Output control method and device for regional environmental state
By acquiring environmental information from smart devices within a given area and displaying it on a regional map, the problem of users not being able to intuitively understand the environmental status is solved, enabling a direct display and accurate adjustment of the environmental status.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-05-06
- Publication Date
- 2026-03-27
AI Technical Summary
In existing technologies, the way environmental status is displayed does not allow users to intuitively understand the actual status of the area they need to know, making it impossible for users to take accurate environmental adjustment measures.
By acquiring environmental information collected by multiple smart devices within the target area, the environmental status of the area is determined and output on the area map. Combined with user information and facility information, environmental changes are predicted, providing an intuitive display of the environmental status.
This allows users to have a more intuitive understanding of the regional environmental conditions and take accurate environmental adjustment measures in unsuitable situations, thus improving the user experience.
Smart Images

Figure CN115309255B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of data processing, and in particular to a region environment state output control method and device. BACKGROUND
[0002] With the rapid development of society and the improvement of people's living standards, people pay more and more attention to the quality of life and work, for example: environmental quality, and comfortable environmental quality is conducive to promoting people's physical and mental health and improving people's work efficiency. In order to obtain comfortable environmental quality, displaying the environment state of the user's environment to the user becomes the key.
[0003] At present, in actual life, the display mode of the environment state is generally as follows: when the environment data (such as: temperature, humidity, etc.) of the region that the user currently needs to understand is collected, the environment data of the current environment is directly output to the user or the current environment data is drawn into a list line graph and then output to the user, and the user perceives the environment state of the region that the user currently needs to understand according to the obtained environment data or list line graph. However, it is found in practice that whether the environment data or the list line graph of the environment data is output, most users cannot intuitively know the actual state of the environment of the region that the user currently needs to understand, so that the user cannot take accurate environment adjustment measures in the case that the environment is not suitable. SUMMARY
[0004] The technical problem to be solved by the present application is to provide a region environment state output control method and device, which can enable the user to more intuitively know the actual state of the environment of the region that the user currently needs to understand, so that the user can take accurate environment adjustment measures in the case that the environment is not suitable.
[0005] In order to solve the above technical problem, the first aspect of the present application discloses a region environment state output control method, which comprises:
[0006] Obtaining environment information collected by at least one intelligent device in a target region range, and the environment information collected by each intelligent device is the environment information of the current location of each intelligent device;
[0007] Determining the environment state in the target region range according to the obtained environment information collected by all intelligent devices, and outputting the environment state in the target region range on the region map of the determined target region range.
[0008] As an optional implementation manner, in the first aspect of the present application, the method further comprises:
[0009] acquiring target information for determining a display manner of the environment state in the target area range, the target information including information of at least one user who needs to view the environment state in the target area range and / or attribute information of the day;
[0010] determining the display manner of the environment state according to the target information;
[0011] and outputting the environment state in the target area range on the region map of the determined target area range, including:
[0012] outputting the environment state in the target area range on the region map of the determined target area range according to the display manner of the environment state.
[0013] As an optional implementation, in the first aspect of the present application, after determining the environment state in the target area range according to the acquired environment information collected by all the intelligent devices, the method further includes:
[0014] querying facility information in the target area range, the facility information including at least one of space information, wall material of the region, wall thickness of the region, and ventilation condition of the region, the space information including space size and / or information corresponding to an article in the space, the information corresponding to the article in the space including at least one of a placement position of the article in the space, a working parameter of the article in the space, and a placement density of the article in the space;
[0015] estimating environment state change information of the target area range according to the facility information, and outputting the environment state change information on the region map of the target area range, the environment state change information including an environment state change rate and / or an environment state change trend of the target area range.
[0016] As an optional implementation, in the first aspect of the present application, the method further includes:
[0017] acquiring a working parameter of each intelligent device, the working parameter of each intelligent device including at least one of a working mode, a working power, and a working frequency of each intelligent device;
[0018] wherein, the estimating the environment state change information of the target area range according to the facility information includes:
[0019] estimating the environment state change information of the target area range according to the facility information and the working parameters of all the intelligent devices.
[0020] As an optional implementation, in the first aspect of the present application, the determining the environment state in the target area range according to the environment information collected by all the smart devices comprises:
[0021] dividing the target area according to the positions of all the smart devices to obtain at least one sub-area, each of the sub-areas having at least one smart device, and all the smart devices included in each of the sub-areas being different;
[0022] calculating the environment state of each of the sub-areas according to the environment information collected by all the smart devices included in each of the sub-areas, and calculating the environment state in the target area range according to the environment states of all the sub-areas.
[0023] As an optional implementation, in the first aspect of the present application, before the acquiring the environment information collected by at least one smart device in a target area range, the method further comprises:
[0024] determining the current physical condition of a user who needs to enter the target area, and analyzing the degree of influence of the environment on the user according to the current physical condition of the user who needs to enter the target area;
[0025] judging whether the degree of influence of the environment on the user who needs to enter the target area is greater than or equal to a determined influence degree threshold value, and when the degree of influence is greater than or equal to the influence degree threshold value, performing the operation of acquiring the environment information collected by at least one smart device in a target area range;
[0026] wherein the determining the current physical condition of a user who needs to enter the target area comprises:
[0027] determining the current physical condition of the user according to the information of the user who needs to enter the target area;
[0028] wherein the information of the user who needs to enter the target area comprises at least one of the physical information of the user sent by a device carried by the user for measuring the physical condition of the user, a diagnosis report of the user acquired, and the current situation of the medicine taken by the user.
[0029] As an optional implementation, in the first aspect of the present application, when the number of users who need to view the environment state in the target area range is greater than or equal to 2, the display mode of the environment state determined according to the target information comprises:
[0030] determining whether all the user information matches, and when it is determined that all the user information matches, determining the display mode of the environment state according to the target information;
[0031] when it is determined that there is non-matching information in all the user information, determining a target user from all the users, the target user including at least one of a user whose body is most affected by the environment change among all the users, a user whose duration in the target area is greater than or equal to a determined duration threshold in a certain preset duration, and a user who returns to the location of the target area earliest, wherein the user who returns to the location of the target area earliest includes a user who is currently in the location of the target area or a user whose interval duration between the current time and the time of returning to the location of the target area is the shortest;
[0032] determining the display mode of the environment state according to the information of the target user.
