AU2003256802B2

Wireless data communication link embedded in simulated weapon systems

Abstract

A weapon simulator assembly having a wireless module provided in a simulated weapon to maximize the freedom of movement for the user and to provide complete diagnostics from electronic sensors for users of the firearms training simulator. The wireless module is embedded in the simulated weapon used in the simulator assembly and connected to various sensors to obtain operational information. The wireless data communication link is a wireless module using a frequency hopping spread spectrum technology such that the wireless module can fit in a small firearm simulator, such as a handgun or chemical spray simulator.

AU2003256802B2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Expired 24 July 2023, 3.2 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

28 claims: 18 independent, 10 dependent

  1. 1
    THE CLAIMS DEFINING THE INVENTION ARE AS FOLLOWS:- 1. A weapon simulator assembly having a wireless connection to a central processing unit providing free motion for a user of said weapon simulator assembly, the central processing unit having a first wireless transceiver, said weapon simulator 5 assembly comprising: an untethered simulated small arms weapon having a frame;a trigger sensor mounted within said simulated small arms weapon to generate a corresponding trigger sensor signal;a magazine sensor mounted within said simulated small arms weapon to generate 10 a magazine sensor signal corresponding to the connection of a magazine with said frame of said simulated small arms weapon;and a wireless module mounted within said simulated small arms weapon in continuous electrical communication with said trigger sensor and said magazine sensor to receive said trigger sensor signal and said magazine sensor signal, said wireless 15 module having a second wireless module transceiver;and wherein said second wireless transceiver of said wireless module transmits said trigger sensor signal and said magazine sensor signal to the first wireless transceiver using a radio frequency based transmission.
  2. 4
    The weapon simulator assembly as described in any one of the preceding claims further comprising sensor interface electronics, said sensor interface electronics 25 connecting said trigger sensor and said magazine sensor with said wireless module within said simulated small arms weapon.
  3. 5
    The weapon simulator assembly as described in any one of the preceding claims wherein the radio frequency of data transmitted from said wireless transceivers is substantially within the 2.4 GHz band. 2003256802 30 Jun 2009 - ii -
  4. 6
    The weapon simulator assembly as described in any one of the preceding claims further comprising aiming means for determining the position of said simulated small arms weapon.
  5. 8
    The weapon simulator assembly as described in claim Ί further comprising laser interface electronics, said laser interface electronics connecting said wireless module with said laser module.
  6. 9
    The weapons simulator assembly as described in any one of the preceding claims
  7. 10
    10 further comprising a microcontroller connected to said simulated small arms weapon. 10. The weapon simulator assembly as described in claim 9 further comprising a power supply connected to said microcontroller.
  8. 11
    The weapon simulator assembly as described in any one of the preceding claims further comprising an antenna within said simulated small arms weapon connected to 15 said wireless module.
  9. 12
    The weapon simulator assembly as described in any one of the preceding claims wherein said trigger sensor comprises a mechanical switch.
  10. 13
    The weapon simulator assembly as described in any one of the preceding claims wherein said simulated small arms comprises a crew-served weapon housing. 20
  11. 14
    The weapon simulator assembly as described in any one of the preceding claims wherein said simulated small arms weapon comprises a firearm housing.
  12. 15
    A wireless weapon simulating system comprising:a central simulation computer;a man-portable weapon simulator having a frame and a magazine connected to 25 said frame;a trigger sensor connected to said frame for monitoring the operation of said man-portable weapon simulator, wherein said trigger sensor generates a trigger sensor signal;2003256802 30 Jun 2009 -12a magazine sensor connected to said frame for monitoring the connection of a operation of said man-portable weapon simulator, wherein said trigger sensor generates a trigger sensor signal;and a wireless module having a transceiver, said wireless module mounted to said 5 frame within said man-portable weapon simulator, said wireless module electronically linked to said trigger sensor to receive said trigger sensor signal and to said magazine sensor to receive said magazine sensor signal;wherein said wireless module transmits said trigger sensor signal and said magazine sensor signal to said central simulation computer and receives commands from 10 said central simulation computer using a radio-frequency transmission.
  13. 18
