A WIFI hotspot implementation system, method and medium of a smart wearable device

By leveraging the Wi-Fi hotspot of smart wearable devices, the system utilizes hotspot activation decisions, coverage area assessments, and real-time connection detection to address the issue of low hotspot activation efficiency in outdoor scenarios, thereby improving device efficiency and data security.

CN119485585BActive Publication Date: 2025-12-19SHENZHEN NETFEI ZHILIAN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411671530.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-12-19
Estimated Expiration
2044-11-21

AI Technical Summary

Technical Problem

Smart wearable devices cannot automatically turn on Wi-Fi hotspots in outdoor scenarios and cannot assess the feasibility of coverage areas, resulting in low hotspot activation efficiency, unstable connection quality, and impact on device battery life and security.

Method used

By making decisions on hotspot activation, assessing coverage areas, and detecting real-time connectivity, the system infers whether a device has enabled its hotspot function, evaluates the coverage area environment, detects connection efficiency and data consumption, and provides real-time alerts.

Benefits of technology

It improves the accuracy and efficiency of hotspot activation, ensures device efficiency and traffic security, and avoids unnecessary resource waste and consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a WIFI hotspot implementation system and method of an intelligent wearable device and a medium, and relates to the technical field of hotspot implementation, to solve the technical problem that the existing technology cannot detect real-time connection during the sharing implementation process, so that the security of the hotspot implementation cannot be guaranteed, and specifically comprises the following steps: hotspot opening decision, determining whether the wearable device opens the hotspot function at the current time according to the wearable device parameters and user use analysis; hotspot implementation evaluation, performing environment evaluation on the hotspot coverage area at the current time when it is determined that the current wearable device is suitable for opening at the current time; external end connection detection, performing connection detection on the real-time wearable device and the hotspot connection device when the current time is suitable for hotspot opening and after the hotspot is opened; current hotspot connection efficiency inference according to the real-time connection detection; and real-time connection early warning, performing analysis and early warning on the real-time connection during the connection process of the wearable device and the hotspot connection device.
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Description

TECHNICAL FIELD

[0001] The application relates to a WIFI hotspot implementation system, method and medium for a smart wearable device. BACKGROUND

[0002] The smart wearable device is a general term of wearable devices developed by smart design of daily wear through wearable technology, and the smart wearable device can only be normally used through an external terminal network in specific use scenarios such as outdoor activities and mountain climbing. The application is aimed at optimizing the smart wearable device, which can not only be normally used according to the self-network but also share the hotspot to enable surrounding devices to receive the network.

[0003] However, when the smart wearable device is used as a hotspot sharing end, the hotspot cannot be started for decision analysis in advance, the hotspot starting efficiency is reduced, the hotspot implementation feasibility cannot be ensured according to the current coverage area, and real-time connection detection cannot be performed on the sharing implementation process, so that the hotspot implementation safety cannot be ensured.

[0004] In view of the above technical defects, a solution is provided. SUMMARY

[0005] The application aims to solve the above problems and provides a WIFI hotspot implementation system, method and medium for a smart wearable device.

[0006] The application can be achieved by the following technical scheme: a WIFI hotspot implementation method for a smart wearable device, and the hotspot implementation method process is as follows:

[0007] Hotspot starting decision: according to the wearable device parameters and user use analysis, whether the wearable device starts the hotspot function at the current time is inferred.

[0008] Hotspot implementation evaluation: when it is determined that the current wearable device is suitable for starting at the current time, the environment of the hotspot coverage area at the current time is evaluated to infer whether the environment of the current hotspot coverage area meets the influence of the hotspot use demand.

[0009] External connection detection: when the current time is suitable for hotspot starting and after the hotspot is started, the real-time wearable device and the hotspot connection device are connected, the current hotspot connection efficiency is inferred according to the real-time connection detection.

[0010] Real-time connection early warning: during the connection process of the wearable device and the hotspot connection device, the real-time connection is analyzed and warned, and whether the current hotspot connection is abnormal is inferred according to the real-time flow consumption of the hotspot connection device.