[0033] The second aspect of the present application discloses an output control device of a regional environment state, the device comprising:
[0034] an acquisition module configured to acquire environment information collected by at least one intelligent device in a target area range, the environment information collected by each intelligent device being environment information of a location where each intelligent device is currently located;
[0035] a first determination module configured to determine an environment state in the target area range according to the environment information collected by all the intelligent devices;
[0036] an output module configured to output the environment state in the target area range on a region map of the determined target area range.
[0037] As an optional implementation, in the second aspect of the present application, the device further comprises:
[0038] a first acquisition module configured to acquire target information for determining a display mode of the environment state in the target area range, the target information including information of at least one user who needs to view the environment state in the target area range and / or attribute information of the day;
[0039] a second determination module configured to determine the display mode of the environment state according to the target information;
[0040] and the output mode of the output module outputting the environment state in the target area range on the region map of the determined target area range is specifically:
[0041] According to a display mode of the environment state, the environment state in the target region range is output on a region map of the determined target region range.
[0042] As an optional implementation, in the second aspect of the present application, the device further comprises:
[0043] The query module is configured to query facility information in the target region range after the first determination module determines the environment state in the target region range according to the environment information collected by all the intelligent devices, the facility information including at least one of space information, wall material of a region, wall thickness of the region, and ventilation condition of the region, the space information including space size and / or information corresponding to an article in the space, the information corresponding to the article in the space including at least one of a placement position of the article in the space, a working parameter of the article in the space, and a placement density of the article in the space.
[0044] The estimation module is configured to estimate environment state change information of the target region range according to the facility information.
[0045] The output module is further configured to output the environment state change information on the region map of the target region range, the environment state change information including an environment state change rate and / or an environment state change trend of the target region range.
[0046] As an optional implementation, in the second aspect of the present application, the device further comprises:
[0047] The second collection module is configured to collect a working parameter of each intelligent device, the working parameter of each intelligent device including at least one of a working mode, a working power, and a working frequency of each intelligent device.
[0048] The estimation module estimates the environment state change information of the target region range according to the facility information and the working parameters of all the intelligent devices.
[0049] The estimation module estimates the environment state change information of the target region range according to the facility information and the working parameters of all the intelligent devices.
[0050] As an optional implementation, in the second aspect of the present application, the first determination module comprises:
[0051] The division sub-module is configured to divide the target region according to positions of all the intelligent devices to obtain at least one sub-region, each sub-region including at least one intelligent device, and all the intelligent devices included in each sub-region being different.
[0052] a calculating sub-module, configured to calculate an environment state of each of the sub-regions according to the environment information collected by all the smart devices included in each of the sub-regions;
[0053] The calculating sub-module is further configured to calculate an environment state within the target region range according to the environment states of all the sub-regions.
[0054] As an optional implementation, in the second aspect, the device further comprises:
[0055] a third determining module, configured to determine a current physical condition of a user who needs to enter the target region before the acquiring module acquires the environment information collected by at least one smart device within a target region range;
[0056] an analyzing module, configured to analyze a degree of influence of the environment on the user who needs to enter the target region according to the current physical condition of the user;
[0057] a judging module, configured to judge whether the degree of influence of the environment on the user who needs to enter the target region is greater than or equal to a determined influence threshold value, and trigger the acquiring module to perform the operation of acquiring the environment information collected by at least one smart device within a target region range when it is judged that the degree of influence is greater than or equal to the influence threshold value;
[0058] The third determining module determines the current physical condition of the user who needs to enter the target region in the following manner:
[0059] determining the current physical condition of the user according to information of the user who needs to enter the target region;
[0060] The information of the user who needs to enter the target region includes at least one of the following: received physical information of the user sent by a device carried by the user and used to measure the physical condition of the user, acquired diagnosis report of the user, and current situation of medicine consumed by the user.
[0061] As an optional implementation, in the second aspect, when the number of users who need to view the environment state within the target region range is greater than or equal to 2, the second determining module determines the display manner of the environment state according to the target information in the following manner:
[0062] judging whether the information of all the users is matched, and determining the display manner of the environment state according to the target information when it is judged that the information of all the users is matched;
[0063] When it is judged that there is unmatched information in all the user information, a target user is determined from all the users, the target user including at least one of a user whose body is most affected by environmental changes among all the users, a user who stays in the target area for a time period greater than or equal to a determined time threshold in a certain preset time period, and a user who returns to the location of the target area earliest, wherein the user who returns to the location of the target area earliest includes a user who is currently in the location of the target area or a user whose interval time from the current time to the time of returning to the location of the target area is the shortest.
[0064] The display mode of the environmental state is determined according to the information of the target user.
[0065] The third aspect of the present application discloses another output control device of an area environmental state, the device comprising:
[0066] a memory storing executable program codes;
[0067] a processor coupled with the memory;
[0068] The processor invokes the executable program codes stored in the memory to execute part or all of the steps of the output control method of the area environmental state disclosed in the first aspect of the present application.
[0069] The fourth aspect of the present application discloses a computer storage medium storing computer instructions, when the computer instructions are invoked, part or all of the steps of the output control method of the area environmental state disclosed in the first aspect of the present application are executed.
[0070] Compared with the prior art, the embodiments of the present application have the following beneficial effects:
[0071] In the embodiments of the present application, environmental information collected by at least one intelligent device in a certain target area range is acquired, and the environmental information collected by each intelligent device is the environmental information of the current location of each intelligent device; the environmental state in the target area range is determined according to the acquired environmental information collected by all the intelligent devices, and the environmental state in the target area range is output on the area map of the determined target area range. It can be seen that when the environmental information of the location of multiple intelligent devices in the area range is collected, the environmental state in the area range is determined automatically according to the environmental information of the location of all the intelligent devices, and the environmental state is intuitively output on the area map of the area range, which more realistically restores the real use scene of the area required to be understood by the user, so that the user can more intuitively know the real actual state of the environment of the area required to be understood, so that the user can take accurate environmental adjustment measures in the case that the environment is not suitable, and the user experience is improved. BRIEF DESCRIPTION OF DRAWINGS
[0072] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative effort based on these drawings.
[0073] Figure 1 is a flow diagram of a regional environment state output control method disclosed by an embodiment of the present application;
[0074] Figure 2 is a flow diagram of another regional environment state output control method disclosed by an embodiment of the present application;
[0075] Figure 3 is a structural diagram of a regional environment state output control device disclosed by an embodiment of the present application;
[0076] Figure 4 is a structural diagram of another regional environment state output control device disclosed by an embodiment of the present application;
[0077] Figure 5 is a structural diagram of still another regional environment state output control device disclosed by an embodiment of the present application. DETAILED DESCRIPTION
[0078] In order to make the person in the art better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely in the following with reference to the drawings of the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without any creative effort belong to the scope of protection of the present application.
