首页> 外文会议>Electromagnetic Compatibility (APEMC), 2012 Asia-Pacific Symposium on >Spectrum analysis of switched-capacitor mode DPWM generator with Spread-Spectrum Clocking circuit
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Spectrum analysis of switched-capacitor mode DPWM generator with Spread-Spectrum Clocking circuit

机译:具有扩频时钟电路的开关电容器模式DPWM发生器的频谱分析

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In this paper, we analyzed a spectrum of the SMPS (Switching Mode Power Supply) which uses DPWM (Digital Pulse Width Modulation) and adopts SSC (Spread Spectrum Clocking) circuit to reduce EMI (Electro-Magnetic Interference) noise. Generally, SSC circuits are used in order to reduce noise peaks by spreading switching frequency spectrum. Such noise peak reduction is verified with a general FFT (Fast Fourier Transform) method through sufficiently long time which includes many switching cycles. However, effects of drastic changes of power supply voltage such as voltage dropping, onetime noise or bounce in power distribution network are apparently not revealed in the spectrum because their effects are averaged down in the general FFT method. These ripples in power distribution become sources of EMI failures. For accurate spectrum analysis in the transition period, FFT should be performed separately with respect to each transient section. Therefore, we carried out short-time Fourier transform (STFT) with respect to several local window sections as well as general Fourier transform with respect to the overall interval. The separated local windows are the overshoot section and the undershoot section.
机译:在本文中,我们分析了使用DPWM(数字脉冲宽度调制)并采用SSC(扩频时钟)电路来降低EMI(电磁干扰)噪声的SMPS(开关电源)的频谱。通常,使用SSC电路以通过扩展开关频谱来降低噪声峰值。这种噪声峰值降低已通过通用的FFT(快速傅立叶变换)方法经过了足够长的时间验证,其中包括许多开关周期。但是,在电源分配网络中,电源电压的急剧变化(例如电压降,一次性噪声或反弹)的影响显然没有在频谱中显示出来,因为它们的影响是在常规FFT方法中平均下来的。配电中的这些纹波成为EMI故障的根源。为了在过渡周期内进行准确的频谱分析,应针对每个瞬态部分分别执行FFT。因此,我们对几个局部窗口部分执行了短时傅立叶变换(STFT),并对整个间隔执行了常规傅立叶变换。分开的本地窗口是过冲部分和下冲部分。

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