[0011] As a preferred embodiment of the present application, the hotspot opening decision process is as follows:

[0012] The flow sharing end and the flow enjoying end are set, the opening condition information is collected, and the hotspot opening decision coefficient is obtained, if the hotspot opening decision coefficient exceeds the opening decision coefficient threshold, the flow sharing end does not open the hotspot at the current time, and the current hotspot switch is set to be unable to click and the sharing code is not displayed, if the hotspot opening decision coefficient does not exceed the opening decision coefficient threshold, the flow sharing end opens the hotspot at the current time, and the current hotspot switch is set to be able to click and the sharing code is displayed.

[0013] As a preferred embodiment of the present application, the opening condition information includes the power consumption proportion of the use task execution progress, the increase speed of the cumulative flow consumption value of the coverage device, and the proportion of the adjacent historical use task completion flow consumption mean value and the set total flow value.

[0014] As a preferred embodiment of the present application, the hotspot implementation evaluation process is as follows:

[0015] The opening period is set, and the coverage area is determined, the fixed supply deviation and the floating supply speed are collected, the data is collected according to the opening period, and the fixed supply curve and the floating supply curve are constructed;

[0016] The threshold value comparison obtains the time when the corresponding parameter exceeds the set threshold value, and is marked as fixed abnormal time and floating abnormal time respectively, and is divided and named as fixed normal period and fixed abnormal period, floating normal period and floating abnormal period, and is grouped as normal period group and abnormal period group;

[0017] Normal warning information and abnormal control information are collected according to the grouping, if the normal warning information exceeds the maximum slope span threshold, or the abnormal control information exceeds the numerical growth peak threshold, a hotspot implementation risk signal is generated;

[0018] If the normal warning information does not exceed the maximum slope span threshold, and the abnormal control information does not exceed the numerical growth peak threshold, a hotspot implementation qualified signal is generated.

[0019] As a preferred embodiment of the present application, the fixed supply deviation is the maximum deviation value of the flow enjoying end corresponding to the flow usage amount at the same time in the coverage area distributed at different positions; the floating supply speed is the flow supply speed floating span mean value of the flow sharing end when the coverage area environment floating corresponding to the rated interval point position generates a moving track.

[0020] As a preferred embodiment of the present application, the normal warning information and the abnormal control information are respectively the maximum span of the curve slope rise in the normal period group of the opening period, and the numerical growth span peak value of any adjacent time in the abnormal period group of the opening period.

[0021] As a preferred embodiment of the present application, the external end connection detection process is as follows:

[0022] The set communication distance is obtained, the connection supply speed information and the connection supply time information are collected, if the connection supply speed information exceeds the speed floating span deviation value threshold, or the connection supply time information exceeds the time length proportion increase speed threshold, a enjoyment control signal is generated; if the connection supply speed information does not exceed the speed floating span deviation value threshold, and the connection supply time information does not exceed the time length proportion increase speed threshold, the real-time flow consumption is sent to the hotspot sharing end for display;

[0023] The connection supply speed information and the connection supply time information are respectively the corresponding flow supply speed floating span deviation value when the flow enjoyment end in the hotspot sharing stage is within the set communication distance range, the time length of the position of the flow enjoyment end in the hotspot sharing stage exceeding the communication distance range, and the time length proportion increase speed of the total sharing period.

[0024] As a preferred embodiment of the present application, the real-time connection early warning process is as follows:

[0025] The real-time connection time information and the real-time connection consumption information are collected, if the real-time connection time information exceeds the consumption time length deviation threshold, or the real-time connection consumption information exceeds the consumption maximum deviation threshold, a flow direction detection signal is generated; if the real-time connection time information does not exceed the consumption time length deviation threshold, and the real-time connection consumption information does not exceed the consumption maximum deviation threshold, a sharing stability signal is generated and sent to the hotspot sharing end.

[0026] As a preferred embodiment of the present application, the real-time connection time information and the real-time connection consumption information are respectively the deviation amount of the execution operation time length and the flow consumption time length in the corresponding use scene of the flow enjoyment end, and the maximum deviation amount of the flow consumption of the same type execution operation in the corresponding use scene of the flow enjoyment end.

[0027] The present application also provides a WIFI hotspot implementation system of an intelligent wearable device, comprising a server, the server being in communication connection with a hotspot opening decision unit, an opening environment analysis unit, a connection communication detection unit and a use analysis early warning unit.

