WO2020151256A1 - 一种应用于文旅的智能浏览方法及系统 - Google Patents

一种应用于文旅的智能浏览方法及系统 Download PDF

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Publication number
WO2020151256A1
WO2020151256A1 PCT/CN2019/109474 CN2019109474W WO2020151256A1 WO 2020151256 A1 WO2020151256 A1 WO 2020151256A1 CN 2019109474 W CN2019109474 W CN 2019109474W WO 2020151256 A1 WO2020151256 A1 WO 2020151256A1
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information
input
intelligent
obtaining
scene
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PCT/CN2019/109474
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English (en)
French (fr)
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李新福
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广东康云科技有限公司
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/90Details of database functions independent of the retrieved data types
    • G06F16/95Retrieval from the web
    • G06F16/953Querying, e.g. by the use of web search engines
    • G06F16/9537Spatial or temporal dependent retrieval, e.g. spatiotemporal queries
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/90Details of database functions independent of the retrieved data types
    • G06F16/95Retrieval from the web
    • G06F16/957Browsing optimisation, e.g. caching or content distillation
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/10Services
    • G06Q50/14Travel agencies

Definitions

  • the invention relates to the field of computer data processing, in particular to an intelligent browsing method and system applied to cultural tourism.
  • the purpose of the present invention is to provide a browsing method that allows users to understand the layout of scenic spots more conveniently and clearly.
  • Another object of the present invention is to provide a browsing system that allows users to understand the layout of scenic spots more conveniently and clearly.
  • An intelligent browsing method applied to cultural tourism including the following steps:
  • the switching information includes angle switching information and movement information, and after acquiring the input switching information, the step of adjusting the screen displaying the three-dimensional scene according to the switching information specifically includes the following steps:
  • the intelligent navigation step is specifically:
  • customer service connection step specifically includes the following steps:
  • the communication connection is a voice connection or a video connection
  • the customer service is an intelligent customer service or a manual customer service.
  • the intelligent voice control step is:
  • the instruction type information is converted and the corresponding instruction information is triggered;
  • the voice information is question type information
  • the question type information After matching the question type information with the preset question database, obtain and play the corresponding answer information;
  • the corresponding instruction information includes at least any one of angle switching information, movement information, click information, position information, call information, and close information.
  • AR navigation step is specifically:
  • the third-party AR navigation service is invoked through the interface to generate a navigation route by combining the departure address information and the preset destination address.
  • the automatic navigation step is specifically:
  • the screens of the 3D scene are switched in sequence according to the preset path, and all the introduction information is obtained and then automatically played in the preset order until the screen switching ends.
  • An intelligent browsing system for cultural tourism including:
  • the link display module is used to obtain the input link information, and render and display the three-dimensional scene of the tourist spot according to the model data corresponding to the link information;
  • the screen adjustment module is used to obtain the input switching information and adjust the screen displaying the 3D scene according to the switching information;
  • the sensitivity adjustment module is used to adjust the screen update speed according to the sensitivity information after obtaining the input sensitivity information.
  • An intelligent browsing system for cultural tourism including:
  • At least one processor At least one processor
  • At least one memory for storing at least one program
  • the at least one processor When the at least one program is executed by the at least one processor, the at least one processor implements the aforementioned intelligent browsing method applied to cultural travel.
  • the beneficial effects of the present invention are: the running model data of the present invention renders and displays the three-dimensional scene of the tourist spot, and adjusts the display of the three-dimensional scene through the input switching information, which solves the problem that the user cannot know the layout of the tourist spot in advance and helps the user effectively Plan sightseeing routes of tourist spots to avoid missing tourist spots, improve user viewing experience, and meet users' requirements for easy understanding of the distribution of tourist spots.
  • Figure 1 is a flow chart of the steps of an intelligent browsing method applied to cultural tourism of the present invention
  • Fig. 2 is a structural block diagram of an intelligent browsing system applied to cultural tourism of the present invention.
  • an intelligent browsing method applied to cultural tourism includes the following steps:
  • Pre-establish 3D models of tourist spots (such as scenic spots, museums, etc.), and store the 3D models on the server.
  • users need to view scenic spots, they can access the server through the link, and after selecting the corresponding tourist spots, render the reconstructed tourist spot Three-dimensional model, for example, after selecting the Beijing Forbidden City scenic spot, the three-dimensional model of the Forbidden City is rendered.
  • the user can access the server through a smart terminal such as a mobile phone, a tablet computer, or a notebook computer, and display the three-dimensional scene of the tourist spot through the existing display device.
