IP Library Granted Patent US 9,881,708
Granted Patent B1
US 9,881,708 · App. 15/485,373 · Granted Jan 30, 2018

Radiation area monitor device and method

Inventors: Matjaz Vencelj (Ljubljana, SI); Ashley C. Stowe (Knoxville, TN); Toni Petrovic (Ljubljana, SI); Jonathan S. Morrell (Farragut, TN); Andrej Kosicek (Podsreda, SI)
Assignees: Consolidated Nuclear Security, LLC; Jozef Stefan Institute; AISense d.o.o.
G21F3/00G01T1/16G01T3/00G01T7/125
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Quick Facts
Patent No.
US 9,881,708
App. No.
15/485,373
Granted
Jan 30, 2018
Kind
B1
Abstract

A radiation area monitor device/method, utilizing: a radiation sensor; a rotating radiation shield disposed about the radiation sensor, wherein the rotating radiation shield defines one or more ports that are transparent to radiation; and a processor operable for analyzing and storing a radiation fingerprint acquired by the radiation sensor as the rotating radiation shield is rotated about the radiation sensor. Optionally, the radiation sensor includes a gamma and/or neutron radiation sensor. The device/method selectively operates in: a first supervised mode during which a baseline radiation fingerprint is acquired by the radiation sensor as the rotating radiation shield is rotated about the radiation sensor; and a second unsupervised mode during which a subsequent radiation fingerprint is acquired by the radiation sensor as the rotating radiation shield is rotated about the radiation sensor, wherein the subsequent radiation fingerprint is compared to the baseline radiation fingerprint and, if a predetermined difference threshold is exceeded, an alert is issued.

Claims (20)

1. A radiation area monitor device, comprising:

a radiation sensor;

a rotating radiation shield disposed about the radiation sensor, wherein the rotating radiation shield defines one or more ports that are transparent to radiation; and

a processor operable for analyzing and storing a radiation fingerprint acquired by the radiation sensor as the rotating radiation shield is rotated about the radiation sensor;

wherein the radiation sensor comprises one or more of a gamma sensor and a neutron sensor.

2. The radiation area monitor device of claim 1 , wherein the radiation sensor comprises a dual gamma/neutron radiation sensor.

3. The radiation area monitor device of claim 1 , wherein the radiation area monitor device is operable for selectively operating in:

a first supervised mode during which a baseline radiation fingerprint is acquired by the radiation sensor as the rotating radiation shield is rotated about the radiation sensor; and

a second unsupervised mode during which a subsequent radiation fingerprint is acquired by the radiation sensor as the rotating radiation shield is rotated about the radiation sensor, wherein the subsequent radiation fingerprint is compared to the baseline radiation fingerprint and, if a predetermined difference threshold is exceeded, an alert is issued.

4. The radiation area monitor device of claim 1 , further comprising a rotation mechanism coupled to the rotating radiation shield operable for selectively rotating the rotating radiation shield disposed about the radiation sensor.

5. A radiation area monitor method, comprising:

providing a radiation sensor;

rotating a rotating radiation shield disposed about the radiation sensor, wherein the rotating radiation shield defines one or more ports that are transparent to radiation; and

analyzing and storing a radiation fingerprint acquired by the radiation sensor as the rotating radiation shield is rotated about the radiation sensor;

wherein the radiation sensor comprises one or more of a gamma sensor and a neutron sensor.

6. The radiation area monitor method of claim 5 , wherein the radiation sensor comprises a dual gamma/neutron radiation sensor.

7. The radiation area monitor method of claim 5 , wherein the radiation area monitor method is operable for selectively operating in:

a first supervised mode during which a baseline radiation fingerprint is acquired by the radiation sensor as the rotating radiation shield is rotated about the radiation sensor; and

a second unsupervised mode during which a subsequent radiation fingerprint is acquired by the radiation sensor as the rotating radiation shield is rotated about the radiation sensor, wherein the subsequent radiation fingerprint is compared to the baseline radiation fingerprint and, if a predetermined difference threshold is exceeded, an alert is issued.

8. The radiation area monitor method of claim 5 , further comprising selectively rotating the rotating radiation shield disposed about the radiation sensor using a rotation mechanism coupled to the rotating radiation shield.

Assignments (4)
CONFIRMATORY LICENSE Recorded May 5, 2017
From: CONSOLIDATED NUCELAR SECURITY, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 042251/0475 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2017
From: STOWE, ASHLEY C.; MORRELL, JONATHAN S.
To: CONSOLIDATED NUCLEAR SECURITY, LLC
Reel/Frame 041980/0557 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2017
From: VENCELJ, MATJAZ; PETROVIC, TONI
To: JOZEF STEFAN INSTITUTE
Reel/Frame 041980/0693 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2017
From: KOSICEK, ANDREJ
To: AISENSE D.O.O.
Reel/Frame 041980/0808 →