[0079] The terms "first", "second", etc. in the specification and claims of the present application and the above drawings are used to distinguish different objects, but not to describe a specific order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product or end including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed or can optionally include other steps or units inherent to the process, method, product or end.
[0080] Reference to an "embodiment" herein means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase that an "embodiment" in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily mutually exclusive of one another. As will be apparent to those of ordinary skill in the art, embodiments described herein can be combinable with other embodiments.
[0081] The application discloses a kind of output control method and device of regional environment state, can be when multiple intelligent devices in regional range gather the environment information of the location, by automatically according to the environment information of the location of all intelligent devices determines the environment state in regional range, and this environment state is intuitively output on the regional map of regional range, more realisticly restores the real use scene of the region required to be understood by user, can let user more intuitively know the environment real actual state of the region required to be understood currently, so that user can take accurate environmental adjustment measures in the case where environment is not suitable, improve the experience of user.Specifically described below.
[0082] Embodiment one
[0083] Please refer to Figure 1 , Figure 1 It is a flowchart of the output control method of the regional environment state disclosed in the embodiment of the application. Among them, Figure 1 The method described can be applied to the output control device of regional environment state, such as output control server, output control equipment, output control platform, etc., wherein, output control device can be communicated with user terminal connection, wherein, user terminal includes at least one of terminal equipment such as smart phone (Android phone, iOS phone, etc.), smart phone number watch, tablet computer, palm computer, vehicle-mounted computer, desktop computer, netbook, personal digital assistant (Personal Digital Assistant, PDA), smart navigator and mobile internet device (Mobile Internet Devices, MID), etc., and the embodiment of the application is not limited. Figure 1 As shown, the output control method of the regional environment state can include the following operations:
[0084] 101, at least one intelligent device in a certain target regional range is acquired to gather the environment information, and the environment information collected by each intelligent device is the environment information of the current location of each intelligent device.
[0085] In the embodiment of the present application, optionally, the target area is any area set by the user, for example: the area where the user's residence is located, the area where the user's company is located, etc. The smart device includes at least one of the devices with communication function, such as smart air conditioner, smart water heater, smart refrigerator, smart washing machine, smart sweeping device, smart humidifying device, smart drying device, smart electric rice cooker, smart electric fan, etc. Among them, the at least one smart device can be a smart device in the target area specified by the user, or any device in the target area.
[0086] In the embodiment of the present application, optionally, the environment information collected by each smart device includes at least one of the environment temperature, the environment humidity, the environment ultraviolet intensity, the environment brightness, the environment air clarity, the environment wind speed and the environment bacteria condition. Among them, the smart device includes any device with environment information collection function, and each smart device is provided with an information collection sensor, such as temperature sensor, humidity sensor, etc. The more the content of the environment information contains, the more conducive to improve the accuracy of the determination of the environment state in the target area, so as to further improve the accurate output of the environment state.
[0087] 102. Determine the environment state in the target area range according to the environment information collected by all the smart devices.
[0088] In the embodiment of the present application, optionally, the environment state in the target area range includes the environment state of the position where each smart device is located. Further, the environment state in the target area range can also include the environment state of other positions in the target area, wherein the other positions include the positions specified by the user (for example: the position where the dining table is located) and / or the positions where the user stays for a frequency greater than or equal to a preset frequency, for example: the user stays on the balcony for 11 times in a week, which is greater than the specified 10 times, so the balcony is the position where the environment state needs to be obtained. In this way, by determining the user-specified position and / or the position where the user stays frequently as the position where the environment state needs to be determined, and displaying the environment state thereof, it is beneficial for the user to more accurately and intuitively know the environment state of the corresponding position.
[0089] 103. Output the environment state in the target area range on the area map of the determined target area range.
[0090] In the embodiment of the present application, the region map of the target region range corresponds to the actual scene of the target region, and the region map of the target region range includes virtual positions corresponding to the positions of all smart devices. The environment state of the target region is displayed on the determined region map of the target region range, specifically, the environment state of the position of each smart device is displayed on the virtual position corresponding to the position of each smart device. When the environment state of the target region range also includes the environment state of other positions in the target region, the environment state of the other positions in the target region range can also be displayed on the virtual positions corresponding to the other positions. In this way, by displaying the environment state of the actual position on the corresponding virtual position, the user can more intuitively and accurately know the environment state in the actual scene.
[0091] It can be seen that the implementation Figure 1 The described method can determine the environment state in the region range by automatically determining the environment state of the region range according to the environment information of the positions of all smart devices when the smart devices in the region range collect the environment information of the positions, and intuitively output the environment state on the region map of the region range, which more realistically restores the real use scene of the region that the user needs to know, and enables the user to more intuitively know the real actual state of the environment of the region that the user needs to know, so that the user can take accurate environment adjustment measures in the case that the environment is not suitable, and the user experience is improved.
[0092] In an optional embodiment, the environment state in the target region range is determined according to the environment information collected by all smart devices, including:
[0093] The target region is regionally divided according to the positions of all smart devices, to obtain at least one sub-region, each sub-region has at least one smart device, and all smart devices included in each sub-region are different;
[0094] The environment state of each sub-region is calculated according to the environment information collected by all smart devices included in each sub-region, and the environment state in the target region range is calculated according to the environment states of all sub-regions.
[0095] For example, taking the home residence of user A as an example, the home residence includes 3 rooms, 1 living room, 2 bathrooms, 2 balconies, and 1 kitchen, and each room, living room, balcony, and kitchen is a corresponding sub-region.
[0096] In this optional embodiment, the environment state of each sub-region can be quantified by a numerical value, and the quantification calculation formula of the environment state of each sub-region is:
[0097] W i =S imin +(K iK imin )*(S imax -S imin ) / (K imax -K imin );
[0098]
[0099] In the formula, W i is the environmental state of the i-th sub-region, K i is the environmental index of the i-th sub-region, S imin is the minimum value of the first segment in which the environmental index of the i-th sub-region is located, S imax is the maximum value of the first segment in which the environmental index of the i-th sub-region is located, K imin is the minimum value of the second segment in which the environmental index of the i-th sub-region is located, K imax is the maximum value of the second segment in which the environmental index of the i-th sub-region is located, T i is the environmental temperature of the i-th sub-region, U i is the environmental humidity of the i-th sub-region, V i is the environmental wind speed of the i-th sub-region, M i is the environmental brightness of the i-th sub-region, N i is the environmental air clarity of the i-th sub-region, P i is the environmental ultraviolet intensity of the i-th sub-region, Q i is the environmental bacteria condition of the i-th sub-region, λ1, λ2, λ3, λ4, λ5, λ6, and λ7 are coefficients, and n1 and n2 are coefficients. The first segment corresponds to the second segment, and the first segment includes a plurality of numerical intervals, and the second segment includes numerical intervals different from the numerical intervals of the first segment, for example, 90-99 corresponds to 59-70, 80-89 corresponds to 51-58 and 71-75, and the like.
