Claims
- 1. A method for deceiving active electromagnetic detectors comprising the step of:
- deploying at least one decoy at sea between an altitude between 3 and 20 meters having:
- at least one panel with a cellular structure defining a network of contiguous, identical retroreflective trihedrons,
- said structure being reversible, the contigous retroreflective trihedrons being arranged head-to-tail and after deployment defined by immediately adjacent rows of cells in alternating head-to-tail relationship wherein the edges of trihedrons comprising one row touch the edges of trihedrons comprising an immediately adjacent row, said rows being anticulated about axes for mutual pivotal movement in such a way that prior to deployment the rows are folded one on to the other with the cells of the adjacent rows fitting within and receiving one another for enclosure in a launch vehicle wherein the step of deploying comprises firing from an ammunition housing said at least one decoy associated with at least one group of balloons, said balloon groups being adapted for folding to fit inside said ammunition housing together with its associated folded decoy and providing a member for interconnecting said balloons in said group of balloons associated with each of said decoys to keep the interconnected groups in the wind after release, each of said folded balloon groups and respective folded decoys being located adjacent one another in respective cross section sectors within the ammunition housing prior to deployment.
- 2. A method for deceiving active electromagnetic detectors comprising the steps of:
- deploying at least one decoy having:
- at least one panel with a cellular structure defining a network of contiguous, identical retroreflective trihedrons,
- said structure being reversible, the contiguous retroreflective trihedrons being arranged head-to-tail and after deployment defined by immediately adjacent rows of cells in alternating head-to-tail relationship wherein the edges of trihedrons comprising one row touch the edges of trihedrons comprising an immediately adjacent row, said rows being articulated about axes for mutual pivotal movement in such a way that prior to deployment the rows are folded one onto the other with the cells of the adjacent rows fitting within and receiving one another for enclosure in a launch vehicle;
- said step of deploying further including:
- deploying the decoy at sea at an altitude of between approximately 3 and 20 meters;
- spreading a plurality of interconnected decoys in a substantially horizontal alignment, and
- providing three to ten aligned decoys, the decoys at the ends of the alignment comprising only one panel of trihedrons and at least one decoy intermediate the end decoys comprising two panels of trihedrons set at right angles to one another.
- 3. A method for deceiving active electromagnetic detectors comprising the step of;
- deploying at least one decoy having:
- at least one panel with a cellular structure defining a network of contiguous, identical retroreflective trihedrons,
- said structure being reversible, the contiguous retroreflective trihedrons being arranged head-to-tail and after deployment defined by immediately adjacent rows of cells in alternating head-to-tail relationship wherein the edges of trihedrons comprising one row touch the edges of trihedrons comprising an immediately adjacent row, said rows being articulated about axes for mutual pivotal movement in such a way that prior to deployment the rows are folded one onto the other with the cells of the adjacent rows fitting within and receiving one another for enclosure in a launch vehicle;
- said step of deploying including:
- suspending each of said decoys from at least one associated captive balloon, and
- said step of deploying further comprising firing from an ammunition housing said at least one decoy and at least one group of balloons associated with each of said decoys, said balloon groups being adapted for folding to fit inside said ammunition housing together with said at least one decoy having its respective contiguous retroreflective trihedrons arranged head-to-tail and providing a member for interconnecting said balloons in said group of balloons associated with each of said decoys to keep the interconnected group of balloons in the wind after release.
Priority Claims (1)
Number |
Date |
Country |
Kind |
81 24523 |
Dec 1981 |
FRX |
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Parent Case Info
This is a continuation of co-pending application Ser. No. 06/454,683 filed on Dec. 30, 1982 now abandoned.
US Referenced Citations (19)
Non-Patent Literature Citations (1)
Entry |
Random House Dictionary, Random House 1975, p. 1404. |
Continuations (1)
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Number |
Date |
Country |
Parent |
454683 |
Dec 1982 |
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