A data transmission method and system based on a personal WiFi network
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]本发明的目的在于提供一种基于随身WiFi网络的数据传输方法及系统,用于解决现有方案中不能对随身WiFi网络的数据传输方案的实时运行效果进行不同维度的监管分析并动态管理的技术问题
[0034]本发明通过对随身WiFi网络请求使用时的传输数据类型进行识别分析,并对分析确定的传输数据类型对应数据传输方案进行不同方面的数据传输要求监管分析,根据分析结果自适应地对传输数据类型对应数据传输强化方案的调整进行动态管理,提高了随身WiFi网络在不同数据传输场景下使用时数据传输方案的多维监管分析效果以及自主优化管理实施效果。
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Figure CN119521314B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of network data transmission technology, and specifically to a data transmission method and system based on a portable WiFi network. Background Technology
[0002] Portable WiFi networks are portable wireless network solutions that allow users to create their own WiFi hotspots using mobile networks (such as 2G, 3G, 4G, or 5G) in environments without a fixed WiFi network, thereby enabling network sharing among multiple devices.
[0003] The network speed and stability of portable WiFi are limited by the quality of the mobile network. At the same time, the convenience of portable WiFi also limits its battery support. Existing data transmission solutions based on portable WiFi networks cannot monitor and analyze data transmission schemes and power consumption under different data transmission scenarios from different dimensions, nor can they adaptively and dynamically manage data transmission schemes based on the monitoring and analysis results. This has the defect of not being able to monitor and analyze the real-time operation of portable WiFi network data transmission schemes from different dimensions and manage them dynamically. Summary of the Invention
[0004] The purpose of this invention is to provide a data transmission method and system based on a portable WiFi network, which solves the technical problem that existing solutions cannot monitor and analyze the real-time operation of data transmission schemes based on portable WiFi networks from different dimensions and manage them dynamically.
[0005] The objective of this invention can be achieved through the following technical solutions:
[0006] A data transmission method based on a portable WiFi network includes:
[0007] The system identifies and analyzes the data transmission types when requesting to use the portable WiFi network, determines whether the adjustment of the data transmission scheme corresponding to the data transmission type meets the corresponding data transmission requirements, and performs data analysis and dynamic management on the adjustment of the data transmission enhancement scheme corresponding to the data transmission type based on the identification and analysis results and the real-time power consumption of the portable WiFi network.
[0008] Among them, the amount of data transmitted per second of the data transmission scheme during the transmission supervision period is monitored and statistically analyzed, and the data transmission scheme of the transmission data type is processed and analyzed to see if it meets the corresponding data transmission requirements.
[0009] When the data transmission scheme of the data transmission type does not meet the corresponding data transmission requirements, the real-time battery level of the portable WiFi network is obtained, processed, and analyzed to determine whether the real-time battery level of the portable WiFi network meets the requirements for subsequent adjustments to the data transmission scheme corresponding to the data transmission type.
[0010] It also performs automated monitoring and analysis of the necessary states for adjusting the data transmission enhancement scheme corresponding to the data transmission data type, and dynamically controls the implementation of subsequent adjustments to the data transmission data type to the data transmission enhancement scheme based on the analysis results;
[0011] The system monitors and statistically analyzes the user confirmation results for each data transmission scheme corresponding to different data transmission types when requesting to use portable WiFi networks. Based on the data transmission type, it processes and analyzes each user confirmation result to determine the user preference for adjusting the data transmission scheme corresponding to the data transmission type. Based on the analysis results, it dynamically manages the subsequent operation of the data transmission scheme corresponding to the data transmission type in different application scenarios.
[0012] Preferably, the amount of data transmitted per second in the data transmission scheme during the transmission monitoring period is monitored and statistically analyzed using a formula. Obtain the stage transmission quality value CZ corresponding to the data transmission scheme of the transmission data type; where CL is the median amount of transmitted data within the transmission supervision period; CL′ is the standard minimum amount of transmitted data within the transmission supervision period;
[0013] If the stage transmission quality value is 0, it is determined that the data transmission scheme of the transmission data type meets the corresponding data transmission requirements, and the subsequent implementation of the data transmission scheme corresponding to the transmission data type is maintained.
[0014] Preferably, if the stage transmission quality value is not 0, it is determined that the data transmission scheme of the transmission data type does not meet the corresponding data transmission requirements and an adjustment verification instruction is generated. The real-time battery level of the portable WiFi network is obtained according to the adjustment verification instruction, and the data is analyzed through the enhanced implementation status identification function, and the enhanced implementation status value QS of the data transmission enhancement scheme corresponding to the transmission data type is output.
