A lamp mirror based on sharing and a shared database
By using a shared database-based lighting system to record and analyze user behavior and preferences, personalized adjustments to the lighting during the rental process are achieved, solving the problem of poor user experience in renting lighting and improving user satisfaction with the lighting within the group.
Patent Information
- Application Number
- CN202511756214.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-27
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2045-11-27
AI Technical Summary
The existing rental light and mirror system fails to effectively adapt parameters according to different users' preferences and behaviors, resulting in a poor user experience.
The system employs a shared database-based lighting system that uses sensing, interaction, analysis, and networking modules to record and analyze user behavior and preferences, generate personalized brightness and interactive control commands, and make corresponding adjustments when users rent different lighting mirrors.
It improved the user experience and enhanced user engagement with the light mirror. By personalizing brightness adjustments and interactive features, it increased user satisfaction with the light mirrors within the group.
Smart Images

Figure CN121218420B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent lamp mirrors, in particular to a lamp mirror based on sharing and a shared database. BACKGROUND
[0002] In large-scale activities, such as outdoor parties, more lamps are usually required, which are usually used for lighting. The emergence of lamp mirrors is based on the fact that lamp mirrors not only can emit light, but also can allow people to see their own image, so there is a trend of replacing traditional lamps.
[0003] The current development trend of lamp mirrors is to increase intelligent functions on the basis of only providing lighting and imaging functions, such as combining the Internet of Things to realize remote control, increasing functions similar to display screens, etc. These functions are more suitable for indoor and purchased lamp mirrors. For rented lamp mirrors, although the users of the same lamp mirror are different each time, the population of people who rent lamp mirrors is relatively small, so the same user may rent different lamp mirrors. Therefore, these rented lamp mirrors need to be able to adjust corresponding parameters according to the preferences and behaviors of users, so as to deepen the association with users and increase customer loyalty. However, the prior art does not propose a corresponding conceptual scheme for this phenomenon. SUMMARY
[0004] The present application provides a lamp mirror based on sharing and a shared database to solve the problems of the prior art. The lamp mirror can store user behaviors and preferences through a group mode, and can make basically the same response scheme according to the behaviors and preferences when the user rents different lamp mirrors again, thereby improving the user experience.
[0005] To solve the above technical problems, the present application adopts the following technical solutions:
[0006] The present application provides a lamp mirror based on sharing and a shared database, which includes a mirror body and a main control module, a sensing module, a database, an interaction module, an analysis module, a networking module and a brightness module arranged on the mirror body. The interaction module, the sensing module, the database, the networking module and the brightness module are all signal connected with the main control module,
[0007] The sensing module is used for sensing the environmental parameters and user behaviors around the mirror body and transmitting them to the main control module;
[0008] The interaction module is used for voice interaction with the user and transmitting the information to the main control module;
[0009] The main control module controls the brightness module to perform corresponding brightness adjustment actions according to the information transmitted by the sensing module and the interaction module, and transmits the information of the sensing module and the interaction module to the database for storage;
[0010] The analysis module is arranged in the database, and is configured to analyze the information transmitted by the main control module to obtain the preference and behavior of the user, and store the obtained preference and behavior of the user in the database;
[0011] The database is also configured to store the basic information of the lamp mirror.
[0012] Further, the sensing module includes a light sensor, an infrared sensor, a temperature sensor, and a humidity sensor, the light sensor is configured to sense the ambient brightness around the mirror body, the infrared sensor is configured to sense the human body contour in front of the user, the temperature sensor is configured to sense the ambient temperature around the mirror body, and the humidity sensor is configured to sense the ambient humidity around the mirror body.
[0013] The main control module is configured to generate a control instruction according to the ambient brightness, the ambient temperature, the ambient humidity, and the human body contour, and transmit the control instruction to the brightness module in combination with the preference and behavior of the user analyzed by the analysis module.
[0014] Further, the main control module generates the control instruction in the following specific manner:
[0015] Obtain the ambient brightness, the ambient temperature, the ambient humidity, and the human body contour.
