CN111918088A - Scenic spot live broadcasting system with passenger flow and weather monitoring functions - Google Patents

Scenic spot live broadcasting system with passenger flow and weather monitoring functions Download PDF

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Publication number
CN111918088A
CN111918088A CN202010794587.3A CN202010794587A CN111918088A CN 111918088 A CN111918088 A CN 111918088A CN 202010794587 A CN202010794587 A CN 202010794587A CN 111918088 A CN111918088 A CN 111918088A
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China
Prior art keywords
scenic spot
electric
live broadcast
information
live broadcasting
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Granted
Application number
CN202010794587.3A
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Chinese (zh)
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CN111918088B (en
Inventor
周道华
曾俊
杨陈
周涛
李武鸿
许江泽
黄维
张明娟
雷运宇
罗曦
蒲润生
周林
黄泓蓓
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Chengdu Zhongke Daqi Software Co ltd
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Chengdu Zhongke Daqi Software Co ltd
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Priority to CN202010794587.3A priority Critical patent/CN111918088B/en
Publication of CN111918088A publication Critical patent/CN111918088A/en
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/21Server components or server architectures
    • H04N21/218Source of audio or video content, e.g. local disk arrays
    • H04N21/2187Live feed
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01WMETEOROLOGY
    • G01W1/00Meteorology
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B17/00Details of cameras or camera bodies; Accessories therefor
    • G03B17/56Accessories
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/25Management operations performed by the server for facilitating the content distribution or administrating data related to end-users or client devices, e.g. end-user or client device authentication, learning user preferences for recommending movies
    • H04N21/251Learning process for intelligent management, e.g. learning user preferences for recommending movies
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/25Management operations performed by the server for facilitating the content distribution or administrating data related to end-users or client devices, e.g. end-user or client device authentication, learning user preferences for recommending movies
    • H04N21/258Client or end-user data management, e.g. managing client capabilities, user preferences or demographics, processing of multiple end-users preferences to derive collaborative data
    • H04N21/25866Management of end-user data
    • H04N21/25875Management of end-user data involving end-user authentication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/25Management operations performed by the server for facilitating the content distribution or administrating data related to end-users or client devices, e.g. end-user or client device authentication, learning user preferences for recommending movies
    • H04N21/258Client or end-user data management, e.g. managing client capabilities, user preferences or demographics, processing of multiple end-users preferences to derive collaborative data
    • H04N21/25866Management of end-user data
    • H04N21/25891Management of end-user data being end-user preferences
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/47End-user applications
    • H04N21/478Supplemental services, e.g. displaying phone caller identification, shopping application
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A90/00Technologies having an indirect contribution to adaptation to climate change
    • Y02A90/10Information and communication technologies [ICT] supporting adaptation to climate change, e.g. for weather forecasting or climate simulation

Abstract

The invention discloses a scenic spot live broadcast system with passenger flow and weather monitoring functions, which comprises: the method comprises the steps that a first acquisition unit acquires a video data stream of a scenic spot and sends the acquired video data stream to a live broadcast server; the second acquisition unit acquires weather information of a scenic spot and sends the weather information to the live broadcast server; the third acquisition unit acquires real-time people number information of a scenic spot and sends the acquired real-time people number information of the scenic spot to the live broadcast server, and the live broadcast server packs a video data stream, corresponding weather information and corresponding real-time people number information of the scenic spot into a live broadcast data packet; the client logs in a scenic spot live broadcast system, obtains a live broadcast data packet from a live broadcast server for playing, and displays the real-time number of people in the scenic spot and the real-time weather in a live broadcast picture; the system can obtain scenic spot real-time passenger flow information and scenic spot real-time weather information in live broadcasting, is rich in functions compared with traditional scenic spot live broadcasting, and can meet actual requirements of users.

Description

Scenic spot live broadcasting system with passenger flow and weather monitoring functions
Technical Field
The invention relates to the field of live video, in particular to a scenic spot live broadcasting system with passenger flow and weather monitoring functions.
Background
Traditional scenic spot tourism and propaganda are through visitor's visiting or watch brochure, propaganda piece and picture etc. of scenic spot to the scenic spot, can't accomplish real reduction to visitor's real-time nature and true degree.
Along with the development of live broadcast technique, the scenic spot is live and is also become the hot topic of tourism, and through broadcasting live the scenic spot, the visitor can know the real-time true condition and the actual scenery in scenic spot, is convenient for plan the tourism arrangement to and carry out high in the clouds tourism etc..
However, the existing scenic spot live broadcasting system can only carry out video live broadcasting on scenic spots, all have the pictures of the scenic spots in the live broadcasting, and the functions are single, so that the ever-changing requirements of tourists cannot be met.
Disclosure of Invention
The invention provides a scenic spot live broadcast system with passenger flow and weather monitoring functions, which can be used for live broadcast of scenic spots, obtaining real-time passenger flow information of the scenic spots and real-time weather information of the scenic spots while live broadcast.
In order to achieve the above object, the present invention provides a scenic spot live broadcasting system with both passenger flow and weather monitoring functions, the system comprising:
the system comprises a first acquisition unit, a second acquisition unit and a live broadcast server, wherein the first acquisition unit is used for acquiring a video data stream of a scenic spot and transmitting the acquired video data stream to the live broadcast server;
the second acquisition unit is used for acquiring the weather information of the scenic spot and sending the acquired weather information to the live broadcast server;
the third acquisition unit is used for acquiring the real-time people number information of the scenic spot and sending the acquired real-time people number information of the scenic spot to the live broadcast server
The live broadcast server is used for packaging the video data stream, the corresponding weather information and the corresponding scenic spot real-time people number information into a live broadcast data packet;
and the client is used for logging in a scenic spot live broadcast system, acquiring a live broadcast data packet from a live broadcast server for playing, and displaying the real-time number of people in the scenic spot and the real-time weather in a live broadcast picture.