[0015] The expression for the enhanced implementation state recognition function is as follows: In the formula, TS represents the real-time battery level corresponding to the portable WiFi network; TS′ represents the adjusted battery level corresponding to the portable WiFi network.
[0016] If the enhanced implementation status value is 0, it is determined that the real-time battery level of the portable WiFi network does not meet the requirements for subsequent adjustments to the data transmission scheme corresponding to the data transmission type. At the same time, the option to adjust is pushed to the user for confirmation.
[0017] Preferably, if the user confirms that no adjustments will be made, the subsequent implementation of the data transmission scheme corresponding to the data transmission type will be maintained, and the total number of times the user has made a partial data transmission continuous request for the data transmission type will be incremented by one.
[0018] If the user confirms the adjustment, the data transmission scheme corresponding to the data transmission type will be adjusted to the data transmission enhancement scheme for subsequent implementation, and the total number of times the user has made partial data transmission quality requirements for the corresponding data transmission type will be incremented by one.
[0019] Preferably, if the enhanced implementation state value is 1, then the necessary state for adjusting the data transmission enhancement scheme corresponding to the transmitted data type is automatically monitored and processed, and the process is implemented through a formula. Calculate the necessary adjustment value BT for the data transmission scheme corresponding to the data transmission type; where TH is the power consumption per unit time of the data transmission scheme corresponding to the data transmission type; TH′ is the additional power consumption per unit time of the data transmission enhancement scheme corresponding to the data transmission type; and TC is the standard value of the adjustment runtime difference between the data transmission scheme corresponding to the data transmission type and the data transmission enhancement scheme.
[0020] Preferably, if the adjustment necessity value is less than or equal to 1, an adjustment local necessity instruction is generated, and the subsequent adjustment of the transmission data type is controlled to be an intermittent implementation of the data transmission enhancement scheme until the enhancement implementation status value is 0. Then, the option of whether to adjust is pushed to the user for confirmation, and the confirmation result is monitored and statistically analyzed.
[0021] If the adjustment necessity value is greater than 1, an overall adjustment necessity instruction is generated, and the data transmission data type is controlled to be continuously implemented within the subsequent TC duration, until the adjustment necessity value is less than or equal to 1 and the corresponding data transmission enhancement scheme is implemented intermittently.
[0022] Preferably, all user confirmation results corresponding to different data transmission types are obtained, and a first user preference data analysis is performed on the total number of partial data transmission duration requirements and the total number of partial data transmission quality requirements in all user confirmation results;
[0023] If the total number of times the biased data transmission continues to require is 0, then the user's preference for the data transmission quality corresponding to the data transmission type will be marked as a complete preference for data transmission quality, and the data transmission type will be associated with the first user preference label.
[0024] If the total number of partial data transmission duration requirements is not zero, then the total number of partial data transmission duration requirements and the total number of partial data transmission quality requirements corresponding to the user's data type will be calculated using the formula... Calculate the transmission quality requirement ZY for the user corresponding to the transmission data type; where NC and NZ are the total number of partial data transmission duration requirements and the total number of partial data transmission quality requirements confirmed by the user corresponding to the transmission data type, respectively; LB is the standard deviation of the transmission quality requirements confirmed by the user corresponding to the transmission data type.
[0025] Preferably, if the transmission quality requirement is greater than 0, the user's preference for the corresponding transmission data type is marked as having a high preference for data transmission quality, and the corresponding transmission data type is associated with the first user preference label;
[0026] Conversely, the user's preference for the data transmission type is marked as a fuzzy preference for data transmission quality, and the data transmission type is associated with a second user preference label;
[0027] The first or second user preference tag obtained from the analysis and processing is associated with the corresponding data type of the transmission data. The first or second user preference tags associated with different data types are sorted and combined to obtain data transmission user preference analysis data.
[0028] Preferably, when analyzing the data transmission schemes for different data transmission types during the use of the portable WiFi network based on data transmission user preference analysis data, the data transmission scheme corresponding to the data transmission type is automatically adjusted to a data transmission enhancement scheme based on the first user preference tag.
[0029] Furthermore, based on the second user preference tag, the system analyzes whether the data transmission scheme of the corresponding data transmission type meets the corresponding data transmission requirements and power consumption requirements, and evaluates and dynamically manages the adjustment of the data transmission enhancement scheme corresponding to the data transmission type based on the analysis results.
