IP Library › Granted Patent US 10,636,274
Granted Patent B1
US 10,636,274 · App. 16/237,925 · Granted Apr 28, 2020

Reconfigurable enclosure system with barrier continuity loop intrusion detection

Inventors: James M. Lynn (Woodinville, WA); Gerald Pollard (Snohomish, WA)
Assignee: The Boeing Company
G08B21/185G08B7/06H01R24/20H01R24/28H03K5/24H01R13/04H01R13/10H01R13/6205H01R2101/00
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Quick Facts
Patent No.
US 10,636,274
App. No.
16/237,925
Granted
Apr 28, 2020
Kind
B1
Abstract

An enclosure system including barrier segments and at least one electrical cable coupled to each barrier segment. Each electrical cable having electrical connectors disposed at each of a first terminus and a second terminus of the electrical cable. Each electrical connector is releasably coupled to another electrical connector of an adjacent electrical cable to form at least one continuity loop through the barrier segments. Each continuity loop includes two electrical terminal ends disposed at free ends of the continuity loop. A comparator system is coupled to a respective continuity loop and is configured to generate a closed loop signal when electrical current flows to the comparator system from one of the two electrical terminal ends of the respective continuity loop, and an open loop signal when electrical current ceases to flow to the comparator system from the one of the two electrical terminal ends of the respective continuity loop.

Claims (34)

1. An enclosure system comprising:

barrier segments;

at least one electrical cable coupled to each barrier segment, each electrical cable having electrical connectors disposed at each of a first terminus and a second terminus of the electrical cable, where

each electrical connector is configured to releasably couple to another electrical connector of an adjacent electrical cable so as to form at least one continuity loop through the barrier segments, and

each continuity loop includes two electrical terminal ends disposed at free ends of the continuity loop; and

a comparator system coupled to a respective continuity loop, the comparator system being configured to generate

a closed loop signal when electrical current flows to the comparator system from one of the two electrical terminal ends of the respective continuity loop, and

an open loop signal when electrical current ceases to flow to the comparator system from the one of the two electrical terminal ends of the respective continuity loop.

2. The enclosure system of claim 1 , further comprising a current source coupled to another one of the two electrical terminal ends of the respective continuity loop, the current source being configured to supply the electrical current to at least the respective continuity loop.

3. The enclosure system of claim 2 , wherein the current source comprises a direct current power supply.

4. The enclosure system of claim 2 , wherein the current source comprises an alternating current to direct current convertor that converts alternating current line power to direct current power.

5. The enclosure system of claim 4 , wherein the current source comprises at least one battery configured to provide the electrical current when the alternating current line power is unavailable.

6. The enclosure system of claim 5 , wherein the comparator system includes a line voltage comparator configured to indicate a loss of the alternating current line power.

7. The enclosure system of claim 1 , wherein the comparator system comprises a comparator and one or more of an aural indicator and a visual indicator, the one or more of an aural indicator and a visual indicator is configured to provide an indication of current flow receipt at the comparator.

8. The enclosure system of claim 1 , wherein the comparator system includes a comparator for each of the at least one continuity loop.

9. The enclosure system of claim 1 , wherein the comparator system is communicably coupled to an enclosure controller, the enclosure controller includes one or more of an aural indicator and visual indicator configured to indicate a break in continuity of each of the at least one continuity loop when the comparator system generates the open loop signal.

10. The enclosure system of claim 1 , wherein one or more of the barrier segments comprises at least a portion of two continuity loops spaced apart from one another on the barrier segments.

11. The enclosure system of claim 1 , wherein the comparator system is communicably coupled to an automation controller, the automation controller being configured to command shutdown of automated equipment when the comparator system generates the open loop signal.

12. A barrier system comprising:

a series of electrically coupled cables extending along at least one barrier segment, where adjacent electrical cables of the series of electrically coupled cables are electrically coupled to each other so as to form a continuity loop through the at least one barrier segment; and

a comparator system coupled to the continuity loop and being configured to generate one or more or an aural and visual indication representing continuity between the adjacent electrical cables.

13. The barrier system of claim 12 , wherein the comparator system is configured to generate

a closed loop signal when electrical current is detected by the comparator system at a terminal end of a respective continuity loop, and

an open loop signal when an absence of electrical current is detected by the comparator system at the terminal end of the respective continuity loop.

14. The barrier system of claim 12 , wherein the at least one barrier segment comprises a plurality of barrier segments serially arranged relative to one another so as to define barrier segment interfaces and the adjacent electrical cables are electrically coupled to each other at respective barrier segment interfaces.

15. The barrier system of claim 14 , wherein the plurality of barrier segments are serially arranged so as to form sides of an enclosure, each side having a respective continuity loop and the comparator system includes respective comparator for each respective continuity loop.

16. The barrier system of claim 14 , wherein a portion of a respective continuity loop for a respective side is common to both the respective side and an adjacent side.

17. The barrier system of claim 14 , wherein the plurality of barrier segments are serially arranged so as to form sides of an enclosure, where the continuity loop extends along two or more sides.

18. A method of alerting an operator of an unauthorized presence in an enclosed area, the method comprising:

disconnecting electrical connectors of adjacent electrical cables in a series of electrically coupled cables, the series of electrically coupled cables extending along at least one barrier segment, where adjacent electrical cables are electrically coupled to each other so as to form a continuity loop through the at least one barrier segment;

generating an open loop signal with a comparator system coupled to the series of electrically coupled cables, the open loop signal indicating an absence of electrical current in the series of electrically coupled cables based on a comparison, by the comparator system, of voltage at each terminal end of the series of electrically coupled cables; and

producing at least one of an aural and visual indication based on the open loop signal.

19. The method of claim 18 , further comprising generating a closed loop signal with the comparator system, the closed loop signal indicating a presence of electrical current in the series of electrically coupled cables based on a comparison, by the comparator system, of voltage at each terminal end of the series of electrically coupled cables.

20. The method of claim 19 , further comprising producing at least one of an aural and visual indication of the closed loop signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2019
From: LYNN, JAMES M.; POLLARD, GERALD
To: THE BOEING COMPANY
Reel/Frame 047892/0526 →