A construction system and method for a dual-mode communication network

By designing and building systems in a dual-mode communication network, real-time analysis and optimization of the network mode of the user-side electronic devices, the problem of application mode imbalance caused by network fluctuations is solved, and network stability and user experience are improved.

CN115942342BActive Publication Date: 2025-06-17联桥科技有限公司
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Patent Information

Application Number
CN202211303897.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-24
Publication Date
2025-06-17
Estimated Expiration
2042-10-24

AI Technical Summary

Technical Problem

In a dual-mode communication network, the electronic devices on the user side are prone to misjudgment due to network fluctuations when coordinating the application mode of the communication network, resulting in an imbalance in the application mode of the communication network, affecting the stable use of the electronic device user side in the network.

Method used

Design a construction system for a dual-mode communication network, including control terminals, analysis modules, identification modules, logic modules, recommendation modules and storage modules. By real-time analysis and identification of the network mode of the user's electronic equipment, calculate the network mode application ratio, refer to the ideal application ratio and jump threshold, generate network mode recommendation items to ensure the balance of network mode application.

Benefits of technology

By managing and optimizing the network mode of the user-side electronic devices in real time, the problem of imbalance in the communication network application mode is avoided, and the stability and user experience of the dual-mode communication network are improved.

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Abstract

The present invention relates to the technical field of communication networks, and particularly relates to a system and method for constructing a dual-mode communication network, including: a control terminal, which is the main control end of the system and is used to issue control commands; an analysis module, which is used to analyze the number of user-end electronic devices that are online in real time in the communication network within the service area of the system; an identification module, which is used to capture the user-end electronic devices that are online in real time in the communication network and identify their current applied network mode; the present invention can capture the users who are online in the communication network in real time, and further analyze the network mode currently used by them, so as to calculate the current network mode application ratio in the communication network with the help of the analysis results. Finally, taking the calculation result of the network mode application ratio as a reference, the users who are online and the newly online users in the current network are managed, so that the dual-mode communication network deployed by this system is more stable and the applied network modes are more balanced.
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Description

Technical Field

[0001] The present invention relates to the technical field of communication networks, and particularly relates to a system and method for constructing a dual-mode communication network. Background Art

[0002] The so-called "dual mode" means working in two network modes, which are the GSM network and the CDMA network. The so-called "GSM / CDMA dual-mode mobile phone" means that the mobile phone can simultaneously support the two network communication technologies of GSM and CDMA. It can make a choice according to the environment or actual operation needs. Whichever network technology can play a better role, the mobile phone will switch to that mode to work. If the communication quality of the mobile phone is not high or there are other poor communication phenomena in one mode, it can freely switch to another network mode to work. In fact, it just expands the call frequency of the mobile phone and greatly improves the communication stability.

[0003] Currently, the user-end electronic devices applied in the dual-mode communication network often autonomously coordinate the application mode of the communication network through their own settings and the real-time network transmission rate. Due to the frequent fluctuations of the communication network, when the electronic devices used by the user end are coordinating the application mode of the communication network, they are prone to misjudgment due to network fluctuations, and further coordinate the application network mode of the electronic devices, resulting in an imbalance in the application mode of the communication network and affecting the stable use of the user end of the electronic devices in the network. Summary of the Invention

[0004] Technical Problem to be Solved

[0005] In view of the above-mentioned drawbacks of the prior art, the present invention provides a system and method for constructing a dual-mode communication network, which solves the technical problems raised in the above background art.

