Underground pipe network teaching auxiliary system and method based on MR glasses
An underground pipe network and teaching aid technology, which is applied in educational appliances, simulation devices of space navigation conditions, and input/output processes of data processing, etc., can solve the problems of unintuitive, cumbersome, and inaccurate positioning results in the positioning process.
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Embodiment 1
[0045] Such as figure 1 As shown, the present invention provides a teaching assistant system for underground pipe network based on MR glasses, including a space perception module, a recognition comparison module, an input module, a mixed reality module and an output module;
[0046] The space perception module is used to obtain the three-dimensional scene information of the underground pipe network training site, and send the real-time three-dimensional scene information to the recognition comparison module and the output module; the space perception module is installed in the underground pipe network detection and inspection field. The position of the head of the training operator, and realize the spatial mapping and information collection of the three-dimensional scene of the training site by sensing the direction, position offset and environment depth of the operator;
[0047] The identification and comparison module is used to compare and confirm whether the current area i...
Embodiment 2
[0063] Such as figure 2 As shown, the present invention also provides a kind of MR glasses-based underground pipe network teaching assistant method, comprising the following steps:
[0064] Step 1. Obtain the 3D scene information of the underground pipe network training site in real time;
[0065] Step 2. Judging whether the current area is a mapped space based on the 3D scene information is achieved by comparing the current area with the mapping data of the storage space in the system. If it is not a mapped space, return to step 1 to continue obtaining 3D scene information. If so If the space has been mapped, go to step 3;
[0066] Step 3, obtain interactive instructions in real time;
[0067] Step 4, generate auxiliary enhanced information to be rendered according to the interactive instruction;
[0068] Step 5: Virtually render the 3D image according to the auxiliary enhancement information and the 3D scene information to form enhanced image information, and then send t...
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