CN106648062A - A Realization System of Tourist Landscape Based on Virtual Reality Technology and Framing Processing Technology - Google Patents
A Realization System of Tourist Landscape Based on Virtual Reality Technology and Framing Processing Technology Download PDFInfo
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Abstract
Description
技术领域technical field
本发明涉及虚拟现实技术领域,尤其涉及一种基于虚拟现实技术和分帧处理技术的旅游景观实现系统。The invention relates to the field of virtual reality technology, in particular to a tourist landscape realization system based on virtual reality technology and frame processing technology.
背景技术Background technique
虚拟现实技术是一种可以创建和体验的虚拟世界,用户通过仿真系统生成一种模拟环境,该环境具有多资源信息融合技术如计算图形系统和硬件系统生成的可交互的三维环境即虚拟环境。Virtual reality technology is a virtual world that can be created and experienced. Users generate a simulated environment through a simulation system. This environment has an interactive three-dimensional environment generated by a multi-resource information fusion technology such as a computing graphics system and a hardware system, that is, a virtual environment.
随着社会经济的发展,计算机成为人们生活中重要的组成部分,人机接口技术成为人们关心的重要课题。因此近几年来虚拟现实技术成为人们关注的重点,在城市规划建设中被广泛应用并带来显著利益,从而展现规划方案虚拟现实系统的沉浸感和互动感,用户在体验过程中感受到场景的真实感和逼真的感觉冲击,或者身临其境的感觉、可以通过数据接口实时获得虚拟环境中项目的相关信息,因此方便大型工程规划设计、有利于管理人员对各种方案进行辅助设计和方案评估。With the development of social economy, computers have become an important part of people's lives, and man-machine interface technology has become an important subject that people care about. Therefore, in recent years, virtual reality technology has become the focus of people's attention. It has been widely used in urban planning and construction and brought significant benefits, so as to show the immersion and interaction of the virtual reality system of the planning scheme, and the user can feel the scene in the experience process. Realistic and lifelike feeling impact, or immersive feeling, real-time access to relevant information of the project in the virtual environment through the data interface, so it is convenient for large-scale engineering planning and design, and it is beneficial for managers to assist in the design and planning of various schemes Evaluate.
目前旅游业成为当今社会的热门话题和人们精神追求的项目之一,人们通过旅游来体验不同景点的不同文化信息,从而给生活增加色彩。因此旅游业的发展突飞猛进,尤其是在景点中采用虚拟现实技术从而使用户达到更真切的体验的效果,然而目前很多旅游景点中大多采用3D眼镜简单的手段只是使用户在旅游观景过程中体验观看景物,并且有时会出现景象模糊不清晰的现象,并没有实现全面的实现虚拟现实场景的体验。At present, tourism has become a hot topic in today's society and one of the spiritual pursuits of people. People experience different cultural information of different scenic spots through tourism, thus adding color to life. Therefore, the development of the tourism industry is advancing by leaps and bounds, especially the use of virtual reality technology in scenic spots so that users can achieve a more realistic experience. However, most of the tourist attractions currently use 3D glasses. Watching the scene, and sometimes the scene is blurred and unclear, has not achieved a comprehensive experience of realizing the virtual reality scene.