[0016] According to the ambient brightness, the ambient temperature, and the ambient humidity, calculate the current time, and then filter the scene in the database according to the current time.
[0017] According to the human body contour, infer the current action of the user, and perform secondary filtering on the scene in combination with the current action of the user in the database to determine the purpose of the user.
[0018] Generate a control color temperature, quality, and brightness instruction according to the purpose of the user, and then transmit the control color temperature, quality, and brightness instruction to the brightness module.
[0019] Further, the interaction module includes a sound receiver, an audio analysis module, and a semantic analysis module,
[0020] The sound receiver is configured to obtain the voice of the user.
[0021] The audio analysis module is configured to analyze the voice of the user to obtain audio features, and then transmit the audio features to the main control module.
[0022] The main control module filters the user information matching the audio features in the database, and then obtains the light scene associated with the user information.
[0023] The semantic analysis module is configured to analyze the meaning of the voice of the user, and generate an instruction according to the meaning and transmit the instruction to the main control module.
[0024] Further, the main control module filters the user information matching the audio features in the database, and the specific manner includes:
[0025] screening the database of the mirror body for matching user information, and transmitting the audio feature to other mirrors in the same group through the networking module to match user information from the database of other mirrors;
[0026] When the user information is matched in the database of any mirror, the light scene associated with the user information is obtained from the mirror, and the transmission of the audio feature is stopped;
[0027] The light scene information associated with the user information is stored in the database, and the analysis module is trained;
[0028] Wherein, the transmission of the audio feature in the same group is carried out by using zero-knowledge proof.
[0029] Further, the work of the semantic analysis module specifically includes:
[0030] Obtaining user information in the main control module;
[0031] Conducting semantic analysis on the user's voice in combination with the user information to obtain the user's intention;
[0032] Transmitting the user's intention to the main control module;
[0033] Wherein, the user information includes user identity, user accent and user habit.
[0034] Further, the mirror is further provided with a solar module, an energy storage device and a calculation module, the calculation module and the energy storage device are signal connected with the main control module, the solar module is connected with the energy storage device,
[0035] The solar module is used to convert sunlight into electrical energy and transmit it to the energy storage device;
[0036] The energy storage device is used to power the main control module and power the sensing module, database, interaction module, analysis module, networking module and brightness module through the main control module;
[0037] The main control module drives the solar module to work by sensing the transmitted signal through the photosensitive sensor.
[0038] Further, when the solar module works, the action of the main control module further includes:
[0039] S100. Determine whether the energy storage device is connected to the power grid, if yes, execute steps S200-S300, otherwise execute step S500;
[0040] S200. Obtain the electrical energy value A1 inputted by the solar module into the energy storage device and the electrical energy value A2 outputted by the energy storage device for power supply, and calculate the electrical energy difference value△A by the calculation module according to△A=A1-A2;
[0041] S300. If △A is greater than 0, the master module utilizes the smart contract to transmit the power difference to the power grid for power selling processing; if △A is less than 0, step S400 is executed;
[0042] S400. The energy storage device is charged by the power grid and the solar module at the same time;
[0043] S500. The energy storage device is used for power supply, and the remaining power of the energy storage device is monitored by the master module; when the power of the energy storage device is lower than the preset lower threshold, the master module gives an alarm.
[0044] Further, in step S300, when △A is greater than 0, specifically comprising:
[0045] S310. The master module utilizes the smart contract to transmit the power difference to the power grid for power selling processing, and obtains power selling income;
[0046] S320. The power selling income is converted into deduction income, and then the deduction income is used to offset part of the expenses of the user renting the lamp mirror;
[0047] S330. When the deduction income is greater than the total expenses of the user renting the lamp mirror, the excess deduction income is transferred to the account of the user; when the user rents the lamp mirror next time, the excess deduction income is preferably used for payment.
