Calculation method of deducting full spectrum background of gamma energy spectrum by using step by step approximation snip
A step-by-step approximation, gamma energy spectrum technology, used in X-ray energy spectrum distribution measurement, complex mathematical operations, design optimization/simulation, etc., to achieve the effect of improving accuracy, high operating efficiency, and reducing peak dependence.
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Embodiment 1
[0035] Embodiment 1, using the method described in the present invention to calculate and deduct the full-spectrum background of the gamma energy spectrum by using stepwise approximation to SNIP to subtract the full-spectrum background of the gamma energy spectrum, in the non-destructive testing, follow the steps below:
[0036] 1.B (n) Indicates the background area when the background is deducted for the nth time, and sets the initial value B (0) =1, n=0, then calculate B according to the following steps (n) ;
[0037] 2. Perform LLS (logarithm-logarithm-square root) transformation on the data of the gamma energy spectrum: z i is the i-th channel spectral data after LLS transformation, y i is the i-th channel spectral data before transformation;
[0038] 3. Construct a vector r whose size is equivalent to the length of the energy spectrum, let r i =t*FWHM i , where r i Indicates the width of the i-th energy peak, t is a constant, representing the relationship between...
Embodiment 2
[0060] Example 2, use the Morhac algorithm to calculate the background to subtract the full-spectrum background of the gamma energy spectrum, use the symmetrical zero-area conversion method when finding the peak, and finally obtain the background subtraction results of the low-energy region and high-energy region as follows Figure 5 shown.
[0061] The result obtained after deducting the full-spectrum background of the gamma energy spectrum by utilizing the stepwise approximation SNIP calculation of the present invention to deduct the full-spectrum background of the gamma energy spectrum (such as Figure 4 shown) and the result obtained after subtracting the background of the full spectrum of the gamma energy spectrum by using the Morhac method to calculate the background (such as Figure 5 shown) for comparison.
[0062] like Figure 5 As shown, it can be seen that the background of the peak obtained by the Morhac algorithm in the low energy region is deformed, and the bac...
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