  • the display device can adopt AR display equipment, VR display equipment, air screen, LED Display, LCD display, OLED display or dot matrix display.
  • tourists can choose an offline service point to view the tourist spot, and a large screen is provided at the selected offline service point, and the large screen can display a three-dimensional scene at the same scale as the tourist spot.
  • the screen of the three-dimensional scene is controlled through human-computer interaction, and the user inputs switching information, and adjusts the screen of the three-dimensional scene of the tourist spot in real time according to the input information; in the three-dimensional scene of the tourist spot, some pictures are relatively simple, and the user can input Sensitivity information, speed up the update speed of the picture, so that you can quickly browse the fragment of the picture, such as a long street, it actually takes ten minutes to walk, by increasing the speed, you can browse the long street in a few seconds.
  • the user can input switching information through the screen of the mobile phone, such as swiping the screen with a finger left and right to view the three-dimensional scene of a tourist spot in all directions, and adjusting the sensitivity by sliding the screen up and down with the finger.
  • switching information such as swiping the screen with a finger left and right to view the three-dimensional scene of a tourist spot in all directions
  • adjusting the sensitivity by sliding the screen up and down with the finger.
  • a user views a 3D scene through a computer, he can use the mouse to input switching information, scroll the mouse to view the 3D scene of the tourist spot in all directions, and adjust the update sensitivity of the picture through the mouse buttons.
  • the user's visual angle information is obtained through the helmet device, so as to view the three-dimensional scene of the tourist spot.
  • brainwave sensors, somatosensory sensors, eye trackers, touch devices, voice input devices, or gesture recognition modules can be used to control the switching of the 3D scene screen, so as to realize the full view of the 3D scene of the tourist spot.
  • the brain wave sensor is used to collect the user's brain wave signal in order to identify the user's ideas or thoughts, thereby controlling the switching of the three-dimensional scene of the tourist spot, which can be achieved by using an existing brain wave sensor
  • the somatosensory sensor It is used to capture the user's somatosensory signal (such as the user's walking and sliding motion signals), thereby controlling the switching of the three-dimensional scene of the tourist spot, which can be realized by using existing somatosensory sensors
  • the eye tracker is used to capture the user's eye movements
  • the method in this embodiment comprehensively displays the tourist spots through a three-dimensional scene, so that tourists can understand the tourist spots and better appreciate the tourist spots.
  • the switching information includes angle switching information and movement information
  • step S2 specifically includes steps S21 to S22:
  • the user can switch the position in the three-dimensional scene by inputting the movement information, and the user can move to any location in the tourist spot through the movement information.
  • the user can view different angles of the current position, that is, the 360° screen of the current position.
  • the user provides an immersive feeling to better watch the surrounding scenery of the tourist spot. Specifically, when a user uses a mobile phone to watch a tourist spot, he adjusts the 360° screen by sliding the display screen left and right, and moves the position by tapping the display; when the user uses a computer to watch a tourist spot, he slides the mouse to adjust the 360° screen , Move the position by clicking with the mouse; similarly, when controlled by the sensor, use different gestures to input angle switching information and moving information.
  • an intelligent recognition function which recognizes objects in a three-dimensional scene by clicking information.
  • the corresponding tourist spot images are displayed in the 3D scene for customers to view.
  • users need to know more detailed information, for example, when the user sees a building in a tourist spot, he wants to connect the history and related information of the building by inputting and clicking the information.
  • Obtain the corresponding introduction information Specifically, when the user sees the Hall of Supreme Harmony in the Forbidden City and clicks on the location of the Hall of Supreme Harmony on the screen, the click information is mapped to the three-dimensional scene, and the trigger information of the Hall of Supreme Harmony is recognized by the Queen of Supreme Harmony.
  • the introduction information is obtained from a preset database according to the trigger information and displayed; wherein the introduction information may be any of text information, voice information or video information.
  • the intelligent navigation step is specifically:
  • the current location is the Hall of Supreme Harmony
  • the user inputs the position of the Hall of Harmony on the screen, and then the navigation path will be established based on the current position and the entered position of the Hall of Harmony After the navigation path is established, it will automatically switch from the Hall of Supreme Harmony to the position of the Hall of Harmony in the screen of the navigation path.
  • the user can quickly and automatically switch to the position required by the user, avoiding frequent input of mobile information on the screen and reducing
  • the user s operating experience, especially when the user is not familiar with the structure of the tourist spot, avoids finding the correct route; in addition, the user can easily understand the structure details of the tourist spot during the automatic screen switching process, which greatly improves the user Operating experience.