[0006] Technical Solution

[0007] To achieve the above object, the present invention is realized through the following technical solutions:

[0008] In a first aspect, a system for constructing a dual-mode communication network includes:

[0009] A control terminal, which is the main control end of the system and is used to issue control commands;

[0010] An analysis module, which is used to analyze the number of user-end electronic devices that are online in real time in the communication network within the service area of the system;

[0011] An identification module, which is used to capture the user-end electronic devices that are online in real time in the communication network and identify their current application network mode;

[0012] A logic module for designing the ideal application ratio and jump threshold of the application network mode of the user-side electronic device;

[0013] A recommendation module for receiving the current application network mode of the user-side electronic device recognized by the recognition module; for receiving the application ratio of the network mode of the user-side electronic devices that are currently online in real time in the communication network within the current system service area, generating network mode recommendation items based on the reference network mode application ratio and feeding them back to the user-side electronic devices that are newly online in the communication network;

[0014] A storage module for storing the operation data of the recommendation module, and feeding back the stored operation data of the recommendation module to the control terminal at the end of each time interval with reference to the set time interval.

[0015] Furthermore, when the analysis module runs, it synchronously sets the time interval to distinguish and count the user-side electronic devices that are online in the communication network for real-time analysis, constructs a line graph based on the results of the distinction and statistics, and captures the peak and valley time intervals with reference to the line graph and stores them in the analysis module.

[0016] Furthermore, a sub-module is set under the recognition module, including:

[0017] A determination unit for determining the time interval when the user-side electronic device with the currently recognized application network mode goes online in the communication network;

[0018] A calculation unit for obtaining the current application network mode of other user-side electronic devices that are currently online in real time within the time interval when the user-side electronic device is currently online in the communication network, and calculating the application ratio of the network mode with reference to the application network modes of each user-side electronic device.

[0019] Furthermore, when the system is applied, a system service area is set, and the system is deployed within each set system service area. Each system service area is interconnected through a dual-mode communication network to complete interactive communication.

[0020] Furthermore, a sub-module is set inside the logic module, including:

[0021] A comparison unit for receiving the application ratio of the network mode of the user-side electronic device calculated by the calculation unit, and comparing the application ratio of the network mode obtained by the calculation unit with the jump threshold designed in the logic module;

[0022] Among them, when the comparison result of the comparison unit is not within the jump threshold range, the network mode of the user terminal electronic device that goes online later within the time interval is switched. During the process of switching the network mode of the user terminal electronic device, the comparison unit runs in real time. When the comparison result of the comparison unit meets the jump threshold or the ideal application ratio of the network mode of the user terminal electronic device, the switching of the network mode of the user terminal electronic device is stopped.

[0023] Furthermore, the network mode recommendation items in the recommendation module are generated by synchronously referring to the jump threshold and tending to the ideal application ratio of the applied network mode.

[0024] Furthermore, when the network model applied by the newly launched user terminal electronic device in the system is in a state that meets the jump threshold, the network error is calculated synchronously and the error is fed back to the user terminal electronic device. The user terminal receives the feedback content and selectively switches the currently applied network model independently;

[0025] Among them, the network error calculation formula is:

[0026]

[0027] In the formula, is the network error value of the network mode applied by the user terminal electronic device;

[0028] i and k are the received and transmitted network signals when the user terminal electronic device communicates;

[0029] A and V are the network signal transceiver base stations;

[0030] v is the network transmission rate of the currently applied network mode;

[0031] λ is the network transmission loss factor of the currently applied network mode;

[0032] ρ is the grid distribution between the network signal transceiver base stations.

[0033] Furthermore, the control terminal is electrically connected with an analysis module and an identification module through a medium. The lower level of the identification module is electrically connected with a determination unit and a calculation unit through a medium. The identification module is electrically connected with a logic module through a medium. Inside the logic module, there is a comparison unit electrically connected through a medium. The comparison unit is electrically connected with the calculation unit through a medium. The logic module is electrically connected with a recommendation module and a prediction module through a medium.

[0034] In a second aspect, a method for constructing a dual-mode communication network includes the following steps:

[0035] Step 1: Set a network service area and capture the user terminal electronic devices that go online in real time within the network service area;

[0036] Step 2: When capturing the online client electronic device, synchronously analyze the network mode applied by the current client electronic device;

[0037] Step 3: Count the number of network modes applied by the current client electronic device, and calculate the proportion of the applied network mode in the current time interval according to the network mode category;

[0038] Step 4: Design the ideal application proportion and jump threshold of the network mode, and analyze whether the current applied network mode proportion is within the designed jump threshold range;

[0039] Step 5: If the analysis result in Step 4 is yes, configure the newly online client electronic devices in the network service area with reference to the current applied network mode proportion and the ideal reference proportion of the network mode;

[0040] Step 6: If the analysis result in Step 4 is no, configure the newly online client electronic devices in the network service area with reference to the current applied network mode proportion and the jump threshold.