[0030] A data transmission system based on a portable WiFi network includes:
[0031] The portable WiFi network single-use data transmission monitoring and control module is used to identify and analyze the data transmission type when the portable WiFi network requests to use it, determine whether the adjustment of the data transmission scheme corresponding to the data transmission type meets the corresponding data transmission requirements, and perform data analysis and dynamic management on the adjustment of the data transmission enhancement scheme corresponding to the data transmission type based on the identification and analysis results and the real-time power consumption of the portable WiFi network.
[0032] The portable WiFi network uses a data transmission preference analysis and control module to monitor and statistically analyze the user confirmation results of each data transmission scheme corresponding to different data transmission types when requesting to use the portable WiFi network. Based on the data transmission type, the module processes and analyzes each user confirmation result to determine the user preference for adjusting the data transmission scheme corresponding to the data transmission type. Based on the analysis results, the module dynamically manages the subsequent operation of the data transmission scheme corresponding to the data transmission type in different application scenarios.
[0033] Compared to existing solutions, the beneficial effects achieved by this invention are:
[0034] This invention identifies and analyzes the data transmission types requested when using a portable WiFi network, and conducts monitoring and analysis of the data transmission schemes corresponding to the identified data transmission types in different aspects. Based on the analysis results, it adaptively and dynamically manages the adjustment of the data transmission enhancement schemes corresponding to the data transmission types, thereby improving the multi-dimensional monitoring and analysis effect and the autonomous optimization management effect of the data transmission schemes when using the portable WiFi network in different data transmission scenarios.
[0035] This invention integrates and calculates all historical option confirmation data for individual users corresponding to different data transmission types to obtain the transmission quality requirement degree for adjusting data transmission enhancement schemes for different data transmission types. By analyzing the transmission quality requirement degree, it determines the user preference status for adjusting data transmission enhancement schemes for different data transmission types. This allows for autonomous control over the adjustment of data transmission enhancement schemes for different data transmission types during the operation of the portable WiFi network, improving the expanded utilization effect and autonomous learning control effect of the data transmission adjustment monitoring data of the portable WiFi network. Attached Figure Description
[0036] The invention will now be further described with reference to the accompanying drawings.
[0037] Figure 1 This is a flowchart illustrating a data transmission method based on a portable WiFi network according to the present invention.
[0038] Figure 2 This is a block diagram of a data transmission system based on a portable WiFi network according to the present invention. Detailed Implementation
[0039] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0040] Example 1: As Figure 1 As shown, the present invention is a data transmission method based on a portable WiFi network, comprising:
[0041] The system identifies and analyzes the data transmission types requested when using portable WiFi networks, determines whether adjustments to the data transmission scheme for each data type meet the corresponding data transmission requirements, and dynamically manages adjustments to the data transmission enhancement scheme based on the identification and analysis results and the real-time battery level of the portable WiFi network. This includes:
[0042] The data transmission volume per second of the data transmission scheme is monitored and statistically analyzed within the transmission monitoring period, which is in seconds, specifically 10 seconds. This means that the corresponding data transmission volume is monitored and statistically analyzed every 10 seconds. The specific data transmission volume can be the download traffic of a portable WiFi network, and is calculated using the formula... Obtain the stage transmission quality value CZ corresponding to the data transmission scheme of the transmission data type; where CL is the median amount of transmitted data within the transmission supervision period; CL′ is the standard minimum amount of transmitted data within the transmission supervision period, which can be determined according to the actual model design data of the portable WiFi network.
[0043] If the stage transmission quality value is 0, it is determined that the data transmission scheme of the transmission data type meets the corresponding data transmission requirements, and the subsequent implementation of the data transmission scheme corresponding to the transmission data type is maintained; wherein, the transmission data type includes, but is not limited to, general transmission data type, video transmission data type and game transmission data type;
[0044] It should be noted that different data transmission types have different data transmission requirements. For example, the data transmission requirements for video data transmission types are higher than those for general data transmission types, and the data transmission requirements for game data transmission types are higher than those for video data transmission types. The identification and acquisition of data transmission types can be achieved based on existing port identification technology and protocol analysis technology. The specific implementation steps will not be elaborated here.