  • customer service connection step specifically includes the following steps:
  • the communication connection is a voice connection or a video connection
  • the customer service is an intelligent customer service or a manual customer service.
  • the customer can be a manual customer service or an intelligent customer service (ie, an intelligent robot).
  • the call information can be entered by voice or manually.
  • a virtual button is placed on the three-dimensional scene. The button is set at the upper left corner of the screen. The user clicks the button to trigger the establishment of communication with the customer service. connection. When the communication is over, click the button again and enter the closing information to disconnect the communication.
  • users have questions, they can consult customers in real time to improve the user's efficiency in understanding the situation of tourist spots, and the customer service adopts intelligent customer service, which can answer user questions 24 hours a day, reducing labor costs and improving work efficiency.
  • the intelligent voice control step is:
  • the instruction type information is converted and the corresponding instruction information is triggered;
  • the voice information is question type information
  • the question type information After matching the question type information with the preset question database, obtain and play the corresponding answer information;
  • the corresponding instruction information includes at least any one of sliding information, movement information, click information, position information, call information, and close information.
  • an intelligent voice control function is provided.
  • the user can directly control the switching of the three-dimensional scene screen through voice.
  • the voice information includes instruction type information and question type information.
  • the instruction type information is used to control the three-dimensional scene.
  • Screen switching the question type information is used for consulting questions.
  • the instruction type information is converted and the corresponding instruction information is triggered, and then the switching of the three-dimensional scene screen is controlled. For example, after the voice input "left", the "left” is converted to the direction Slide the information on the left to control the 3D scene adjustment screen.
  • the question type information is matched with the preset question database, and after processing, the answer information is input, such as the user asking the ticket price and opening time of the tourist spot, after the voice consultation, and the pre-stored After the matching is completed, input the corresponding answer information.
  • the output answer information can be output in text or voice.
  • it further includes an AR navigation step, and the AR navigation step is specifically:
  • the third-party AR navigation service is invoked through the interface to generate a navigation route in combination with the departure address information and the preset destination address.
  • This embodiment provides an AR navigation function.
  • the user wants to go directly to the tourist spot after browsing the tourist spot on the screen, he can directly input the departure address information on the screen, and the system combines the departure address information and the preset destination address (ie, travel Point address)
  • a third-party AR navigation service is invoked through an interface to generate a navigation route.
  • the third-party AR navigation service can select an existing third-party navigation service, and the user goes to the scenic spot location according to the navigation route.
  • users can also purchase tickets through the online system. For example, users can input basic information and time information of tourists through their mobile phones and then make online payments, which improves the efficiency of users' ticket purchases and reduces the burden of ticket sales by tourist managers.
  • the automatic navigation step is specifically:
  • the screens of the 3D scene are switched in sequence according to the preset path, and all the introduction information is obtained and then automatically played in the preset order until the screen switching ends.
  • This embodiment provides an automatic navigation function, which is an optional function.
  • the automatic navigation function can be selected.
  • this function mode is selected, the screen will automatically play the screen, the switching path of the screen is the preset path, and the introduction information will be automatically played during the screen switching, which is more convenient for users to understand the situation of the tourist spot.
  • the method of the present invention has the following advantages over the prior art:
  • the user can directly use the voice control, which is more intelligent, avoids excessive touch screen operations, and improves the operating experience.
  • this embodiment provides an intelligent browsing system applied to cultural tourism, including:
  • the link display module is used to obtain the input link information, and render and display the three-dimensional scene of the tourist spot according to the model data corresponding to the link information;
  • the screen adjustment module is used to obtain the input switching information and adjust the screen displaying the 3D scene according to the switching information;
  • the sensitivity adjustment module is used to adjust the screen update speed according to the sensitivity information after obtaining the input sensitivity information.
  • the system renders and displays the three-dimensional scene of the tourist spot by running model data, and adjusts the display of the three-dimensional scene through the input switching information, which solves the problem that the user cannot know the layout of the tourist spot in advance and helps the user to effectively plan the sightseeing route of the tourist spot. Avoid missing tourist spots, improve user viewing experience, and meet users' requirements for easy understanding of tourist spot distribution.
  • This embodiment provides an intelligent browsing system applied to cultural tourism, including:
  • At least one processor At least one processor
  • At least one memory for storing at least one program
  • the at least one processor When the at least one program is executed by the at least one processor, the at least one processor implements the intelligent browsing method applied to cultural tourism in the first embodiment.
