A method and system for processing telecommunication service information

By classifying and real-time verification of telecommunications service information, combining information type combination and channel utilization monitoring and adjustment, the problems of long input time and information loss in the prior art are solved, and efficient and accurate information entry and system stability are achieved.

CN119854758BActive Publication Date: 2025-06-13ZHEJIANG SANZI ZHILIAN TECH CO LTD
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Patent Information

Application Number
CN202510314968.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2025-06-13
Estimated Expiration
2045-03-18

AI Technical Summary

Technical Problem

The existing telecommunications service information processing methods are too long to enter, and important information may be lost or errored due to congestion of the path.

Method used

By classifying the received telecommunications service information, it is identified and divided into user information and other information. For user information, real-time entry and real-time verification is used, hash value comparison is used to confirm the accuracy of the information, and type combination and input channel allocation are performed on other information, and channel utilization is monitored periodically and the encoding rate is adjusted.

Benefits of technology

It improves the efficiency and accuracy of information entry for telecommunications services, avoids information loss or errors caused by path congestion, and enhances the stability and reliability of the system.

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Abstract

The present invention discloses a method and system for processing telecommunication service information. The present invention relates to the technical field of information processing, and solves the problems that the original input processing method is too single, the input time is too long, and important information may be lost due to path congestion. For a large amount of other information, before input, through complex type combination and feature analysis, the optimal information combination method is determined to make the load of each input channel relatively balanced, effectively improving the overall processing effect of multi-channel input; during the input process of other information, the channel utilization rate of each input channel is monitored periodically, and the coding rate of the specified input channel is adjusted according to the monitoring results; when the channel utilization rate is insufficient, it can be timely determined whether it is an interference problem or a reception deficiency problem, and corresponding measures are taken, such as reducing the coding rate or replacing the receiving party, etc., to avoid error situations such as packet loss, and enhance the stability and reliability of the system during the information input process.
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Description

Technical Field

[0001] The present invention relates to the technical field of information processing, and specifically to a method and system for processing telecommunications service information. Background Art

[0002] Telecommunications service information refers to various types of data and content generated, transmitted, and processed during the operation of telecommunications, covering aspects such as user-related information and various business operation records; it is the core data basis for the operation management, business development, and user service of telecommunications enterprises;

[0003] The application with the publication number CN101202958B discloses a method, device, and system for processing telecommunications service information. The method includes: receiving a telecommunications service registration application; performing a service release processing operation on the telecommunications service; when it is detected that the telecommunications service has been released, obtaining a telecommunications service product registration application; and performing a product release processing operation on the telecommunications service product. A telecommunications service information processing device includes: a service registration module, a service release module, a product registration module, and a product release module that execute the above steps of the telecommunications service information processing method; another telecommunications service information processing device includes: a service application module, a service status recording module, a product generation module, a product application module, and a product status recording module. The telecommunications service information processing system includes an operator platform and a service provider platform. This invention enables two-level information processing for telecommunications services / telecommunications service products and can achieve unified, flexible, and comprehensive management of existing telecommunications service products.

[0004] During the process of recording and processing its service information, a single recording processing method is generally adopted. That is, during input, due to the large volume of service information, the input time of the corresponding service information will be too long. If there is path congestion during input, some important information may also be incorrect or lost. The original information input processing method needs to be enhanced. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides a method and system for processing telecommunications service information, which solves the problems that the original input processing method is too single, the input time is too long, and important information may be lost due to path congestion.

[0006] To achieve the above objectives, the present invention is realized through the following technical solutions: A method for processing telecommunications service information includes the following steps:

[0007] Step 1: Classify the telecommunications service information received in the current batch. Each different batch will input different telecommunications service information. Based on the headers of different information in the telecommunications service information, the received telecommunications service information is divided into user information and other information. The specific sub-steps are as follows:

[0008] Identify the header information associated with different single-group information in the telecommunications service information, and check the header information against the preset headers. The preset headers include various types of user headers. Mark the single-group information with a matching check result as user information, and mark the single-group information without a matching check result as other information;