    A method for monitoring the status of a man-portable weapon simulator having a discrete weapon housing using a central processing unit, said method comprising the steps of:a) continuously monitoring a variety of sensors mounted in the housing of the man-portable weapon simulator with a detection unit mounted within the housing;20 b) generating sensor signals from said variety of sensors to said detection unit within the man-portable weapon simulator corresponding to the state of said respective sensors said simulated man portable weapon;and c) wirelessly transmitting said sensor signals from a wireless module in said detection unit having a wireless transceiver affixed within the man-portable weapon 25 simulator to the central processing unit using a radio-frequency based transmission.
  14. 22
    A weapon simulator assembly imparting unbound motion for a user of said weapon simulator assembly, the weapon simulator assembly having a wireless 10 connection to a first wireless transceiver of a central processing unit, wherein said weapon simulator assembly comprises:an untethered simulated handles weapon having a frame;a wireless module mounted within said frame of said simulated handles weapon, said wireless module having a second wireless module transceiver;and 15 a trigger sensor mounted within said frame of said simulated handles weapon in uninterrupted electrical communication with said wireless module: a magazine sensor mounted within said frame of said simulated handles weapon in uninterrupted electrical communication with said wireless module;wherein said second wireless transceiver of said wireless module transmits said 20 trigger sensor signal and said magazine sensor signal to the first wireless transceiver using a radio frequency based transmission.
  15. 24
    A weapon simulator assembly having a wireless connection to a central
  16. 25
    25 processing unit providing free motion for a user of said weapon simulator assembly, the central processing unit having a first wireless transceiver, said weapon simulator assembly comprising:an untethered simulated small arms weapon;at least one sensor affixed to said simulated small arms weapon to generate a 30 corresponding sensor signal;2003256802 30 Jun 2009 - 14a wireless module housed within said simulated small arms weapon, said wireless module having a second wireless module transceiver;a trigger and a trigger sensor connected to said trigger and to said wireless module in said simulated small arms weapon wherein operation of said trigger activates 5 said trigger sensor to generate said sensor signal;wherein said sensor is connected to said wireless module;and wherein said second wireless transceiver of said wireless module transmits said sensor signal to the first wireless transceiver using a radio frequency based transmission, characterised in that the weapon simulator assembly further comprises 10 aiming means comprising a laser module connected to said simulated small arms weapon and laser interface electronics, said laser interface electronics connecting said wireless module with said laser module, the laser module and laser interface electronics determining a position of said simulated small arms weapon at a time of firing the 15 weapon. 25. A method for monitoring the status of a weapon simulator by a central processing unit, said method comprising the steps of: a) providing a detection unit to monitor the state of a sensor in a simulated weapon;20 b) generating a sensor signal within said simulated weapon using said sensor, said signal corresponding to the state of said simulated weapon;c) conveying said sensor signal from said sensor to a wireless module having a wireless transceiver affixed within said simulated weapon;d) transmitting said sensor signal from said transceiver in said wireless 25 module using a radio-based transmission to the central processing unit;and e) operating a trigger of the simulated weapon to activate a trigger sensor connected to said trigger and said wireless module to generate said sensor signal;the method characterised by the steps of f) providing aiming means comprising a laser module connected to said 30 simulated small arms weapons;g) providing laser interface electronics with said laser module for connecting said wireless module with the laser module, the laser module and laser 2003256802 30 Jun 2009 - 15interface electronics for determining a position of said small arms weapon at a time of firing the weapon and h) connecting the wireless module with said laser module by laser interface electronics. 5
  17. 26
    A weapon simulator assembly substantially as herein described with reference to any one of the embodiments of the invention illustrated in the accompanying drawings and/or examples.
  18. 27
    A wireless weapon simulating system substantially as herein described with reference to any one of the embodiments of the invention illustrated in the 10 accompanying drawings and/or examples.
  19. 28
    A method for monitoring the status of a man-portable weapon simulator having a discrete weapon housing using a central processing unit substantially as herein described with reference to any one of the embodiments of the invention illustrated in the accompanying drawings and/or examples. 15 29. A method for monitoring the status of a weapon simulator by a central processing unit substantially as herein described with reference to any one of the embodiments of the invention illustrated in the accompanying drawings and/or examples. WO 2004/015356 PCT/US2003/023315 Figure 1 1/6 WO 2004/015356 PCT/US2003/023315 Figure 2 2/6 WO 2004/015356 PCT/US2003/023315 Figure 3 3/6 PCT/US2003/023315 WO 2004/015356 Figure 4 \2_ Weapon Simulator 4/6 WO 2004/015356 PCT/US2003/023315 Figure 5 5/6 PCT/US2003/023315 WO 2004/015356 6/6
Independent claims19