A method for guiding a gun-fired or mortared round towards an intended target. The method including: capturing image data from an image pick-up device during a descent of the round; transmitting the image data to a control platform remotely located from the round; transmitting guidance information t
A method for guiding a gun-fired or mortared round towards an intended target. The method including: capturing image data from an image pick-up device during a descent of the round; transmitting the image data to a control platform remotely located from the round; transmitting guidance information to the round from the remote platform based on the captured image data; varying a flight path of the round based on the guidance information to guide the round towards its intended target.
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1. A method for guiding one or more of a gun-fired round or a mortared round towards an intended target, the method comprising: picking-up image data from an image pick-up device during a descent of the round;transmitting the image data to a control platform remotely located from the round;transmitt
1. A method for guiding one or more of a gun-fired round or a mortared round towards an intended target, the method comprising: picking-up image data from an image pick-up device during a descent of the round;transmitting the image data to a control platform remotely located from the round;transmitting guidance information to the round from the remote platform based on the picked-up image data; andvarying a flight path of the round based on the guidance information to guide the round towards its intended target. 2. The method of claim 1, wherein the transmitting of one or more of the image data and guidance information is directly received. 3. The method of claim 1, wherein the transmitting of one or more of the image data and guidance information is indirectly received. 4. The method of claim 1, wherein the picking-up picks up one of a black and white image data, color image data, infra-red image data or multi-pixel image data. 5. The method of claim 1, further comprising slowing a descent of the round. 6. The method of claim 5, wherein the slowing of the descent of the round is variable. 7. The method of claim 1, wherein the varying includes controlling one or more of a controllable fin or controllable canard disposed on the round. 8. The method of claim 1, wherein the varying includes controlling one or more thrusters positioned on the round. 9. The method of claim 1, further comprising processing the image data to at least reduce a rotation or translation of the image data on a display. 10. The method of claim 1, further comprising reducing a spin or translation of the round during descent. 11. The method of claim 1, further comprising generating the guidance information by manually directing the round towards the intended target based on the image data displayed on a display. 12. The method of claim 1, further comprising generating the guidance information through automated recognition of the intended target in the image data. 13. The method of claim 1, further comprising generating the guidance information by the operator marking the intended target on a displayed image with an input means and calculating the guidance information based on the marked image. 14. The method of claim 1, further comprising generating an arm signal with an input means and transmitting the arm signal to the round to arm a warhead in the round. 15. The method of claim 1, further comprising generating a disarm signal with an input means and transmitting the disarm signal to the round to disarm a warhead in the round. 16. The method of claim 1, further comprising transmitting position data from the round to the control platform. 17. The method of claim 16, wherein the position data is used for determining if the intended target is hit by the round. 18. The method of claim 16, wherein the position data is used for controlling the firing of subsequent rounds towards the intended target. 19. The method of claim 16, wherein the position data is used for generating the guidance information. 20. A gun-fired round or a mortared round comprising: a forward facing image pick-up device for picking-up image data;a first transceiver;guidance means for varying a flight path of the round; anda first processor;wherein the first processor transmits the image data from the image pick-up device through the first transceiver and receives guidance information to the first processor through the first transceiver and controls the guidance means based on the guidance information to guide the round towards an intended target. 21. The gun-fired or mortared round of claim 20, wherein the image pick-up device is one of a black and white camera, color camera, infra-red camera or multi-pixel camera. 22. The gun-fired or mortared round of claim 20, further comprising means for slowing the descent of the round. 23. The gun-fired or mortared round of claim 22, wherein the means for slowing the descent of the round is parachute deployable from the round. 24. The gun-fired or mortared round of claim 23, further comprising explosive fasteners for releasably fixing the parachute to the round. 25. The gun-fired or mortared round of claim 20, wherein the guidance means includes one or more of a controllable fin or controllable canard disposed on the round. 26. The gun-fired or mortared round of claim 25, wherein each of the fin or canard is associated with an actuation means for moving the associated fin or canard. 27. The gun-fired or mortared round of claim 26, wherein the actuation means is one of an electrical motor or actuation device. 28. The gun-fired or mortared round of claim 20, wherein the guidance means includes one or more thrusters positioned on the round. 29. The gun-fired or mortared round of claim 20, further comprising a GPS receiver operatively connected to the first processor.
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Schneider Arthur J. (AZ) Small James G. (AZ) French Donald E. (Westlake CA) August Henry (Tucson AZ), All-aspect bomb damage assessment system.
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