  • the intelligent browsing system for cultural and tourism of this embodiment can execute the intelligent browsing method for cultural and tourism provided in the first embodiment of the method of the present invention, and can execute any combination of implementation steps of the method embodiments, and has the The corresponding functions and beneficial effects of the method.

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Abstract

一种应用于文旅的智能浏览方法及系统,其中,方法包括以下步骤:获取输入的链接信息后,根据链接信息对应的模型数据渲染显示旅游点的三维场景(S1);获取输入的切换信息后,根据切换信息调整显示三维场景的画面(S2);获取输入的灵敏度信息后,根据灵敏度信息调节画面的更新速度(S3)。该方法运行模型数据渲染显示旅游点的三维场景,并且通过输入的切换信息调整显示三维场景的画面,解决了用户无法事先了解旅游点的布局的问题,帮助用户有效地规划旅游点观光路线,避免错失旅游点,提高了用户观看体验,满足用户对轻松了解旅游点分布的要求,可广泛应用于计算机数据处理领域。

Description

一种应用于文旅的智能浏览方法及系统 技术领域
本发明涉及计算机数据处理领域,尤其涉及一种应用于文旅的智能浏览方法及系统。
背景技术
随着网络技术的发展及普及,现在人们外出旅游前都上网查找相应的旅游攻略,提前规划旅游路线,对一些面积较大的旅游点,游客需要预先了解一下旅游点的布局,比如故宫和拙政园等旅游点,因为景区面积较大,如果游客没有预先了解景区旅游点,只是在景区随心而走,则会错过很多旅游点,如果游客错过了某个旅游点,又折路线回来重新观看,会浪费很多体力和时间,降低了游客的体验。现在游客主要通过宣传册提前了解景区的布局,这种宣传册类似一张地图,只是简单的标注了景区的路线,无法直观地让游客了解景区内细节的景象,难以帮助游客规划旅游路线。
发明内容
为了解决上述技术问题,本发明的目的是提供一种更加方便清晰地让用户了解景区布局情况的浏览方法。
本发明的另一目的是提供一种更加方便清晰地让用户了解景区布局情况的浏览系统。
本发明方法所采用的技术方案是:
一种应用于文旅的智能浏览方法,包括以下步骤:
获取输入的链接信息后,根据链接信息对应的模型数据渲染显示旅游点的三维场景;
获取输入的切换信息后,根据切换信息调整显示三维场景的画面;
获取输入的灵敏度信息后,根据灵敏度信息调节画面的更新速度。
进一步,所述切换信息包括角度切换信息和移动信息,所述获取输入的切换信息后,根据切换信息调整显示三维场景的画面这一步骤,具体包括以下步骤:
获取输入的角度切换信息后,根据角度切换信息调整显示三维场景不同角度的画面;
获取输入的移动信息后,根据移动信息切换三维场景的位置并渲染显示相应的画面。
进一步,还包括以下步骤:
获取输入的点击信息后,将点击信息映射至三维场景中并产生相应的触发信息;
根据触发信息获取并播放相应的介绍信息。
进一步,还包括智能导航步骤,所述智能导航步骤具体为:
获取输入的位置信息后,结合位置信息和三维场景当前位置建立导航路径;
根据导航路径切换三维场景的位置并渲染显示相应的画面,直至到达相应的位置。
进一步,还包括客服连接步骤,所述客服连接步骤,具体包括以下步骤:
检测到输入的呼叫信息后,根据呼叫信息与客服建立通讯连接;
检测到输入的关闭信息后,根据关闭信息切断通讯连接;
所述通讯连接为语音连接或视频连接,所述客服为智能客服或人工客服。
进一步,还包括智能语音控制步骤,所述智能语音控制步骤为:
获取输入的语音信息后,判断语音信息的类型;
当判断到语音信息为指令类型信息时,将指令类型信息转换并触发相应的指令信息;
