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Simulation of DAC-based truncated sine excitation pulse generator

机译:基于DAC截短正弦励磁脉冲发生器的仿真

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A signal with high quality rectangular frequency spectrum is generated for MRI medical imaging applications. The center frequency of the signal is 4MHz and the bandwidth is 8KHz. This signal is generated by feeding Digital to Analog Converter (DAC) with repetitive truncated and modulated sinc function. Resolution and update rate of the required DAC is chosen theoretically and by simulations in MATLAB. Further simulations are carried out to optimize the truncating, which resulted in 800Hz transition bandwidth, -32.27dB pass-band ripple, -37.92dB stop-band ripple and 6.977MHz image signal gap by means of feeding a 15MSPS 14-bit DAC with 75,000 samples.
机译:为MRI医学成像应用产生具有高质量矩形频谱的信号。信号的中心频率为4MHz,带宽为8kHz。通过重复截断和调制的SINC功能将数字到模拟转换器(DAC)馈送数字到模拟转换器(DAC)来生成该信号。理论上选择所需DAC的分辨率和更新率,并通过MATLAB模拟来选择。进行了进一步的模拟以优化截断,从而导致800Hz过渡带宽,-32.27DB通道纹波,-37.92dB止动带纹波和6.977MHz的图像信号间隙,通过馈送了75,000的15msps 14位DAC样品。

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