IP Library Granted Patent US 7,333,585
Granted Patent B2
US 7,333,585 · App. 11/348,343 · Granted Feb 19, 2008

Radiation measurement device

Assignee: Kabushiki Kaisha Toshiba
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Quick Facts
Patent No.
US 7,333,585
App. No.
11/348,343
Granted
Feb 19, 2008
Kind
B2
Abstract

A radiation measurement device includes a radiation detector generating an analog signal containing pulse components, an A/D converter converting the analog signal into sampled data, an n-th power pulse discrimination unit calculating n-th power values of the sampled data to discriminate the pulse component, where n is two or more, and a pulse counter counting a number of the discriminated pulse components.

Claims (15)

1. A device for measuring radiation comprising:

a radiation detector configured to generate an analog signal containing pulse components corresponding to a dosage of an inputted radiation;

an n-th moment calculation unit configured to calculate an average value of the n-th power values of pulse heights within a time width as an n-th moment value based on the analog signal outputted from the radiation detector, where n is an integer of not less than two, and where the pulse heights correspond to the pulse components included in the analog signal;

a pulse counter configured to count a number of pulse components based on the analog signal outputted from the radiation detector;

an average energy calculation unit configured to calculate an average energy of the radiation based on a ratio of the n-th moment value calculated by the n-th moment calculation unit to the number of the pulse components counted by the pulse counter; and

a dosage evaluation unit configured to calculate a dosage equivalent to the radiation based on the average energy of the radiation outputted from the average energy calculation unit and the ratio of the n-th moment value to the number of the pulses.

2. A device for measuring radiation comprising:

a radiation detector configured to generate an analog signal containing pulse components corresponding to a dosage of an inputted radiation;

an n-th moment calculation unit configured to calculate an average value of the n-th power values of pulse heights within a time width as an n-th moment value based on the analog signal outputted from the radiation detector, where n is an integer of not less than two, and where the pulse heights correspond to the pulse components included in the analog signal;

a current measurement instrument configured to calculate an average current from the pulse heights of the pulse components included in the analog signal;

an average energy calculation unit configured to calculate an average energy of the radiation based on a ratio of the n-th moment value calculated by the n-th moment calculation unit to the average current calculated by the current measurement instrument; and

a dosage evaluation unit configured to calculate a dosage equivalent to the radiation based on the average energy of the radiation outputted from the average energy calculation unit and the ratio of the n-th moment value to the average energy.

3. The device as recited in claim 2 , further comprising:

second to n-th moment calculation units each calculating an average value of one of second to n-th power values of the pulse heights within a time width as one of second to n-th moment values, respectively, wherein n is an integer of not less than two;

an energy spectrum evaluation unit which calculates at least two of first to n-th ratios of the first to n-th moment value outputted from the first to n-th moment calculation units, respectively, to the average current value calculated by the current measurement instrument, and evaluates energy spectrum of the radiation by a matrix operation using the calculated ratios and a response matrix corresponding to the calculated ratios.

Priority Claims (2)
JP 2001-093306 · Mar 28, 2001 · national
JP 2002-046788 · Feb 22, 2002 · national
Continuity (3)
Division 1084435000 · May 13, 2004
Division 1010689500 · Mar 27, 2002
Related Publication 20060126776A1 · Jun 15, 2006