[0041] Furthermore, after the execution of Step 6, the system can be customized by the network service area management end to choose whether to further execute Step 5.

[0042] Beneficial effects

[0043] Adopting the technical solution provided by the present invention, compared with the known public technology, it has the following

[0044] Beneficial effects:

[0045] 1. The present invention provides a construction system for a dual-mode communication network. Through this system, it can capture the online users in the communication network in real time, and further analyze the network mode they are currently using. Thus, by means of the analysis result, calculate the current network mode application proportion in the communication network. Finally, taking the calculation result of the network mode application proportion as a reference, manage the current online users and newly online users in the current network, making the dual-mode communication network deployed by this system more stable and the applied network mode more balanced.

[0046] 2. During the operation of the system in the present invention, it can further predict the users who will go online in the subsequent communication network according to the past system operation data. With the continuous use of the system, ensure that when the subsequent system runs, the online users in the communication network can be separated at the initial stage of going online, thereby effectively avoiding the problem of imbalance in the applied network mode of the communication network.

[0047] 3. The present invention provides a method for constructing a dual-mode communication network. By executing the steps in this method, the stability of the system operation in the present invention can be further maintained. At the same time, during the execution of the steps of this method, the network mode of the online users in the communication network can be repeatedly optimized to ensure that, with the assistance of this method, the dual-mode communication network brings a better user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0048] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0049] Figure 1 It is a schematic structural diagram of a system for constructing a dual-mode communication network;

[0050] Figure 2 It is a schematic flowchart of a method for constructing a dual-mode communication network;

[0051] The reference numerals in the figure respectively represent: 1, control terminal; 2, analysis module; 3, identification module; 31, determination unit; 32, calculation unit; 4, logic module; 41, comparison unit; 5, recommendation module; 6, storage module. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0052] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without creative efforts based on the embodiments of the present invention belong to the scope of protection of the present invention.

[0053] The following further describes the present invention with reference to the embodiments.

[0054] Embodiment 1

[0055] A system for constructing a dual-mode communication network in this embodiment, as Figure 1 shown, includes:

[0056] The control terminal 1, which is the main control end of the system and is used to issue control commands;

[0057] The analysis module 2, which is used to analyze the number of user terminal electronic devices that are online in real time in the communication network within the service area of the system;

[0058] An identification module 3, configured to capture a client electronic device that goes online in real time in a communication network and identify its current application network mode;

[0059] A logic module 4, configured to design an ideal application ratio and a jump threshold for the application network mode of the client electronic device;

[0060] A recommendation module 5, configured to receive the current application network mode of the client electronic device identified by the identification module 3; configured to receive the application ratio of the network mode of the client electronic devices that go online in real time in the communication network within the current system service area, and generate a network mode recommendation item for feedback to the client electronic device newly going online in the communication network with reference to the application ratio of the network mode;

[0061] A storage module 6, configured to store the operation data of the recommendation module 5, and feedback the stored operation data of the recommendation module 5 to the control terminal 1 after the end of each time interval with reference to the set time interval.

[0062] In this embodiment, the control terminal 1 controls the analysis module 2 to run and analyze the number of client electronic devices that go online in real time in the communication network within the system service area. The identification module 3 runs later to capture a client electronic device that goes online in real time in the communication network and identify its current application network mode. Then, the logic module 4 designs an ideal application ratio and a jump threshold for the application network mode of the client electronic device. Finally, the recommendation module 5 receives the current application network mode of the client electronic device identified by the identification module 3, receives the application ratio of the network mode of the client electronic devices that go online in real time in the communication network within the current system service area, generates a network mode recommendation item for feedback to the client electronic device newly going online in the communication network with reference to the application ratio of the network mode, and the storage module 6 stores the operation data of the recommendation module 5, and feedbacks the stored operation data of the recommendation module 5 to the control terminal 1 after the end of each time interval with reference to the set time interval for the user to read at the control terminal 1, and obtain data for reference for the communication network management side to analyze and manage the communication network.