[0028] The hotspot opening decision unit determines whether the wearable device opens the hotspot function at the current time according to the wearable device parameters and the user use analysis;

[0029] The opening environment analysis unit performs environment evaluation on the hotspot coverage area at the current time to determine whether the environment of the current hotspot required coverage area meets the influence on the hotspot use demand when it is determined that the current wearable device is suitable to be opened at the current time.

[0030] The connection communication detection unit is suitable for starting the hotspot at the current time, and the real-time wearable device and the hotspot connection device are detected for connection after the hotspot is started, and the current hotspot connection efficiency is inferred according to the real-time connection detection;

[0031] The use analysis and early warning unit is used to analyze and early warn the real-time connection in the connection process of the wearable device and the hotspot connection device, and whether the current hotspot connection is abnormal is inferred according to the real-time flow consumption of the hotspot connection device.

[0032] The application further provides a computer readable storage medium, which stores computer instructions for enabling a processor to implement the method for implementing a WIFI hotspot of an intelligent wearable device.

[0033] Compared with the prior art, the application has the following beneficial effects:

[0034] 1、In the application, whether the wearable device starts the hotspot function at the current time is inferred according to the wearable device parameters and user use analysis, and whether the current wearable device affects the self operation or the hotspot duration is low after the hotspot function is started is judged through real-time parameter analysis and user use habit analysis, so that the working efficiency of the wearable device is ensured, and the supply efficiency after the hotspot is started is ensured.

[0035] The environment of the hotspot coverage area at the current time is evaluated to infer whether the environment of the current hotspot coverage area meets the influence on the hotspot use demand, so that the influence of the current area environment on the coverage efficiency of the hotspot is avoided, real-time hotspot network anomalies are caused, the use quality of the hotspot is reduced, and the endurance cycle of the wearable device is also affected, the use efficiency of the wearable device is ensured through real-time hotspot evaluation, the accuracy and pertinence of the real-time hotspot start are improved, and unnecessary consumption is avoided.

[0036] 2、In the application, the real-time wearable device and the hotspot connection device are detected for connection, the current hotspot connection efficiency is inferred according to the real-time connection detection, and whether the hotspot connection quality is qualified is judged through the real-time wearable device and the hotspot connection device, so that whether the current hotspot needs to be continuously started is inferred according to the real-time hotspot quality, the wearable device hotspot resource waste caused by low connection quality and continuous start is prevented, and the risk of hotspot non-permission occupation is also increased.

[0037] In the connection process of the wearable device and the hotspot connection device, the real-time connection is analyzed and early warned, whether the current hotspot connection is abnormal is inferred according to the real-time flow consumption of the hotspot connection device, the flow occupation caused by the inconsistency between the current flow consumption operation and the actual flow consumption is avoided, the real-time connection early warning effectively improves the flow use safety, increases the flow tracing monitoring strength, and ensures the normal use of the hotspot. BRIEF DESCRIPTION OF DRAWINGS

[0038] For the convenience of those skilled in the art to understand, the present application is further described below in conjunction with the accompanying drawings.

[0039] Figure 1 The overall method of the present application is shown in the schematic diagram.

[0040] Figure 2 The specific method of the present application is shown in the flow chart.

[0041] Figure 3 The overall system of the present application is shown in the schematic diagram. DETAILED DESCRIPTION

[0042] In order to make the person skilled in the art better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0043] In this paper, the "embodiment" means that the specific features, structures or characteristics described in conjunction with the embodiment can be included in at least one embodiment of the present application. The phrase appears at various places in the specification does not necessarily refer to the same embodiment, nor is it independent or alternative to other embodiments. Those skilled in the art explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.

[0044] The present application is a hotspot implementation system, which is used to cooperate with wearable devices to make its function more comprehensive. A WIFI smart wearable device (including watch, bracelet, earphone, VR glasses, etc.) has WIFI hotspot and hotspot switch function. The hotspot switch contains touch screen key and / or physical key. Other smart terminal users can obtain the use permission of the WIFI hotspot function by scanning the code to recharge or for free.

[0045] As a WIFI smart watch, the Internet of Things card (used for networking, can connect to three major operator network signal base stations) is pasted on the communication mainboard, which can realize WIFI hotspot function. In the prior art, the communication mainboard is a printed circuit board (PCB), which is the core hardware part of the communication device, and the main function is to realize the conversion of various communication protocols, signal transmission and processing. For example, in a mobile phone, the communication mainboard can connect the baseband chip and the radio frequency module of the mobile phone, so that the mobile phone can interact with the base station to complete functions such as making a call, sending a message, and using mobile data to surf the Internet. In network communication equipment such as a router, the communication mainboard can coordinate data transmission between different network interfaces, forward data packets, and select routes.