[0100] It can be seen that, after the intelligent devices in the target region range collect the environmental information, the optional embodiment divides the target region, calculates the environmental state of each sub-region, and then calculates the environmental state of the target region, which can improve the calculation accuracy and efficiency of the environmental state of the target region, thereby improving the output accuracy and efficiency of the environmental state of the target region.
[0101] In yet another optional embodiment, the method can further include the following operations:
[0102] Collect target information for determining a display mode of the environmental state in the target region range, the target information including information of at least one user who needs to view the environmental state in the target region range and / or attribute information of the day;
[0103] determine the display mode of the environment state according to the target information;
[0104] In the optional embodiment, the environment state in the target region range is output on the determined region map of the target region range, including:
[0105] The environment state in the target region range is output on the determined region map of the target region range according to the display mode of the environment state.
[0106] In the optional embodiment, the information of each user includes at least one of daily commodity information, age, gender, favorite color and occupation of each user, wherein the daily commodity information includes at least one of daily commodity type, daily commodity name and daily commodity color, and the attribute information of the day includes weather information of the day and / or solstice information of the day. The more the target information for determining the display mode of the environment state includes, the more conducive to improving the determination accuracy and reliability of the display mode of the environment state, thereby further improving the display accuracy and reliability of the environment state in the region.
[0107] In the embodiment of the application, the display mode of the environment state includes display color and / or display animation of the environment state.
[0108] It can be seen that the optional embodiment determines the display mode of the environment state according to the information of the user and / or the attribute information of the day, and displays the environment state of the region based on the display mode, which can personalized display the environment state, display the environment state of the region in a way that the user likes, and further improve the user experience.
[0109] In the optional embodiment, as an optional embodiment mode, when the number of users who need to view the environment state in the target region range is greater than or equal to 2, the display mode of the environment state is determined according to the target information, including:
[0110] When it is determined that the information of all users is matched, the display mode of the environment state is determined according to the target information;
[0111] When it is determined that there is unmatched information in the information of all users, a target user is determined from all users, including at least one of a user whose body is most affected by the environment change, a user whose duration in the target region is greater than or equal to a determined duration threshold (such as 100 hours) in a certain preset duration (such as a week), and a user who returns to the location of the target region the earliest, wherein the user who returns to the location of the target region the earliest includes a user who is currently in the location of the target region or a user whose interval duration between the current time and the time of returning to the location of the target region is the shortest.
[0112] determine the display mode of the environment state according to the information of the target user.
[0113] For example, if the age of user A is 20 years old, if the age of user B is 60 years old, it is determined that the information of user A and the information of user B are not matched, if the age of user B is 40 years old, it is determined that the information of user A and the information of user B are matched; the color that user A likes is pink, if the color that user B likes is black, it is determined that the information of user A and the information of user B are not matched, if the color that user B likes is cream, it is determined that the information of user A and the information of user B are matched.
[0114] It can be seen that, in the optional embodiment, when it is judged that the information of all users who need to view the environment state are matched, the display mode of the environment state is directly determined according to the information of all users and the attribute information of the day, which can improve the determination efficiency of the display mode of the environment state; when there is unmatched information in the information of all users who need to view the environment state, the display mode of the environment state is directly determined according to other information, such as the information of the user whose body is most affected by the environment change, which can display the environment state in a display mode that meets the main user, improve the determination accuracy of the display mode of the environment state, and enrich the intelligent function of the output control device.
[0115] In yet another optional embodiment, the method can further include the following operations:
[0116] based on the determined environment information of the identified target area range, and constructing a virtual three-dimensional scene graph of the target area range according to the identified environment information as the region graph of the target area range; or,
[0117] detecting an operation triggered by a user for a certain drawing, determining the region graph corresponding to the certain drawing according to the operation triggered for the certain drawing as the region graph of the target area range, the certain drawing including a drawing input by the user through a user terminal or a drawing selected by the user from the determined multiple drawings.
[0118] In the optional embodiment, the identification device includes at least one of any device capable of identifying the environment information of the target area, such as a smart sweeping device, an image acquisition device, etc. Wherein, the environment information of the target area includes image information of the target area and / or three-dimensional information of the target area.
[0119] It can be seen that the optional embodiment can obtain the real region scene graph (house type graph) by identifying the environment information of the real scene in the device identification area range and automatically taking the virtual three-dimensional scene image constructed according to the environment information as the region graph of the region, so as to facilitate the display of the environment state in the real region scene graph, so that the user can more truly experience the environment state of the actual scene and know the network situation of each angle range of the region to be understood. Alternatively, by taking the region graph selected by the user as the required region graph, the determination manner of the required region graph can be enriched, and the determination accuracy and possibility of the region graph can be improved.
[0120] In yet another optional embodiment, the method can further include the following operations:
[0121] Obtaining information of at least one signal source collected by the determined positioning device, the information of each signal source collected by the positioning device including signal source identification of each signal source and position information of each signal source, and determining the position information of each signal source as the position of each smart device according to the signal source identification of each signal source, and determining the virtual position corresponding to the position of each smart device according to the position of each smart device and the region graph of the target region.
[0122] In the optional embodiment, the positioning device includes any device capable of collecting information of the signal source, and further, the positioning device can be a movable smart device, such as a smart sweeping device. The signal source is the smart device.
[0123] In the optional embodiment, the information of the signal source further includes the signal strength of the signal source. When the positioning device is a movable device, when the signal strength of the signal source is the maximum, the position information of the signal source is determined as the position of the smart device according to the signal source identification of the signal source. In this way, by determining the position information of the signal source as the position of the smart device when the signal strength of the signal source is the maximum, the accuracy and reliability of the position of the smart device can be improved, thereby improving the determination accuracy and reliability of the virtual position of the smart device on the region graph of the target region.
