Nova Patents
EP1558947B1

X-ray backscatter mobile inspection van

Abstract

This record has no abstract on file.

EP1558947B1, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 3 November 2023, 2.9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

18 claims: 3 independent, 15 dependent

  1. 1
    An inspection system for inspecting an object (12), the system comprising:a. an enclosed conveyance (10) having an enclosing body (14);b. a source (30) of penetrating radiation contained entirely within the body (14) of the enclosed conveyance for generating penetrating radiation;c. a spatial modulator for forming the penetrating radiation into a beam (24) for irradiating the object (12) with a time-variable scanning profile;d. a detector module (100) for generating a scatter signal based on penetrating radiation scattered by contents of the object (12);and e. a controller (40) for ascertaining a specified characteristic of the contents of the object (12) based at least on the scatter signal, f. the detector module is contained entirely within the body of the enclosed conveyance while the conveyance is in motion during the course of inspection, characterised in that the system further comprises a relative motion sensor (18) for generating a relative motion signal based on a relative motion of the enclosed conveyance (10) and the inspected object (12).
  2. 2
    An inspection system in accordance with claim 1, further comprising a motion sensor for generating a signal based on a motion of the enclosed conveyance (10) with respect to a stationary inspected object (12).
  3. 3
    An inspection system in accordance with claim 1, further comprising an image generator for forming the signal into an image of the contents of the object based in part on the scatter signal and the relative motion signal.
  4. 4
    An inspection system in accordance with any of claims 1 to 3, wherein the conveyance (10) is a vehicle capable of road-travel.
  5. 5
    An inspection system in accordance with claim 1, wherein the source (30) of penetrating radiation is an x-ray tube (32) having an axis.
  6. 6
    An inspection system in accordance with claim 1, wherein the source (30) of penetrating radiation is a unipolar x-ray tube (32).
  7. 7
    An inspection system in accordance with claim 1, wherein the source (30) of penetrating radiation is an x-ray tube (32) limited to emission of x-rays below 350 keV.
  8. 8
    An inspection system in accordance with claim 1, wherein the spatial modulator includes a rotating chopper wheel (34).
  9. 9
    An inspection system in accordance with claim 5, wherein the spatial modulator includes a perforated hub (34) capable of rotation about an axis substantially coaxial with the axis of the x-ray tube (32).
  10. 10
    An inspection system in accordance with claim 1, wherein the source (30) of penetrating radiation emits radiation to one side of the enclosed conveyance (10).
  11. 11
    An inspection system in accordance with claim 1, wherein the source (30) of penetrating radiation emits radiation to two sides of the enclosed conveyance (10).
  12. 12
    An inspection system in accordance with claim 1, further comprising a detector for detecting radiation emitted by contents of the object (12).
  13. 13
    An inspection system in accordance with claim 12, wherein the detector for detecting radiation emitted by contents of the object (12) is sensitive to neutrons.
  14. 14
    An inspection system in accordance with claim 12, wherein the detector for detecting radiation emitted by contents of the object (12) is sensitive to gamma rays.
  15. 15
    An inspection system in accordance with claim 1, wherein the relative motion sensor (18) is chosen from the group of sensors including radar, ultrasound, optical, laser, and LIDAR sensors.
  16. 16
    A method for inspecting an object (12) of inspection with penetrating radiation, the method comprising:a. generating a beam (24) of penetrating radiation originating entirely within the body (14) of an enclosed conveyance;b. scanning the penetrating radiation across the object (12) with a time-variable scanning profile;c. detecting penetrating radiation scattered by the object (12) and generating a scatter signal;d. ascertaining a specified characteristic of the contents of the object (12) based at least on the scatter signal, and e. the step of detecting penetrating radiation is carried out entirely within the body (14) of the enclosed conveyance while the conveyance is in motion during the course of inspection, characterised by generating a relative motion signal based on a relative motion of the enclosed conveyance and the inspected object.
  17. 17
    A method in accordance with claim 16, further comprising:forming an image of the contents of the object (12) based in part on the scatter signal and the relative motion signal.
  18. 18
    A method in accordance with claim 16, further comprising:directing the penetrating radiation based at least in part on the relative motion signal.
Independent claims18