[0063] Embodiment 2

[0064] At the specific implementation level, on the basis of Embodiment 1, this embodiment further specifically describes a system for constructing a dual-mode communication network in Embodiment 1 with reference to Figure 1 as shown:

[0065] When the analysis module 2 runs, it synchronously sets a time interval to distinguish and count the client electronic devices that go online in the communication network in real-time analysis, constructs a line graph based on the result of the distinction and count, and captures the peak and valley time intervals for storage in the analysis module 2 with reference to the line graph.

[0066] By counting the peak-valley time intervals and the number of user-end electronic devices online in the communication network, it provides basic data support for the operation of the modules in the system.

[0067] As Figure 1 shown, there are sub-modules set under the recognition module 3, including:

[0068] The determination unit 31 is used to determine the time interval when the user-end electronic device that recognizes the current application network mode goes online in the communication network;

[0069] The calculation unit 32 is used to obtain the current application network modes of other user-end electronic devices that are online in real time within the time interval where the user-end electronic device that is currently online in real time in the communication network is located, and calculate the application ratio of the network mode by referring to the application network modes of each user-end electronic device.

[0070] As Figure 1 shown, when the system is applied, the system service area is set, and the system is deployed within each set system service area. Each system service area is interconnected through a dual-mode communication network to complete interactive communication.

[0071] As Figure 1 shown, there are sub-modules set inside the logic module 4, including:

[0072] The comparison unit 41 is used to receive the application ratio of the network mode of the user-end electronic device calculated by the calculation unit 32, and compare the application ratio of the network mode obtained by the calculation unit 32 with the jump threshold designed in the logic module 4;

[0073] Among them, when the comparison result of the comparison unit 41 is not within the jump threshold range, it switches the application network mode of the user-end electronic device that goes online later within the time interval. During the process of switching the application network mode of the user-end electronic device, the comparison unit 41 runs in real time. When the comparison result of the comparison unit 41 meets the jump threshold or the ideal application ratio of the application network mode of the user-end electronic device, it stops the switching of the application network mode of the user-end electronic device.

[0074] Through the above settings, it can enable the user-end electronic devices that go online in the communication network to coordinate the application network mode of the user-end electronic device in real time through the application ratio of the network mode, ensuring the balance of the application of the communication network mode.

[0075] As Figure 1 shown, the network mode recommendation items in the recommendation module 5 are generated by synchronously referring to the jump threshold and tending to the ideal application ratio of the application network mode.

[0076] As Figure 1As shown, when the network model of the newly launched user-side electronic device in the system meets the jump threshold, the network error is calculated synchronously and the error is fed back to the user-side electronic device. The user-side receives the feedback content and selectively switches the current application network model autonomously;

[0077] Among them, the network error calculation formula is:

[0078]

[0079] In the formula, is the network error value of the network mode of the user-side electronic device;

[0080] i and k are the received and transmitted network signals when the user-side electronic device communicates;

[0081] A and V are the network signal transceiver base stations;

[0082] v is the network transmission rate of the current application network mode;

[0083] λ is the network transmission loss factor of the current application network mode;

[0084] ρ is the grid distribution between the network signal transceiver base stations.

[0085] As Figure 1 shown, the control terminal 1 is electrically connected with an analysis module 2 and an identification module 3 through a medium. The lower level of the identification module 3 is electrically connected with a determination unit 31 and a calculation unit 32 through a medium. The identification module 3 is electrically connected with a logic module 4 through a medium. Inside the logic module 4, a comparison unit 41 is electrically connected. The comparison unit 41 is electrically connected with the calculation unit 32 through a medium. The logic module 4 is electrically connected with a recommendation module 5 and a prediction module 6 through a medium.