当判断到语音信息为问题类型信息时,将问题类型信息与预设的问题数据库进行匹配处理后,获取并播放相应的答案信息;
所述相应的指令信息至少包括角度切换信息、移动信息、点击信息、位置信息、呼叫信息和关闭信息中任一种信息。
进一步,还包括AR导航步骤,所述AR导航步骤,具体为:
获取输入的出发地址信息后,结合出发地址信息和预设的终点地址通过接口调用第三方AR导航服务生成导航路线。
进一步,还包括自动导览步骤,所述自动导览步骤,具体为:
根据预设的路径依次切换三维场景的画面,并获取所有的介绍信息后按照预设顺序自动播放,直至画面切换结束。
本发明系统所采用的技术方案是:
一种应用于文旅的智能浏览系统,包括:
链接显示模块,用于获取输入的链接信息后,根据链接信息对应的模型数据渲染显示旅游点的三维场景;
画面调整模块,用于获取输入的切换信息后,根据切换信息调整显示三维场景的画面;
灵敏度调节模块,用于获取输入的灵敏度信息后,根据灵敏度信息调节画面的更新速度。
本发明所采用的另一技术方案是:
一种应用于文旅的智能浏览系统,包括:
至少一个处理器;
至少一个存储器,用于存储至少一个程序;
当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现上述的 一种应用于文旅的智能浏览方法。
本发明的有益效果是:本发明运行模型数据渲染显示旅游点的三维场景,并且通过输入的切换信息调整显示三维场景的画面,解决了用户无法事先了解旅游点的布局的问题,帮助用户有效地规划旅游点观光路线,避免错失旅游点,提高了用户观看体验,满足用户对轻松了解旅游点分布的要求。
附图说明
图1是本发明一种应用于文旅的智能浏览方法的步骤流程图;
图2是本发明一种应用于文旅的智能浏览系统的结构框图。
具体实施方式
实施例一
如图1所示,一种应用于文旅的智能浏览方法,包括以下步骤:
S1、获取输入的链接信息后,根据链接信息对应的模型数据渲染显示旅游点的三维场景。
S2、获取输入的切换信息后,根据切换信息调整显示三维场景的画面。
S3、获取输入的灵敏度信息后,根据灵敏度信息调节画面的更新速度。
预先建立旅游点(如景点、博物馆等)的三维模型,并将三维模型存储在服务器上,当用户需要观看景点时,通过链接访问服务器,并在选择相应的旅游点后,渲染重建旅游点的三维模型,比如选择了北京故宫景区后,渲染显示故宫的三维模型。其中,用户可通过手机、平板电脑或笔记本电脑等智能终端访问服务器,通过现有的显示装置来显示旅游点的三维场景,所述显示装置可采用AR显示设备、VR显示设备、空气屏、LED显示屏、LCD显示屏、OLED显示屏或点阵显示屏。或者游客可以选择线下服务点来观看旅游点,在选择线下服务点设有大屏幕,该大屏幕可与旅游点相同的比例显示三维场景。其中,通过人机交互来控制三维场景的画面,用户输入切换信息,根据输入的信息实时调整旅游点的三维场景的画面;在旅游点的三维场景中,有些画面是比较单一,用户可通过输入灵敏度信息,调快画面的更新速度,从而快速的浏览完该片段画面,比如一条长街,实际上需要花费十分钟才行走完,通过调升速度,几秒钟就浏览完该长街,在景色精致处,下调画面的更新速度,更好地了解景区的情况,通过灵敏度调节,提高用户了解景区的布局的效率,提高了客户体验。具体地,当用户使用手机观看三维场景时,可通过手机屏幕输入切换信息,比如通过手指左右滑动屏幕实现全方位观看旅游点的三维场景,通过手指上下滑动屏幕实现灵敏度的调节。当用户通过电脑观看三维场景时,可通过鼠标输入切换信息,通过滚动鼠标全方位观看旅游点的三维场景,通过鼠标按键调节画面的更新灵敏度。当用户通过VR显示设备或AR显示设备观看 三维场景时,通过头盔设备获取用户的视觉角度信息,从而观看旅游点的三维场景。当通过大屏幕显示时,可采用脑电波传感器、体感传感器、眼球跟踪器、触控设备、语音输入设备或手势识别模块等装置来控制三维场景画面的切换,实现全方位观看旅游点的三维场景;其中,所述脑电波传感器用于采集用户的脑波信号,以便于识别用户的意念或想法,从而控制切换旅游点的三维场景,可采用现有的脑电波传感器来实现;所述体感传感器用于捕捉用户的体感信号(比如用户的行走和滑动动作信号),从而控制切换旅游点的三维场景,可采用现有的体感传感器来实现;所述眼球跟踪器用于捕捉用户的眼部动作,根据眼部动作控制切换旅游点的三维场景,可采用现有的眼球跟踪器来实现;所述触控设备用于用户通过触摸的方式输入触摸指令,比如触摸屏,通过触摸指令控制切换旅游点的三维场景,可采用现有的触控设备来实现;所述语音输入设备用于采集用户的语音信号,通过输入的语音信号制切换旅游点的三维场景,比如通过语音输入“向左”的语音信息,控制旅游点的三维场景向左切换显示,可采用现有的语音输入设备来实现;所述手势识别模块用于捕捉用户的手势信号,并通过手势信号来控制切换旅游点的三维场景,可采用现有的手势识别模块来实现。提供多种人机交互模式,能让用户更好地控制旅游点三维场景的切换。
