The identification of the inter-electrode gap size in the high frequency group pulse micro-electrochemical machining (HGPECM) is mainly discussed. The auto-regressive(AR) model of group pulse current flowing acros...The identification of the inter-electrode gap size in the high frequency group pulse micro-electrochemical machining (HGPECM) is mainly discussed. The auto-regressive(AR) model of group pulse current flowing across the cathode and the anode are created under different situations with different processing parameters and inter-electrode gap size. The AR model based on the current signals indicates that the order of the AR model is obviously different relating to the different processing conditions and the inter-electrode gap size; Moreover, it is different about the stability of the dynamic system, i.e. the white noise response of the Green's function of the dynamic system is diverse. In addition, power spectrum method is used in the analysis of the dynamic time series about the current signals with different inter-electrode gap size, the results show that there exists a strongest power spectrum peak, characteristic power spectrum(CPS), to the current signals related to the different inter-electrode gap size in the range of 0~5 kHz. Therefore, the CPS of current signals can implement the identification of the inter-electrode gap.展开更多
在分析信号复原过程的基础上,提出基于功率谱 AR 模型估计的序列图像复原算法.对分段信号的功率谱进行估计,在保持图像整体信息良好的前提下,得到幅值谱的补偿滤波器,从而实现序列图像复原。利用所建模型对风洞试验图像进行实验研究,复...在分析信号复原过程的基础上,提出基于功率谱 AR 模型估计的序列图像复原算法.对分段信号的功率谱进行估计,在保持图像整体信息良好的前提下,得到幅值谱的补偿滤波器,从而实现序列图像复原。利用所建模型对风洞试验图像进行实验研究,复原图像信噪比得到提高,复原以后的图像误差得到很大程度的减小,恢复效果明显。研究表明,采用功率谱 AR 模型估计的复原方法,可以有效地应用于气动光学效应序列图像复原。展开更多
基金This project is supported by the 10th Five-year Plan Pre-research Project Foundation of China Weapon Industry Company, China(No.42001080701).
文摘The identification of the inter-electrode gap size in the high frequency group pulse micro-electrochemical machining (HGPECM) is mainly discussed. The auto-regressive(AR) model of group pulse current flowing across the cathode and the anode are created under different situations with different processing parameters and inter-electrode gap size. The AR model based on the current signals indicates that the order of the AR model is obviously different relating to the different processing conditions and the inter-electrode gap size; Moreover, it is different about the stability of the dynamic system, i.e. the white noise response of the Green's function of the dynamic system is diverse. In addition, power spectrum method is used in the analysis of the dynamic time series about the current signals with different inter-electrode gap size, the results show that there exists a strongest power spectrum peak, characteristic power spectrum(CPS), to the current signals related to the different inter-electrode gap size in the range of 0~5 kHz. Therefore, the CPS of current signals can implement the identification of the inter-electrode gap.
文摘在分析信号复原过程的基础上,提出基于功率谱 AR 模型估计的序列图像复原算法.对分段信号的功率谱进行估计,在保持图像整体信息良好的前提下,得到幅值谱的补偿滤波器,从而实现序列图像复原。利用所建模型对风洞试验图像进行实验研究,复原图像信噪比得到提高,复原以后的图像误差得到很大程度的减小,恢复效果明显。研究表明,采用功率谱 AR 模型估计的复原方法,可以有效地应用于气动光学效应序列图像复原。