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Optimum synthesis of FIR filters with arbitrary time and frequency constraints for energy and time estimations in case of pulse-correlated noise

机译:在脉冲相关噪声的情况下,具有任意时间和频率约束的FIR滤波器的最佳合成

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We present two noticeable extensions to the applications of the DPLMS (Digital Penalized Least Mean Squares) method for optimum energy filter synthesis that we introduced a few years ago. By using the DPLMS method, high performance digital filters with time constraints, e.g. flat-top, finite duration and also frequency constraint can be derived from easily acquired experimental signals. Now, we want to show i) how the DPLMS method can be used to synthesize also optimum digital filters for time estimations of signals and ii) how the DPLMS method can be directly used also in presence of time variant, pulse correlated noise, e.g. in case of scintillation detectors coupled to photomultiplier tubes or avalanche photodiodes, for both energy and time estimations. Experimental validation of the DPLMS method for both energy and time estimations of signals coming from LaBr scintillator detectors is provided.
机译:我们向我们几年前推出的最佳能滤波合成的DPLMS(数字惩罚最小均方方)方法的应用中有两个明显的延伸。通过使用DPLMS方法,具有时间约束的高性能数字滤波器,例如,平顶,有限持续时间和频率约束可以从易于获取的实验信号中得出。现在,我们想显示I)如何使用DPLMS方法来合成信号和II的时间估计的最佳数字滤波器,并且II)如何在时间变体存在下直接使用DPLMS方法,脉冲相关噪声,例如,脉冲相关噪声。在闪烁探测器耦合到光电倍增管或雪崩光电二极管的情况下,用于能量和时间估计。提供了来自LABR闪烁器检测器的信号的能量和时间估计的DPLMS方法的实验验证。

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