用户通过智能终端直观地了解旅游点的分布情况,从而更好地规划旅游观看路线,达到更好的观看效果,避免因路线规划不好,错失了经典的旅游点,降低游玩了体验;宣传册介绍的信息过于简单,无法满足游客的需求,本实施例方法通过三维场景全面地显示旅游点,使游客对旅游点了然于胸,更好地欣赏旅游点。
其中,所述切换信息包括角度切换信息和移动信息,步骤S2具体包括步骤S21~S22:
S21、获取输入的角度切换信息后,根据角度切换信息调整显示三维场景不同角度的画面;
S22、获取输入的移动信息后,根据移动信息切换三维场景的位置并渲染显示相应的画面。
用户通过输入移动信息,切换三维场景中的位置,通过移动信息可使用户移动到旅游点内任何一个位置,通过角度切换信息可查看当前位置不同角度的画面,即当前位置360°的画面,给用户提供一种身临其境的感觉,更好地观看旅游点的四周景色。具体地,当用户采用手机观看旅游点时,通过左右滑动显示屏来调整360°的画面,通过点击显示屏来移动位置;当用户采用电脑观看旅游点时,通过滑动鼠标来调整360°的画面,通过鼠标点击来移动位置;同理,当通过传感器来控制时,采用不同的手势输入角度切换信息和移动信息。
进一步作为优选的实施方式,还包括以下步骤:
获取输入的点击信息后,将点击信息映射至三维场景中并产生相应的触发信息;
根据触发信息获取并播放相应的介绍信息。
本实施例中提供一种智能识别功能,通过点击信息来识别三维场景内的物体。在三维场景中显示相应的旅游点图像,方便客户查看,当用户需要了解更多细节信息时,比如用户看到旅游点中的建筑时,想连接该建筑历史和相关信息,通过输入点击信息来获取相应的介绍信息,具体地,当用户看到故宫中的太和殿,点击屏幕中太和殿位置后,将点击信息映射至三维场景,识别到太和殿后获取太和殿的触发信息,根据触发信息从预设的数据库中获取并显示介绍信息;其中,所述介绍信息可以为文字信息、语音信息或视频信息的任一种。
进一步作为优选的实施方式,还包括智能导航步骤,所述智能导航步骤具体为:
获取输入的位置信息后,结合位置信息和三维场景当前位置建立导航路径;
根据导航路径切换三维场景的位置并渲染显示相应的画面,直至到达相应的位置。
由于旅游点面积比较大,可通过智能导航功能进行导航,比如当前的位置为太和殿,用户通过屏幕输入中和殿的位置,则根据当前的位置和输入的中和殿的位置建立导航路径,建立导航路径后,根据导航路径屏幕中的画面自动从太和殿一直切换至中和殿的位置,可快速自动地切换至用户需求的位置,避免用户在屏幕上频繁地输入移动信息,降低用户的操作体验,特别是用户对旅游点的构造上不熟悉时,避免找不到正确的路径;另外,在画面自动切换过程中,用户可轻松地了解旅游点的构造详情,极大地提高用户的操作体验。
进一步作为优选的实施方式,还包括客服连接步骤,所述客服连接步骤,具体包括以下步骤:
检测到输入的呼叫信息后,根据呼叫信息与客服建立通讯连接;
检测到输入的关闭信息后,根据关闭信息切断通讯连接;
所述通讯连接为语音连接或视频连接,所述客服为智能客服或人工客服。
当用户在观看旅游点过程中,存有疑问时,可直接呼叫客服进行解答,所述客户可以是人工客服,也可以是智能客服(即智能机器人)。可通过语音输入呼叫信息,也可以通过手动输入呼叫信息,在本实施例中,在三维场景上虚拟一个按键,该按键设置在屏幕的左上角处,用户通过点击该按键,触发与客服建立通讯连接。当通讯结束时,再次点击该按键,输入的关闭信息,即可断开通讯连接。当用户存有疑问时,可实时咨询客户,提高用户的了解旅游点情况的效率,而且客服采用智能客服,能够24小时回答用户的问题,降低了人工成本和提高工作效率。
进一步作为优选的实施方式,还包括智能语音控制步骤,所述智能语音控制步骤为:
