System and method for decoy management

US2016298932A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016298932-A1
Application numberUS-201615158028-A
CountryUS
Kind codeA1
Filing dateMay 18, 2016
Priority dateJul 9, 2014
Publication dateOct 13, 2016
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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Abstract

Official abstract text for this publication.

System and method for determining which decoys should not be deployed based on the locations of the nearby high value units and other considerations. The system and method can visualize and manage the employment of decoys in a multi-platform environment by plotting the predicted path of decoys relative to high value unit (HVU) motion, and highlighting any situations that exist where the decoys (both air-drifting and self-propelled) launched from a platform can direct an incoming threat towards a high value unit. The system and method can develop, display, and automatically transmit a recommendation to launch or not launch a specific decoy.

First claim

Opening claim text (preview).

What is claimed is: 1 . A computer method for managing a decoy comprising: (a) determining a decoy-minimum-distance threshold for the decoy; (b) determining a high value unit (HVU) location of an HVU relative to a launch platform of the decoy; (c) automatically calculating, by a specially-programmed computer, line extending from a threat through the HVU location, and continuing beyond the HVU location; (d) automatically calculating, by said or another specially-programmed computer, a decoy trajectory of the decoy; (e) automatically calculating, by one of said or another specially-programmed computer, an HVU minimum distance from the decoy trajectory to the HVU location; (f) automatically calculating, by one of said or another specially-programmed computer, a line minimum distance from the decoy trajectory to the line; and (g) automatically determining, by one of said or another specially-programmed computer, whether or not the HVU minimum distance and/or the line minimum distance are smaller than the decoy-minimum-distance threshold. 2 . The method as in claim 1 further comprising: providing a recommendation based on the determining. 3 . The method as in claim 2 wherein the recommendation comprises a decoy launch recommendation. 4 . The method as in claim 1 wherein the decoy comprises an air-drifting decoy, the air-drifting decoy having decoy characteristics including the lifetime of the air-drifting decoy, and time of flight of the air-drifting decoy. 5 . The method as in claim 1 wherein the decoy comprises a self-propelled decoy, the self-propelled decoy having decoy characteristics including a separation velocity of the self-propelled decoy. 6 . The method as in claim 5 further comprising: automatically calculating the decoy trajectory based on flight trajectory of the self-propelled decoy. 7 . The method as in claim 1 further comprising: determining a threat bearing of the threat. 8 . The method as in claim 1 further comprising: providing values of the decoy trajectory at pre-selected time intervals. 9 . The method as in claim 1 wherein the indication comprises a notification to an operator. 10 . The method as in claim 9 wherein the notification comprises a display including highlighting the decoy launch platform having the HVU minimum distance below the decoy-minimum-distance threshold. 11 . The method as in claim 1 wherein the indication comprises an electronic message to decoy launch platform of the decoy, the decoy launch platform being associated with the HVU minimum distance below the decoy-minimum-distance threshold. 12 . A computer system for managing decoy comprising: a decoy characteristics processor, executing on a specially-programmed computer, determining decoy characteristics and a decoy-minimum-distance threshold for the decoy; an HVU characteristics processor, executing on said or another specially-programmed computer, determining an HVU location of an HVU relative to a decoy launch platform of the decoy; a trajectory processor automatically calculating, by one of said or another specially-programmed computer, a decoy trajectory of the decoy, a threat processor automatically calculating, by one of said or another specially-programmed computer, a set of lines extending from a direction of a threat through the HVU location, and continuing beyond the HVU location, the threat processor automatically calculating, by one of said or another computer, an HVU minimum distance from the decoy trajectory to the HVU location, the threat processor automatically calculating, by one of said or another computer, a line minimum distance from the decoy trajectory to each line of the set of lines; and a threshold processor automatically determining, by one of said or another specially-programmed computer, an indication whether any of the HVU minimum distance and the line minimum distance are smaller than the decoy-minimum-distance threshold. 13 . The system as in claim 12 wherein the threshold processor comprises: providing a recommendation based on the determining. 14 . The system as in claim 13 wherein the recommendation comprises a decoy launch recommendation. 15 . The system as in claim 12 wherein the decoy comprises an air-drifting decoy, the air-drifting decoy being associated with a lifetime and a time of flight. 16 . The system as in claim 12 wherein the decoy comprises a self-propelled decoy, the self-propelled decoy being associated with a separation velocity. 17 . The system as in claim 12 wherein the trajectory processor comprises: automatically calculating the decoy trajectory based on a flight trajectory of the self-propelled decoy; automatically determining a threat bearing of the threat; and providing values of a decoy trajectory at pre-selected time intervals. 18 . (canceled) 19 . The system as in claim 12 wherein the indication comprises: a display including highlighting the decoy launch platform having the HVU minimum distance below the decoy-minimum-distance threshold. 20 . The system as in claim 12 wherein the indication comprises: an electronic message to the decoy launch platform of the decoy, the decoy launch platform being associated with the HVU minimum distance below the decoy-minimum-distance threshold. 21 . The system as in claim 12 , wherein the decoy trajectory of the decoy is calculated based on the direction and launch time of the decoy, bearing from the HVU at a decoy launch time of the decoy, course and speed of the HVU, course, range, and speed of the decoy launch platform, wind direction and speed at the decoy launch platform, and decoy characteristics.

Assignees

Inventors

Classifications

  • Preparatory measures taken before the launching of the guided missiles · CPC title

  • Airborne targets, e.g. drones, kites, balloons {(aircraft for towing targets B64D3/02)} · CPC title

  • F41G7/224Primary

    Deceiving or protecting means (jamming or anti-jamming of radio-wave systems in general G01S7/36, G01S7/38; defense installations in general F41H11/02; chaff dispensers F42B12/70) · CPC title

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What does patent US2016298932A1 cover?
System and method for determining which decoys should not be deployed based on the locations of the nearby high value units and other considerations. The system and method can visualize and manage the employment of decoys in a multi-platform environment by plotting the predicted path of decoys relative to high value unit (HVU) motion, and highlighting any situations that exist where the decoys …
Who is the assignee on this patent?
Us Gov Sec Navy
What technology area does this patent fall under?
Primary CPC classification F41G7/224. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Thu Oct 13 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).