSB) applied for the output sine wave reconstruction from all R bits stored in the accumulator. The result is a phase modulation of the output signal. The problem was first solved in a rather complicated way with the result that the level of the largest spurious signal is about -6 W dB below the carrier with an increase of 3.9 dB in some instances. A simpler solution of the problem of spurious signal level due to the phase truncation in DDS was found earlier. However, no attention was paid to the validity of the corrections suggested. In this paper we will be concerned with this problem and investigate the validity and correctness of these generally cited results and provide a simple way for finding positions, levels, and numbers of these spurious signals generated by truncation to W bits of the phase information stored in the DDS accumulator memory of R bits (W>R).
机译:直接数字频率合成器(DDS或DDFS)广泛用于现代通信和测量设备中。它们的优点是体积小,功耗低,并具有出色的频率稳定性,高频率分辨率和较短的切换时间。困难在于相当低的输出频率(在目前的技术水平下为500 MHz)和大量的杂散信号,通常高于-80 dB的水平。 DDS中的杂散信号的一种来源是使用较少数量的W的最高有效位(MSB)从存储在累加器中的所有R位应用于输出正弦波重构。结果是输出信号的相位调制。首先以相当复杂的方式解决了该问题,其结果是,最大杂散信号的电平比载波低约-6 W dB,在某些情况下增加了3.9 dB。较早地发现了由于DDS中的相位截断而导致的虚假信号电平问题的更简单解决方案。但是,没有注意所建议的更正的有效性。在本文中,我们将关注这个问题,并研究这些被普遍引用的结果的有效性和正确性,并提供一种简单的方法来查找这些杂散信号的位置,水平和数量,这些杂散信号是通过将存储在W位的相位信息中截断而生成的。 DDS累加器存储器的R位(W> R)。

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