[0046] In the prior art, the Internet of Things card is a communication card specially used for connecting the network of Internet of Things devices, which is based on the network infrastructure of operators to realize data transmission between Internet of Things devices and the Internet or other special networks.

[0047] And the shared hotspot of the smart wearable device refers to wearable devices such as smart watches and smart bands, which can share their network connection in the form of a hotspot for other devices to use on the basis of being able to connect to the network (such as through the Internet of Things card, Bluetooth, WIFI or cellular network). For example, when your mobile phone has no network signal but the smart watch has a cellular network connection, the smart watch can act as a hotspot to allow the mobile phone to connect to the Internet through it.

[0048] The present application gradually analyzes and detects the hotspot connection implementation after connecting to the operator base station. Please refer to Figure 1 Figure 2 The specific hotspot implementation method process is as follows:

[0049] Hotspot opening decision: according to the parameters of the wearable device and user usage analysis, it is inferred whether the wearable device opens the hotspot function at the current time. Through real-time parameter analysis and user usage habit analysis, it is judged whether the current wearable device opens the hotspot function and whether the hotspot duration is low, so as to ensure the working efficiency of the wearable device, and at the same time to ensure the supply efficiency after the hotspot is opened;

[0050] Hotspot implementation evaluation: after determining that the current wearable device is suitable to be opened at the current time, the environment of the hotspot coverage area at the current time is evaluated to infer whether the environment of the current hotspot coverage area meets the influence of the hotspot use demand, so as to avoid the influence of the current area environment on the coverage efficiency of the hotspot, causing the real-time hotspot network to be abnormally reduced, which reduces the use quality of the hotspot, and also affects the endurance cycle of the wearable device. Through real-time hotspot evaluation, the use efficiency of the wearable device can be ensured, and the accuracy and pertinence of the real-time hotspot opening are improved, avoiding unnecessary consumption; ​

[0051] The outer end connection detection, the current time is suitable for hotspot opening, and after the hotspot is opened, the real-time wearable device and the hotspot connection device are connected for connection detection, the current hotspot connection efficiency is inferred according to the real-time connection detection, and whether the hotspot connection quality is qualified is analyzed and judged through the real-time wearable device and the hotspot connection device, so as to infer whether the current hotspot needs to continue to open according to the real-time hotspot quality, prevent the wearable device hotspot resource waste caused by low connection quality and continuous opening, and increase the risk of hotspot non-authorization occupation;

[0052] Real-time connection warning, in the connection process of the wearable device and the hotspot connection device, the real-time connection is analyzed and warned, whether the current hotspot connection exists abnormity is inferred according to the real-time flow consumption of the hotspot connection device, the inconsistency between the current flow consumption operation and the actual flow consumption is avoided, too much flow occupation and the real-time warning are caused, the flow use safety is effectively improved through the real-time connection warning, the flow tracing monitoring strength is increased, and the normal use of the hotspot is ensured;

[0053] The hotspot opening decision process is as follows:

[0054] The wearable device is set as a flow sharing end, and a network terminal device with hotspot connection demand is marked as a flow enjoying end. The power consumption proportion of the execution progress of the use task corresponding to the use scene of the flow sharing end at the current time is collected, wherein the use task represents the execution work of the use scene of the wearable device, such as glasses, and the user needs to look at things and the like. The increasing speed of the cumulative flow consumption value of the terminal network coverage device in the current use scene of the flow sharing end is obtained, wherein the terminal network represents the network in which the wearable device is located, and the coverage device can be other wearable devices or mobile phones and the like. The power consumption proportion of the execution progress of the use task corresponding to the use scene of the flow sharing end at the current time and the increasing speed of the cumulative flow consumption value of the terminal network coverage device in the current use scene of the flow sharing end are marked as HDZ and LHV respectively.

[0055] The proportion of the average flow consumption of the adjacent historical use task completed in the use scene of the flow sharing end and the set total flow value is obtained, and the proportion of the average flow consumption of the adjacent historical use task completed in the use scene of the flow sharing end and the set total flow value is marked as LZB.

