IP Library › Granted Patent US 9,983,317
Granted Patent B2
US 9,983,317 · App. 15/198,614 · Granted May 29, 2018

Signal processing device and radiation measurement device

Inventors: Yasuyuki Masunaga (Kawasaki, JP); Takamasa Asano (Kawasaki, JP); Kazuhiro Koizumi (Kawasaki, JP)
Assignee: FUJI ELECTRIC CO., LTD.
G01T1/18G01T1/023G01T1/17
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Quick Facts
Patent No.
US 9,983,317
App. No.
15/198,614
Granted
May 29, 2018
Kind
B2
Abstract

A signal processing device for detecting a weak signal in an input signal. The device includes first and second pulse detectors and a determining circuit. The first pulse detector adds noise to the input signal, and processes the noise-added signal using a first threshold, to thereby output a first signal having a first pulse waveform component, which corresponds to an interval in which a level of the noise-added input signal exceeds the first threshold. The second pulse detector receives the input signal in parallel with the first pulse detector, and processes the input signal using a second threshold, to thereby output a second signal having a second pulse waveform component, which corresponds to an interval in which a level of the input signal exceeds the second threshold. The determining circuit determines whether each of the first and second pulse waveform components conforms to the weak signal.

Claims (31)

1. A radiation measurement device, comprising:

a radiation detector configured to generate a detection signal containing a weak signal in accordance with energy of an incident radiation thereof;

a signal processor configured to receive the detection signal from the radiation detector and detect the weak signal from the detection signal, the signal processor includes:

a first pulse detector configured to

receive the detection signal,

add noise to the received detection signal, and

process the noise-added detection signal using a first threshold, to thereby output a first threshold processing signal having a first pulse waveform component, which corresponds to an interval in which a level of the noise-added detection signal exceeds the first threshold,

a second pulse detector configured to

receive the detection signal in parallel with the first pulse detector, and

process the detection signal using a second threshold, to thereby output a second threshold processing signal having a second pulse waveform component, which corresponds to an interval in which a level of the detection signal exceeds the second threshold, and

a determining circuit configured to determine whether each of the first and second pulse waveform components conforms to the weak signal; and

a dosimeter configured to calculate a radiation dose based on an output signal from the signal processor, by respectively applying first and second dose coefficients to the first and second pulse waveform components.

2. The radiation measurement device of claim 1 , wherein the first and second dose coefficients are provided in accordance with an amplification level of the weak signal at the first and second pulse detectors, respectively.

3. The radiation measurement device of claim 2 , wherein the determining circuit selects the second pulse waveform component upon determining that both the first and second pulse waveform components conform to the weak signal.

4. The radiation measurement device of claim 3 , wherein

the first threshold processing signal has a plurality of first pulse waveform components,

the second threshold processing signal has a plurality of second pulse waveform components, and

the signal processor further includes a pulse counter configured to separately count the plurality of first pulse waveform components and the plurality of second pulse waveform components, responsive to the determination by the determining circuit that the plurality of first and second pulse waveform components both conform to the weak signal.

5. The radiation measurement device of claim 2 , wherein

the first threshold processing signal has a plurality of first pulse waveform components,

the second threshold processing signal has a plurality of second pulse waveform components, and

the signal processor further includes a pulse counter configured to separately count the plurality of first pulse waveform components and the plurality of second pulse waveform components, responsive to the determination by the determining circuit that the plurality of first and second pulse waveform components both conform to the weak signal.

6. The radiation measurement device of claim 1 , wherein the determining circuit selects the second pulse waveform component upon determining that both the first and second pulse waveform components conform to the weak signal.

7. The radiation measurement device of claim 6 , wherein

the first threshold processing signal has a plurality of first pulse waveform components,

the second threshold processing signal has a plurality of second pulse waveform components, and

the signal processor further includes a pulse counter configured to separately count the plurality of first pulse waveform components and the plurality of second pulse waveform components, responsive to the determination by the determining circuit that the plurality of first and second pulse waveform components both conform to the weak signal.

8. The radiation measurement device of claim 1 , wherein

the first threshold processing signal has a plurality of first pulse waveform components,

the second threshold processing signal has a plurality of second pulse waveform components, and

the signal processor further includes a pulse counter configured to separately count the plurality of first pulse waveform components and the plurality of second pulse waveform components, responsive to the determination by the determining circuit that the plurality of first and second pulse waveform components both conform to the weak signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2016
From: MASUNAGA, YASUYUKI; ASANO, TAKAMASA; KOIZUMI, KAZUHIRO
To: FUJI ELECTRIC CO., LTD.
Reel/Frame 039549/0542 →
Priority Claims (1)
JP 2015-165600 · Aug 25, 2015 · national
Continuity (1)
Related Publication 20170059718A1 · Mar 2, 2017