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Efficient digital oscillator with continuous phase and uniform frequency spacing

机译:具有连续相位和均匀频率间隔的高效数字振荡器

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In this paper, a new low-frequency digital sinusoidal oscillator with continuous phase and uniform frequency spacing is proposed and its performance is evaluated. The proposed oscillator structure requires a single multiplier for its hardware implementation. For the same frequency range, the single multiplier utilized can be implemented using an 8-bit word-length assuming that the multipliers in the previously reported oscillators are implemented using 14 bits. The saving in multiplier word-length results in a reduction in the silicon area and power dissipation. The proposed oscillator structure utilizes a multiple-output direct form digital oscillator with a single 8-bit multiplier in addition to a very simple switching and sign changing operations. The proposed oscillator structure is capable of generating sinusoidal signals with large number of samples per cycle. The phase of the generated sinusoids is continuous at the switching points and the difference between any two adjacent generated frequencies is approximately constant. Simulation results are presented to verify the analysis and demonstrate the performance as measured in terms of total harmonic distortion.
机译:本文提出了一种新型的具有连续相位和均匀频率间隔的低频数字正弦振荡器,并对其性能进行了评估。拟议的振荡器结构为其硬件实现需要一个乘法器。对于相同的频率范围,假设先前报告的振荡器中的乘法器是使用14位实现的,则可以使用8位字长来实现所使用的单个乘法器。乘数字长的节省导致了硅面积的减小和功耗的减小。所提出的振荡器结构除了具有非常简单的开关和符号改变操作之外,还利用具有单个8位乘法器的多输出直接形式数字振荡器。所提出的振荡器结构能够在每个周期产生具有大量样本的正弦信号。产生的正弦波的相位在切换点处是连续的,并且任何两个相邻产生的频率之间的差近似恒定。给出了仿真结果,以验证分析并证明以总谐波失真衡量的性能。

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