[0056] The above collected data is uniformly marked as opening condition information, and the hotspot opening decision coefficient of the flow sharing end corresponding to the current time is obtained by substituting the formula, wherein the formula is:

[0057] Wherein, bf1, bf2 and bf3 are respectively preset proportion coefficients, t is the used time length of the current flow sharing end real-time use period, e is a natural constant, β is an error correction factor, and the value is 0.79;

[0058] The hotspot opening decision coefficient corresponding to the flow sharing end at the current time is compared with the opening decision coefficient threshold value:

[0059] If the hotspot opening decision coefficient corresponding to the flow sharing end at the current time exceeds the opening decision coefficient threshold value, it is inferred that the flow sharing end at the current time is not suitable for hotspot opening, then the flow sharing end at the current time does not open the hotspot, and the current hotspot switch is set to be unable to click and the sharing code is not displayed;

[0060] If the hotspot opening decision coefficient corresponding to the flow sharing end at the current time does not exceed the opening decision coefficient threshold value, it is inferred that the flow sharing end at the current time is suitable for hotspot opening, then the flow sharing end at the current time opens the hotspot, and the current hotspot switch is set to be clickable and the sharing code is displayed;

[0061] The hotspot implementation evaluation process is as follows:

[0062] Set a trial opening period, and set the center of the flow sharing end in the current area trajectory or position, and set the coverage area according to the coverage range of the current flow sharing end, collect the maximum deviation value of the flow enjoying end corresponding to the current flow usage amount in the coverage area, and mark the maximum deviation value of the flow enjoying end corresponding to the current flow usage amount in the coverage area as the fixed supply deviation;

[0063] At the same time, set the rated spacing points in the coverage area, collect the flow supply speed floating span average of the rated spacing points corresponding to the environmental floating in the coverage area when the flow sharing end generates a moving track, and mark the flow supply speed floating span average of the rated spacing points corresponding to the environmental floating in the coverage area when the flow sharing end generates a moving track as the floating supply speed;

[0064] And collect the fixed supply deviation and the floating supply speed at each time in the trial opening period, and sort the data in time sequence and construct the fixed supply curve and the floating supply curve through connection;

[0065] According to the threshold value comparison of the actual collected values in the fixed supply curve and the floating supply curve, the time corresponding to the parameter exceeding the set threshold value is obtained, and is marked as fixed abnormal time and floating abnormal time respectively, wherein the maximum deviation value of the flow enjoying end corresponding to the current flow usage amount in the coverage area or the flow supply speed floating span average of the rated spacing points corresponding to the environmental floating in the coverage area when the flow sharing end generates a moving track exceeds the corresponding set threshold value, then the current parameter is abnormal;

[0066] And according to the fixed abnormal time and the floating abnormal time, the current trial opening period is divided into fixed normal period and fixed abnormal period, and floating normal period and floating abnormal period respectively.

[0067] The hotspot implementation evaluation is grouped by fixed normal period and floating normal period, fixed abnormal period and floating abnormal period; and the corresponding groups are marked as normal period group and abnormal period group;

[0068] The maximum span of the rising slope of the corresponding curve at any two time points in the normal period group in the trial opening period is collected, and the peak value of the numerical growth span of any adjacent time points in the abnormal period group in the trial opening period is collected, and the maximum span of the rising slope of the corresponding curve at any two time points in the normal period group in the trial opening period and the peak value of the numerical growth span of any adjacent time points in the abnormal period group in the trial opening period are marked as normal warning information and abnormal control information, respectively, and compared with the maximum span threshold and the numerical growth peak value threshold, respectively:

[0069] If the maximum span of the rising slope of the corresponding curve at any two time points in the normal period group in the trial opening period exceeds the maximum span threshold, or the peak value of the numerical growth span of any adjacent time points in the abnormal period group in the trial opening period exceeds the numerical growth peak value threshold, it is inferred that there is a risk of hotspot opening in the current trial opening period, a hotspot implementation risk signal is generated and sent to the hotspot sharing end, and a hotspot decision instruction is generated and fed back to the user, and the user decides whether to continue running at the current time according to the real-time coverage area movement plan;