[0009] Step 2: For the user information divided within the telecommunications service information, adopt a real-time input and real-time verification processing method. Input the user information in real time, confirm the hash value characteristics of the user information during the real-time input process, and reconfirm the hash value characteristics of the partially input user information after the real-time input is completed. Evaluate whether the input user information is accurate, and based on the evaluation result, correct the user information in real time. The specific sub-steps are as follows:

[0010] S21: Input the confirmed user information in real time. Before input, confirm the hash value associated with the corresponding part of the user information to be input. Compare the part of the user information with the hash value library, confirm the hash value associated with each individual piece of information within the part of the user information, and sort the associated hash values according to the sorting method of the individual pieces of information within the part of the user information to confirm the hash value characteristics;

[0011] S22: After the part of the user information is input, use the same processing method as in step S21 to confirm the hash value associated with the input part of the user information and confirm the hash value characteristics;

[0012] S23: Compare the hash value characteristics associated with the part of the user information. If the comparison results are consistent, continue to input the user information and compare the hash value characteristics before and after input. If the comparison results are inconsistent, delete the input part of the user information and re-input this part of the user information until the hash value characteristics associated before and after input are completely consistent, and then input the subsequent user information;

[0013] Step 3: For the other information divided within the telecommunications service information, first determine the information types included in the other information, then determine the total number of preset input channels. Based on the numerical comparison result between the information type and the total number of input channels, evaluate whether it is necessary to combine the specific information of different information types, then confirm the total input value characteristics associated with the type combination, and then lock the optimal type combination and perform combination processing on the other information to lock the information combination package to be input. The specific method is as follows:

[0014] S31: Determine the information types included in the other information, and mark the total number of information types as G, and mark the total number of preset input channels as H. If G ≤ H, use the specific information associated with different information types as different information combination packages to be input. If G > H, execute step S32;

[0015] S32. Execute multiple types of combined processes, and sequentially confirm the characteristic variances associated with each combined process. The specific method is as follows:

[0016] S321. Execute the first combined process: Randomly combine different information types to obtain a combined type, stop when the total number of combined types is the same as H, and simultaneously confirm the total number of different binary codes associated with different information types. Denote the total number of binary codes associated with the corresponding information type as the characteristic value. The total number of its binary codes is a preset value. Denote the specific information associated with the corresponding combined type as the combined information, and based on the total number of characters associated with different information types within the combined information, confirm the total number of characteristics associated with the total number of characters based on the characteristic value. Then sum up the total number of characteristics associated with different information types within the combined information to confirm the input total value characteristic associated with the combined information;

[0017] Then, use the same processing method for other combined types to confirm the input total value characteristic associated with the corresponding combined information, perform variance processing on several groups of input total value characteristics associated with this combined process, and confirm the characteristic variance of this combined process;

[0018] S322. Randomly combine different information types again to obtain a combined type with a different method from the first combined process, and use the same processing method for the characteristic variance of the combined process in step S321 to confirm the characteristic variance associated with this combined process;

[0019] S323. Gradually execute subsequent different combined processes and stop when the generated combined processes repeat. Use the same processing method as in step S321 for each different combined process to confirm the characteristic variance associated with the corresponding combined process;

[0020] S33. Based on the different characteristic variances associated with different combined processes, select the minimum value from multiple characteristic variances, and label the combined process associated with the minimum value as the optimal process. Use the combined information associated with different combined types within the optimal process as the input information combination package to be input. The combined information of different combined types corresponds to different input information combination packages;

[0021] Step Four: Based on the input information combination package confirmed by other information, evenly distribute the input information combination package into different input channels for input processing. During the input processing, periodically monitor the channel utilization rate of each input channel, and adjust the coding rate of the specified input channel based on the monitoring results. The specific method is as follows:

[0022] S41. Divide the information packet to be entered evenly into different entry channels for entry processing, and perform periodic continuous monitoring at the start of entry. The period is a preset period. When the previous set of periods ends, continue to execute the monitoring process of the next set of periods to confirm the signal utilization rate generated by the entry channel within the period:

[0023] Calibrate the total duration of the period as T i , where i represents different entry channels, and calibrate the entry duration generated by the entry channel within the period as L i ;

