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用于测量数字电路抖动的波形扩展方法 被引量:3
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作者 王一雄 粟涛 《电子测量技术》 北大核心 2022年第5期26-32,共7页
为了解决当下无法实时地对芯片内高频数字信号抖动进行精确测量等问题,提出了一种可以将高频数字方波信号低频化的扩展器电路结构。该扩展器对高频数字信号的边沿进行采样和输出,在完整保留信号抖动的同时将输入的高频数字信号实时展开... 为了解决当下无法实时地对芯片内高频数字信号抖动进行精确测量等问题,提出了一种可以将高频数字方波信号低频化的扩展器电路结构。该扩展器对高频数字信号的边沿进行采样和输出,在完整保留信号抖动的同时将输入的高频数字信号实时展开成周期为预设值的低频方波信号。晶体管级的仿真实验和中规模集成电路(MSI)板级验证表明,该方法能扩大信号相邻边沿的时间间隔,同时保留原信号的抖动特性,可以用来测量频率达数吉赫兹的高频数字信号的抖动且测量精度非常高(误差小于0.7%)。该扩展器结构简单,可集成于芯片内部用以实时且精准地测量片内高频数字信号的抖动。 展开更多
关键词 数字电路 抖动测量 波形扩展
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Effects of loading waveforms on rock damage using particle simulation method 被引量:5
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作者 XIA Ming GONG Feng-qiang 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1755-1765,共11页
The particle simulation method is used to study the effects of loading waveforms (i.e. square, sinusoidal and triangle waveforms) on rock damage at mesoscopic scale. Then some influencing factors on rock damage at t... The particle simulation method is used to study the effects of loading waveforms (i.e. square, sinusoidal and triangle waveforms) on rock damage at mesoscopic scale. Then some influencing factors on rock damage at the mesoscopic scale, such as loading frequency, stress amplitude, mean stress, confining pressure and loading sequence, are also investigated with sinusoidal waveform in detail. The related numerical results have demonstrated that: 1) the loading waveform has a certain effect on rock failure processes. The square waveform has the most damage within these waveforms, while the triangle waveform has less damage than sinusoidal waveform. In each cycle, the number of microscopic cracks increases in the loading stage, while it keeps nearly constant in the unloading stage. 2) The loading frequency, stress amplitude, mean stress, confining pressure and loading sequence have considerable effects on rock damage subjected to cyclic loading. The higher the loading frequency, stress amplitude and mean stress, the greater the damage the rock accumulated; in contrast, the lower the confining pressure, the greater the damage the rock has accumulated. 3) There is a threshold value of mean stress and stress amplitude, below which no further damage accumulated after the first few cycle loadings. 4) The high-to-low loading sequence has more damage than the low-to-high loading sequence, suggesting that the rock damage is loading-path dependent. 展开更多
关键词 rock damage failure process crack initiation and propagation loading waveform cycle loading particle simulation method
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