The principle of the invention is that video data are collected through a first collecting unit to carry out image video live broadcast, then weather information is collected through a second collecting unit, people number information is collected through a third collecting unit, and the real-time people number and the real-time weather of a scenic spot are displayed in a live broadcast picture. This system can obtain the real-time passenger flow information in scenic spot and carry out the live broadcast to and can obtain the real-time weather information in scenic spot and broadcast, and the tradition only has the live broadcast function of picture, does not have the number and the weather monitoring function of corresponding picture, and the live broadcast picture visitor through the scenic spot can experience the scenery in scenic spot, and the crowd condition and the weather condition of this scenic spot can be judged out to number and the weather user through the scenic spot, are convenient for judge whether be fit for going the on-the-spot tourism.
The third acquisition unit comprises a scenic spot entrance people counting module and a scenic spot exit people counting module, the numbers of people entering and leaving the scenic spot are respectively counted, and then the real-time number of people in the scenic spot is calculated through the difference value of the data of the people entering and leaving the scenic spot.
Preferably, the first acquisition unit is further configured to process the acquired video data stream into a video data stream format, a code rate, a coding mode, and a resolution that meet the playing requirement, and send the processed video data stream to the live broadcast server. The live broadcast server can conveniently carry out live broadcast after the processing.
Preferably, the system further comprises a live broadcast platform, the user can register and log in the live broadcast platform through the client, corresponding scenic spot live broadcast information is searched from the live broadcast platform to be watched, and the live broadcast server can upload a live broadcast picture to the live broadcast platform. Live broadcast is managed conveniently through the live broadcast platform.
Preferably, be equipped with scenic spot classification unit in the live platform for classify the scenic spot, wherein categorised mode includes: the position of the scenic spot, the type of the scenic spot, the real-time number of people in the scenic spot, the scenic spot cost performance index and the scenic spot tourism-adapting index. The classification is convenient for the user to select the scenic spot of interest of the user to live broadcast and watch when the platform enters the entrance, wherein the scenic spot of interest is designed, wherein the attention point of the user to the scenic spot is divided into: the method comprises the steps that positions of scenic spots, such as the current real-time distance from users, the users are possibly unwilling to travel when the distance is too far, types of the scenic spots are selected according to the types of the scenic spots, such as landscape scenic spots, historical cultural relic scenic spots, natural scenery scenic spots or amusement park scenic spots, the number of real-time persons in the scenic spots is reduced, the playing experience is easy to reduce when the number of real-time persons in the scenic spots is large, the scenic spot cost performance index and the scenic spot tourism adaptability index are obtained by scoring of the historical users, and tourists can assist in judging and selecting the corresponding scenic spots to watch and play through the scenic spot cost performance index and the scenic spot tourism adaptability index.
Preferably, the live broadcast platform is further provided with a scenic spot recommending unit for recommending scenic spots matched with the personal information and personal hobbies of the user to the user and sending the matched scenic spots to corresponding clients. The user's personal information needs to fill in the scenic spot type and the playing mode that the person likes when registering, saves the time that the user searched through the scenic spot that the user recommends and match with user's personal information and personal taste.
Preferably, the first acquisition unit is further configured to acquire location information and obtain the scenic spot information based on the location information, and the live broadcast server is further configured to obtain commentary information or introduction information corresponding to the scenic spot based on the scenic spot information and add the commentary information or the introduction information to the live broadcast data packet. If the position information is obtained through the positioning module, the corresponding scenery spot information is obtained based on the real-time position, the explanation information or the introduction information corresponding to the scenery spot is obtained based on the scenery spot information, and the explanation information or the introduction information is added to the live broadcast data packet. The customized explanation of the user is realized, and the user can better know the scenic spot condition and the scenic spot information through the corresponding explanation and introduction.
Preferably, the weather information of the scenic spot collected by the second collecting unit comprises the weather information collected in real time from the scenic spot and the weather information downloaded from a weather monitoring system of a weather department. Because the weather department predicts the weather within a small range and quickly changes inaccurately, the invention utilizes the real-time weather information in the scenic spot to correct, and ensures the weather information provided for audiences during live broadcasting to be accurate.
Preferably, first acquisition unit includes a plurality of sight spot collection modules, like the live video camera, and every sight spot collection module corresponds a sight spot in the scenic spot, and every sight spot collection module all includes in first shell and the first shell: the device comprises an image acquisition module, a data processing module, a first communication module, a first control module and a first power supply, wherein the image acquisition module, the data processing module, the first communication module and the first control module are all connected with the first power supply; the image acquisition module is used for gathering the image, then transmits the image data who gathers for data processing module and transmits, then transmits the live broadcast server to the rear through first communication module and carries out the live broadcast, and first power is used for carrying out the power supply to first acquisition unit, and first control module is used for controlling the collection, processing and the transmission of image.
Preferably, the system also comprises a plurality of first mounting structures for mounting the scenery spot acquisition modules, the traditional scenic spot live video cameras are mounted in open places or on building walls, but are mounted on buildings which are easy to damage buildings, such as historical buildings and cultural relics, and therefore, most of the traditional scenic spot live video cameras are mounted in open places outdoors, but when the traditional scenic spot live video cameras are mounted outdoors for direct broadcasting, the problems of live broadcast in rainy days and blurred live broadcast pictures exist, rainwater on the glass surface of the camera easily blurs the pictures of the camera, and even the camera with ultrahigh pixels is not exceptional. The current method for solving the problem of blurred live broadcast pictures in rainy days comprises the following steps:
the method for solving the rainwater interference of the camera in rainy days mainly comprises the following two methods:
1. a invisible wiper is used. The invisible windshield wiper is mainly characterized in that a layer of hydrophobic coating is added on the protective glass on the surface of the camera, and when raining, a cleaning agent is needed for dewatering, so that the aim of cleaning rainwater is fulfilled. Compared with the common window glass, the invisible windshield wiper window glass has the performance of repelling water, dust and the like. However, when the cleaning agent is used, the cleaning agent is required to be additionally added for achieving the purpose of cleaning.