发明内容Contents of the invention
根据现有技术存在的问题,本发明公开了一种基于虚拟现实技术的驾驶训练仿真系统,包括:旅游景点数据库存储单元:设置在旅游景点内存储有旅游景点的景观信息,该信息包括图像元素库、声音元素库、编辑模块和无线通信模块,所述编辑模块调取图像元素库和声音元素库内的数据信息在虚拟环境下进行场景编辑、将编辑过的信息传送至无线通信模块;According to the problems existing in the prior art, the present invention discloses a driving training simulation system based on virtual reality technology, including: a tourist attraction database storage unit: the landscape information of the tourist attraction is stored in the tourist attraction, and the information includes image elements Library, sound element library, editing module and wireless communication module, the editing module transfers the data information in the image element library and the sound element library to edit the scene in the virtual environment, and transmits the edited information to the wireless communication module;
所述编辑模块包括真实度处理模块,所述真实度处理模块对形成的虚拟现实景象进行真实度判断,当出现模糊画面时,所述真实度处理模块采用图像分帧处理技术对图像进行清晰度进行处理;The editing module includes an authenticity processing module, and the authenticity processing module judges the authenticity of the formed virtual reality scene. When a blurred picture appears, the authenticity processing module adopts image sub-framing processing technology to perform clarity on the image. process;
虚拟现实体验单元:所述无线通信模块将接收到的信息传送至虚拟现实体验单元,所述虚拟现实体验单元包括3D头戴眼镜、耳机和体感单元,Virtual reality experience unit: the wireless communication module transmits the received information to the virtual reality experience unit, the virtual reality experience unit includes 3D glasses, earphones and somatosensory unit,
所述体感单元实时检测用户在戴上3D头戴眼镜观看景象过程中的眼球定位状况信息:该信息包括人眼注视某个景象目录的时间长短信息、在注视该景象目录后闭合的长短信息、以及用户头部转动角度信息;体感单元通过用户眼球的注视时间情况判断是否选取该景象的观看和观看的要求、通过检测头部转动的角度信息来进行景物页面的选取操作。The somatosensory unit detects in real time the eyeball positioning status information of the user in the process of wearing 3D headset glasses to watch the scene: the information includes the time length information of human eyes watching a certain scene list, the length of closing after staring at the scene list, And the user's head rotation angle information; the somatosensory unit judges whether to select the viewing and viewing requirements of the scene through the gaze time of the user's eyeballs, and performs the selection operation of the scene page by detecting the angle information of the head rotation.
该系统还包括总监控单元,所述总监控单元实时监测旅游景点数据库存储单元和虚拟现实体验单元的工作状况信息,判断所监测的工作状态是否处于正常状态,当接收到对方的远程请求时所述总监控单元对旅游景点数据库存储单元和虚拟现实体验单元进行远程调控。The system also includes a general monitoring unit, which monitors the working status information of the tourist attraction database storage unit and the virtual reality experience unit in real time, and judges whether the monitored working status is in a normal state. The general monitoring unit performs remote control on the tourist attraction database storage unit and the virtual reality experience unit.
所述体感单元包括安装在3D头戴眼镜上的检测用户眼球定位信息的眼球注视模块、用于统计注视时间和眼睛闭合的时间信息的检测单元、安装在用户头部的角度传感器和判断单元;The somatosensory unit includes an eye gaze module installed on the 3D head-mounted glasses to detect the user's eye positioning information, a detection unit for counting gaze time and eye closure time information, an angle sensor and a judgment unit installed on the user's head;
工作状态下:当用户注视某景象目录时,所述检测单元对注视时间进行统计和计算、将该时间信息传送至判断单元进行时间判断,如果该时间大于设定时间时则认为该用户预想观看该景象;如果眼球的闭合时间大于设定时间则认为用户预想再次观看该景象;当用户在观看景象时候通过转动头部来进行多个景象的翻页;所述判断单元将判断结果传送至虚拟现实体验单元进行景象调取和该景点的虚拟现实体验。In the working state: when the user looks at a scene catalog, the detection unit counts and calculates the gaze time, and transmits the time information to the judgment unit for time judgment. If the time is greater than the set time, it is considered that the user expects to watch This scene; if the closing time of the eyeball is greater than the set time, it is considered that the user expects to watch the scene again; when the user is watching the scene, the page of multiple scenes is turned by turning the head; the judgment unit transmits the judgment result to the virtual The reality experience unit performs scene retrieval and virtual reality experience of the scenic spot.
所述真实度处理模块将模糊的图像分成多个帧图像,如果该帧图像的直方图与标准帧图像的直方图之间的欧式距离小于设定的临界值,则使用标准帧图像的增强参数对该帧图像进行帧内增强,按照该方式完成所有帧图像的增强。The said fidelity processing module divides the blurred image into a plurality of frame images, if the Euclidean distance between the histogram of the frame image and the histogram of the standard frame image is less than the set critical value, then the enhancement parameter of the standard frame image is used Intra-frame enhancement is performed on the frame image, and all frame images are enhanced in this manner.