[0070] If the maximum span of the rising slope of the corresponding curve at any two time points in the normal period group in the trial opening period does not exceed the maximum span threshold, and the peak value of the numerical growth span of any adjacent time points in the abnormal period group in the trial opening period does not exceed the numerical growth peak value threshold, it is inferred that the hotspot opening in the current trial opening period is normal, a hotspot implementation qualified signal is generated and sent to the hotspot sharing end; the hotspot sharing end feeds back the real-time hotspot traffic consumption speed to the user, and the user can manually intervene or set a threshold device to automatically intervene according to the real-time consumption speed;

[0071] The external end connection detection process is as follows:

[0072] The set communication distance of the hotspot sharing end and the traffic enjoying end is collected, the corresponding traffic supply speed floating span deviation value when the traffic enjoying end floats in and out of the set communication distance range in the hotspot sharing stage is obtained, and the length of time when the traffic enjoying end is located beyond the communication distance range and the increasing speed of the length of time ratio of the total sharing period in the hotspot sharing stage are obtained. The corresponding traffic supply speed floating span deviation value when the traffic enjoying end floats in and out of the set communication distance range in the hotspot sharing stage and the increasing speed of the length of time ratio of the total sharing period when the traffic enjoying end is located beyond the communication distance range in the hotspot sharing stage are marked as connection supply information and connection supply time information respectively, and are compared with a speed floating span deviation value threshold and a length of time ratio increasing speed threshold respectively:

[0073] If the corresponding traffic supply speed floating span deviation value when the traffic enjoying end floats in and out of the set communication distance range in the hotspot sharing stage exceeds the speed floating span deviation value threshold, or the increasing speed of the length of time ratio of the total sharing period when the traffic enjoying end is located beyond the communication distance range exceeds the length of time ratio increasing speed threshold, it is inferred that the actual use efficiency of the current traffic enjoying end in the hotspot sharing stage is low, an enjoying regulation signal is generated and sent to the hotspot sharing end, and the hotspot sharing end sends a warning instruction to the corresponding traffic enjoying end after receiving the enjoying regulation signal, and the distance real-time control amount is prompted through a short message instruction warning, that is, the remaining distance beyond the range is warned when the distance is within the range, the distance beyond the range is warned when the distance is out of the range, and the hotspot is interrupted when the set distance beyond the range is reached;

[0074] If the corresponding traffic supply speed floating span deviation value when the traffic enjoying end floats in and out of the set communication distance range in the hotspot sharing stage does not exceed the speed floating span deviation value threshold, and the increasing speed of the length of time ratio of the total sharing period when the traffic enjoying end is located beyond the communication distance range does not exceed the length of time ratio increasing speed threshold, it is inferred that the actual use efficiency of the current traffic enjoying end in the hotspot sharing stage is high, and the real-time traffic consumption is sent to the hotspot sharing end for display;

[0075] The real-time connection warning process is as follows:

[0076] The hotspot sharing end performs real-time connection warning according to the real-time traffic consumption amount displayed in real time, and collects the deviation amount of the operation execution time and the traffic consumption time of the traffic enjoying end in the corresponding use scenario, wherein the operation execution represents the traffic consumption operation of the traffic enjoying end, such as a mobile phone, the corresponding operation is to cache a video, and the operation execution time includes the time length of traffic pre-caching; meanwhile, the maximum deviation amount of traffic consumption of the same type of operation execution of the traffic enjoying end in the corresponding use scenario is obtained, and the deviation amount of the operation execution time and the traffic consumption time of the traffic enjoying end in the corresponding use scenario and the maximum deviation amount of traffic consumption of the same type of operation execution of the traffic enjoying end in the corresponding use scenario are respectively marked as real-time connection time information and real-time connection consumption information, and are respectively compared with a consumption time deviation threshold and a maximum consumption amount deviation threshold:

[0077] If the deviation amount of the operation execution time and the traffic consumption time of the traffic enjoying end in the corresponding use scenario exceeds the consumption time deviation threshold, or the maximum deviation amount of traffic consumption of the same type of operation execution of the traffic enjoying end in the corresponding use scenario exceeds the maximum consumption amount deviation threshold, it is inferred that the current traffic enjoying end use is abnormal, a flow direction detection signal is generated and sent to the hotspot sharing end, the hotspot sharing end receives the flow direction detection signal, generates a traceability instruction to the traffic enjoying end, the traffic enjoying end performs consumption amount background query on the internal software currently using the traffic, performs running self-checking on the software whose consumption amount exceeds the normal range, and limits the flow of such software;

[0078] If the deviation amount of the operation execution time and the traffic consumption time of the traffic enjoying end in the corresponding use scenario does not exceed the consumption time deviation threshold, and the maximum deviation amount of traffic consumption of the same type of operation execution of the traffic enjoying end in the corresponding use scenario does not exceed the maximum consumption amount deviation threshold, it is inferred that the current traffic enjoying end use is normal, a sharing stability signal is generated and sent to the hotspot sharing end.