[0045] If the stage transmission quality value is not 0, it is determined that the data transmission scheme of the transmission data type does not meet the corresponding data transmission requirements and an adjustment verification instruction is generated. Based on the adjustment verification instruction, the real-time battery level of the portable WiFi network is obtained, and the data is analyzed through the enhanced implementation status identification function. The enhanced implementation status value QS of the data transmission enhancement scheme corresponding to the transmission data type is output.
[0046] It is important to note that, unlike existing technical solutions that directly address data transmission issues by implementing optimization measures (such as checking and optimizing signal strength or adjusting network settings) without considering the real-time power consumption of the portable WiFi network, which would increase its power consumption and thus affect its overall usage time, this invention obtains and analyzes the real-time power consumption of the portable WiFi network when the data transmission scheme for a particular data type fails to meet the corresponding data transmission requirements. This determines whether the real-time power consumption of the portable WiFi network meets the requirements for subsequent adjustments to the data transmission scheme for that data type and implements targeted optimization and control, thereby improving the reliability and versatility of data transmission optimization and control during the operation of the portable WiFi network.
[0047] The expression for the enhanced implementation state recognition function is as follows: In the formula, TS represents the real-time battery level of the portable WiFi network; TS′ represents the adjustable battery level of the portable WiFi network, which can be determined based on the actual model design data of the portable WiFi network or customized according to the user's actual usage needs.
[0048] It should be noted that the enhanced implementation status value is used to calculate and digitally represent whether the data transmission scheme of the corresponding data type of the portable WiFi network meets the adjustment implementation requirements;
[0049] If the enhanced implementation status value is 0, it is determined that the real-time battery level of the portable WiFi network does not meet the requirements for subsequent adjustments to the data transmission scheme corresponding to the data transmission type. At the same time, the option to adjust is pushed to the user for confirmation.
[0050] If the user confirms that no adjustments will be made, the subsequent implementation of the data transmission scheme corresponding to the data transmission type will be maintained, and the total number of times the user has made continuous requests for partial data transmission of the corresponding data transmission type will be incremented by one.
[0051] If the user confirms the adjustment, the data transmission scheme corresponding to the data transmission type will be adjusted to the data transmission enhancement scheme for subsequent implementation, and the total number of times the user has made partial data transmission quality requirements for the corresponding data transmission type will be incremented by one.
[0052] It is worth noting that by pushing the option to adjust the data transmission scheme of the corresponding data transmission type of the portable WiFi network to the user for confirmation when the data transmission scheme does not meet the adjustment implementation requirements, it can not only meet the actual operation requirements of the data transmission scheme, but also provide reliable local user preference selection data support for the monitoring and analysis of user preferences for subsequent adjustments to the data transmission schemes corresponding to different data transmission types.
[0053] If the enhancement implementation status value is 1, then the necessary status adjustment for the data transmission enhancement scheme corresponding to the data transmission data type will be automatically monitored and processed through the formula. Calculate the necessary adjustment value BT for the data transmission scheme corresponding to the data transmission type; where TH is the power consumption per unit time of the data transmission scheme corresponding to the data transmission type; TH′ is the additional power consumption per unit time of the data transmission enhancement scheme corresponding to the data transmission type; TC is the standard value of the adjustment runtime difference between the data transmission scheme corresponding to the data transmission type and the data transmission enhancement scheme, which can be determined based on the actual model design data of the portable WiFi network, or based on the early test data of the actual model of the portable WiFi network.
[0054] It should be noted that the adjustment of necessary values is used to perform data calculation and digital representation on the continuous running type of the data transmission enhancement scheme corresponding to the data transmission data type;
[0055] If the adjustment necessity value is less than or equal to 1, an adjustment local necessity instruction is generated, and the subsequent adjustment of the transmission data type is controlled to be an intermittent implementation of the data transmission enhancement scheme until the enhancement implementation status value is 0. Then, the option of whether to adjust is pushed to the user for confirmation, and the confirmation result is monitored and statistically analyzed.
[0056] If the adjustment necessity value is greater than 1, an overall adjustment necessity instruction will be generated, and the data transmission data type will be adjusted to continuously implement the data transmission enhancement scheme within the subsequent TC duration, until the adjustment necessity value is less than or equal to 1 and the corresponding data transmission enhancement scheme is implemented intermittently.
