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Study on spurious suppression method of high accuracy DDS

机译:高精度DDS杂散抑制方法研究

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The traditional Direct Digital Synthesis (DDS) is based on the method of ROM look-up table for phase-amplitude conversion, and the signal quality does not meet the high accuracy requirements in the condition of high frequency resolution, because of phase truncation causing the serious signal deterioration of spectral properties. For the problem, the key research is the application of coordinate rotation digital computer (CORDIC) algorithm to DDS signal source, and to propose an improved algorithm to reduce ROM consuming and iterations, especially in favor of hardware implementation. The design of novel DDS signal source is based on the improved CORDIC algorithm and the phase accumulator without frequency error. The simulation results show the signal source has advantages of relatively pure frequency spectrum, high SNR and obvious spurious suppression. Accordingly, the new DDS signal source is able to meet high frequency resolution and accuracy requirements simultaneously. The DDS signal source based on the spurious suppression method is easy to implement on FPGA, so it has important practical significance to the design of DDS signal source.
机译:传统的直接数字合成(DDS)基于用于相位幅度转换的ROM查找表的方法,并且信号质量不符合高频分辨率的高精度要求,因为阶段截断导致谱特性的严重信号劣化。对于问题,关键研究是将坐标旋转数字计算机(CORDIC)算法应用于DDS信号源的应用,并提出了一种改进的算法来减少ROM消耗和迭代,尤其是有利于硬件实现。新型DDS信号源的设计基于改进的CORDIC算法和阶段累加器而没有频率误差。仿真结果表明,信号源具有相对频率频谱,高SNR和明显的杂散抑制的优点。因此,新的DDS信号源能够同时满足高频分辨率和精度要求。基于杂散抑制方法的DDS信号源易于在FPGA上实现,因此对DDS信号源的设计具有重要的实际意义。

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