[0024] Adopt: LY i =L i ÷T i Confirm the channel utilization rate LY associated with the corresponding entry channel i , if LY i ≥90%, continue to monitor. If LY i <90%, then calibrate this entry channel as a problem channel;

[0025] S42. Record the period of the calibrated problem channel as an abnormal period. Confirm the entry rate when entering this problem channel from within the abnormal period. Perform mean processing on several entry rates within the abnormal period to confirm the average entry speed. Then confirm the reception rate generated by this problem signal receiver. Perform mean processing on several reception rates within the abnormal period to confirm the average reception speed. If the average entry speed ≤ the average reception speed, then calibrate this problem channel as an interference channel. Otherwise, generate a reception insufficient signal for display;

[0026] S43. Based on the calibrated interference channel, continuously reduce the coding rate of this interference channel in subsequent periods. Every time an interval of one unit time passes, the coding rate is reduced by one unit value. Both the unit time and the unit quantity are preset values. Stop reducing until the channel utilization rate associated with the interference channel reaches the standard. When the channel utilization rate still cannot reach the standard when the coding rate is reduced below the threshold, directly generate an error signal for display. The threshold is a preset value.

[0027] Preferably, in step S21, the hash value library is a preset value library, preset in advance by relevant personnel, and there are hash values associated with different information or data inside.

[0028] Preferably, a telecommunications service information processing system includes:

[0029] An information classification processing terminal that classifies the telecommunications service information received in the current batch. Based on the headers of different information in the telecommunications service information, divide the received telecommunications service information into user information and other information;

[0030] The real-time input verification terminal adopts a real-time input and real-time verification processing method for the user information divided within the telecommunications service information. It performs real-time input of user information, confirms the hash value characteristics of the user information during the real-time input process, and re-confirms the hash value characteristics of some of the user information that has been input in real time, evaluates whether the input user information is accurate, and corrects the user information in real time based on the evaluation result;

[0031] The information type combination terminal, for the other information divided within the telecommunications service information, first determines the information types included in the other information, then determines the total number of preset input channels, evaluates whether it is necessary to combine the specific information of different information types based on the numerical comparison result of the information type and the total number of input channels, then confirms the input total value characteristics associated with the type combination, then locks the optimal type combination and performs combination processing on the other information, and locks the information combination package to be input;

[0032] The input supervision terminal, based on the information combination package to be input confirmed by the other information, evenly distributes the information combination package to different input channels for input processing, and during the input processing, periodically monitors the channel utilization rate of each input channel, and adjusts the coding rate of the specified input channel based on the monitoring result.

[0033] The present invention provides a method and system for processing telecommunications service information. Compared with the prior art, it has the following beneficial effects:

[0034] The present invention aims at a large amount of other information, and determines the optimal information combination method through complex type combination and feature analysis before input, making the load of each input channel relatively balanced, effectively improving the overall processing effect of multi-channel input, and ensuring the efficient cooperation of different channels during input;

[0035] During the input process of other information, the channel utilization rate of each input channel is periodically monitored, and the coding rate of the specified input channel is adjusted according to the monitoring result; when the channel utilization rate is insufficient, it can be timely determined whether it is an interference problem or a reception insufficiency problem, and corresponding measures are taken, such as reducing the coding rate or replacing the receiving party, etc., to avoid error situations such as packet loss, and enhance the stability and reliability of the system during the information input process;

[0036] For user information, a real-time input and real-time verification method is adopted, and the verification and correction are quickly completed by using hash value comparison, which not only ensures the input accuracy but also does not occupy too much memory resources and avoids affecting the normal input process. Brief Description of the Drawings

[0037] Figure 1 It is a schematic flowchart of the method of the present invention;

[0038] Figure 2This is a schematic diagram of the system framework principle of the present invention. Specific embodiments

[0039] 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 only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0040] Embodiment 1

[0041] Please refer to Figure 1 , this application provides a method for processing telecommunication service information, including the following steps:

[0042] Step 1: Classify the telecommunication service information received in the current batch. Different batches of telecommunication service information will be input. Based on the headers of different information in the telecommunication service information, the received telecommunication service information is divided into user information and other information. Since different input methods are required for different types of information, the corresponding telecommunication service information needs to be specifically classified. For user information, the accuracy of its input needs to be fully guaranteed. For a large amount of other information, a fast input method needs to be used for input to improve the timeliness of the corresponding telecommunication service information during the processing process;