[0124] It can be seen that the optional embodiment can determine the position of the smart device by determining the position of the signal source according to the collected signal source identification information, thereby improving the determination accuracy and reliability of the virtual position corresponding to the position of the smart device.
[0125] In yet another optional embodiment, the method can further include the following operations:
[0126] Obtaining operations triggered by a user in different positions on the region graph of the target region in turn, and determining the last position of each triggered operation on the region graph of the target region as the virtual position corresponding to the position of the corresponding smart device.
[0127] In the optional embodiment, after the virtual position of the smart device on the region map of the target region is determined, the virtual model of the smart device can be placed at the corresponding virtual position. The operation triggered by a user at different positions on the region map of the target region includes a point operation or a sliding operation. When the operation triggered by a user is a sliding operation, the user can carry the virtual model of the smart device in the process of performing the sliding operation, and place the virtual model at the position where the sliding operation is stopped when the sliding operation is stopped.
[0128] For example, when a user clearly knows the actual position information of all smart devices in the region range that the user wants to know, the user can place each virtual model of the smart device on the region map of the region range by dragging the virtual model of the smart device according to the actual position information of the smart device in the region range, so as to determine the virtual position corresponding to the position of the smart device.
[0129] It can be seen that the optional embodiment can enrich the determination manner of the virtual position corresponding to the position of the smart device, and improve the determination efficiency and possibility of the virtual position corresponding to the position of the smart device, by directly positioning the position of the smart device on the region map by the user.
[0130] In yet another optional embodiment, after the environment state of the target region range is determined according to the environment information collected by all smart devices, the method can further include the following operations:
[0131] determining the environment state level corresponding to the target region range according to the environment information collected by each smart device, and displaying the environment state level corresponding to the target region, wherein the environment state level corresponding to the target region includes the total environment state level of the target region and / or the environment state level of each smart device, and the higher the environment state level is, the better the environment in the target region range is.
[0132] It can be seen that the optional embodiment can help the user to more accurately know the environment of the region that the user wants to know on the basis of intuition, and further improve the user experience, by determining the environment state level in the region range and displaying the environment state level on the real region map.
[0133] In yet another optional embodiment, before step 101 is performed, the method can further include the following operations:
[0134] determining the current physical condition of the user who needs to enter the target region, and analyzing the degree of influence of the environment on the user's body according to the current physical condition of the user;
[0135] determining whether the degree of influence of the user's body by the environment is greater than or equal to the determined influence degree threshold value, and triggering the execution of step 101 when it is determined that the degree of influence is greater than or equal to the influence degree threshold value.
[0136] In this optional embodiment, the current physical condition of the user who needs to enter the target area is determined, including:
[0137] According to the information of the user who needs to enter the target area, the current physical condition of the user is determined.
[0138] The information of the user who needs to enter the target area includes at least one of the received physical information of the user sent by the device carried by the user for measuring the physical condition of the user, the obtained diagnosis report of the user's illness, and the current situation of the medicine consumed by the user. In this way, the current physical condition of the user is determined through multiple information, which can improve the accuracy and reliability of the determination of the current physical condition of the user, and further improve the accuracy and reliability of the display of the environmental state of the area to be understood.
[0139] In this optional embodiment, optionally, when it is determined that the degree of influence of the user's body by the environmental information is less than the influence degree threshold value, the current process is ended.
[0140] As can be seen, in this optional embodiment, when it is determined that the degree of influence of the user's body by the environment is large according to the current physical condition of the user, the determination operation of the environmental state of the area is performed, so that the user knows the environmental state of the area to be understood, so that the user performs corresponding operations according to the environmental state of the area and his own situation, for example: if the user has a cold, the air conditioner is controlled to be turned off.
[0141] In yet another optional embodiment, the method can further include the following operations:
[0142] When it is determined that the degree of influence is greater than or equal to the influence degree threshold value, it is determined whether the user is currently in the target area, and when it is determined that the user is currently in the target area, the execution of step 101 is triggered.
[0143] When it is determined that the target is not in the target area, the starting time of the user entering the target area is determined according to the daily schedule of the user.
[0144] It is determined whether the interval duration between the current time and the starting time of the user entering the target area is less than or equal to the determined interval duration threshold value, and when it is determined that the interval duration is less than or equal to the interval duration threshold value, the execution of step 101 is triggered.
[0145] It can be seen that when it is determined that the body of the user is greatly affected by the environment, the optional embodiment further performs the determination operation of the environment state of the region when it is determined that the interval length between the current moment and the starting moment of the user entering the target region is short, so as to ensure that the user can intuitively and timely know the environment state of the region to be entered on the basis, and further improve the user experience.
[0146] Embodiment two
[0147] Please refer to Figure 2 , Figure 2 is a flowchart of another output control method of a region environment state disclosed by the embodiment of the application. Wherein, Figure 2 The method described can be applied to the output control device of the region environment state, such as the output control server, the output control equipment, the output control platform, etc., wherein the output control device can be connected with the user terminal in communication, wherein the user terminal includes at least one of the terminal equipment such as the smart phone (Android phone, iOS phone, etc.), the smart phone number watch, the tablet computer, the palm computer, the vehicle-mounted computer, the desktop computer, the netbook, the personal digital assistant (Personal Digital Assistant, PDA), the smart navigator and the mobile internet device (Mobile Internet Devices, MID), etc., and the embodiment of the application does not limit. As shown in the figure, Figure 2 The output control method of the region environment state can include the following operations:
[0148] 201, acquiring the environment information collected by at least one smart device in a certain target region range, and the environment information collected by each smart device is the environment information of the current location of each smart device.
[0149] 202, determining the environment state in the target region range according to the environment information collected by all the smart devices.
[0150] 203, querying the facility information in the target region range.
[0151] In the embodiment of the application, the facility information includes at least one of the space information, the wall material of the region, the wall thickness of the region and the ventilation condition of the region, the space information includes the space size and / or the information corresponding to the articles in the space, and the information corresponding to the articles in the space includes at least one of the placement position of the articles in the space, the working parameter of the articles in the space and the placement density of the articles in the space. The more the contents included in the facility information, the more conducive to improving the estimation accuracy and reliability of the environment state change information in the region range.
[0152] 204. Estimating environmental state change information of the target area range according to the facility information, and outputting the environmental state change information on the region map of the target area range, the environmental state change information including an environmental state change rate and / or an environmental state change trend of the target area range.
[0153] 205. Outputting the environmental state in the target area range on the region map of the determined target area range.