2. A rain sensor and an induction windshield wiper are added on the surface glass of the camera. When raining, the rainfall sensor can automatically judge the magnitude of the current rainfall and feed back the digital quantity of the current rainfall state to the master control, and the master control controls the speed of the windscreen wiper so as to achieve the purpose of cleaning the rainwater.
The first mode is the simplest monitoring camera structure, and requires only a hydrophobic coating on the outer glass, but hydrophobic using a cleaning agent. Therefore, the cleaning agent needs to be added artificially and irregularly when the glass is used at ordinary times, so that the cost of using manpower, material resources and the like is increased, and meanwhile, the hydrophobic surface of the glass is easy to fall off after being used for a long time.
The second approach requires only the addition of a wiper on the camera surface. In the use process, only need to pay attention to whether the windscreen wiper normally works can, the maintenance cost when having significantly reduced the use does not need additionally to add the sanitizer simultaneously yet. But the second kind mode is not fit for live broadcasting, can have the windshield wiper to appear in the in-process picture of live broadcasting always, leads to live broadcasting experience degree to descend, leads to live broadcasting effect not good, can lead to most local blacking of picture or appear blockking or barrier when the windshield wiper passes through the camera lens to when the rainfall is great, rainwater swing back and forth's frequency grow will lead to can often appearing the windshield wiper in the picture, lead to live broadcasting effect not good.
In order to solve the problems of unclear live broadcast pictures in rainy days and the defects of the two solutions, the invention correspondingly improves the mounting structure of the first acquisition unit, so that the first acquisition unit can acquire clear pictures in rainy days, and no brush interference occurs in the pictures, thereby ensuring the live broadcast effect, and the first mounting structure comprises:
the intelligent rain shelter comprises a first mounting column, a first mounting plate, a first guide rod, a first sliding block, a first electric telescopic rod, a second shell, a second communication module, a second control module, a second power supply, a first electric rain shelter, a second electric rain shelter, a first support, a second guide rod and a third support;
the lower end of a first mounting column is fixed on the ground, the upper end of the first mounting column is fixedly connected with the lower surface of the first mounting plate, a second shell is fixed on the upper surface of the first mounting plate, a second communication module, a second control module and a second power supply are all arranged in the second shell, the second communication module, the second control module, a first electric telescopic rod, a first electric rain shelter and a second electric rain shelter are all connected with a second power supply, the second communication module is connected with the second control module, the second control module is connected with the first electric telescopic rod, the first electric rain shelter and the second electric rain shelter, a scenic spot acquisition module is fixed on the surface of a first sliding block, one end of the first guide rod is fixedly connected with the first mounting plate, the other end of the first guide rod extends out of the first mounting plate, a first sliding groove is arranged on the upper surface of the first guide rod, the first sliding block is partially embedded in the first sliding groove, and can slide in the first sliding groove, one end of a first electric telescopic rod is fixedly connected with a second shell, the other end of the first electric telescopic rod is fixedly connected with a first sliding block, the lower end of a third bracket is fixedly connected with a first mounting plate, the upper end of the third bracket is fixedly connected with one end of a second guide rod, the second guide rod is positioned right above the first guide rod and is parallel to the first guide rod, the left side of the second guide rod is provided with a first track of a first electric canopy, a pulley at one side of the first electric canopy is embedded in the first track, the right side of the second guide rod is provided with a second track of a second electric canopy, a pulley of the second electric canopy is embedded in the second track, one end of a first bracket is fixedly connected with the first mounting plate, the other end of the first bracket is fixedly connected with the rear end of the first electric canopy, one end of the second bracket is fixedly connected with the first mounting plate, the other end of the second bracket is fixedly connected with the rear end of the second electric canopy, the height of the side of the sliding wheel of the first electric rain shelter is greater than the height of the other side of the first electric rain shelter, the height of the side of the sliding wheel of the second electric rain shelter is greater than the height of the other side of the second electric rain shelter, the front end of the first electric rain shelter and the front end of the second electric rain shelter are both provided with spoilers, the upper surface of the first electric rain shelter and the upper surface of the second electric rain shelter are both provided with flow guide grooves, one end of each flow guide groove extends to the second guide rod, and the other end of each flow guide groove extends to the side face of the electric rain shelter.
Wherein, the first collecting unit can be erected through the first mounting post, which is convenient for having better direct seeding angle and direction, the second communication module is used for receiving a control instruction and transmitting the control instruction to the second control module, the second control module is used for controlling the extension and retraction of the first electric telescopic rod, if the first electric telescopic rod is shortened to withdraw the first collecting unit in rainy days, so as to avoid rainwater on the first collecting unit, and after rain, the first electric telescopic rod is extended to push the first collecting unit out, the first telescopic rod drives the first slide block to slide in the first slide groove of the first guide rod, so as to drive the first collecting unit to move, when the first collecting unit is exposed outside in rainy days, rainwater appears on the lens of the first collecting unit, so as to cause the collected pictures to be unclear, in order to solve the problems, the invention designs the first electric rain shelter and the second electric rain shelter, oneself is opened when raining, wherein first electronic rainshelter and the electronic rainshelter of second are equipped with corresponding rainwater inductive transducer, inductive transducer senses raining after raining, then the controller expandes first electronic rainshelter and the electronic rainshelter of second, can shelter from the rainwater after the expansion, make the first collection unit that is located first electronic rainshelter and the electronic rainshelter of second below avoid drenching, guarantee the definition of live frame, wherein, first electronic rainshelter and the electronic rainshelter of second are installed and are fixed through first support and second support respectively.