[0043] The specific sub-steps for information classification are as follows:

[0044] Identify the header information associated with different single-group information in the telecommunication service information, and check the header information with the preset headers. The preset headers include various types of user headers, which are preset by relevant personnel in advance. The user headers include "user information", "customer information", "identity information", etc. The single-group information with a verification result is designated as user information, and the single-group information without a verification result is designated as other information; the header can be understood as the relevant header carried by the corresponding information. Since the telecommunication main terminal needs to count various types of service information, it is necessary to extract the more important user information from the corresponding service information to facilitate subsequent input of different types of information using different processing methods;

[0045] Step 2: For the user information divided within the telecommunication service information, adopt a real-time input and real-time verification processing method to input the user information in real time. During the real-time input process, confirm the hash value characteristics of the user information, and re-confirm the hash value characteristics of the partially input user information after the real-time input is completed. Evaluate whether the input user information is accurate, and based on the evaluation result, correct the user information in real time. Specifically, each different information data or information text corresponds to a different hash value, which is preset in the system in advance. By using the method of hash value comparison, the verification and correction of user information can be quickly completed, and it will not occupy too much memory resources and will not affect the normal input process. The specific sub-steps for evaluation are as follows:

[0046] S21: Input the confirmed user information in real time. Before inputting, confirm the hash value associated with the corresponding partially input user information. Compare the partially input user information with the hash value library to confirm the hash value associated with a single piece of information within the partially input user information, and sort the associated hash values according to the sorting method of a single piece of information within the partially input user information to confirm the hash value characteristics. The hash value library is a preset value library, preset in advance by relevant personnel, and contains the hash values associated with different information or data.

[0047] S22: After the partially input user information is input, use the same processing method as in step S21 to confirm the hash value associated with the input partially input user information and confirm the hash value characteristics.

[0048] S23: Compare the hash value characteristics associated with the partially input user information. If the comparison results are the same, continue to input the user information and compare the hash value characteristics before and after input. If the comparison results are different, delete the input partially input user information and re-input this part of the user information until the hash value characteristics before and after input are completely the same, and then input the subsequent user information.

[0049] Specifically, by using this method of comparing and confirming the hash values before and after input, the accuracy of the input information can be effectively guaranteed, and the actual input effect of the input information during input can be improved. When an error occurs during input, the input information is promptly deleted and re-input to ensure real-time verification and correction during input, achieving a better input processing effect.

[0050] Step 3: For the other information divided within the telecommunications service information, first determine the information types included in the other information, then determine the total number of preset input channels. Based on the numerical comparison result between the information type and the total number of input channels, evaluate whether it is necessary to combine the specific information of different information types. Then confirm the input total value characteristics associated with the type combination, lock the best type combination, and perform combination processing on the other information to lock the information combination package to be input. Specifically, there is a large amount of various service information in the other information, and different service information may correspond to different information formats, which may include: picture information, audio information, text information, etc. To ensure that the load of each channel is relatively balanced during input, it is necessary to select the best information combination method during combination to facilitate subsequent information input and achieve the best processing effect of multi-channel input. The processing method for locking the information combination package to be input is as follows:

[0051] S31. Determine the information types (information types are also information formats) included in the other information, and label the total number of information types as G, and label the total number of preset input channels as H. If G ≤ H, then use the specific information associated with different information types as different information combination packages to be input. If G > H, then execute step S32 (when the number of information types is less than the number of channels, there is no need to perform type combination and directly perform relevant input);

[0052] S32. Execute multiple type combination processes:

[0053] S321. Execute the first combination process: Randomly combine different information types to obtain combination types. Stop when the total number of combination types is the same as H, and synchronously confirm the total number of different binary codes associated with different information types. Denote the total number of binary codes associated with the corresponding information type as the eigenvalue. The total number of its binary codes is a preset value, which is determined in advance by relevant personnel. (The total number of binary codes corresponding to a single character of different types is different. Some characters correspond to eight-digit binary codes, and some data correspond to sixteen-digit binary codes.) Denote the specific information associated with the corresponding combination type as the combined information. Based on the total number of characters associated with different information types within the combined information, confirm the total number of features associated with the total number of characters based on the eigenvalue. Then sum up the total number of features associated with different information types within the combined information to confirm the input total value feature associated with the combined information. Specifically, a combination type includes information in the A type format and information in the B type format. The eigenvalue associated with its A type is 8, and the eigenvalue associated with its B type is 16. The total number of characters associated with the A type within the combined information is 100, and the total number of characters associated with the B type within the combined information is 50. Then the input total value feature confirmed for this combined information is: 8×100 + 16×50 = 1600. When the system performs information input, it first needs to be converted into relevant data that the system can recognize, that is, binary codes. Therefore, when inputting, based on the specific combination characteristics of the combination type, confirm the total number of binary codes associated with the corresponding combined information, and then the input load balance situation of different channels can be analyzed;

[0054] Then, use the same processing method for other combination types to confirm the input total value feature associated with the corresponding combined information. Perform variance processing on several groups of input total value features associated with this combination process to confirm the feature variance of this combination process. (The numerical variance can effectively confirm the dispersion situation between the corresponding data. The smaller the dispersion, the smaller the difference between the input total value features, and the more balanced the load. Since the method of variance processing is relatively common in the prior art, it will not be elaborated here.)

[0055] S322. Then, randomly combine different information types to obtain combination types with a different combination method from the first combination process (that is, the combination method of different types has changed). Use the same processing method as in step S321 for the combination process with the same feature variance to confirm the feature variance associated with this combination process;

[0056] S323. Sequentially execute subsequent different combination processes and stop when the generated combination processes repeat (in the system's preset logic, the subsequent generated combination processes cannot repeat the previously generated combination processes. When repetition occurs, it means that all combination methods associated with several different information types have been executed). For each different combination process, use the same processing method as in step S321 to confirm the characteristic variance associated with the corresponding combination process;

[0057] S33. Based on the different characteristic variances associated with different combination processes, select the minimum value from multiple characteristic variances, and label the combination process associated with the minimum value as the optimal process. Use the combination information associated with different combination types within the optimal process as the information combination package to be entered. The combination information of different combination types corresponds to different information combination packages to be entered;

[0058] Specifically, after the optimal process is confirmed, the total number of information combination packages to be entered corresponds to the total number of channels, and the total number of binary codes associated with each information combination package to be entered is also in the state with the smallest numerical dispersion among multiple combination methods. Then, the average number of entries per channel is almost the same. In the subsequent actual entry processing process, each channel can reach an optimal state of relatively balanced load, which can effectively ensure the balanced load entry effect during subsequent entry.

[0059] Step Four. Based on the information combination package to be entered confirmed by other information, evenly distribute the information combination package to different entry channels for entry processing. During the entry processing, periodically monitor the channel utilization rate of each entry channel, and adjust the coding rate of the specified entry channel based on the monitoring results. The specific method of adjustment is as follows:

[0060] S41. Evenly distribute the information combination package to different entry channels for entry processing, and at the start of entry, perform periodic continuous monitoring. The period is the preset period, which is determined by relevant personnel according to experience, generally taking a value of 2 minutes. When the previous period ends, continue to execute the monitoring process of the next period to confirm the signal utilization rate generated by the entry channel within the period:

[0061] Label the total duration of the period as T i , where i represents different entry channels, and label the entry duration generated by the entry channel within the period as L i ;

[0062] Adopt: LY i =L i ÷T i To confirm the channel utilization rate LY associated with the corresponding entry channel i , if LY i≥90%, continuous monitoring is carried out. If LY i <90%, the input channel is marked as a problem channel (a problem channel means that either the interval time of the input channel is too long due to interference, or the corresponding memory space is insufficient, resulting in the reception rate not meeting the input rate and the interval time being too long);