[0079] Please refer to Figure 3 As shown in the figure, a WIFI hotspot implementation system of an intelligent wearable device includes a server, the server is in communication connection with a hotspot opening decision unit, an opening environment analysis unit, a connection communication detection unit and a use analysis warning unit;

[0080] The hotspot opening decision unit determines whether the wearable device opens the hotspot function at the current time according to the wearable device parameters and the user use analysis;

[0081] The opening environment analysis unit performs environment evaluation on the hotspot coverage area at the current time to determine whether the environment of the current hotspot required coverage area meets the influence on the hotspot use demand when it is determined that the current wearable device is suitable to be opened at the current time;

[0082] The connection communication detection unit is suitable for starting the hotspot at the current time and detecting the connection between the real-time wearable device and the hotspot connection device after the hotspot is started, and inferring the current hotspot connection efficiency according to the real-time connection detection;

[0083] The use analysis and early warning unit analyzes and early warns the real-time connection in the connection process of the wearable device and the hotspot connection device, and infers whether there is an abnormality in the current hotspot connection according to the real-time flow consumption of the hotspot connection device.

[0084] Additionally, a computer readable storage medium stores computer instructions for causing a processor to implement the above-mentioned WIFI hotspot implementation method of an intelligent wearable device.

[0085] A person skilled in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be completed by a computer program instructing related hardware, and the computer program can be stored in a non-volatile computer readable storage medium. When the computer program is executed, it can include the processes of the above-mentioned embodiments of each method.

[0086] In the embodiments provided in the present application, any reference to memory, storage, database or other medium can include non-volatile and / or volatile memory, and the non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM) or flash memory, and the volatile memory can include random access memory (RAM) or external cache memory.

[0087] As an illustration but not limitation, RAM is available in many forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.

[0088] Those skilled in the art can clearly understand that, for the convenience and brevity of description, only the division of the above-mentioned functional units and modules is exemplified, and in actual application, the above-mentioned functions can be completed by different functional units and modules according to needs, that is, the internal structure of the device is divided into different functional units or modules to complete all or part of the functions described above.

[0089] The above formulas are obtained by collecting a large amount of data for software simulation and selecting a formula close to the true value, and the coefficients in the formula are set by a person skilled in the art according to the actual situation;

[0090] In use, the hotspot opening decision determines whether the wearable device opens the hotspot function at the current time according to the wearable device parameters and user use analysis; the hotspot implementation evaluation evaluates the environment of the hotspot coverage area at the current time to determine whether the environment of the current hotspot coverage area meets the influence of the hotspot use demand; the external end connection detection detects the connection between the real-time wearable device and the hotspot connection device after the hotspot is opened at the current time suitable for hotspot opening, and determines the current hotspot connection efficiency according to the real-time connection detection; the real-time connection early warning analyzes and warns the real-time connection in the connection process of the wearable device and the hotspot connection device, and determines whether the current hotspot connection is abnormal according to the real-time flow consumption of the hotspot connection device.

[0091] The preferred embodiments of the application disclosed above are only used to help explain the application. The preferred embodiments do not describe all the details and limit the application to the specific embodiments. Obviously, many modifications and changes can be made according to the content of the specification. The specification selects and describes these embodiments in order to better explain the principles and practical applications of the application, so that those skilled in the art can well understand and use the application. The application is limited by the claims and their entire scope and equivalents.

