Interaction method of intelligent target system for firing training
An interactive method and target technology, applied in the field of shooting training targets, can solve the problems of high layout cost, limited use environment, and poor improvement effect of trainers, so as to improve real combat capability, flexible and wide application scenarios, and simplify combat drills environmental effects
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Embodiment 1
[0032] combine Figure 1-Figure 2 Shown, the interactive method of the intelligent target system that is used for shooting training of the present invention, it comprises:
[0033] S1: provide a three-dimensional air imaging device 20, the three-dimensional air imaging device emits light according to the three-dimensional imaging data stored or shared by other devices, and uses air as a light curtain to project on the air, and forms a virtual three-dimensional target image or a three-dimensional scene image;
[0034] S2: Provide entity shooting device 10, for the trainer to hold and control excitation;
[0035] S3: provide a central processing module 30, used to calculate the impact point of the bullet fired by the physical shooting device and the virtual three-dimensional target image, and control the three-dimensional air imaging device to switch the virtual three-dimensional target according to the specific position of the impact point on the virtual three-dimensional targe...
Embodiment 2
[0047] Such as Figure 4 As shown, the main difference between this embodiment and Embodiment 1 is that in this embodiment, in order to facilitate the central processing module 30 to calculate the impact point of the bullet of the physical shooting device 10 on the virtual three-dimensional target image, it is necessary to use a bullet trajectory tracking device. 40A. The bullet trajectory tracking device 40A can capture the bullet's historical flight trajectory, and the central processing module 30 predicts the impact point of the bullet on the virtual three-dimensional target image according to the bullet's historical flight trajectory. This bullet track chasing device 40A can be separately arranged on the support on one side of the training field. . The bullet trajectory tracking device 40A includes a wireless transmitter capable of transmitting information to the central processing module 30 . Preferably, the bullet trajectory tracking device 40A can be set as an infrar...
Embodiment 3
[0049] Such as Figure 5 As shown, the main difference between this embodiment and Embodiment 1 is that in this embodiment, in order to facilitate the central processing module 30 to calculate the impact point of the bullet of the physical shooting device 10 on the virtual three-dimensional target image, it is necessary to use a sensor for sensing the virtual 3D target image. The sensing device 40B for the change of the three-dimensional target image. In this embodiment, the air imaging effect is mainly affected by the physical properties of the air and the high-speed high-heat bullet directly affects the physical properties of the air. The sensing device 40B senses the change of the virtual three-dimensional target image and sends the sensing results to The central processing module 30 calculates the impact point of the bullet on the virtual three-dimensional target image by the central processing module 30 . The sensing device 40B is separately arranged beside the virtual t...
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