[0063] S42. Record the period marked as a problem channel as an abnormal period. Confirm the input rate when this problem channel is input within the abnormal period. Perform mean processing on several input rates within the abnormal period to confirm the average input rate. Then confirm the reception rate generated by the problem signal receiver. Perform mean processing on several reception rates within the abnormal period to confirm the average reception rate. If the average input rate ≤ the average reception rate, mark this problem channel as an interference channel. Otherwise, generate a reception insufficient signal for display. Based on this reception insufficient signal, external personnel replace the receiver or storage location of such problem channels to ensure the reception rate;

[0064] S43. Based on the marked interference channel, continuously reduce the coding rate of this interference channel in subsequent periods. Every interval of one unit time, the coding rate is reduced by one unit value. Both the unit time and the unit quantity are preset values. The unit time is generally 1 second, and the unit quantity is generally 1 bit. Stop reducing until the channel utilization rate associated with the interference channel reaches the standard. If the channel utilization rate still cannot reach the standard when the coding rate is reduced below the threshold, directly generate an error signal for display. The threshold is a preset value. When an error signal is generated, it means that there may be related problems with the hardware associated with this channel, and human intervention is required for processing;

[0065] When there is interference in the coding rate between corresponding channels, it will cause insufficient utilization rate of the corresponding channels. Then, in order to ensure that each channel can be in the best utilization situation, it is necessary to reduce the coding rate of the corresponding channels when interference exists to avoid competing for computing resources, thereby ensuring the gradual input of channels, further ensuring that there are no errors, no packet loss or other situations during the input process, and further improving the overall information processing effect of multiple channels for synchronous input.

[0066] Embodiment 2

[0067] Combined with Figure 2 , a telecommunications service information processing system includes:

[0068] An information classification processing end that classifies the telecommunications service information received in the current batch. Based on the headers of different information in the telecommunications service information, the received telecommunications service information is divided into user information and other information;

[0069] The real-time verification input end adopts a real-time input and real-time verification processing method for the user information divided in the telecommunication service information. It performs real-time input of the user information, confirms the hash value characteristics of the user information during the real-time input process, and re-confirms the hash value characteristics of some of the user information that has been input in real time. It evaluates whether the input user information is accurate and corrects the user information in real time based on the evaluation result.

[0070] The information type combination end, for the other information divided in the telecommunication service information, first determines the information types included in the other information, then determines the total number of preset input channels. Based on the numerical comparison result between the information type and the total number of input channels, it evaluates whether it is necessary to combine the specific information of different information types, then confirms the input total value characteristics associated with the type combination, then locks the best type combination and performs combination processing on the other information, and locks the information combination package to be input.

[0071] The input supervision end, based on the information combination package to be input confirmed by the other information, evenly distributes the information combination package to different input channels for input processing. During the input processing, it periodically monitors the channel utilization rate of each input channel and adjusts the coding rate of the specified input channel based on the monitoring result.

[0072] Some of the data in the above formula are numerically calculated after removing their dimensions. At the same time, the content not described in detail in this specification belongs to the prior art well-known to those skilled in the art. The user data and other data involved in this application are all obtained with full consent and authorization, and the collection, use, and processing of relevant information comply with the relevant laws, regulations, and standards of relevant countries and regions.

[0073] The above embodiments are only used to illustrate the technical method of the present invention and not to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical method of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical method of the present invention.