[0048] Further, the master module drives the solar module to work by sensing the transmitted signal of the photosensitive sensor, specifically comprising:
[0049] S500. The master module judges whether the mirror body is located under sunlight according to the signal transmitted by the photosensitive sensor, and if yes, step S600 is executed, otherwise step S700 is executed;
[0050] S600. The light intensity is judged according to the signal transmitted by the photosensitive sensor, when the light intensity is in the first interval, the master module controls the solar module to be oriented to the direction where the sun is located and to work; when the light intensity is in the second interval, the master module controls the solar module not to be oriented to the direction where the sun is located and to work;
[0051] S700. The master module does not drive the solar module to move.
[0052] The beneficial effects of the present application are: the present application is applied in a group mode, that is, when a lamp mirror is rented, whether the rental user is a previous user in the group is sought, and corresponding lighting parameters are called out for use according to the user, so as to adapt to the preferences and behaviors of the user and improve the user experience. BRIEF DESCRIPTION OF DRAWINGS
[0053] Fig. 1 It is an electric control schematic diagram of the present application.
[0054] Fig. 2 A schematic view of the sensing module of the present application.
[0055] Fig. 3 A schematic view of the interaction module of the present application. DETAILED DESCRIPTION
[0056] For the convenience of understanding of those skilled in the art, the present application is further described below in conjunction with the embodiments and the accompanying drawings, and the content mentioned in the embodiments is not a limitation of the present application. The present application is described in detail below in conjunction with the accompanying drawings.
[0057] As shown in Figs. 1 to 3 The present application provides a lamp mirror based on sharing and a shared database, which comprises a mirror body and a main control module, a sensing module, a database, an interaction module, an analysis module, a networking module and a brightness module arranged on the mirror body, the interaction module, the sensing module, the database, the networking module and the brightness module are all in signal connection with the main control module,
[0058] The sensing module is used for sensing the environmental parameters and user behaviors around the mirror body and transmitting to the main control module;
[0059] The interaction module is used for voice interaction with the user and transmitting to the main control module;
[0060] The main control module controls the brightness module to perform corresponding brightness adjustment actions according to the information transmitted by the sensing module and the interaction module, and transmits the information of the sensing module and the interaction module to the database for storage;
[0061] The analysis module is arranged in the database, and the analysis module is used for analyzing the information transmitted by the main control module to obtain the preferences and behaviors of the user, and storing the preferences and behaviors of the user obtained by analysis into the database;
[0062] The database is also used for storing the basic information of the lamp mirror.
[0063] The lamp mirror of the present application constitutes a group mode with other lamp mirrors, that is, each lamp mirror will store the use preferences and behaviors of the rental user after rental, such as the preference for brightness. In this way, when the user rents another lamp mirror next time, the other lamp mirror will first search for the information of this user in its own database, and if the search is not successful, it will search other lamp mirrors in the group through the networking module. Since the user has rented a lamp mirror before, there must be a lamp mirror that stores his information, so the other lamp mirror will request to transmit the user information, and then adaptively adjusts according to the user information.
[0064] Through the arrangement, when the user of the lamp mirror rental rents any lamp mirror in the same group, the lamp mirror can be quickly adjusted in brightness according to the user's preference, and when the user performs certain behaviors, the user can perform corresponding actions according to the pre-stored user behavior habits, so as to improve the user experience.
[0065] In the embodiment, the sensing module includes a photosensitive sensor, an infrared sensor, a temperature sensor, and a humidity sensor, the photosensitive sensor is used to sense the ambient brightness around the mirror body, the infrared sensor is used to sense the human body contour in front of the user, the temperature sensor is used to sense the ambient temperature around the mirror body, and the humidity sensor is used to sense the ambient humidity around the mirror body.
[0066] The main control module is used to generate a control instruction according to the ambient brightness, the ambient temperature, the ambient humidity, and the human body contour, and the user's preference and behavior analyzed by the analysis module, and transmit the control instruction to the brightness module.
[0067] Specifically, the photosensitive sensor, the infrared sensor, the temperature sensor, and the humidity sensor are corresponding sensors, so that the main control module can obtain the surrounding environmental information and the user's actions. The user's intention is obtained by analyzing the user's actions, and the surrounding environmental information is combined to realize the state effect of adjusting the brightness module.
