Analysis of long-term EEG signals needs that it be segmented into pseudo stationary epochs. That work is done by regarding to statistical characteristics of a signal such as amplitude and frequency. Time series measur...Analysis of long-term EEG signals needs that it be segmented into pseudo stationary epochs. That work is done by regarding to statistical characteristics of a signal such as amplitude and frequency. Time series measured in real world is frequently non-stationary and to extract important information from the measured time series it is significant to utilize a filter or smoother as a pre-processing step. In the proposed approach, the signal is initially filtered by Moving Average (MA) or Savitzky-Golay filter to attenuate its short-term variations. Then, changes of the amplitude or frequency of the signal is calculated by Modified Varri method which is an acceptable algorithm for segmenting a signal. By using synthetic and real EEG data, the proposed methods are compared with original approach (simple Modified Varri). The simulation results indicate the absolute advantage of the proposed methods.展开更多
提出了一种基于三维Sav itzky-G o lay滤波的蒙特卡罗(M C)剂量分布的去噪方法。该方法首先利用M C方法模拟粒子轨迹数目较少时得到剂量的三维分布,然后对该剂量分布用三维Sav itzky-G o lay平滑滤波方法进行去噪处理。结果表明:采用三...提出了一种基于三维Sav itzky-G o lay滤波的蒙特卡罗(M C)剂量分布的去噪方法。该方法首先利用M C方法模拟粒子轨迹数目较少时得到剂量的三维分布,然后对该剂量分布用三维Sav itzky-G o lay平滑滤波方法进行去噪处理。结果表明:采用三维Sav itzky-G o lay平滑滤波方法去噪,不仅提高了剂量分布的可视性,降低了M C计算剂量分布的不确定性,而且也相应地提高了M C剂量计算方法的计算效率。展开更多
文摘Analysis of long-term EEG signals needs that it be segmented into pseudo stationary epochs. That work is done by regarding to statistical characteristics of a signal such as amplitude and frequency. Time series measured in real world is frequently non-stationary and to extract important information from the measured time series it is significant to utilize a filter or smoother as a pre-processing step. In the proposed approach, the signal is initially filtered by Moving Average (MA) or Savitzky-Golay filter to attenuate its short-term variations. Then, changes of the amplitude or frequency of the signal is calculated by Modified Varri method which is an acceptable algorithm for segmenting a signal. By using synthetic and real EEG data, the proposed methods are compared with original approach (simple Modified Varri). The simulation results indicate the absolute advantage of the proposed methods.
文摘提出了一种基于三维Sav itzky-G o lay滤波的蒙特卡罗(M C)剂量分布的去噪方法。该方法首先利用M C方法模拟粒子轨迹数目较少时得到剂量的三维分布,然后对该剂量分布用三维Sav itzky-G o lay平滑滤波方法进行去噪处理。结果表明:采用三维Sav itzky-G o lay平滑滤波方法去噪,不仅提高了剂量分布的可视性,降低了M C计算剂量分布的不确定性,而且也相应地提高了M C剂量计算方法的计算效率。