[0057] In this embodiment of the invention, by identifying and analyzing the data transmission types when a portable WiFi network is requested to be used, and by conducting data transmission requirement monitoring and analysis on the data transmission schemes corresponding to the identified data transmission types, the adjustment of the data transmission enhancement schemes corresponding to the data transmission types is dynamically managed adaptively based on the analysis results. This improves the multi-dimensional monitoring and analysis effect and the autonomous optimization management effect of the data transmission schemes when the portable WiFi network is used in different data transmission scenarios.
[0058] The system monitors and statistically analyzes the user confirmation results for each data transmission scheme corresponding to different data types when requesting access to portable WiFi networks. It then processes and analyzes these confirmation results based on the data transmission type to determine user preferences for adjusting the data transmission scheme corresponding to that data type. Based on the analysis results, it dynamically manages the subsequent operation of the data transmission scheme corresponding to different data types in various application scenarios; including:
[0059] Obtain all user confirmation results corresponding to different data transmission types, and perform data analysis on the total number of partial data transmission duration requirements and the total number of partial data transmission quality requirements in all user confirmation results to identify the first user preference.
[0060] If the total number of times the biased data transmission continues to require is 0, then the user's preference for the data transmission quality corresponding to the data transmission type will be marked as a complete preference for data transmission quality, and the data transmission type will be associated with the first user preference label.
[0061] If the total number of partial data transmission duration requirements is not zero, then the total number of partial data transmission duration requirements and the total number of partial data transmission quality requirements corresponding to the user's data type will be calculated using the formula... Calculate the transmission quality requirement ZY corresponding to the user of the corresponding transmission data type; where NC and NZ are the total number of partial data transmission duration requirements and the total number of partial data transmission quality requirements confirmed by the user corresponding to the corresponding transmission data type, respectively; LB is the standard deviation of the transmission quality requirements confirmed by the user corresponding to the corresponding transmission data type, which can be determined based on the previous test data of the actual model of the portable WiFi network.
[0062] It should be noted that the transmission quality requirement is used to integrate and calculate all historical option confirmation data for individual users corresponding to different transmission data types, and to digitally represent the user preference status for different transmission data types.
[0063] If the transmission quality requirement is greater than 0, the user's preference for the corresponding transmission data type will be marked as a high preference for data transmission quality, and the corresponding transmission data type will be associated with the first user preference label.
[0064] Conversely, the user's preference for the data transmission type is marked as a fuzzy preference for data transmission quality, and the data transmission type is associated with a second user preference label;
[0065] The first or second user preference tag obtained from the analysis and processing is associated with the corresponding data type of transmission. The first or second user preference tags associated with different data types are sorted and combined to obtain data transmission user preference analysis data.
[0066] When analyzing user preferences for data transmission to determine the necessary adjustments to the data transmission schemes for different data types during the use of portable WiFi networks, the data transmission scheme corresponding to the data transmission type will be automatically adjusted to a data transmission enhancement scheme based on the first user preference tag.
[0067] Furthermore, based on the second user preference tag, the system analyzes whether the data transmission scheme of the corresponding data transmission type meets the corresponding data transmission requirements and power consumption requirements, and evaluates and dynamically manages the adjustment of the data transmission enhancement scheme corresponding to the data transmission type based on the analysis results.
[0068] In this embodiment of the invention, by integrating and calculating all historical option confirmation data for individual users corresponding to different data transmission types, the transmission quality requirement degree of the data transmission enhancement scheme adjustment corresponding to different data transmission types is obtained. By analyzing the data of the transmission quality requirement degree, the user preference state of the data transmission enhancement scheme adjustment corresponding to different data transmission types is determined. This allows for autonomous control of the data transmission enhancement scheme adjustment corresponding to different data transmission types during the operation of the portable WiFi network, thereby improving the expansion and utilization effect of the data transmission adjustment monitoring data of the portable WiFi network and the autonomous learning and control effect.
[0069] Example 2: As Figure 2 As shown, a data transmission system based on a portable WiFi network includes:
[0070] The portable WiFi network single-use data transmission monitoring and control module is used to identify and analyze the data transmission type when the portable WiFi network requests to use it, determine whether the adjustment of the data transmission scheme corresponding to the data transmission type meets the corresponding data transmission requirements, and perform data analysis and dynamic management on the adjustment of the data transmission enhancement scheme corresponding to the data transmission type based on the identification and analysis results and the real-time power consumption of the portable WiFi network.
