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Mechanical equipment visual interaction and equipment state monitoring system and method based on augmented reality

A technology of augmented reality and mechanical equipment, applied in the direction of image data processing, instruments, etc., can solve problems such as backwardness, backward design methods, and failure to apply interactive motion simulation and product analysis technology, so as to improve operation quality and efficiency, Reduce the effect of monitoring wiring

Pending Publication Date: 2019-12-20
SHANGHAI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The design methods used by many machinery companies are relatively backward, and advanced interactive motion simulation and product analysis technologies have not been used
The optimization of mechanical equipment can achieve excellent results through the use of advanced visualization technologies such as augmented reality and virtual reality. However, in the machinery industry, there are few applications in product optimization, and the traditional methods are backward.
For equipment sales, most enterprises in the machinery industry still stay in the traditional procurement mode. Order customization is the trend of market development. Providing users with customizable parameter option settings will be more competitive in the market, but the machinery industry has not yet adopt this model

Method used

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  • Mechanical equipment visual interaction and equipment state monitoring system and method based on augmented reality
  • Mechanical equipment visual interaction and equipment state monitoring system and method based on augmented reality

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Experimental program
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Effect test

Embodiment 1

[0021] figure 1 A mechanical equipment visual interaction and equipment status monitoring system based on augmented reality technology is shown, which is characterized in that it consists of four modules, namely equipment data module, AR system server module, mobile application terminal module and real equipment scene module, The equipment data module collects and summarizes the state parameter data of mechanical equipment, wirelessly transmits it to the AR system server module, and performs model processing and data superposition in the AR system server module, constructs an AR virtual scene, and transmits the AR virtual scene through the network according to the requirements of the mobile application module The command sends the corresponding scene content, and the camera on the mobile application side captures the scene image of the real device scene module, recognizes the graphic identification code, estimates the pose and tracks the logo map, provides visual human-computer...

Embodiment 2

[0027] figure 2 The design method of visual interaction of mechanical equipment and equipment status monitoring based on augmented reality is divided into three parts: model construction, augmented reality display, UI control and interaction.

[0028] 1) Model construction

[0029] The model construction part is the basic part to realize the overall plan. Before development, it is first necessary to have all the mechanical 3D models required for development, including 3D model establishment and processing, animation production and production of product motion simulation actions, through the combination of multiple software , and finally converted to a compatible file format supported by Unity 3D and ThingWorx Studio and imported into it, and then use the development engine to create scenes and construct actions and information parts.

[0030] 2) Augmented reality display

[0031] The enhanced display display part is the core part. After completing a series of preparations f...

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Abstract

The invention discloses a mechanical equipment visual interaction and equipment real-time monitoring system and method based on augmented reality, and the system consists of four modules: an equipmentdata module, an AR system server module, a mobile application end module, and a real equipment scene module. The equipment data module collects and summarizes mechanical equipment state parameter data, and transmits data to the AR system server module through a wireless network. Model processing and data superposing work is completed in the AR system server. An equipment AR virtual scene is constructed, corresponding scene contents are sent to the AR virtual scene according to the requirements of a mobile application terminal module. A scene image and a graphic identification code of a real equipment scene are shot by a camera of a mobile application terminal, to match a tracking identifier, provide man-machine interaction, render the scene, and output an AR image. According to the invention, through augmented reality interaction management of production field equipment, the difficulty and error source of daily operation are reduced, and the operation quality and efficiency of the equipment in a production environment are improved.

Description

technical field [0001] The invention relates to the field of visual interaction and monitoring of mechanical equipment, in particular to a system and method for visual interaction and equipment status monitoring of mechanical equipment based on augmented reality technology. Background technique [0002] In the contemporary business environment, the application of Internet technology and information technology is rapid, but the machinery industry is facing a serious lag in development. The design methods used by many machinery companies are relatively backward, and advanced interactive motion simulation and product analysis technologies have not been used. The optimization of mechanical equipment can achieve excellent results through the use of advanced visualization technologies such as augmented reality and virtual reality. However, in the mechanical industry, there are few applications in product optimization, and the traditional methods are backward. For equipment sales,...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06T19/00
CPCG06T19/006
Inventor 封博文刘丽兰万翔张祥玉董梦瑶徐涛郭凯
Owner SHANGHAI UNIV
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