[0154] In the embodiment of the present application, it should be noted that the related description of steps 201, 202 and 205 can refer to the detailed description of steps 101-103 in Embodiment 1, and the embodiment of the present application will not be repeated.
[0155] It can be seen that the embodiment of the present application can also estimate the environmental change information in the region range through the facility information in the region range, and display the environmental change information on the region map in the region range, so that the user can intuitively know the environmental change information in the region that the user needs to know.
[0156] It can be seen that the embodiment of the present application can also estimate the environmental change information in the region range through the facility information in the region range, and display the environmental change information on the region map in the region range, so that the user can intuitively know the environmental change information in the region that the user needs to know. Figure 2 The described method can determine the environmental state in the region range according to the environmental information of the positions of all smart devices when the multiple smart devices in the region range collect the environmental information of the positions, and intuitively output the environmental state on the region map of the region range, which more realistically restores the real use scene of the region that the user needs to know, and enables the user to more intuitively know the real actual state of the environment of the region that the user needs to know, so that the user can take accurate environmental adjustment measures in the case that the environment is not suitable, and the user experience is improved. In addition, the environmental change information in the region range can be estimated through the facility information in the region range, and the environmental change information is displayed on the region map in the region range, so that the user can intuitively know the environmental change information in the region that the user needs to know.
[0157] In an optional embodiment, the method can further include the following steps:
[0158] Collecting the working parameters of each smart device, the working parameters of each smart device including at least one of the working mode of each smart device, the working power of each smart device, and the working frequency of each smart device;
[0159] In the optional embodiment, optionally, estimating the environmental state change information of the target area range according to the facility information includes:
[0160] Estimating the environmental state change information of the target area range according to the facility information and the working parameters of all smart devices.
[0161] It can be seen that the embodiment of the present application can improve the estimation accuracy and reliability of the environmental change information by combining the working parameters and facility information of each smart device collected to estimate the environmental state change information of the area to be known.
[0162] Embodiment three
[0163] Please refer to Figure 3 , Figure 3 is a structural schematic diagram of an output control device for an area environment state disclosed by the embodiment of the present application. The output control device for an area environment state includes any one of an output control server, an output control device, an output control platform, etc., wherein the output control device can be in communication connection with a user terminal, wherein the user terminal includes at least one of terminal devices such as a smart phone (an Android phone, an iOS phone, etc.), a smart phone number watch, a tablet computer, a palm computer, a vehicle-mounted computer, a desktop computer, a netbook, a personal digital assistant (PDA), a smart navigator, and a mobile internet device (MID), etc., as shown in Figure 3 The output control device for an area environment state can include:
[0164] The acquisition module 301 is configured to acquire environmental information collected by at least one smart device in a target area range, wherein the environmental information collected by each smart device is the environmental information of the current location of each smart device.
[0165] The first determination module 302 is configured to determine the environmental state in the target area range according to the environmental information collected by all the smart devices.
[0166] The output module 303 is configured to output the environmental state in the target area range on the area graph of the determined target area range.
[0167] It can be seen that the output control device described in the embodiment Figure 3 can determine the environmental state in the area range by automatically determining the environmental state in the area range according to the environmental information of the locations of all the smart devices when the environmental information of the locations of multiple smart devices in the area range is collected, and can intuitively output the environmental state on the area graph of the area range, which can more realistically restore the real use scene of the area to be known by the user, can enable the user to more intuitively know the real actual state of the environment of the area to be known, and thus enable the user to take accurate environmental adjustment measures in the case that the environment is not suitable, thereby improving the experience of the user.
[0168] In an optional embodiment, as shown in Figure 4 the device further includes:
[0169] The first acquisition module 304 is configured to acquire target information used for determining a display mode of an environment state in a target region range, the target information including information of at least one user who needs to view the environment state in the target region range and / or attribute information of the day.
[0170] The second determination module 305 is configured to determine the display mode of the environment state according to the target information.
[0171] The output module 303 outputs the environment state in the target region range on the region map of the determined target region range in the following manner:
[0172] The output module 303 outputs the environment state in the target region range on the region map of the determined target region range according to the display mode of the environment state.
[0173] In the optional embodiment, the information of each user includes at least one of daily necessity information, age, gender, favorite color and occupation of each user, the daily necessity information includes at least one of daily necessity type, daily necessity name and daily necessity color, and the attribute information of the day includes weather information of the day and / or solstice information of the day. In this way, the more the target information used for determining the display mode of the environment state includes, the more the determination accuracy and reliability of the display mode of the environment state are improved, and thus the display accuracy and reliability of the environment state in the region are further improved.
[0174] It can be seen that the embodiment Figure 4 The output control device described can also determine the display mode of the environment state through the information of the user and / or the attribute information of the day, and display the environment state of the region based on the display mode, so as to display the environment state in a personalized manner and display the environment state of the region in a manner that the user likes, and further improve the experience of the user.
[0175] In another optional embodiment, as Figure 4 shown, the device further includes:
[0176] The query module 306 is configured to, after the first determination module 302 determines the environment state in the target region range according to the environment information collected by all the intelligent devices, query facility information in the target region range, the facility information including at least one of space information, wall material of a region where the user is located, wall thickness of the region where the user is located and ventilation condition of the region where the user is located, the space information including space size and / or information corresponding to an article in the space, the information corresponding to the article in the space including at least one of a placement position of the article in the space, a working parameter of the article in the space and a placement density of the article in the space.
[0177] The estimation module 307 is configured to estimate the environmental state change information of the target area range according to the facility information.
[0178] The output module 303 is further configured to output the environmental state change information on the area graph of the target area range, the environmental state change information including the environmental state change rate and / or the environmental state change trend of the target area range.
[0179] It can be seen that, in the described output control device, Figure 4 the environmental change information in the area range is estimated according to the facility information in the area range, and the environmental change information is displayed on the area graph in the area range, so that the user can intuitively know the environmental change information in the area range.
[0180] In yet another optional embodiment, as Figure 4 shown, the device further includes:
[0181] The second acquisition module 308 is configured to acquire the working parameters of each smart device, the working parameters of each smart device including at least one of the working mode of each smart device, the working power of each smart device, and the working frequency of each smart device.
[0182] The estimation module 307 estimates the environmental state change information of the target area range according to the facility information in the following manner:
[0183] The environmental state change information of the target area range is estimated according to the facility information and the working parameters of all smart devices.