[0071] The portable WiFi network uses a data transmission preference analysis and control module to monitor and statistically analyze the user confirmation results of each data transmission scheme corresponding to different data transmission types when requesting to use the portable WiFi network. Based on the data transmission type, the module processes and analyzes each user confirmation result to determine the user preference for adjusting the data transmission scheme corresponding to the data transmission type. Based on the analysis results, the module dynamically manages the subsequent operation of the data transmission scheme corresponding to the data transmission type in different application scenarios.
[0072] Furthermore, the formulas mentioned above are all numerical calculations obtained by removing dimensions and using simulation software to obtain a formula that is closest to the real situation, based on the collection of a large amount of data.
[0073] In the several embodiments provided by this invention, it should be understood that the disclosed system can be implemented in other ways. For example, the embodiments of the invention described above are merely illustrative; for example, the division of modules is only a logical functional division, and there may be other division methods in actual implementation.
[0074] The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical modules; they may be located in one place or distributed across multiple network modules. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs.
[0075] Furthermore, the functional modules in the various embodiments of the present invention can be integrated into one processing module, or each module can exist physically separately, or two or more modules can be integrated into one module. The integrated module can be implemented in hardware or in the form of hardware plus software functional modules.
[0076] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the essential characteristics of the present invention.
[0077] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.
Claims
1. A data transmission method based on a portable WiFi network, characterized in that, include: The system identifies and analyzes the data transmission types when requesting to use the portable WiFi network, determines whether the adjustment of the data transmission scheme corresponding to the data transmission type meets the corresponding data transmission requirements, and performs data analysis and dynamic management on the adjustment of the data transmission enhancement scheme corresponding to the data transmission type based on the identification and analysis results and the real-time power consumption of the portable WiFi network. This includes monitoring and statistically analyzing the amount of data transmitted per second within the data transmission monitoring period, and using a formula... Obtain the stage transmission quality value CZ corresponding to the data transmission scheme of the transmission data type; where CL is the median amount of transmitted data within the transmission supervision period; CL´ is the standard minimum amount of transmitted data within the transmission supervision period; If the stage transmission quality value is 0, it is determined that the data transmission scheme of the transmission data type meets the corresponding data transmission requirements, and the subsequent implementation of the data transmission scheme corresponding to the transmission data type is maintained. If the stage transmission quality value is not 0, it is determined that the data transmission scheme of the transmission data type does not meet the corresponding data transmission requirements and an adjustment verification instruction is generated. Based on the adjustment verification instruction, the real-time battery level of the portable WiFi network is obtained, and the data is analyzed through the enhanced implementation status identification function. The enhanced implementation status value QS of the data transmission enhancement scheme corresponding to the transmission data type is output. The expression for the enhanced implementation state recognition function is as follows: In the formula, TS represents the real-time battery level corresponding to the portable WiFi network; TS´ represents the adjusted battery level limit corresponding to the portable WiFi network. If the enhanced implementation status value is 0, it is determined that the real-time battery level of the portable WiFi network does not meet the requirements for subsequent adjustments to the data transmission scheme corresponding to the data transmission type. At the same time, the option to adjust is pushed to the user for confirmation. It also performs automated monitoring and analysis of the necessary states for adjusting the data transmission enhancement scheme corresponding to the data transmission data type, and dynamically controls the implementation of subsequent adjustments to the data transmission data type to the data transmission enhancement scheme based on the analysis results; The system monitors and statistically analyzes the user confirmation results for each data transmission scheme corresponding to different data transmission types when requesting to use portable WiFi networks. Based on the data transmission type, it processes and analyzes each user confirmation result to determine the user preference for adjusting the data transmission scheme corresponding to the data transmission type. Based on the analysis results, it dynamically manages the subsequent operation of the data transmission scheme corresponding to the data transmission type in different application scenarios.
2. The data transmission method based on a portable WiFi network according to claim 1, characterized in that, If the user confirms that no adjustments will be made, the subsequent implementation of the data transmission scheme corresponding to the data transmission type will be maintained, and the total number of times the user has made continuous requests for partial data transmission of the corresponding data transmission type will be incremented by one. If the user confirms the adjustment, the data transmission scheme corresponding to the data transmission type will be adjusted to the data transmission enhancement scheme for subsequent implementation, and the total number of times the user has made partial data transmission quality requirements for the corresponding data transmission type will be incremented by one.
