Claims
- 1. A method for judging the aiming error of a weapon system, which has a fire control device for tracking a target, a weapon having a weapon barrel, aiming means for aiming the weapon barrel, and a data processing facility,the method comprising the steps of: the fire control device tracking the target and the aiming means aiming the weapon barrel, an image recording device, which is moved in solidarity with the weapon barrel, repeatedly recording images of the target and its surroundings, and an image reproduction device displaying images recorded by the image recording device and a mark, this mark representing a point of an aiming line of the weapon, a deviation of an image of the target from the mark representing the aiming error of the weapon system, and the aiming of the weapon barrel being performed on the basis of a lead calculation which takes into consideration the movements of the target and a shell.
- 2. The method according to claim 1,characterized in that the fire control device repeatedly performs measurements while tracking the target, in order to detect positions of the target and instants at which the target assumes these positions, the data processing facility, in an instant selected as a calculation instant, continuously calculates the current movement state of the target, based on the measurements of the fire control device, calculates the expected future movement state of the target, based on the current movement state of the target, determines due instants and associated due positions, taking into consideration a difference of the positions of weapon and fire control device as well as the speed and the internal ballistics of usable shells, in such a way that, in the due instant, a shell which was fired in the calculation instant would arrive at the due position and the target is expected in the surroundings of the due position, upon reaching an aiming instant, makes a signal available to the aiming means of the weapon barrel, and the weapon barrel is aimed at the associated due position at latest in the due instant, the deviation corresponding to an aiming error which takes the lead calculation into consideration.
- 3. The method according to claim 2,characterized in that the aiming instant coincides with the due instant.
- 4. The method according to claim 1,characterized in that delays caused by the method are taken into consideration in calculations.
- 5. The method according to claim 1,characterized in that the difference of the position of the weapon from the position of the fire control device is measured repeatedly and changes of this difference are continuously considered in the calculations.
- 6. The method according to claim 1,characterized in that a deviation between a weapon barrel axis and an optical axis of the image recording device is established and this deviation is taken into consideration in the representation of the images recorded by the image recording device by the image reproduction device.
- 7. A device for judging the aiming errors of a weapon system, having:fire control device for tracking a target, a weapon having a weapon barrel, aiming means for aiming the weapon barrel, and a data processing facility having software, the fire control device having a sensor device, in order to measure the respective positions of the target, and the data processing facility being implemented for the purpose of repeatedly calculating the current movement state of the target, repeatedly performing a lead calculation in an instant selected as a calculation instant, in order to establish a due instant and a due position, taking into consideration the current movement state of the target and taking into consideration the speed and the internal ballistics of usable shells, in such a way that, in the due instant, a shell which was fired in the calculation instant would arrive at the due position, and the target is expected in the surroundings of the due position, this device further comprising:an image recording device, moved in solidarity with the weapon barrel, in order to record images of the target, an image reproduction device, in order to visualize the recorded images and a mark, this mark representing a point of an aiming line, a deviation of an image of the target from the mark corresponding to the aiming error of the weapon system, and additional software for the data processing facility, in order to make a signal available to the aiming means on the basis of the lead calculation, so that the weapon barrel is aimed at the due position in the due instant.
- 8. The device according to claim 7,characterized in that the weapon barrel is aimed at the due position in the due instant.
- 9. The device according to claim 7,characterized in that the image reproduction device is implemented and connected to the image recording device in such a way that the recorded images are displayed immediately.
- 10. The device according to claim 7,characterized in that the image recording device is a video camera.
- 11. The device according to claim 7,characterized in that the image recording device is positioned in such a way that an optical axis of image recording device coincides with a weapon barrel axis.
- 12. The device according to claim 7,characterized in that the image recording device is positioned in such a way that at least the direction and preferably also the position of an optical axis of the image recording device corresponds to the position of a weapon barrel axis.
- 13. The device according to claim 7,characterized in that the image recording device is temporarily attached to the weapon.
- 14. The device according to claim 7,characterized in that the image recording device is permanently attached to the weapon.
- 15. The device according to claim 7,characterized in that the image reproduction device is a monitor.
- 16. The device according to claim 7,characterized in that it includes a device for measuring a deviation of an optical axis of the image recording device from a weapon barrel axis, in order to compensate this deviation when the images made available by the image recording device are displayed.
- 17. The device according to claim 16,characterized in that the data processing unit is implemented for the purpose of performing calculations in order to determine the necessary compensations of the deviation of the optical axis of the image recording device from the weapon barrel axis when the images made available by the image recording device are displayed.
- 18. The device according to claim 7,characterized in that it has a position measurement device in order to continuously measure the change of the relative position of the weapon in the event of forward movement of the weapon relative to the fire control device, the data processing unit is implemented for the purpose of continuously considering the change of the relative position of the weapon in calculations.
- 19. The device according to claim 18,characterized in that the position measurement device is an internal device of the weapon system.
- 20. The device according to claim 18,characterized in that the position measurement device is a device which works together with external means.
- 21. The device according to claim 7,characterized in that the weapon is mounted on a vehicle and the fire control device is fixed.
- 22. The device according to claim 7,characterized in that the weapon and the fire control device are mounted on a vehicle.
- 23. The device according to claim 7,characterized in that the weapon is mounted on a vehicle which performs oscillatory and/or shaking movements and is stabilized relative to this vehicle with the aid of a stabilization device.
- 24. The method according to claim 4, wherein the delays include delays in the transmission of signals to the means for aiming the weapon barrel.
- 25. The device according to 20, wherein the external means is a GPS.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2167/01 |
Nov 2001 |
CH |
|
CROSS REFERENCE TO RELATED APPLICATION
Applicant hereby claims foreign priority under 35 U.S.C. § 119 from Swiss Patent Application No. 2001 2167/01, filed 23 Nov. 2001, the disclosure of which is herein incorporated by reference.
US Referenced Citations (10)
Foreign Referenced Citations (3)
Number |
Date |
Country |
1 152 206 |
Nov 2001 |
EP |
2077400 |
Dec 1981 |
GB |
WO 8808952 |
Nov 1988 |
WO |