[0184] It can be seen that, in the described output control device, Figure 4 when the text information of the to-be-identified object is identified to contain the words of replacement, same model, etc., and / or the environmental state change information of the area to be understood is estimated by combining the acquired working parameters of each smart device and the facility information, the estimation accuracy and reliability of the environmental change information can be improved.
[0185] In yet another optional embodiment, as Figure 4 shown, the first determination module 302 includes:
[0186] The division sub-module 3021 is configured to divide the target area into at least one sub-area according to the positions of all smart devices, each sub-area containing at least one smart device, and all smart devices in each sub-area being different.
[0187] The calculation sub-module 3022 is configured to calculate the environmental state of each sub-area according to the environmental information collected by all smart devices in each sub-area.
[0188] The calculation sub-module 3022 is further configured to calculate the environment state in the target region range according to the environment states of all sub-regions.
[0189] It can be seen that, by implementing the output control device described above, Figure 4 The output control device described above can further divide the target region after the smart devices in the target region range collect the environment information, calculate the environment state of each sub-region, and then calculate the environment state of the target region, thereby improving the calculation accuracy and efficiency of the environment state of the target region, and improving the output accuracy and efficiency of the environment state of the target region.
[0190] In yet another optional embodiment, as shown in Figure 4 When the number of users who need to view the environment state in the target region range is greater than or equal to 2, the second determination module 305 determines the display mode of the environment state according to the target information in the following manner:
[0191] determining whether the information of all users matches, and when it is determined that the information of all users matches, determining the display mode of the environment state according to the target information;
[0192] When it is determined that there is non-matching information in the information of all users, determining a target user from all users, the target user including at least one of a user whose body is most affected by the environment change, a user who has been in the target region for a time period greater than or equal to a determined time threshold (e.g., 100 hours) in a certain predetermined time period (e.g., a week), and a user who returns to the location of the target region earliest, wherein the user who returns to the location of the target region earliest includes a user who is currently in the location of the target region or a user whose interval time from the time of returning to the location of the target region to the current time is the shortest;
[0193] determining the display mode of the environment state according to the information of the target user.
[0194] It can be seen that, by implementing the output control device described above, Figure 4 The output control device described above can directly determine the display mode of the environment state according to the information of all users and the attribute information of the day when it is determined that the information of all users who need to view the environment state matches, thereby improving the determination efficiency of the display mode of the environment state; and when there is non-matching information in the information of all users who need to view the environment state, directly determining the display mode of the environment state according to other information, such as the information of a user whose body is most affected by the environment change, thereby displaying the environment state in a display mode that meets the main user, improving the determination accuracy of the display mode of the environment state, and enriching the intelligent function of the output control device.
[0195] In yet another optional embodiment, as shown in Figure 4 The device can further include:
[0196] The third determining module 309 is configured to determine a current physical condition of a user who needs to enter a target area before the acquisition module 301 acquires the environmental information collected by at least one smart device in a range of the target area.
[0197] The analysis module 310 is configured to analyze a degree of influence of the environment on the user who needs to enter the target area according to the current physical condition of the user.
[0198] The judgment module 311 is configured to judge whether the degree of influence of the environment on the user who needs to enter the target area is greater than or equal to a determined influence threshold value, and trigger the acquisition module 301 to perform the operation of acquiring the environmental information collected by at least one smart device in a range of the target area when it is judged that the degree of influence is greater than or equal to the influence threshold value.
[0199] The third determining module 309 determines the current physical condition of the user who needs to enter the target area in the following manner:
[0200] According to the information of the user who needs to enter the target area, the current physical condition of the user is determined.
[0201] The information of the user who needs to enter the target area includes at least one of the following: the physical information of the user sent by a device carried by the user and used to measure the physical condition of the user, a diagnosis report of the user, and a current situation of a medicine consumed by the user.
[0202] It can be seen that, by implementing the output control device, Figure 4 The output control device described herein can also perform the operation of determining the environmental state of the area when it is judged according to the current physical condition of the user that the degree of influence of the environment on the user is large, so that the user can know the environmental state of the area that the user needs to know, and the user can perform corresponding operations according to the environmental state of the area and the condition of the user, for example, if the user has a cold, the air conditioner is controlled to be turned off.
[0203] In another optional embodiment, as shown in Figure 4 The judgment module 311 is further configured to, when it is judged that the degree of influence is greater than or equal to the influence threshold value, judge whether the user is currently in the target area, and trigger the acquisition module 301 to perform the operation of acquiring the environmental information collected by at least one smart device in a range of the target area when it is judged that the user is currently in the target area.
[0204] The third determining module 309 is further configured to, when the judgment module 311 judges that the target is not in the target area, determine a starting time at which the user enters the target area according to daily arrangements of the user.
[0205] The determining module 311 is further configured to determine whether the interval duration between the current time and the starting time when the user enters the target area is less than or equal to the determined interval duration threshold, and trigger the obtaining module 301 to perform the operation of obtaining the environment information collected by at least one smart device in the range of the target area when it is determined that the interval duration is less than or equal to the interval duration threshold.
[0206] It can be seen that, by implementing the method Figure 5 The output control device described can further perform the operation of determining the environment state of the area when it is determined that the body of the user is greatly affected by the environment, and further perform the operation of determining the environment state of the area when it is determined that the interval duration between the current time and the starting time when the user enters the target area is short, so that the user can intuitively and timely know the environment state of the area to be entered, and the user experience is further improved.
[0207] Embodiment Four
[0208] Please refer to Figure 5 , Figure 5 is another structural schematic diagram of the output control device of the environment state of the area according to an embodiment of the present application. As shown, the device can include:
[0209] a memory 501 storing executable program codes;
[0210] a processor 502 coupled with the memory 501;
[0211] Further, the device can further include an input interface 503 and an output interface 504 coupled with the processor 502;
[0212] The processor 502 calls the executable program codes stored in the memory 501 to execute the steps in the output control method of the environment state of the area according to any one of the embodiments of the present application.
[0213] Embodiment Five
[0214] The present application discloses a computer storage medium storing computer instructions, which, when called, is used to execute the steps in the output control method of the environment state of the area according to any one of the embodiments of the present application.
[0215] The apparatus embodiments described above are only illustrative, wherein the modules described as separate components can or can not be physically separated, and the components displayed as modules can or can not be physical modules, i.e., can be located in one place or distributed to multiple environment modules. Part or all of the modules can be selected to achieve the purposes of the embodiments according to actual needs. Those skilled in the art can understand and implement without creative labor.
