摘要:
A removable gas supply (12) for a weapon simulator (10), wherein the gas system cycles the bolt (32) or slide (32) of the simulator (10) to provide recoil, actuate a hammer/trigger mechanism (34) and provide realism of the original weapon functions. The weapon simulator (10) has a housing (11) defining a piston chamber (59) and a piston (58) positioned in said chamber and connected to the bolt (32). The simulator (10) also includes a valve chamber (47) in the housing (11) connected with said regulated gas supply (12) and said bolt (32), and a recoil valve (46) positioned in the valve chamber (47) to control the release of gas from said regulated gas supply (12) to said piston chamber (59) to generate recoil in the weapon simulator (10).
摘要:
A method for automatically predicting the cause of suboptimal shooting is provided. In some embodiments, the method comprises: providing a plurality of good example reference data to an evaluation function; providing a plurality of bad example reference data to the evaluation function; obtaining training data of a trainee's shot dispersion data; obtaining training data from at least one sensor mounted on the trainee's gun; using the evaluation function to classify the training data as good or bad; and, displaying the classification on a screen as feedback.
摘要:
A weapon simulator assembly (10) having a wireless module (16) provided in a simulated weapon (12) to maximize the freedom of movement for the user and to provide complete diagnostics from electronic sensors (18) for users of the firearms training simulator (12). The wireless module (16) is embedded in the simulated weapon (12) used in the simulator assembly (10) and connected to various sensors to obtain operational information. The wireless data communication link is a wireless module (16) using a frequency hopping spread spectrum technology such that the wireless module (16) can fit in a small firearm simulator (12), such as a handgun or chemical spray simulator.
摘要:
A weapon simulation system includes a simulated weapon and simulated munition, with the simulated weapon being in electrical communication with a primary simulation computer and an instructor computing station. The simulated munition includes an RPID tag installed therein, with the RFID tag having information about the particular simulated munition. When the simulated munition is placed in an insert in the simulated weapon, an RFID transceiver in the simulated weapon will read the information from the RFID tag using an antenna, and further transmit the identification information of the simulated munition to a weapon controller. The weapon controller is further in electrical communication with a primary simulation computer generating a simulation, which is in electrical communication with an instructor computer.