[0068] For example, when the main control module collects data from each sensor and determines that the user is in a public place indoors, and the purpose of the first rental is to let anyone in the public place to arrange the appearance, as long as the infrared sensor senses that someone stands in front of the mirror body and stays towards the mirror body, the brightness module will work; if the person further approaches, it will be judged that the person adjusts the facial details, hairstyle, etc., so as to further improve the brightness.
[0069] In addition, the lamp mirror of the present application can also integrate other functions, such as audio playback, screen projection, etc., and then switch / use these functions according to the user's needs, so as to further improve the user experience.
[0070] Specifically, the specific way in which the main control module generates a control instruction includes:
[0071] obtaining the ambient brightness, the ambient temperature, the ambient humidity, and the human body contour;
[0072] According to the ambient brightness, the ambient temperature, and the ambient humidity, the current time is calculated, and then the scene is filtered in the database according to the current time;
[0073] According to the human body contour, the current action of the person is inferred, and the scene is secondarily filtered in combination with the current action of the person in the database, so as to judge the user's purpose;
[0074] The control color temperature quality and brightness instruction is generated according to the user purpose and is then transmitted to the brightness module.
[0075] That is, for brightness control, the judgment is mainly realized by combining environmental parameters and human actions, and the number of instructions that can be executed by the mirror is determined by the environmental factors, and then the instructions required to be executed are screened out by analyzing the purpose of the human action, so that the required screening instructions are reduced when the human performs the corresponding action, and the response speed and execution accuracy are improved.
[0076] In the embodiment, the interaction module includes a sound collector, an audio analysis module, and a semantic analysis module,
[0077] The sound collector is used to obtain the user voice;
[0078] The audio analysis module is used to analyze the user voice to obtain the audio features, and then transmit the audio features to the main control module;
[0079] The main control module screens the matching user information in the database according to the audio features, and then obtains the light scene associated with the user information;
[0080] The semantic analysis module is used to analyze the meaning of the user voice, and generate an instruction according to the meaning and transmit the instruction to the main control module.
[0081] In addition to the user renting the present application, the present application can also perform corresponding actions according to the instructions of the person using the present application, which is mainly performed according to the voice instruction. For example, someone inputs a voice instruction "Hello XX, play music" in front of the mirror, and the mirror obtains the information of the person through the interaction module, analyzes the audio to determine whether there is related information in the database / group database, and if so, the person's favorite song is played, and then the song is searched in the database for playing; for people without related information, random music playing can be directly performed.
[0082] In order to further improve the accuracy of the judgment, the audio information obtained by the interaction module can be combined with the human body contour sensed by the infrared sensor to make the judgment, which is realized by AI, and the AI continuously learns to improve the accuracy of the judgment.
[0083] Specifically, the main control module screens the matching user information in the database according to the audio features, specifically including:
[0084] Screening the matching user information in the database of the mirror, and transmitting the audio features to other mirrors in the same group through the networking module to match the user information from the databases of other mirrors;
[0085] When the user information is matched in the database of any mirror, the light scene associated with the user information is obtained from the mirror, and the transmission of the audio feature is stopped;
[0086] The light scene information associated with the user information is stored in the database, and the analysis module is trained;
[0087] The transmission of the audio feature is performed in the same group by using zero-knowledge proof.
[0088] For example, everyone has a different definition of "a little", if the user has previously set the "increase a little brightness" to increase the brightness by 3 levels, the behavior preference of the user will be recorded in the database. Therefore, when the user next time inputs the voice "increase a little brightness" to other mirrors in the same group, the instruction executed by the main control module of the mirror is to increase the brightness by 3 levels, instead of the default increase of 1 level.
[0089] The application successfully achieves the effect of improving the interaction experience with the user, thereby enhancing the stickiness of the user to the use of other lamps and mirrors in the group, for example, popularizing the use.
[0090] Specifically, the work of the semantic analysis module specifically includes:
[0091] Obtaining the user information in the main control module;
[0092] Performing semantic analysis on the user voice in combination with the user information to obtain the user intention;
[0093] Transmitting the user intention to the main control module;
[0094] The user information includes user identity, user accent and user habit.