Wherein, the first electric rain shelter and the second electric rain shelter are respectively positioned at the left side and the right side of the second guide rod, so that the first electric rain shelter and the second electric rain shelter are connected to form an integral rain shelter for rain protection of the first acquisition unit, the height of the slide wheel side of the first electric rain shelter is higher than that of the other side of the first electric rain shelter, the height of the slide wheel side of the second electric rain shelter is higher than that of the other side of the second electric rain shelter, rain drops fall on the first electric rain shelter and the second electric rain shelter and then respectively flow out from the low side of the rain shelter, the rain drops are prevented from flowing out from the front end of the rain shelter, the front end of the first electric rain shelter and the front end of the second electric rain shelter are both provided with flow baffles, the flow baffles are designed for further preventing rain from flowing out from the front end of the rain shelters, the upper surfaces of the first electric rain shelter and the second electric rain shelter are both provided with flow guide grooves, one end of the diversion trench extends towards the second guide rod, the other end of the diversion trench extends towards the side face of the electric rain shelter, the diversion trench is designed to facilitate rainwater to flow towards the low side of the rain shelter quickly and avoid flowing out from the front end of the rain shelter, wherein the purpose of avoiding flowing out from the front end of the rain shelter is that if a large amount of rainwater flows out from the front end of the rain shelter after being collected, water flow or a large amount of water drops appear in the picture of the first acquisition unit, and further, water flow or rain drops occupying more parts of the picture appear in a direct-broadcast picture, so that a user is not convenient to observe the front scenery, the water flow or water drops collected in the front block the rear scenery, the direct-broadcast effect in rainy days is poor, the collected rainwater can be prevented from flowing out from the front end of the rain shelter by adjusting the inclination angles of the first electric rain shelter and the second electric rain shelter, and designing the corresponding diversion trench and the corresponding spoiler, and further, the blocking of the rear scenery by the rainwater is prevented, the live broadcast effect is guaranteed.
Preferably, the first mounting structure further comprises a solar cell panel, power supply line wiring is not convenient to carry out in a scenic spot, wiring can be avoided by using solar power supply, and the solar cell panel has the technical effects of energy conservation and environmental protection; a guide plate is arranged in each guide groove, a jacking mechanism is arranged on the lower surface of each guide plate, and the jacking mechanism is used for jacking the guide plate out of the guide groove and retracting the guide plate into the guide groove; and a second electric cleaning brush is arranged on the spoiler and is used for cleaning the spoiler.
When stains appear on the surface of the first acquisition unit, the user clicks the cleaning button to clean, when the number of clicks of the cleaning button meets a preset requirement, the first electric cleaning brush cleans the image acquisition module once, the number of clicks of the cleaning button is cleared after cleaning, most users can clean the image acquisition module only when feeling unclear, and excessive cleaning interference with live broadcast is avoided.
In the invention, a guide plate is arranged in each guide groove, a jacking mechanism is arranged on the lower surface of the guide plate, when impurities appear in the guide grooves, the jacking mechanism pushes out the guide plate, namely the impurities are pushed out, so that the guide grooves are dredged, and then the jacking mechanism is retracted to enable the guide plate to return to the guide grooves.
Wherein, in practical application, the inventor finds spoiler department piles up debris easily, leads to the rainwater not convenient for discharge, through be equipped with the electronic cleaning brush of second on the spoiler for clean spoiler department, can avoid the rainwater not convenient for discharge, avoid appearing debris and pile up.
Preferably, the second collecting unit in the invention is used for collecting weather information, such as weather detecting equipment for collecting weather, and is used for protecting scenic spots and remote positions where the weather detecting equipment for collecting weather is arranged, so that wiring cannot be performed in the field, the wiring cost in the field is high, solar power generation is generally adopted to save energy, protect environment and reduce cost, but when the thickness of snow is thick, sunlight cannot penetrate through a snow layer to irradiate the surface of a photovoltaic module, the power generation amount of the photovoltaic module is greatly lost, therefore, if the snow on the surface of a solar cell panel cannot be generated continuously, the weather monitoring cannot be performed continuously when the weather detecting equipment is powered off, the traditional method for solving the snow on the surface of the solar cell panel adopts a snow melting agent and a mechanical snow removing method, such as a snow brush and a driving mechanism are used in a matching way, but the electric snow removing method needs a corresponding monitoring sensor and a snow removing electric device, the invention is a corresponding improvement in that a corresponding power supply line is additionally provided, which is contrary to the protected environment in the scenic spot, and the system further comprises a second mounting structure for mounting a second acquisition unit, the second mounting structure comprising: the solar cell panel comprises a second mounting column, a second mounting plate, a third shell, a fourth support, a plurality of solar cell panels, a first power supply, a second power supply and a heating element; the lower end of a second mounting column is fixed on the ground, the upper end of the second mounting column is fixedly connected with the lower surface of a second mounting plate, the upper surface of the second mounting plate is used for mounting and fixing a second acquisition unit, one end of a fourth bracket is fixedly connected with the second mounting column, the other end of the fourth bracket is fixedly connected with a third shell, the third shell is in a cone shape and is a glass shell, a plurality of solar panels, a first power supply, a second power supply and a heating element are all arranged in the third shell, and the plurality of solar panels are uniformly distributed in the shell, the orientation of the plurality of solar panels is different, part of the plurality of solar panels is connected with the first power supply, the other part of the plurality of solar panels is connected with the second power supply, the first power supply is used for supplying power for the second acquisition unit, and the second power supply is used for supplying power for the heating element.
Wherein, dry solar cell panel evenly distributed is in the shell, and the orientation is different between a plurality of solar cell panel, and the purpose makes when the sunlight irradiation angle is different can both have solar cell panel to be in better position and receive sunshine, the efficiency of guarantee electricity generation.