Claims

1. A WIFI hotspot implementation method of a smart wearable device, characterized in that, The hotspot implementation method process is as follows: Hotspot opening decision, according to the parameters of the wearable device and the user use analysis, it is inferred that the wearable device is opened at the current time whether the hotspot function is opened; Hotspot implementation evaluation, in the current time, the environment of the hotspot coverage area is evaluated to determine whether the current wearable device is suitable for opening at the current time; Hotspot implementation evaluation process is as follows: Set the trial opening period, determine the coverage area, collect fixed supply deviation and floating supply speed, collect data according to the trial opening period and construct fixed supply curve and floating supply curve; Threshold comparison gets the time corresponding to the parameter exceeding the set threshold, and is marked as fixed abnormal time and floating abnormal time respectively, and is divided into fixed normal period and fixed abnormal period, floating normal period and floating abnormal period according to the period division and naming, and is grouped into normal period group and abnormal period group; According to the grouping, normal warning information and abnormal control information are collected, if the normal warning information exceeds the maximum slope span threshold, or the abnormal control information exceeds the numerical growth peak threshold, the hotspot implementation risk signal is generated; If the normal warning information does not exceed the maximum slope span threshold, and the abnormal control information does not exceed the numerical growth peak threshold, the hotspot implementation qualified signal is generated; Fixed supply deviation is the maximum deviation value of the flow usage of the flow sharing end at the same time in the coverage area; The floating supply speed is the flow supply speed floating span average value of the corresponding rated distance point in the coverage area when the flow sharing end generates moving track; Normal warning information and abnormal control information are respectively the maximum span of the curve slope of any two time points in the normal period group in the trial opening period, and the numerical growth span peak value of any adjacent time points in the abnormal period group in the trial opening period; External connection detection, the current time is suitable for hotspot opening, and after the hotspot is opened, the real-time wearable device and the hotspot connection device are connected, and the current hotspot connection efficiency is inferred according to the real-time connection detection; The external connection detection process is as follows: Get the set communication distance, collect connection supply speed information and connection supply time information, if the connection supply speed information exceeds the speed floating span deviation value threshold, or the connection supply time information exceeds the time length proportion increase speed threshold, the enjoyment control signal is generated; If the connection supply speed information does not exceed the speed floating span deviation value threshold, and the connection supply time information does not exceed the time length proportion increase speed threshold, the real-time flow consumption is sent to the hotspot sharing end for display; Connection supply speed information and connection supply time information are respectively the flow supply speed floating span deviation value of the flow enjoyment end in the set communication distance range when the flow enjoyment end is in the set communication distance range, and the time length proportion increase speed of the flow enjoyment end in the set communication distance range; Real-time connection warning, in the process of connecting the wearable device and the hotspot connection device, the real-time connection is analyzed and warned, and whether the current hotspot connection exists abnormally is inferred according to the real-time flow consumption of the hotspot connection device; The real-time connection warning process is as follows: The real-time information and the real-time consumption information are collected, if the real-time information exceeds the consumption time length deviation threshold value, or the real-time consumption information exceeds the consumption amount maximum deviation threshold value, a flow direction detection signal is generated, if the real-time information does not exceed the consumption time length deviation threshold value, and the real-time consumption information does not exceed the consumption amount maximum deviation threshold value, a sharing stability signal is generated and sent to the hotspot sharing end, the real-time information and the real-time consumption information are respectively the deviation amount of the operation time length and the flow consumption time length in the corresponding use scene of the flow enjoying end, and the maximum deviation amount of the flow consumption in the same type operation in the corresponding use scene of the flow enjoying end. 2.The WIFI hotspot implementation method of the smart wearable device according to claim 1, characterized in that, The hotspot opening decision process is as follows: The flow sharing end and the flow enjoying end are set, the opening condition information is collected, and the hotspot opening decision coefficient is obtained, if the hotspot opening decision coefficient exceeds the opening decision coefficient threshold value, the flow sharing end does not open the hotspot at the current time, and the current hotspot switch is set to be unable to be clicked and the sharing code is not displayed, if the hotspot opening decision coefficient does not exceed the opening decision coefficient threshold value, the flow sharing end opens the hotspot at the current time, and the current hotspot switch is set to be able to be clicked and the sharing code is displayed. 3.A WIFI hotspot implementation system of a smart wearable device, comprising a processor, a memory, and a computer program stored in the memory and executable by the processor, characterized in that, The processor runs the computer program, and a WIFI hotspot implementation method of the intelligent wearable device is realized.

4. A computer-readable storage medium, characterized in that, The computer program is stored on the processor, and when the processor is executed, the WIFI hotspot implementation method of the intelligent wearable device is realized.

Citation Information

Patent Citations

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