[0086] Embodiment 3

[0087] At the specific implementation level, on the basis of Embodiment 1, this embodiment further specifically describes a system for constructing a dual-mode communication network in Embodiment 1 with reference to Figure 2 as shown:

[0088] A method for constructing a dual-mode communication network includes the following steps:

[0089] Step 1: Set the network service area and capture the online user-side electronic devices in the network service area in real time;

[0090] Step 2: When the online user-side electronic device is captured, synchronously analyze the network mode applied by the current user-side electronic device;

[0091] Step 3: Count the number of network modes applied by the current client electronic device, and calculate the proportion of the applied network mode in the current time interval according to the network mode category;

[0092] Step 4: Design the ideal application proportion and jump threshold of the network mode, and analyze whether the current applied network mode proportion is within the designed jump threshold range;

[0093] Step 5: If the analysis result in Step 4 is yes, configure the newly launched client electronic devices in the network service area with reference to the current applied network mode proportion and the ideal reference proportion of the network mode;

[0094] Step 6: If the analysis result in Step 4 is no, configure the newly launched client electronic devices in the network service area with reference to the current applied network mode proportion and the jump threshold.

[0095] As Figure 2 shown, after Step 6 is executed, the management end in the network service area can customarily choose whether to further execute Step 5.

[0096] In summary, through the above embodiments, the users going online in the communication network can be captured in real time, and further analysis can be carried out on the network mode they are currently using, so as to calculate the current network mode application proportion in the communication network with the help of the analysis result. Finally, based on the calculation result of the network mode application proportion as a reference, the users going online in the current network and the newly launched users are managed, making the dual-mode communication network deployed by this system more stable and the applied network mode more balanced; and during the operation of the system, it can further predict the users going online in the subsequent communication network according to the past system operation data. As the system is continuously used, it ensures that when the subsequent system runs, the users going online in the communication network can be classified at the initial stage of going online, thereby effectively avoiding the problem of imbalance in the network mode applied by the communication network; in addition, through the execution of the steps in this method, the stability of the system operation can be further maintained, and at the same time, the network mode applied by the users going online in the communication network can be repeatedly optimized during the execution of the steps of the method, ensuring that with the assistance of this method, the dual-mode communication network brings a better user experience.

[0097] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements will not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A construction system for a dual-mode communication network, characterized in that, Including: A control terminal (1), which is the main control end of the system and is used to issue control commands; An analysis module (2), which is used to analyze the number of user terminal electronic devices that are online in real time in the communication network within the system service area; An identification module (3), which is used to capture the user terminal electronic devices that are online in real time in the communication network and identify their current application network mode; A logic module (4), which is used to design the ideal application ratio and jump threshold of the application network mode of the user terminal electronic devices; A recommendation module (5), which is used to receive the current application network mode of the user terminal electronic devices identified by the identification module (3); It is used to receive the application ratio of the network mode of the user terminal electronic devices that are online in real time in the current system service area in the communication network, generate network mode recommendation items with reference to the application ratio of the network mode, and feedback them to the user terminal electronic devices that are newly online in the communication network; A storage module (6), which is used to store the operation data of the recommendation module (5), and feedback the stored operation data of the recommendation module (5) to the control terminal (1) after the end of each time interval with reference to the set time interval.

2. The construction system for a dual-mode communication network according to claim 1, characterized in that, When the analysis module (2) runs, it synchronously sets a time interval to distinguish and count the user terminal electronic devices that are online in the communication network in real time, constructs a line graph according to the result of the distinction and statistics, and captures the peak and valley time intervals in the analysis module (2) for storage with reference to the line graph.