[0095] For the user who has interacted with other lamps and mirrors in the group where the application is located, the application will record all the interaction information, based on the fact that some users have accent problems, if the user has previously interacted with other lamps and mirrors and has been trained, the application will also execute the corresponding instruction according to the previous information of the user, so as to improve the accuracy.
[0096] Embodiment 2
[0097] This embodiment is based on embodiment 1, combines the concept of group and applies it to business, and specifically as follows:
[0098] The mirror is also provided with a solar module, an energy storage device and a calculation module, the calculation module and the energy storage device are signal-connected with the main control module, the solar module is connected with the energy storage device,
[0099] The solar module is used for converting sunlight into electric energy and transmitting to the energy storage device;
[0100] The energy storage device is used for powering the master control module and powering the sensing module, database, interactive module, analysis module, networking module and brightness module through the master control module;
[0101] The master control module drives the solar module to work through the transmitted signal sensed by the photosensitive sensor.
[0102] Since the user of the lamp mirror can not only be used indoors, but also can be used outdoors when holding large parties, as a multifunctional electronic device for projection, lighting, broadcasting, etc., it is inevitable to be exposed to sunlight. Based on this scheme, the solar module and the energy storage device are specially added, and the energy storage device ensures that it can be used without plugging in outdoors, and the solar module ensures that the electric energy can be obtained through solar energy conversion when there is sunlight.
[0103] Since the outdoor can also be connected to the power supply, if the lamp mirror is connected to the power supply outdoors, under the premise of strong sunlight, the electric energy converted by the solar module will be greater than the energy consumption of the lamp mirror, and the excess electric energy can be fed back to the power grid through the power supply wire. At present, the power grid has photovoltaic power generation technology and protocol to recover electric energy and provide the user with the recovery income, so the present application can refer to this way, calculate the electric energy difference (i.e. the difference between solar power generation and lamp mirror power consumption) by using the calculation module, and the electric energy difference is the electric energy fed to the power grid. According to the protocol set in advance, the electricity fee generated in the leasing process due to power generation can be calculated, so as to realize the effect of creating value income for the user.
[0104] In the embodiment, when the solar module works, the actions of the master control module further include:
[0105] S100. Determine whether the energy storage device is connected to the power grid, if yes, execute steps S200-S300, otherwise execute step S500;
[0106] S200. Obtain the electric energy value A1 inputted by the solar module into the energy storage device and the electric energy value A2 outputted by the energy storage device, and calculate the electric energy difference△A by using the calculation module according to△A=A1-A2;
[0107] S300. If△A is greater than 0, the master control module uses the smart contract to feed back the electric energy difference to the power grid for power selling processing; if△A is less than 0, execute step S400;
[0108] S400. Charge the energy storage device through the power grid and the solar module at the same time;
[0109] S500. Power supply is performed by using the energy storage device, and the residual power of the energy storage device is monitored by the master control module; when the power of the energy storage device is lower than a preset lower threshold, the master control module gives an alarm.
[0110] That is, only when the lamp mirror senses that the energy storage device is connected to the power grid and the solar module can generate power under the sunlight, the power difference needs to be calculated first, and then the income is calculated according to the power difference. When there is no connection to the power grid, the calculation module will not calculate, and the power generated by the solar module will only charge the energy storage device. Preferably, in step S300, when △A is greater than 0, specifically comprising:
[0111] S310. The master control module uses the smart contract to transmit the power difference to the power grid for power selling processing, and obtains the power selling income;
[0112] S320. The power selling income is converted into a deduction income, and then the deduction income is used to deduct part of the expenses of the user renting the lamp mirror;
[0113] S330. When the deduction income is greater than the total expenses of the user renting the lamp mirror, the excess deduction income is transferred to the account of the user; when the user rents the lamp mirror next time, the excess deduction income is preferably used for payment.
[0114] That is, the present application uses the smart contract to sell electricity, and the income generated by the electricity selling is distributed to the users and the administrator of the group according to a preset proportion, and the income is used to attract users to rent the lamp mirror.
