Estimation method of Gaussian overlapped nuclear pulses

A nuclear pulse and pulse component technology, applied in the field of Gaussian overlapping nuclear pulse estimation, can solve the problem that Gaussian signal overlapping is difficult to accurately extract relevant information, and achieve the effect of improving accuracy and reliability and reducing discarding rate

Inactive Publication Date: 2016-11-23
CHENGDU UNIVERSITY OF TECHNOLOGY
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Problems solved by technology

To a certain extent, this method solves the technical problem that it is difficult to accurately extract relevant information due to the Gaussian signal overlap of...

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  • Estimation method of Gaussian overlapped nuclear pulses
  • Estimation method of Gaussian overlapped nuclear pulses
  • Estimation method of Gaussian overlapped nuclear pulses

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Embodiment Construction

[0024] The embodiments of the present invention are described in detail below in conjunction with the accompanying drawings. This embodiment is implemented on the premise of the technical solution of the present invention, and detailed implementation methods and processes are provided, but the protection scope of the present invention is not limited to the following implementations example.

[0025] Suppose the original Gaussian overlapping nuclear pulse to be decomposed obtained in the radioactivity measurement is V ( kT S ), using this method for pulse V ( kT S ) is decomposed according to the following specific steps ①~④.

[0026] step ① Overlap the original Gaussian nuclear pulse V ( kT S ) is regarded as obtained by superposition of N exponentially decaying nuclear pulses or double-exponential nuclear pulses after S-K digital shaping, that is, the N superimposed signal of nuclear pulses V e ( kT S ) as the input of the S-K digital shaping algorithm;

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Abstract

The invention discloses an estimation method of Gaussian overlapped nuclear pulses, and the method is used to estimate Gaussian overlapped nuclear pulses after Sallen-Key digital shaping. Original Gaussian overlapped nuclear pulses to be decomposed are obtained by superposing N index attenuated nuclear pulses or double-index nuclear pulses and carrying out S-K digital shaping; all parameters of the N nuclear pulses and parameters of an S-K digital shaping algorithm are seen as genes of a chromosome; and an error between the Gaussian overlapped nuclear pulses represented by individuals and the original overlapped nuclear pulses serves as a target function, an optimal individual is obtained by using a genetic algorithm, and N corresponding Gaussian nuclear pulse components are reconstructed to estimate the Gaussian overlapped nuclear pulses. According to the method, an optimal combination of Gaussian nuclear pulses is searched in the global aspect, the Gaussian overlapped nuclear pulses are decomposed, the abandoning rate of the Gaussian overlapped nuclear pulses is greatly reduced, and the accuracy and credibility of radioactivity measurement are improved.

Description

technical field [0001] The invention relates to a Gaussian overlapping nuclear pulse estimation method. Background technique [0002] With the development of high-speed integrated circuits, digital shaping technology has become an important method of nuclear pulse signal processing, which greatly improves the performance of nuclear instruments. During high-speed counting, the overlapping of adjacent nuclear pulses is inevitable. For the current waveform shaping technology, the parameter estimation of overlapping nuclear pulses is still a difficult problem. Taking the Sallen-Key (S-K) Gaussian shaping method as an example, since the exponential core pulse is shaped into a Gaussian pulse after passing through the S-K circuit, the signal can be broadened to facilitate the extraction of the amplitude, but the overlapping probability of the Gaussian pulse is greatly increased. In recent years, more in-depth research has been carried out on the shaping, acquisition, identificatio...

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Application Information

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IPC IPC(8): G06N3/12
Inventor 黄洪全杨小峰闫萍
Owner CHENGDU UNIVERSITY OF TECHNOLOGY
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