3. The data transmission method based on a portable WiFi network according to claim 1, characterized in that, If the enhancement implementation status value is 1, then the necessary status adjustment for the data transmission enhancement scheme corresponding to the data transmission data type will be automatically monitored and processed through the formula. Calculate the necessary adjustment value BT for the data transmission scheme corresponding to the data transmission type; where TH is the power consumption per unit time of the data transmission scheme corresponding to the data transmission type. TH´ represents the additional power consumption per unit time of the data transmission enhancement scheme corresponding to the data transmission type; TC is the standard value for adjusting the runtime difference between the data transmission scheme corresponding to the data transmission data type and the data transmission enhancement scheme.
4. The data transmission method based on a portable WiFi network according to claim 3, characterized in that, If the adjustment necessity value is less than or equal to 1, an adjustment local necessity instruction is generated, and the subsequent adjustment of the transmission data type is controlled to be an intermittent implementation of the data transmission enhancement scheme until the enhancement implementation status value is 0. Then, the option of whether to adjust is pushed to the user for confirmation, and the confirmation result is monitored and statistically analyzed. If the adjustment necessity value is greater than 1, an overall adjustment necessity instruction is generated, and the data transmission data type is controlled to be continuously implemented within the subsequent TC duration, until the adjustment necessity value is less than or equal to 1 and the corresponding data transmission enhancement scheme is implemented intermittently.
5. The data transmission method based on a portable WiFi network according to claim 4, characterized in that, Obtain all user confirmation results corresponding to different data transmission types, and perform data analysis on the total number of partial data transmission duration requirements and the total number of partial data transmission quality requirements in all user confirmation results to identify the first user preference. If the total number of times the biased data transmission continues to require is 0, then the user's preference for the corresponding data transmission type will be marked as a complete preference for data transmission quality, and the corresponding data transmission type will be associated with the first user preference label. If the total number of partial data transmission duration requirements is not zero, then the total number of partial data transmission duration requirements and the total number of partial data transmission quality requirements corresponding to the user's data type will be calculated using the formula... Calculate and obtain the transmission quality requirement ZY of the user corresponding to the transmission data type; where NC and NZ are the total number of partial data transmission duration requirements and the total number of partial data transmission quality requirements confirmed by the user corresponding to the transmission data type, respectively. LB represents the standard deviation of the transmission quality requirements confirmed by the user for the corresponding data type of transmission.
6. The data transmission method based on a portable WiFi network according to claim 5, characterized in that, If the transmission quality requirement is greater than 0, the user's preference for the corresponding transmission data type will be marked as "high preference for data transmission quality", and the corresponding transmission data type will be associated with the first user preference label. Conversely, the user's preference for the data transmission type is marked as a fuzzy preference for data transmission quality, and the data transmission type is associated with a second user preference label; The first or second user preference tag obtained from the analysis and processing is associated with the corresponding data type of the transmission. The first or second user preference tags associated with different data types are sorted and combined to obtain data transmission user preference analysis data.
7. A data transmission method based on a portable WiFi network according to claim 6, characterized in that, When analyzing data transmission user preferences to determine the necessary adjustments to the data transmission schemes for different data transmission types during the use of portable WiFi networks, the data transmission scheme corresponding to the data transmission type will be automatically adjusted to a data transmission enhancement scheme based on the first user preference tag. Furthermore, based on the second user preference tag, the system analyzes whether the data transmission scheme of the corresponding data transmission type meets the corresponding data transmission requirements and power consumption requirements, and evaluates and dynamically manages the adjustment of the data transmission enhancement scheme corresponding to the data transmission type based on the analysis results.
8. A data transmission system based on a portable WiFi network, employing the data transmission method based on a portable WiFi network as described in any one of claims 1-7, characterized in that, include: The portable WiFi network single-use data transmission monitoring and control module is used to identify and analyze the data transmission type when the portable WiFi network requests to use it, determine whether the adjustment of the data transmission scheme corresponding to the data transmission type meets the corresponding data transmission requirements, and perform data analysis and dynamic management on the adjustment of the data transmission enhancement scheme corresponding to the data transmission type based on the identification and analysis results and the real-time power consumption of the portable WiFi network. The portable WiFi network uses a data transmission preference analysis and control module to monitor and statistically analyze the user confirmation results of each data transmission scheme corresponding to different data transmission types when requesting to use the portable WiFi network. Based on the data transmission type, the module processes and analyzes each user confirmation result to determine the user preference for adjusting the data transmission scheme corresponding to the data transmission type. Based on the analysis results, the module dynamically manages the subsequent operation of the data transmission scheme corresponding to the data transmission type in different application scenarios.
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