3. The construction system for a dual-mode communication network according to claim 1, characterized in that, The identification module (3) is provided with sub-modules at a lower level, including: A determination unit (31), which is used to determine the time interval when the user terminal electronic device with the currently identified application network mode is online in the communication network; A calculation unit (32), which is used to obtain the current application network mode of other user terminal electronic devices that are online in real time within the time interval when the user terminal electronic device that is currently online in real time in the communication network is located, and calculate the application ratio of the network mode with reference to the application network mode of each user terminal electronic device.

4. The construction system for a dual-mode communication network according to claim 1, characterized in that, When the system is applied, a system service area is set, and the system is deployed within each set system service area. Each system service area is interconnected through a dual-mode communication network to complete interactive communication.

5. The construction system for a dual-mode communication network according to claim 1, characterized in that, The logic module (4) is internally provided with sub-modules, including: A comparison unit (41), which is used to receive the application ratio of the network mode of the user terminal electronic devices calculated by the calculation unit (32), and compare the application ratio of the network mode obtained by the calculation unit (32) with the jump threshold designed in the logic module (4); Among them, when the comparison result of the comparison unit (41) is not within the range of the jump threshold, the application network mode of the user terminal electronic device that is put online later within the time interval is switched. During the process of switching the application network mode of the user terminal electronic device, the comparison unit (41) runs in real time. When the comparison result of the comparison unit (41) is in line with the jump threshold or the ideal application ratio of the application network mode of the user terminal electronic device, the switching of the application network mode of the user terminal electronic device is stopped.

6. The construction system for a dual-mode communication network according to claim 1, characterized in that, The network mode recommendation items in the recommendation module (5) are generated synchronously with reference to the jump threshold tending to the ideal application ratio of the application network mode.

7. The construction system for a dual-mode communication network according to claim 1, characterized in that, When the newly launched user - side electronic device application network model in the system is in a state that meets the jump threshold, the network error is calculated synchronously, and the error is fed back to the user - side electronic device. The user - side receives the feedback content and selectively switches the current application network model autonomously; The network error calculation formula is as follows: In the formula, is the network error value of the user terminal electronic device using the network mode; i and k are the received and transmitted network signals when the user - side electronic device communicates; A and V are network signal transceiver base stations; v is the network transmission rate of the current application network mode; λ is the network transmission loss factor of the current application network mode; ρ is the grid distribution between network signal transceiver base stations.

8. The construction system for a dual-mode communication network according to claim 1, characterized in that, The control terminal (1) is electrically connected to an analysis module (2) and an identification module (3) through a medium. The lower - level of the identification module (3) is electrically connected to a determination unit (31) and a calculation unit (32) through a medium. The identification module (3) is electrically connected to a logic module (4) through a medium. Inside the logic module (4), a comparison unit (41) is electrically connected through a medium. The comparison unit (41) is electrically connected to the calculation unit (32) through a medium. The logic module (4) is electrically connected to a recommendation module (5) and a prediction module (6) through a medium.

9. A construction method for a dual-mode communication network, which is an implementation method of the construction system for a dual-mode communication network according to any one of claims 1-8, characterized in that,It includes the following steps: Step 1: Set the network service area and capture the newly launched user - side electronic devices in the network service area in real - time; Step 2: When a newly launched user - side electronic device is captured, synchronously analyze the network mode applied by the current user - side electronic device; Step 3: Count the number of network modes applied by the current user - side electronic device and calculate the proportion of the application network mode in the current time interval according to the network mode category; Step 4: Design the ideal application proportion and jump threshold of the network mode, and analyze whether the proportion of the current application network mode is within the designed jump threshold range; Step 5: If the analysis result of Step 4 is yes, configure the newly launched user - side electronic devices in the network service area with reference to the proportion of the current application network mode and the ideal reference proportion of the network mode; Step 6: If the analysis result of Step 4 is no, configure the newly launched user - side electronic devices in the network service area with reference to the proportion of the current application network mode and the jump threshold.

10. A method for constructing a dual-mode communication network according to claim 9, characterized in that, After the execution of Step 6, according to the custom selection of the management terminal in the network service area, determine whether to further execute Step 5.

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