The solar cell panel comprises a conical glass shell, a heating element is arranged in the conical glass shell, the temperature of the glass shell is higher due to the fact that the heating element heats air in the shell, accumulated snow cannot be formed on a third shell, the surface of the solar cell panel is indirectly free of accumulated snow, normal power supply is guaranteed, and the principle of using the third shell to prevent the accumulated snow is as follows: the first shell and the third shell are cones, accumulated snow is not easy to form on the surfaces of the cones due to inclination, and the accumulated snow is not easy to form on the surfaces and can slide off due to gravity; the second cone adopts the glass material, and the glass surface is smooth for snow is difficult to adhere to, very fast just the landing, is difficult to form snow, is equipped with heating device in the third shell, makes shell surface temperature higher, and snow melts promptly after falling on the shell and is difficult to form snow.
One or more technical schemes provided by the invention at least have the following technical effects or advantages:
the system can be used for live broadcasting of scenic spots, can obtain real-time passenger flow information of the scenic spots and real-time weather information of the scenic spots in live broadcasting, is rich in functions compared with traditional scenic spot live broadcasting, and can meet actual requirements of users.
The system can ensure that the live broadcast picture is clear in rainy days, does not interfere the live broadcast effect and does not need corresponding power supply wiring.
The system can ensure normal power supply of the second acquisition unit in snowy days, can prevent the accumulated snow from appearing on the solar cell panel, and avoids the defects of the traditional mechanical snow removal mode.
Drawings
The accompanying drawings, which are included to provide a further understanding of the embodiments of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention;
FIG. 1 is a schematic diagram of a scenic spot live broadcast system with both passenger flow and weather monitoring functions according to the present invention;
FIG. 2 is a schematic structural view of a first mounting structure in the present invention;
FIG. 3 is a schematic view of the installation angle of the first and second electrical rainshelters in the present invention;
FIG. 4 is a schematic structural view of a second mounting structure in the present invention;
the system comprises a first mounting column, a second mounting plate, a first guide rod, a first sliding block, a second sliding block, a first electric telescopic rod, a second shell, a second communication module, a second control module, a second power supply, a second electric canopy, a second support, a second guide rod, a third support, a spoiler, a guide groove, a first electric canopy, a second mounting column, a second mounting plate, a third shell, a fourth support, a second solar cell panel, a first power supply, a second power supply, a heating element and a second collecting unit, wherein the first mounting column is 1, the first mounting plate is 2, the first guide rod is 3, the second sliding block is 4, the first electric telescopic rod is 5, the second shell is 6, the second communication module is 7, the second communication module is 8, the second control module is 9, the second power supply is 10, the second electric canopy is 11, the.
Detailed Description
In order that the above objects, features and advantages of the present invention can be more clearly understood, a more particular description of the invention will be rendered by reference to the appended drawings. It should be noted that the embodiments of the present invention and features of the embodiments may be combined with each other without conflicting with each other.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention, however, the present invention may be practiced in other ways than those specifically described and thus the scope of the present invention is not limited by the specific embodiments disclosed below.
It will be understood by those skilled in the art that in the present disclosure, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in an orientation or positional relationship indicated in the drawings for ease of description and simplicity of description, and do not indicate or imply that the referenced devices or components must be constructed and operated in a particular orientation and thus are not to be considered limiting.
It is understood that the terms "a" and "an" should be interpreted as meaning that a number of one element or element is one in one embodiment, while a number of other elements is one in another embodiment, and the terms "a" and "an" should not be interpreted as limiting the number.
Example one
Referring to fig. 1, an embodiment of the present invention provides a live broadcasting system in a scenic spot with both passenger flow and weather monitoring functions, where the system includes:
the system comprises a first acquisition unit, a second acquisition unit and a live broadcast server, wherein the first acquisition unit is used for acquiring a video data stream of a scenic spot and transmitting the acquired video data stream to the live broadcast server;
the second acquisition unit is used for acquiring the weather information of the scenic spot and sending the acquired weather information to the live broadcast server;
the third acquisition unit is used for acquiring the real-time people number information of the scenic spot and sending the acquired real-time people number information of the scenic spot to the live broadcast server
The live broadcast server is used for packaging the video data stream, the corresponding weather information and the corresponding scenic spot real-time people number information into a live broadcast data packet;
and the client is used for logging in a scenic spot live broadcast system, acquiring a live broadcast data packet from a live broadcast server for playing, and displaying the real-time number of people in the scenic spot and the real-time weather in a live broadcast picture.
The client can be installed in electronic equipment, such as computers, mobile phones and other electronic equipment.
The system can obtain real-time passenger flow information of a scenic spot and carry out live broadcast, and can obtain real-time weather information of the scenic spot and carry out live broadcast, the traditional system only has a picture live broadcast function and does not have the number of people and the weather monitoring function of corresponding pictures, the first acquisition unit can be a video live broadcast camera or a video acquisition device or a monitoring camera, and the specific implementation mode is not limited.
The third acquisition unit comprises a scenic spot entrance people counting module and a scenic spot exit people counting module, the numbers of people entering the scenic spot and leaving the scenic spot are respectively counted, then the real-time number of people in the scenic spot is calculated, for example, the difference between the real-time number of people in the scenic spot and the real-time number of people in the scenic spot is calculated, wherein the scenic spot entrance people counting module and the scenic spot exit people counting module can be realized through corresponding gates or ticket counting and identifying devices or a playing bracelet worn by a visitor, and the specific implementation mode is not limited by the invention.
In the embodiment of the present invention, the first acquisition unit is further configured to process the acquired video data stream into a video data stream format, a code rate, a coding mode, and a resolution that meet a playing requirement, and send the processed video data stream to a live broadcast server.
In the embodiment of the invention, the system further comprises a live broadcast platform, a user can register and log in the live broadcast platform through the client, corresponding scenic spot live broadcast information is searched from the live broadcast platform to be watched, and a live broadcast server can upload a live broadcast picture to the live broadcast platform. The live platform can be a third-party live platform or a self-developed live platform.
