Target false body for boxing training, test system and working mechanism of test system
A fighting training and testing system technology, applied in the field of sports equipment, can solve the problems of inability to automatically measure and record hitting data, short service life of the target prosthesis, damage to the contact sensor, etc., so as to ensure low packet loss rate and extended use. Longevity and the effect of guaranteeing accuracy
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Embodiment 1
[0029] figure 1 A schematic structural view of the first target prosthesis used for combat training provided by the present invention is shown. The target prosthesis for combat training provided in this embodiment includes a target prosthesis body, and also includes a first processing control module, a motion sensor, and a first wireless transceiver module, wherein the first processing control modules are respectively wired The motion sensor and the first wireless transceiver module are communicatively connected; the first processing control module, the motion sensor, and the first wireless transceiver module are respectively arranged at non-impact parts of the target prosthesis body.
[0030] Such as figure 1 As shown, in the target prosthesis structure used for combat training, the target prosthesis body is specifically a hanging sandbag 101, and the top of the sandbag body of the hanging sandbag 101 is connected with a hook for hanging the sandbag body. Sandbag hanger 101...
Embodiment 2
[0038] figure 2 A schematic structural diagram of a second target prosthesis for combat training provided by the present invention is shown. This embodiment is another implementation of the target prosthesis, which is different from the target prosthesis used for combat training described in Example 1 in that: the target prosthesis body is specifically a vertical sandbag 102, in The bottom end of the sandbag body is provided with a sandbag elastic base 102a for supporting the sandbag body. The first processing control module 2, the motion sensor 3 and the first wireless transceiver module 4 are respectively arranged at the inner bottom of the sandbag body; top of the body.
[0039] Such as figure 2 As shown, since in the vertical sandbag 102, the top of the sandbag body is not constrained, it generally has the largest displacement during the hitting process, while the bottom end of the sandbag body is constrained by the elastic base 102a of the sandbag, and the sandbag bo...
Embodiment 3
[0041] image 3 It shows the first target prosthesis testing system for combat training provided by the present invention. This embodiment provides a test system based on the first target prosthesis for combat training described in Embodiment 1, including the target prosthesis for combat training described in Embodiment 1, and also includes the wireless communication connection. The wireless display screen 9 of the target prosthesis; the wireless display screen 9 includes a second wireless transceiver module, a second processing control module, a display driver module and a display, wherein the second processing control module is respectively wired and connected to the first Two wireless transceiver modules and the display driver module, the display driver module is connected to the display by wired communication.
[0042] Such as image 3 As shown, the wireless display screen 9 is a fixed electronic device separated from the target prosthesis, wherein the second wireless tr...
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