获取输入的语音信息后,判断语音信息的类型;
当判断到语音信息为指令类型信息时,将指令类型信息转换并触发相应的指令信息;
当判断到语音信息为问题类型信息时,将问题类型信息与预设的问题数据库进行匹配处理后,获取并播放相应的答案信息;
所述相应的指令信息至少包括滑动信息、移动信息、点击信息、位置信息、呼叫信息和关闭信息中任一种信息。
在本实施例中,提供一种智能语音控制功能,用户可直接通过语音来控制三维场景画面的切换,所述语音信息包括指令类型信息和问题类型信息,所述指令类型信息用于控制三维场景画面的切换,所述问题类型信息用于咨询问题。具体地,当用户语音输入指令类型信息时,将指令类型信息转换并触发相应的指令信息后,再控制三维场景画面的切换,比如语音输入“向左”后,将“向左”转换为向左的滑动信息,从而控制三维场景调整画面。当用户语音问题类型信息时,将问题类型信息与预设的问题数据库进行匹配处理,并在处理后,输入答案信息,比如用户询问旅游点的门票价钱和开放时间,通过语音咨询后,与预存的问题数据库进行匹配,匹配完成后,输入相应的答案信息,其中,输出答案信息可采用文字方式输出或语音方式输出。
进一步作为优选的实施方式,还包括AR导航步骤,所述AR导航步骤,具体为:
获取输入的出发地址信息后,结合出发地址信息和预设的终点地址通过接口调用第三方AR导航服务生成导航路线。
本实施例提供一种AR导航功能,当用户通过屏幕浏览完旅游点后,想直接前往旅游点地址,可直接在屏幕输入出发地址信息,系统结合出发地址信息和预设的终点地址(即旅游点地址)通过接口调用第三方AR导航服务生成导航路线,所述第三方AR导航服务可选择现有的第三方导航服务,用户根据导航路线前往景区位置。另外,用户还可通过线上系统进行购票,比如用户通过手机输入游客的基本信息和时间信息后进行线上支付,提高了用户购票的效率,也减轻了旅游点管理人员售票的负担。
进一步作为优选的实施方式,还包括自动导览步骤,所述自动导览步骤,具体为:
根据预设的路径依次切换三维场景的画面,并获取所有的介绍信息后按照预设顺序自动播放,直至画面切换结束。
本实施例提供一种自动导览功能,该功能为可选功能,当用户面对一个陌生旅游点时,对旅游点情况尚不了解,可选择该自动导览功能。当选择该功能模式时,屏幕自动播放画面,画面的切换路径为预设的路径,并在画面切换过程中自动地播放介绍信息,更加方便用户了解旅游点的情况。
综上所述,本发明方法相对于现有技术具有以下优点:
(1)直接网上对旅游点进行浏览,方便用户充分利用时间,且能够直观地观看到景区的布局,和相应的旅游点路线,帮助游客更好的规划观光路线。
(2)渲染显示旅游点的三维场景,并可根据用户输入的信息实时切换三维场景的画面,360度无死角展现旅游点,给用户一种身临其境的感觉,更加方便用户观看和了解旅游点的实际情况,也提高浏览体验。
(3)通过智能识别功能,能够给用户提供旅游点的介绍信息,无需游客雇导游,降低了旅游的费用,同时又能了解到旅游点的更多信息,比如建筑信息和人文信息等。
(4)采用语音控制功能,用户可直接采用语音控制,更加智能化,避免过多的触屏操作,提高操作体验。
(5)提供客服功能,用户可在有疑问时,随时通过客户解疑;提供智能导航功能和自动导览服务,更加方便用户了解旅游点内相应的布局,提高用户的体验。
实施例二
如图2所示,本实施例提供一种应用于文旅的智能浏览系统,包括:
链接显示模块,用于获取输入的链接信息后,根据链接信息对应的模型数据渲染显示旅游点的三维场景;
画面调整模块,用于获取输入的切换信息后,根据切换信息调整显示三维场景的画面;
灵敏度调节模块,用于获取输入的灵敏度信息后,根据灵敏度信息调节画面的更新速度。
本系统通过运行模型数据渲染显示旅游点的三维场景,并且通过输入的切换信息调整显示三维场景的画面,解决了用户无法事先了解旅游点的布局的问题,帮助用户有效地规划旅游点观光路线,避免错失旅游点,提高了用户观看体验,满足用户对轻松了解旅游点分布的要求。
实施例三
本实施例提供一种应用于文旅的智能浏览系统,包括:
至少一个处理器;
至少一个存储器,用于存储至少一个程序;
当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现实施例一所述的一种应用于文旅的智能浏览方法。