由于采用了上述技术方案,本发明公开的基于虚拟现实技术的旅游景观实现系统,采用旅游景点数据库存储单元将旅游景点的景物信息在虚拟空间的编辑区域编辑成虚拟现实景物,供调取使用。用户戴上虚拟现实体验单元进行景物的虚拟现实真切体验,同时通过体感单元进行判断和景物目录信息的实际选择,通过总监控单元进行景点虚拟现实播放的实时监控。该系统实现旅游景点中虚拟现实的真切体验和智能化控制。Due to the adoption of the above-mentioned technical solution, the tourist landscape realization system based on virtual reality technology disclosed by the present invention uses the tourist attraction database storage unit to edit the scenery information of tourist attractions into virtual reality scenery in the editing area of the virtual space for retrieval. The user wears the virtual reality experience unit to experience the virtual reality of the scene, and at the same time, the somatosensory unit makes judgment and the actual selection of the scene catalog information, and the real-time monitoring of the virtual reality playback of the scenic spot is carried out through the total monitoring unit. The system realizes the real experience and intelligent control of virtual reality in tourist attractions.
附图说明Description of drawings
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请中记载的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings that need to be used in the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only These are some embodiments described in this application. Those skilled in the art can also obtain other drawings based on these drawings without creative work.
图1为本系统的结构示意图;Fig. 1 is the structural representation of this system;
图2为本系统中场景构建单元的结构示意图。FIG. 2 is a schematic structural diagram of the scene construction unit in this system.
具体实施方式detailed description
为使本发明的技术方案和优点更加清楚,下面结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚完整的描述:In order to make the technical solutions and advantages of the present invention more clear, the technical solutions in the embodiments of the present invention are clearly and completely described below in conjunction with the drawings in the embodiments of the present invention:
如图1-图2所示的一种基于虚拟现实技术和分帧处理技术的旅游景观实现系统,包括:旅游景点数据库存储单元:设置在旅游景点内存储有旅游景点的景观信息,该信息包括图像元素库、声音元素库、编辑模块和无线通信模块,所述编辑模块调取图像元素库和声音元素库内的数据信息在虚拟环境下进行场景编辑、将编辑过的信息传送至无线通信模块;A tourist landscape realization system based on virtual reality technology and frame processing technology as shown in Fig. 1-Fig. 2, includes: a tourist attraction database storage unit: the landscape information of the tourist attraction is stored in the tourist attraction, and the information includes An image element library, a sound element library, an editing module and a wireless communication module, the editing module calls the data information in the image element library and the sound element library to edit scenes in a virtual environment, and transmits the edited information to the wireless communication module ;
所述编辑模块包括真实度处理模块,所述真实度处理模块对形成的虚拟现实景象进行真实度判断,当出现模糊画面时,所述真实度处理模块采用图像分帧处理技术对图像进行清晰度进行处理。在虚拟环境中编辑成的图像偶尔会出现图像显示模糊的现象,给用户不清晰的感觉,因此我们需要对虚拟图像进行清晰度处理。采用对帧图像进行增强的方法可以有效的增加视频图像的色彩清晰度,避免色彩失真的现象。The editing module includes an authenticity processing module, and the authenticity processing module judges the authenticity of the formed virtual reality scene. When a blurred picture appears, the authenticity processing module adopts image sub-framing processing technology to perform clarity on the image. to process. The images edited in the virtual environment occasionally appear blurred images, giving the user an unclear feeling, so we need to perform sharpness processing on the virtual images. The method of enhancing the frame image can effectively increase the color definition of the video image and avoid the phenomenon of color distortion.
虚拟现实体验单元:所述无线通信模块将接收到的信息传送至虚拟现实体验单元,所述虚拟现实体验单元包括3D头戴眼镜、耳机和体感单元,Virtual reality experience unit: the wireless communication module transmits the received information to the virtual reality experience unit, the virtual reality experience unit includes 3D glasses, earphones and somatosensory unit,
所述体感单元实时检测用户在戴上3D头戴眼镜观看景象过程中的眼球定位状况信息:该信息包括人眼注视某个景象目录的时间长短信息、在注视该景象目录后闭合的长短信息、以及用户头部转动角度信息;体感单元通过用户眼球的注视时间情况判断是否选取该景象的观看和观看的要求、通过检测头部转动的角度信息来进行景物页面的选取操作。The somatosensory unit detects in real time the eyeball positioning status information of the user in the process of wearing 3D headset glasses to watch the scene: the information includes the time length information of human eyes watching a certain scene list, the length of closing after staring at the scene list, And the user's head rotation angle information; the somatosensory unit judges whether to select the viewing and viewing requirements of the scene through the gaze time of the user's eyeballs, and performs the selection operation of the scene page by detecting the angle information of the head rotation.