In the embodiment of the present invention, a scenic spot classification unit is disposed in the live broadcast platform and is configured to classify scenic spots, where the classification manner includes: the position of the scenic spot, the type of the scenic spot, the real-time number of people in the scenic spot, the scenic spot cost performance index and the scenic spot tourism-adapting index. The purpose of the classification is to enable the user to quickly select a favorite scenic spot. The real-time position of the distance between the positions of the scenic spots, the types of the scenic spots such as scenic culture scenic spots, the real-time number of people in the scenic spots such as thirty thousand, the ratio of 8 in the scenic spot cost performance index of 0-10 to 7 in the scenic spot tourist index of 0-10 to 7.
In the embodiment of the invention, the live broadcast platform is also provided with a scenic spot recommending unit which is used for recommending scenic spots matched with the personal information and personal hobbies of the user to the user and sending the matched scenic spots to the corresponding client. The recommendation unit can avoid the user from selecting by himself, and time for the user to select is saved. The scenic spot recommendation unit carries out recommendation display on the user in the interface after the user logs in the system, and the user can also actively close the function.
In the embodiment of the present invention, the first acquisition unit is further configured to acquire location information, for example, the location information is acquired through a corresponding positioning module, and the live broadcast server is further configured to acquire commentary information or introduction information corresponding to the scenery spot based on the location information, and add the commentary information or the introduction information to the live broadcast data packet.
In the embodiment of the present invention, the scenic spot weather information collected by the second collecting unit includes weather information collected in real time from inside the scenic spot and weather information downloaded from a weather monitoring system of a weather department. The weather of the meteorological department in a small range and for the weather which changes rapidly is not predicted accurately, and the weather in the scenic spot is used for correction.
Example two
Wherein, on the basis of embodiment one, first acquisition unit includes a plurality of sight spot collection module, and every sight spot collection module corresponds a sight spot in the scenic spot, and every sight spot collection module all includes in first shell and the first shell: the device comprises an image acquisition module (such as a camera), a data processing module (such as a video data related processor), a first communication module (such as a 5G communication module), a first control module and a first power supply, wherein the image acquisition module, the data processing module, the first communication module and the first control module are all connected with the first power supply; the system further includes a plurality of first mounting structures for mounting the scenery collection modules, please refer to fig. 2-3, the first mounting structures include:
the intelligent electric rain shelter comprises a first mounting column 1, a first mounting plate 2, a first guide rod 3, a first sliding block 4, a first electric telescopic rod 5, a second shell 6, a second communication module 7, a second control module 8, a second power supply 9, a first electric rain shelter 16, a second electric rain shelter 10, a first support, a second support 11, a second guide rod 12 and a third support 13;
the lower end of a first mounting column is fixed on the ground, the upper end of the first mounting column is fixedly connected with the lower surface of the first mounting plate, a second shell is fixed on the upper surface of the first mounting plate, a second communication module, a second control module and a second power supply are all arranged in the second shell, the second communication module, the second control module, a first electric telescopic rod, a first electric rain shelter and a second electric rain shelter are all connected with a second power supply, the second communication module is connected with the second control module, the second control module is connected with the first electric telescopic rod, the first electric rain shelter and the second electric rain shelter, a scenic spot acquisition module is fixed on the surface of a first sliding block, one end of the first guide rod is fixedly connected with the first mounting plate, the other end of the first guide rod extends out of the first mounting plate, a first sliding groove is arranged on the upper surface of the first guide rod, the first sliding block is partially embedded in the first sliding groove, and can slide in the first sliding groove, one end of a first electric telescopic rod is fixedly connected with a second shell, the other end of the first electric telescopic rod is fixedly connected with a first sliding block, the lower end of a third bracket is fixedly connected with a first mounting plate, the upper end of the third bracket is fixedly connected with one end of a second guide rod, the second guide rod is positioned right above the first guide rod and is parallel to the first guide rod, the left side of the second guide rod is provided with a first track of a first electric canopy, a pulley at one side of the first electric canopy is embedded in the first track, the right side of the second guide rod is provided with a second track of a second electric canopy, a pulley at one side of the second electric canopy is embedded in the second track, one end of a first bracket is fixedly connected with the first mounting plate, the other end of the first bracket is fixedly connected with the rear end of the first electric canopy, one end of a second bracket is fixedly connected with the first mounting plate, the other end of the second bracket is fixedly connected with the rear end of the second electric, the height of the side of the sliding wheel of the first electric canopy is greater than the height of the other side of the first electric canopy, the height of the side of the sliding wheel of the second electric canopy is greater than the height of the other side of the second electric canopy, the front end of the first electric canopy and the front end of the second electric canopy are both provided with spoilers 14, the upper surface of the first electric canopy and the upper surface of the second electric canopy are both provided with flow guide grooves 15, one end of each flow guide groove extends to the second guide rod, and the other end of each flow guide groove extends to the side surface of the electric canopy.
Wherein, first electronic rainshelter, the electronic rainshelter of second expand and to keep off the rain, and first electric telescopic handle can drive sight spot collection module and stretch out and withdraw, avoids being drenched by the rain, conveniently adjusts sight spot collection module's position, can prevent through guiding gutter and spoiler that a large amount of rainwater from gathering together rivers and raindrops in camera lens the place ahead, ensures live picture effect.
In the embodiment of the invention, the first mounting structure further comprises a first solar cell panel, the first solar cell panel is connected with the first power supply and the second power supply, the image acquisition module is provided with a first electric cleaning brush, a cleaning button is arranged in a live broadcast picture for a user to click when a live broadcast system in a scenic spot is in a live broadcast, when the click times of the cleaning button meet a preset requirement, the first electric cleaning brush cleans the image acquisition module for one time, and the click times of the cleaning button are cleared after cleaning; a guide plate is arranged in each guide groove, a jacking mechanism is arranged on the lower surface of each guide plate, and the jacking mechanism is used for jacking the guide plate out of the guide groove and retracting the guide plate into the guide groove; and a second electric cleaning brush is arranged on the spoiler and is used for cleaning the spoiler.