[0115] Preferably, the master control module drives the solar module to work by sensing the transmitted signal through the photosensitive sensor, specifically comprising:
[0116] S500. The master control module determines whether the mirror body is located under the sunlight according to the signal transmitted by the photosensitive sensor, and if yes, step S600 is performed, otherwise step S700 is performed;
[0117] S600. The light intensity is determined according to the signal transmitted by the photosensitive sensor, when the light intensity is in the first interval, the master control module controls the solar module to face the direction of the sun and work; when the light intensity is in the second interval, the master control module controls the solar module not to face the direction of the sun and work;
[0118] S700. The master control module does not drive the solar module to move.
[0119] For the solar module, when the sunlight intensity is too high, the solar module is controlled not to face the direction of the sun, so as to avoid the damage of the solar module caused by the too intense sunlight. The mirror body can be equipped with a special rotating module to control the rotation of the solar module, so as to realize the adjustment effect.
[0120] Embodiment 3
[0121] The embodiment provides a group system mainly composed of a plurality of lamp mirrors. The plurality of lamp mirrors can be identical or different in structure, and in addition to the lamp mirrors for lease as in Embodiment 1 or Embodiment 2, there are also some lamp mirrors directly purchased by users, and the interaction between the users and the lamp mirrors is more in-depth; when the users who have purchased the lamp mirrors interact with the leased lamp mirrors, the leased lamp mirrors can temporarily extract the preferences and behaviors of the users during the interaction and interact with the users. After the users leave, the leased lamp mirrors will immediately delete the extracted information, so as to avoid the problem of user information leakage.
[0122] In the system, each lamp mirror corresponds to a database, and each lamp mirror can temporarily extract information from the databases of other lamp mirrors for use, and will not store the extracted information in the database itself; and the information interaction in the whole system needs to be realized under the precondition of encryption, and the encryption mode is not limited in the embodiment.
[0123] The above is only the preferred embodiment of the present application, and does not limit the present application in any form. Although the present application is disclosed as above with the preferred embodiment, it is not intended to limit the present application. Any person skilled in the art can make some changes or modifications to the above disclosed technical content without departing from the scope of the technical solution of the present application, and any equivalent embodiment with equivalent changes is equivalent to the above embodiment. Any simple modification, equivalent change and modification made to the above embodiment within the scope of the technical solution of the present application are all within the scope of the technical solution of the present application.
Claims
1. A lamp mirror based on shared storage and a shared database, characterized in that, It includes a mirror body and a main control module, a sensing module, a database, an interaction module, an analysis module, a networking module, and a brightness module, all of which are installed on the mirror body. The interaction module, sensing module, database, networking module, and brightness module are all connected to the main control module via signals. The sensing module is used to sense environmental parameters around the lens and user behavior, and transmit them to the main control module; The interaction module is used for voice interaction with the user and transmits the data to the main control module; The main control module controls the brightness module to perform corresponding brightness adjustment actions based on the information transmitted by the sensing module and the interaction module, and transmits the information from the sensing module and the interaction module to the database for storage. The analysis module is set up in the database. The analysis module is used to analyze the information transmitted by the main control module to obtain user preferences and behaviors, and to store the user preferences and behaviors obtained from the analysis in the database. The database is also used to store basic information about the lamp mirror; The interaction module includes a microphone, an audio analysis module, and a semantic analysis module. The microphone is used to capture the user's voice; The audio analysis module is used to analyze user speech to obtain audio features, and then transmit the audio features to the main control module; The main control module filters and matches user information in the database based on audio features, and then obtains the light scene associated with the user information; The semantic analysis module is used to analyze the meaning of the user's speech, generate instructions based on the meaning, and transmit them to the main control module; The main control module filters and matches user information in the database based on audio features, specifically including: The system filters and matches user information in the database of the mirror body, and at the same time transmits audio features to other mirror bodies in the same group through the network module to match user information from the databases of other mirror bodies; When user information is matched in the database of any mirror, the light scene associated with the user information is obtained from that mirror, and the transmission of audio features is stopped. The light scene information associated with user information is stored in the database, and the analysis module is trained at the same time. Among them, zero-knowledge proofs are used to transmit audio features within the same group.