进一步的,该系统还包括总监控单元,所述总监控单元实时监测旅游景点数据库存储单元和虚拟现实体验单元的工作状况信息,判断所监测的工作状态是否处于正常状态,当接收到对方的远程请求时所述总监控单元对旅游景点数据库存储单元和虚拟现实体验单元进行远程调控。采用该总监控单元对还系统各个单元的工作进行实时监控,避免故障的发生,并且处于总监控单元的工作人员可以实时查看到用户的虚拟景物体验过程,实现智能监控的效果。Further, the system also includes a general monitoring unit, which monitors the working status information of the tourist attraction database storage unit and the virtual reality experience unit in real time, and judges whether the monitored working status is in a normal state. When requested, the total monitoring unit remotely controls the tourist attraction database storage unit and the virtual reality experience unit. The general monitoring unit is used to monitor the work of each unit of the return system in real time to avoid failures, and the staff in the general monitoring unit can view the user's virtual scene experience process in real time to achieve the effect of intelligent monitoring.
所述体感单元包括安装在3D头戴眼镜上的检测用户眼球定位信息的眼球注视模块、用于统计注视时间和眼睛闭合的时间信息的检测单元、安装在用户头部的角度传感器和判断单元;The somatosensory unit includes an eye gaze module installed on the 3D head-mounted glasses to detect the user's eye positioning information, a detection unit for counting gaze time and eye closure time information, an angle sensor and a judgment unit installed on the user's head;
工作状态下:当用户注视某景象目录时,所述检测单元对注视时间进行统计和计算、将该时间信息传送至判断单元进行时间判断,如果该时间大于设定时间时则认为该用户预想观看该景象;如果眼球的闭合时间大于设定时间则认为用户预想再次观看该景象;当用户在观看景象时候通过转动头部来进行多个景象的翻页;所述判断单元将判断结果传送至虚拟现实体验单元进行景象调取和该景点的虚拟现实体验。In the working state: when the user looks at a scene catalog, the detection unit counts and calculates the gaze time, and transmits the time information to the judgment unit for time judgment. If the time is greater than the set time, it is considered that the user expects to watch This scene; if the closing time of the eyeball is greater than the set time, it is considered that the user expects to watch the scene again; when the user is watching the scene, the page of multiple scenes is turned by turning the head; the judgment unit transmits the judgment result to the virtual The reality experience unit performs scene retrieval and virtual reality experience of the scenic spot.
所述真实度处理模块将模糊的图像分成多个帧图像,如果该帧图像的直方图与标准帧图像的直方图之间的欧式距离小于设定的临界值,则使用标准帧图像的增强参数对该帧图像进行帧内增强,按照该方式完成所有帧图像的增强。采用该方法可以降低视频图像中出现的噪声,保持图像灰度的基本信息、该发明增强后的视频图像,其视频图像质量得到了很大的提高,大幅度减小了计算复杂度。本发明在视讯会议、视频监控等领域,有助于提取低照度视频中的有意义信息,明显提高图像质量。The said fidelity processing module divides the blurred image into a plurality of frame images, if the Euclidean distance between the histogram of the frame image and the histogram of the standard frame image is less than the set critical value, then the enhancement parameter of the standard frame image is used Intra-frame enhancement is performed on the frame image, and all frame images are enhanced in this manner. The method can reduce the noise appearing in the video image, keep the basic information of the image grayscale, and the video image enhanced by the invention has greatly improved the video image quality and greatly reduced the computational complexity. In the fields of video conferencing, video monitoring and the like, the invention helps to extract meaningful information in low-illuminance video, and obviously improves image quality.
以上所述,仅为本发明较佳的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,根据本发明的技术方案及其发明构思加以等同替换或改变,都应涵盖在本发明的保护范围之内。The above is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto, any person familiar with the technical field within the technical scope disclosed in the present invention, according to the technical solution of the present invention Any equivalent replacement or change of the inventive concepts thereof shall fall within the protection scope of the present invention.
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| Publication number | Priority date | Publication date | Assignee | Title |
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