The jacking mechanism can be an electric telescopic rod, one end of the electric telescopic rod is connected with the guide plate, the other end of the electric telescopic rod is connected with the bottom of the guide groove, and the jacking mechanism can also be a hydraulic column or a pneumatic column and the like.
EXAMPLE III
On the basis of the first embodiment, the system further includes a second mounting structure for mounting a second acquisition unit, please refer to fig. 4, where the second mounting structure includes:
a second mounting column 17, a second mounting plate 18, a third housing 19, a fourth bracket 20, a plurality of second solar panels 21, a first power supply 22, a second power supply 23, and a heating element 24;
the lower end of the second mounting column is fixed on the ground, the upper end of the second mounting column is fixedly connected with the lower surface of the second mounting plate, the upper surface of the second mounting plate is used for mounting and fixing a second acquisition unit 25, one end of a fourth bracket is fixedly connected with the second mounting column, the other end of the fourth bracket is fixedly connected with a third shell, the third shell is in a cone shape and is a glass shell, a plurality of second solar panels, a first power supply, a second power supply and a heating element are all arranged in the third shell, and the plurality of second solar panels are uniformly distributed in the shell, the orientation of the plurality of solar panels is different, part of the second solar panels in the plurality of second solar panels are connected with a first power supply, the other part of the second solar panels in the plurality of second solar panels are connected with a second power supply, the first power supply is used for supplying power to the second acquisition unit, and the second power supply is used for supplying power to the heating element.
Weather detection equipment of weather is gathered in second mounting panel installation, can't lay wire in the field, open-air wiring is with high costs, adopt solar energy power generation energy-concerving and environment-protective and with low costs, but when snow thickness is thick, the sunlight can't see through the snow cover and shine the photovoltaic module surface, photovoltaic module generated energy will have great loss, solar cell panel surface snow can't continue the electricity generation, use certain power station in Xinjiang as the research object, through simulating different snow thickness in photovoltaic module surface, reach the influence characteristic of snow to the photovoltaic module generated energy, when snow thickness reaches 6mm, the sunlight can't see through the snow cover and shine the photovoltaic module surface, photovoltaic module generated energy loss volume is 89.92%, the power station stops to the electric wire netting transport electric energy. Therefore, if the accumulated snow on the surface of the solar cell panel can cause that the electricity can not be continuously generated and the weather monitoring can not be continuously carried out when the weather detecting equipment is powered off, the traditional method for solving the accumulated snow on the surface of the solar cell panel adopts a snow melting agent and a mechanical snow removing method, such as a snow brush and a driving mechanism which are matched, however, the electric snow removal mode needs a corresponding monitoring sensor and snow removal electric equipment, needs to be additionally provided with a corresponding power supply line, the invention uses the cone-shaped glass shell to prevent the environment from being violated, and the heating element is arranged to heat the air in the shell, so that the temperature of the glass shell is higher, snow can not be formed on the third shell, and then indirectly make solar cell panel surface not have the snow, guarantee normal power supply, wherein, the principle that uses the third shell to prevent snow does: the first shell and the third shell are cones, accumulated snow is not easy to form on the surfaces of the cones due to inclination, and the accumulated snow is not easy to form on the surfaces and can slide off due to gravity; the second cone adopts the glass material, and the glass surface is smooth for snow is difficult to adhere to, very fast just the landing, is difficult to form snow, is equipped with heating device in the third shell, makes shell surface temperature higher, and snow melts promptly after falling on the shell and is difficult to form snow.
While preferred embodiments of the present invention have been described, additional variations and modifications in those embodiments may occur to those skilled in the art once they learn of the basic inventive concepts. Therefore, it is intended that the appended claims be interpreted as including preferred embodiments and all such alterations and modifications as fall within the scope of the invention.
It will be apparent to those skilled in the art that various changes and modifications may be made in the present invention without departing from the spirit and scope of the invention. Thus, if such modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (10)

1. A scenic spot live broadcast system with passenger flow and weather monitoring functions is characterized by comprising:
the system comprises a first acquisition unit, a second acquisition unit and a live broadcast server, wherein the first acquisition unit is used for acquiring a video data stream of a scenic spot and transmitting the acquired video data stream to the live broadcast server;
the second acquisition unit is used for acquiring the weather information of the scenic spot and sending the acquired weather information to the live broadcast server;
the third acquisition unit is used for acquiring the real-time people number information of the scenic spot and sending the acquired real-time people number information of the scenic spot to the live broadcast server
The live broadcast server is used for packaging the video data stream, the corresponding weather information and the corresponding scenic spot real-time people number information into a live broadcast data packet;
and the client is used for logging in a scenic spot live broadcast system, acquiring a live broadcast data packet from a live broadcast server for playing, and displaying real-time people number and real-time weather information of the scenic spot in a live broadcast picture.
2. The live broadcasting system for scenic spots with passenger flow and weather monitoring functions as claimed in claim 1, wherein the first acquisition unit is further configured to process the acquired video data stream into a video data stream format, a code rate, a coding mode and a resolution that meet playing requirements, and send the processed video data stream to a live broadcasting server.
3. The live broadcasting system for scenic spots with passenger flow and weather monitoring functions as claimed in claim 1, further comprising a live broadcasting platform, wherein a user can register and log in the live broadcasting platform through a client, corresponding live broadcasting information of the scenic spots is searched from the live broadcasting platform for watching, and a live broadcasting server can upload a live broadcasting picture to the live broadcasting platform.
4. The live broadcasting system of scenic spot with passenger flow and weather monitoring function as claimed in claim 3, wherein the live broadcasting platform is provided with a scenic spot classification unit for classifying scenic spots, wherein the classification method comprises: the position of the scenic spot, the type of the scenic spot, the real-time number of people in the scenic spot, the scenic spot cost performance index and the scenic spot tourism-adapting index.
5. The live broadcasting system of scenic spot with both passenger flow and weather monitoring functions as claimed in claim 3, wherein the live broadcasting platform is further provided with a scenic spot recommending unit for recommending scenic spots matched with the personal information and personal preferences of the user to the user and sending the matched scenic spots to corresponding clients.
