Munitions success information system

6453790
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Inventors

Cesulka, John L.
Williamson, Kenneth J.

Application #

832454

Filed

Apr-12-2001

Published

Sep-24-2002

Current US Class

089/1.1
089/1.11
102/293
102/382
102/473
102/501

International Classes

B64D 001/04

Field of Search

89/1.11 89/1.1 102/473 102/501 102/293 102/382

Assignee

The United States of America as represented by the Secretary of the Air (Washington, DC)

Examiners

Eldred; J. Woodrow

Attorney, Agent or Firm

Hollins; Gerald B., Kundert; Thomas L.

US Patent References

4375192   Programmable fuze
4448106   Method of identifyi...
4455939   Impact fuze with fli...
4480550   Relative velocity se...
4580498   Fuze actuating syst...
4638130   Acceleration sensor
4667598   Method and appar...
4679748   Cannon-launched...
4694752   Fuze actuating met...
4703693   Apparatus for contr...
4742305   Method for construc...
4799427   Projectile ignition d...
5064151   Assured crew retur...
5255608   Real-time identific...
5339742   Target detection an...
5467681   Cannon launched r...
5537909   All-aspect bomb da...
5698814   Hard target penetr...
5721421   Apparatus and met...
5829519   Subterranean ante...
6151276   Echo-ranging elect...
6380906   Airborne and subte...
 

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Abstract
A system for communicating hardened, buried target arrival-related data from an airborne warhead device to a remote mission analysis location is disclosed. The communicated information especially relates to impact deceleration events encountered by a hardened target penetration warhead, events arising from the warhead impacting with the earth and then with one or more layers of hardening material such as concrete disposed in or adjacent a subterranean target. Verification of warhead detonation may also be included in the communicated data. The system includes ultra high radio frequency communication from the subterranean warhead to a repeater apparatus disposed at or above the point of warhead earth impact followed by conventional signal relaying of the collected warhead experience data from the repeater to a remote mission analysis facility. Utilization of the system to verify effective neutralization of targets, even targets remaining visually obscured throughout an identification, strike and reconnaissance sequence, is disclosed along with the capability of such a system to limit the need for dangerous subsequent strikes against the same target.
 
Claims
We claim:

1. Subterranean communicating munitions damage assessment apparatus comprising the combination of:

an obstruction-penetrating munitions warhead having a frontal target engaging portion, a munitions explosive material-container portion and a rearward electrical circuit containment portion;

ultra high radio frequency energy signal generator electrical circuit apparatus contained in a physical shock attenuating suspension in said electrical circuit containment portion of said munitions warhead;

a source of direct current electrical energy contained in physical shock attenuating suspension in said electrical circuit containment portion of said munitions warhead and including energizing connection with said ultra high radio frequency energy generator circuit apparatus;



Description
BACKGROUND OF THE INVENTION

When conducting military operations, and particularly airborne military operations, against an underground hardened target it is often difficult to assess the degree of success achieved in neutralizing the target from further enemy use. The outward manifestations of a "smart bomb" target neutralization that are now familiar to many television viewers (from the video images originating in the early 1990's "Desert Storm" campaign, images wherein a guided bomb is directed into the ventilation shaft of a multi story building and its successful detonation appraised by way of smoke plumes emerging from lower story windows of the building), are often not a usable indicator of intended results when the target is a buried concrete bunker or a munitions magazine or other underground structure. Even in World War II it was common practice to protect such targets with several feet of reinforced concrete (e.g. the German North Sea submarine pens) and to bury this concrete under a sufficient thickness of earth to preclude outward manifestations of an internal munitions detonation event.
 
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