本实施例的一种应用于文旅的智能浏览系统,可执行本发明方法实施例一所提供的一种应用于文旅的智能浏览方法,可执行方法实施例的任意组合实施步骤,具备该方法相应的功能和有益效果。
以上是对本发明的较佳实施进行了具体说明,但本发明创造并不限于所述实施例,熟悉本领域的技术人员在不违背本发明精神的前提下还可做出种种的等同变形或替换,这些等同的变形或替换均包含在本申请权利要求所限定的范围内。

Claims (10)

  1. 一种应用于文旅的智能浏览方法,其特征在于,包括以下步骤:
    获取输入的链接信息后,根据链接信息对应的模型数据渲染显示旅游点的三维场景;
    获取输入的切换信息后,根据切换信息调整显示三维场景的画面;
    获取输入的灵敏度信息后,根据灵敏度信息调节画面的更新速度。
  2. 根据权利要求1所述的一种应用于文旅的智能浏览方法,其特征在于,所述切换信息包括角度切换信息和移动信息,所述获取输入的切换信息后,根据切换信息调整显示三维场景的画面这一步骤,具体包括以下步骤:
    获取输入的角度切换信息后,根据角度切换信息调整显示三维场景不同角度的画面;
    获取输入的移动信息后,根据移动信息切换三维场景的位置并渲染显示相应的画面。
  3. 根据权利要求2所述的一种应用于文旅的智能浏览方法,其特征在于,还包括以下步骤:
    获取输入的点击信息后,将点击信息映射至三维场景中并产生相应的触发信息;
    根据触发信息获取并播放相应的介绍信息。
  4. 根据权利要求2所述的一种应用于文旅的智能浏览方法,其特征在于,还包括智能导航步骤,所述智能导航步骤具体为:
    获取输入的位置信息后,结合位置信息和三维场景当前位置建立导航路径;
    根据导航路径切换三维场景的位置并渲染显示相应的画面,直至到达相应的位置。
  5. 根据权利要求2所述的一种应用于文旅的智能浏览方法,其特征在于,还包括客服连接步骤,所述客服连接步骤,具体包括以下步骤:
    检测到输入的呼叫信息后,根据呼叫信息与客服建立通讯连接;
    检测到输入的关闭信息后,根据关闭信息切断通讯连接;
    所述通讯连接为语音连接或视频连接,所述客服为智能客服或人工客服。
  6. 根据权利要求2-5任一项所述的一种应用于文旅的智能浏览方法,其特征在于,还包括智能语音控制步骤,所述智能语音控制步骤为:
    获取输入的语音信息后,判断语音信息的类型;
    当判断到语音信息为指令类型信息时,将指令类型信息转换并触发相应的指令信息;
    当判断到语音信息为问题类型信息时,将问题类型信息与预设的问题数据库进行匹配处理后,获取并播放相应的答案信息;
    所述相应的指令信息至少包括角度切换信息、移动信息、点击信息、位置信息、呼叫信息和关闭信息中任一种信息。
  7. 根据权利要求2所述的一种应用于文旅的智能浏览方法,其特征在于,还包括AR导航步 骤,所述AR导航步骤,具体为:
    获取输入的出发地址信息后,结合出发地址信息和预设的终点地址通过接口调用第三方AR导航服务生成导航路线。
  8. 根据权利要求2所述的一种应用于文旅的智能浏览方法,其特征在于,还包括自动导览步骤,所述自动导览步骤,具体为:
    根据预设的路径依次切换三维场景的画面,并获取所有的介绍信息后按照预设顺序自动播放,直至画面切换结束。
  9. 一种应用于文旅的智能浏览系统,其特征在于,包括:
    链接显示模块,用于获取输入的链接信息后,根据链接信息对应的模型数据渲染显示旅游点的三维场景;
    画面调整模块,用于获取输入的切换信息后,根据切换信息调整显示三维场景的画面;
    灵敏度调节模块,用于获取输入的灵敏度信息后,根据灵敏度信息调节画面的更新速度。
  10. 一种应用于文旅的智能浏览系统,其特征在于,包括:
    至少一个处理器;
    至少一个存储器,用于存储至少一个程序;
    当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现权利要求1-8任一项所述的一种应用于文旅的智能浏览方法。
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