[0216] Through the specific description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be realized by means of software and necessary general hardware platform, and of course can also be realized by hardware. Based on such understanding, the above technical solutions can be embodied in the form of software products, and the computer software products can be stored in a computer readable storage medium, including a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a one-time programmable read-only memory (OTPROM), an electrically erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM) or other optical disk storage, a magnetic disk storage, a magnetic tape storage, or any other computer readable medium that can be used to carry or store data.
[0217] Finally, it should be noted that: the output control method and device of the regional environment state disclosed by the embodiments of the present application are only the preferred embodiments of the present application, and are used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that; the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced; and these modifications or replacements do not make the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. An output control method of a regional environmental state, characterized by, The method comprises: acquiring environment information collected by at least one intelligent device in a target area range, the environment information collected by each intelligent device being environment information of a location currently occupied by each intelligent device; determining an environment state in the target area range according to the environment information collected by all the intelligent devices, and outputting the environment state in the target area range on a region map of the target area range determined; the determination of the environment state in the target area range according to the environment information collected by all the intelligent devices comprises: regionally dividing the target area according to locations of all the intelligent devices to obtain at least one sub-region, each sub-region having at least one intelligent device, and all the intelligent devices included in each sub-region being different; calculating an environment state of each sub-region according to the environment information collected by all the intelligent devices included in each sub-region, and calculating the environment state in the target area range according to the environment states of all the sub-regions; wherein the environment state of each sub-region is quantified by the following manner: ; wherein, is an environmental state of the i-th sub-region, is an environmental index of the i-th sub-region, is a minimum value of the first segment where the environmental index of the i-th sub-region is located, is a maximum value of the first segment where the environmental index of the i-th sub-region is located, is a minimum value of the second segment where the environmental index of the i-th sub-region is located, is a maximum value of the second segment where the environmental index of the i-th sub-region is located, is an environmental temperature of the i-th sub-region, is an environmental humidity of the i-th sub-region, is an environmental wind speed of the i-th sub-region, is an environmental brightness of the i-th sub-region, is an environmental air clarity of the i-th sub-region, is an environmental ultraviolet intensity of the i-th sub-region, is an environmental bacteria condition of the i-th sub-region, , , , , , , is a coefficient, is a coefficient, the first segment corresponds to the second segment, and the first segment comprises a plurality of numerical interval, and the second segment comprises a numerical interval different from the plurality of numerical interval of the first segment.
2. The output control method of a regional environmental state according to claim 1, characterized by, the method further comprises: acquiring target information for determining a display manner of the environment state in the target area range, the target information including information of at least one user who needs to view the environment state in the target area range and / or attribute information of the day; determining the display manner of the environment state according to the target information; and the outputting of the environment state in the target area range on the region map of the target area range determined comprises: outputting the environment state in the target area range on the region map of the target area range determined according to the display manner of the environment state.
3. The output control method of a regional environmental state according to claim 1 or 2, characterized by, after the determination of the environment state in the target area range according to the environment information collected by all the intelligent devices, the method further comprises: querying facility information in the target area range, the facility information including at least one of space information, wall material of a region, wall thickness of the region, and ventilation condition of the region, the space information including space size and / or information corresponding to an article in the space, the information corresponding to the article in the space including at least one of a placement position of the article in the space, a working parameter of the article in the space, and a placement density of the article in the space; estimating environment state change information of the target area range according to the facility information, and outputting the environment state change information on the region map of the target area range, the environment state change information including an environment state change rate and / or an environment state change trend of the target area range.
4. The output control method of a regional environmental state according to claim 3, characterized by, the method further comprises: acquiring a working parameter of each intelligent device, the working parameter of each intelligent device including at least one of a working mode of each intelligent device, a working power of each intelligent device, and a working frequency of each intelligent device; The environment state change information of the target area range is estimated according to the facility information, and the environment state change information of the target area range is estimated according to the facility information and the working parameters of all the intelligent devices. The environment state change information of the target area range is estimated according to the facility information, and the environment state change information of the target area range is estimated according to the facility information and the working parameters of all the intelligent devices.
5. The output control method of a regional environmental state according to claim 1, 2 or 4, characterized by, Before the environment information collected by at least one intelligent device in a target area range is acquired, the method further comprises: determining the current physical condition of a user who needs to enter the target area, and analyzing the degree of influence of the environment on the user according to the current physical condition of the user who needs to enter the target area; determining the current physical condition of a user who needs to enter the target area, and analyzing the degree of influence of the environment on the user according to the current physical condition of the user who needs to enter the target area; The current physical condition of the user who needs to enter the target area is determined according to the information of the user who needs to enter the target area. The information of the user who needs to enter the target area includes at least one of the body information of the user sent by a device carried by the user for measuring the physical condition of the user, a diagnosis report of the user, and the current drug condition of the user. When the number of users who need to view the environment state in the target area range is greater than or equal to 2, the display mode of the environment state is determined according to the target information, comprising:
6. The output control method of a regional environmental state according to claim 2, characterized by, determining whether the information of all the users is matched, and determining the display mode of the environment state according to the target information when it is determined that the information of all the users is matched; when it is determined that there is unmatched information in the information of all the users, determining a target user from all the users, the target user including at least one of a user who is most affected by the environment change among all the users, a user who stays in the target area for a time greater than or equal to a determined time threshold in a certain preset time period, and a user who returns to the location of the target area earliest, wherein the user who returns to the location of the target area earliest includes a user who is currently in the location of the target area or a user whose interval time between the current time and the time of returning to the location of the target area is the shortest; the display mode of the environment state is determined according to the information of the target user. The device is used to implement the output control method of the area environment state according to any one of claims 1-6, and the device comprises:
7. An output control device of a regional environmental state, characterized by comprising: an acquisition module, configured to acquire environment information collected by at least one intelligent device in a target area range, and the environment information collected by each intelligent device is the environment information of the current location of each intelligent device; a first determination module, configured to determine the environment state in the target area range according to the acquired environment information collected by all the intelligent devices; an output module, configured to output the environment state in the target area range on a determined area map of the target area range. The device comprises:
8. An output control device of a regional environmental state, characterized by comprising: a memory storing executable program code; a processor coupled with the memory; the processor invokes the executable program code stored in the memory to execute the output control method of the regional environment state as claimed in any one of claims 1-6.
9. A computer storage medium, characterized in that, the computer storage medium stores computer instructions, which when invoked, are used to execute the output control method of the regional environment state as claimed in any one of claims 1-6.
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