2. The lamp mirror based on shared database according to claim 1, characterized in that, The sensing module includes a light sensor, an infrared sensor, a temperature sensor, and a humidity sensor. The light sensor is used to sense the ambient brightness around the mirror, the infrared sensor is used to sense the human body outline of the user in front of the mirror, the temperature sensor is used to sense the ambient temperature around the mirror, and the humidity sensor is used to sense the ambient humidity around the mirror. The main control module is used to generate control commands and transmit them to the brightness module based on ambient brightness, ambient temperature, ambient humidity, and human body contours, combined with user preferences and behaviors analyzed by the analysis module.
3. The lamp mirror based on shared database according to claim 2, characterized in that, The specific methods by which the main control module generates control commands include: Acquire ambient brightness, ambient temperature, ambient humidity, and human body contours; Based on ambient brightness, ambient temperature, and ambient humidity, the current time is estimated, and then scenarios are filtered from the database based on the current time. The current action of a person is inferred from the human body contour, and the scenario is further filtered by combining the current actions of people in the database to determine the user's purpose; The system generates commands to control color temperature quality and brightness based on the user's purpose, and then transmits them to the brightness module.
4. The lamp mirror based on shared database according to claim 1, characterized in that, The semantic analysis module specifically performs the following tasks: User information is obtained from the main control module; Semantic analysis of user speech is performed by combining user information to obtain user intent; Transmit the user's intent to the main control module; The user information includes user identity, user accent, and user habits.
5. The lamp mirror based on shared database according to claim 1, characterized in that, The mirror body is also equipped with a solar module, an energy storage device, and a computing module. The computing module and the energy storage device are both connected to the main control module via signals, and the solar module is connected to the energy storage device. Solar modules are used to convert sunlight into electrical energy and transmit it to energy storage devices; The energy storage device is used to power the main control module and, through the main control module, to power the sensing module, database, interaction module, analysis module, networking module, and brightness module. The main control module drives the solar module to work by sensing the transmitted signals through a photosensor.
6. The lamp mirror based on a shared database according to claim 5, characterized in that, When the solar module is working, the main control module's actions also include: S100. Determine whether the energy storage device is connected to the power grid. If yes, proceed to steps S200-S300; otherwise, proceed to step S500. S200. Obtain the electrical energy value A1 input to the energy storage device from the solar module and the electrical energy value A2 output from the power supply station of the energy storage device, and use the calculation module to calculate the electrical energy difference △A according to △A=A1-A2; S300. If △A is greater than 0, the main control module uses the smart contract to transmit the power difference back to the power grid for electricity sales; if △A is less than 0, then step S400 is executed. S400. Charges the energy storage device simultaneously via the power grid and the solar module; S500. Power is supplied by an energy storage device, and the remaining power of the energy storage device is monitored by the main control module; when the power of the energy storage device is lower than the preset lower threshold, the main control module issues a warning.
7. The lamp mirror based on a shared database according to claim 6, characterized in that, In step S300, when △A is greater than 0, the specific steps include: S310. The main control module uses smart contracts to feed the power difference back to the power grid for electricity sales and to obtain electricity sales revenue; S320. Utilize electricity sales revenue to convert it into deductible revenue, and then use the deductible revenue to offset part of the user's expenses for renting lamps and mirrors; S330. When the deductible income exceeds the user's total rental expenses for the light fixture, the excess deductible income will be transferred to the user's account; when the user rents the light fixture again, the excess deductible income will be used for payment.
8. The lamp mirror based on a shared database according to claim 5, characterized in that, The main control module drives the solar module to work by sensing the transmitted signals through a photosensor, specifically including: S500. The main control module determines whether the mirror is under sunlight based on the signal transmitted by the photosensor. If so, it executes step S600; otherwise, it executes step S700. S600. The light intensity is determined based on the signal transmitted by the light sensor. When the light intensity is in the first range, the main control module controls the solar module to face the direction of the sun and operate. When the light intensity is in the second range, the main control module controls the solar module not to face the direction of the sun and operates. S700. The main control module does not drive the solar module.
Citation Information
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