6. The live broadcasting system for scenic spots with both passenger flow and weather monitoring functions as claimed in claim 1, wherein the first acquisition unit is further configured to acquire location information, obtain information about scenic spots based on the location information, and the live broadcasting server is further configured to obtain commentary information or introduction information corresponding to the scenic spots based on the information about the scenic spots, and add the commentary information or the introduction information to a live broadcasting data packet.
7. The live broadcasting system for scenic spots with both passenger flow and weather monitoring functions as claimed in claim 1, wherein the weather information collected by the second collecting unit comprises the weather information collected from the scenic spot in real time and the weather information downloaded from the weather monitoring system of the weather department.
8. The live broadcasting system for scenic spots with functions of passenger flow and weather monitoring as claimed in any one of claims 1 to 7, wherein the first acquisition unit comprises a plurality of scenery acquisition modules, each scenery acquisition module corresponding to a scenery in the scenic spot, each scenery acquisition module comprising a first housing and, inside the first housing: the device comprises an image acquisition module, a data processing module, a first communication module, a first control module and a first power supply, wherein the image acquisition module, the data processing module, the first communication module and the first control module are all connected with the first power supply; the system further comprises a plurality of first mounting structures for mounting the attraction acquisition modules, the first mounting structures comprising:
the intelligent rain shelter comprises a first mounting column, a first mounting plate, a first guide rod, a first sliding block, a first electric telescopic rod, a second shell, a second communication module, a second control module, a second power supply, a first electric rain shelter, a second electric rain shelter, a first support, a second guide rod and a third support;
the lower end of a first mounting column is fixed on the ground, the upper end of the first mounting column is fixedly connected with the lower surface of the first mounting plate, a second shell is fixed on the upper surface of the first mounting plate, a second communication module, a second control module and a second power supply are all arranged in the second shell, the second communication module, the second control module, a first electric telescopic rod, a first electric rain shelter and a second electric rain shelter are all connected with a second power supply, the second communication module is connected with the second control module, the second control module is connected with the first electric telescopic rod, the first electric rain shelter and the second electric rain shelter, a scenic spot acquisition module is fixed on the surface of a first sliding block, one end of the first guide rod is fixedly connected with the first mounting plate, the other end of the first guide rod extends out of the first mounting plate, a first sliding groove is arranged on the upper surface of the first guide rod, the first sliding block is partially embedded in the first sliding groove, and can slide in the first sliding groove, one end of a first electric telescopic rod is fixedly connected with a second shell, the other end of the first electric telescopic rod is fixedly connected with a first sliding block, the lower end of a third bracket is fixedly connected with a first mounting plate, the upper end of the third bracket is fixedly connected with one end of a second guide rod, the second guide rod is positioned right above the first guide rod and is parallel to the first guide rod, the left side of the second guide rod is provided with a first track of a first electric canopy, a pulley at one side of the first electric canopy is embedded in the first track, the right side of the second guide rod is provided with a second track of a second electric canopy, a pulley at one side of the second electric canopy is embedded in the second track, one end of a first bracket is fixedly connected with the first mounting plate, the other end of the first bracket is fixedly connected with the rear end of the first electric canopy, one end of a second bracket is fixedly connected with the first mounting plate, the other end of the second bracket is fixedly connected with the rear end of the second electric, the height of the side of the sliding wheel of the first electric rain shelter is greater than the height of the other side of the first electric rain shelter, the height of the side of the sliding wheel of the second electric rain shelter is greater than the height of the other side of the second electric rain shelter, the front end of the first electric rain shelter and the front end of the second electric rain shelter are both provided with spoilers, the upper surface of the first electric rain shelter and the upper surface of the second electric rain shelter are both provided with flow guide grooves, one end of each flow guide groove extends to the second guide rod, and the other end of each flow guide groove extends to the side face of the electric rain shelter.
9. The scenic spot live broadcasting system with the passenger flow and weather monitoring functions as claimed in claim 8, wherein the first mounting structure further comprises a first solar cell panel, the first solar cell panel is connected with the first power supply and the second power supply, a first electric cleaning brush is arranged on the image acquisition module, a cleaning button is arranged in a live broadcasting picture for a user to click when the scenic spot live broadcasting system is in live broadcasting, when the number of clicks of the cleaning button meets a preset requirement, the first electric cleaning brush is used for cleaning the image acquisition module once, and the number of clicks of the cleaning button is reset after cleaning; a guide plate is arranged in each guide groove, a jacking mechanism is arranged on the lower surface of each guide plate, and the jacking mechanism is used for jacking the guide plate out of the guide groove and retracting the guide plate into the guide groove; and a second electric cleaning brush is arranged on the spoiler and is used for cleaning the spoiler.
10. A live viewing system with both passenger flow and weather monitoring functions as claimed in claim 1, further comprising a second mounting structure for mounting a second capture unit, the second mounting structure comprising: the solar cell comprises a first mounting column, a first mounting plate, a first shell, a first support, a plurality of first solar panels, a first power supply, a second power supply and a heating element;
the lower end of a second mounting column is fixed on the ground, the upper end of the second mounting column is fixedly connected with the lower surface of a second mounting plate, the upper surface of the second mounting plate is used for mounting and fixing a second acquisition unit, one end of a fourth bracket is fixedly connected with the second mounting column, the other end of the fourth bracket is fixedly connected with a third shell, the third shell is in a cone shape, the third shell is a glass shell, a plurality of second solar panels, a first power supply, a second power supply and a heating element are all arranged in the third shell, the plurality of second solar panels are uniformly distributed in the shell, the orientation among the plurality of second solar panels is different, part of the plurality of second solar panels are connected with the first power supply, the other part of the plurality of second solar panels are connected with the second power supply, and the first power supply is used for supplying power for the second acquisition unit, the second power supply is used to power the heating element.
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