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Interactive somatosensory simulation equipment for upper limb training

A simulation equipment and somatosensory technology, applied in the direction of muscle training equipment, gymnastics equipment, sports accessories, etc., can solve the problems of unavailable, realistic feeling, etc., and achieve the effects of avoiding accidental injury, soft human-computer interaction behavior, and clear space range

Active Publication Date: 2022-02-01
SHANGHAI DIANJI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Simple sandbag-like hitting targets, or common undamped hand movements, do not provide a realistic feel

Method used

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  • Interactive somatosensory simulation equipment for upper limb training
  • Interactive somatosensory simulation equipment for upper limb training
  • Interactive somatosensory simulation equipment for upper limb training

Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0048] Attached below Figure 1-6 The present invention is further illustrated with specific examples.

[0049] Such as Figure 1-6 As shown, an interactive somatosensory simulation device for upper limb training, including:

[0050] The main frame, the main frame has an activity space for the user to move in, and the two sides of the main frame are provided with openings for allowing the user to freely enter and exit the activity space;

[0051] a pair of handheld components held by the user's left and right hands;

[0052] Two pairs of inclined upper stay ropes 8, each pair of upper stay ropes 8 correspond to a hand-held component, and the lower ends of each pair of upper stay ropes 8 are respectively connected to the left and right sides of the upper part of the hand-held component;

[0053] Three sets of upper damping mechanisms 10 installed on the top of the main body frame at intervals successively from left to right, from a bird's-eye view, as figure 2 As shown, ea...

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PUM

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Abstract

The invention discloses interactive somatosensory simulation equipment for upper limb training. The interactive somatosensory simulation equipment comprises a main body frame; handheld assemblies held by a left hand and a right hand of a user respectively; two pairs of inclined upper pull ropes, wherein each pair of upper pull ropes corresponds to one handheld assembly; three sets of upper damping mechanisms, which are sequentially mounted at the top of the main body frame at intervals from left to right; two pairs of inclined pull ropes, wherein each pair of pull ropes corresponds to one handheld assembly; three lower rope connecting rods sequentially mounted in the front side of the main body frame at intervals from left to right; and lower dampers, wherein each lower rope connecting rod corresponds to one lower damper. The somatosensory mechanical effect of damping during the movement of the upper limbs can be finely adjusted.

Description

technical field [0001] The invention relates to the technical field of human somatosensory simulation technology, in particular to an interactive somatosensory simulation device for upper limb training. Background technique [0002] During the interactive simulation process, visual and auditory signals can be provided by video-based devices, or devices that monitor relative displacement, angle, velocity, and acceleration (gyroscope sensors, Goneometer, etc.) or by motion capture devices that track key points of the human body to provide. The real-time feedback of visual signals and auditory signals is provided by VR, MR and other devices, or screens. Current visual cues and body gestures are well incorporated into interactive systems. However, the simulation of somatosensory related to mechanics is relatively simple. In the scenes of fighting, Tai Chi, handling, and picking, it is obviously difficult for the upper limbs to respond. [0003] In terms of the damping somatos...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A63B23/12A63B21/00
CPCA63B23/12A63B21/00
Inventor 王琦周志勇张迪杨瑞敏周旭陈佳薇
Owner SHANGHAI DIANJI UNIV
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