Claims

1. A telecommunication service information processing method, characterized in that: The following steps are involved: Step 1: classify the telecommunications service information received in the current batch, where different telecommunications service information is input for each different batch, and the received telecommunications service information is classified into user information and other information based on the headers of different information in the telecommunications service information; Step 2: For the user information classified in the telecommunications service information, a real-time input and real-time verification processing method is adopted to input the user information in real time, and the hash value characteristics of the user information are confirmed during the real-time input process, and the hash value characteristics of part of the user information that has been input in real time are reconfirmed to assess whether the input user information is accurate, and the user information is corrected in real time based on the assessment results; Step 3: For other information classified in the telecommunications service information, first determine the information type contained in the other information, then determine the total number of preset input channels, and based on the numerical comparison result of the information type and the total number of input channels, assess whether it is necessary to combine the specific information of different information types, then confirm the total input value characteristics associated with the type combination, and then lock the best type combination and combine other information to lock the information combination package to be entered. The specific method is as follows: S31, determining the information types contained in other information, and marking the total number of information types as G, and marking the total number of preset input channels as H. If G≤H, the specific information associated with different information types is used as different information combination packages to be input. If G>H, executing step S32; S32, executing multiple types of combined processes, and confirming the characteristic variance associated with each combined process in turn, specifically in the following manner: S321, execute the first combination process: randomly combine different information types to obtain combination types, stop when the total number of combination types is consistent with H, and synchronously confirm the total number of different binary codes associated with different information types, record the total number of binary codes associated with the corresponding information type as a characteristic value, and the total number of binary codes is a preset value, and record the specific information associated with the corresponding combination type as combination information, according to the total number of characters and characteristic values ​​associated with different information types in the combination information, multiply the total number of characters and characteristic values ​​of the same information type, and then sum up several products generated by the combination information to confirm the input total value feature associated with the combination information; Then, the same processing method is used for other combination types to confirm the input total value characteristics associated with the corresponding combination information, and variance processing is performed on several groups of input total value characteristics associated with this combination process to confirm the characteristic variance of this combination process; S322, randomly combining different information types to obtain a combination type different from the first combination process, and using the same processing method as step S321 for the characteristic variance of the combination process to confirm the characteristic variance associated with this combination process; S323, gradually executing subsequent different combination processes until the generated combination process is repeated, and stopping, and using the same processing method as step S321 for each different combination process to confirm the feature variance associated with the corresponding combination process; S33, based on different feature variances associated with different combination processes, selecting a minimum value from multiple feature variances, and marking the combination process associated with the minimum value as the best process, and using the combination information associated with different combination types in the best process as the information combination package to be entered, and the combination information of different combination types corresponds to different information combination packages to be entered; Step 4: Based on the information combination packages to be recorded confirmed by other information, the information combination packages to be recorded are evenly divided into different recording channels for recording processing. During the recording processing, the channel utilization rate of each recording channel is periodically monitored, and the coding rate of the designated recording channel is adjusted based on the monitoring results.

2. A telecommunication service information processing method according to claim 1, characterized in that: In the step 1, the specific sub-steps of classifying the telecommunication service information are: Identify the header information associated with different single groups of information in the telecommunications business information, and check the header information with the preset header, wherein the preset header includes various types of user headers, and mark the single group of information with the check result as user information, and mark the single group of information without the check result as other information.

3. A telecommunication service information processing method according to claim 1, characterized in that: In step 2, the specific sub-steps of correcting the user information in real time are: S21, entering the confirmed user information in real time, and before entering, confirming the hash value associated with the corresponding part of the user information to be entered, comparing the part of the user information with the hash value library, confirming the hash value associated with the single information in the part of the user information, and sorting the associated hash values ​​according to the sorting method of the single information in the part of the user information to confirm the hash value characteristics; S22, after the partial user information is entered, the same processing method as step S21 is adopted to confirm the hash value associated with the entered partial user information and confirm the hash value characteristics; S23. Compare the hash value features associated with part of the user information. If the comparison results are consistent, continue to enter the user information and compare the hash value features before and after the entry. If the comparison results are inconsistent, delete the entered part of the user information and re-enter the part of the user information until the hash value features associated with the part before and after the entry are completely consistent, and then enter the subsequent user information.

4. A telecommunication service information processing method according to claim 3, characterized in that: In step S21, the hash value library is a preset value library, which is preset in advance by relevant personnel and contains hash values ​​associated with different information or data.

5. A telecommunication service information processing method according to claim 1, characterized in that: In step 4, the specific method of adjusting the coding rate of the designated input channel is: S41, the information combination packages to be recorded are evenly divided into different recording channels for recording processing, and at the start of recording, periodic continuous monitoring is performed, and the period is a preset period. When the previous group of periods ends, the monitoring process of the next group of periods is continued to confirm the signal utilization rate generated by the recording channel in the period: The total duration of the cycle is marked as T i , where i represents different recording channels, and the recording duration generated by the recording channel in the cycle is calibrated as L i ; Use: LY i =L i ÷T i Confirm the channel utilization LY associated with the corresponding input channel i , if LY i ≥90%, continue monitoring, if LY i <90%, the input channel is marked as a problem channel; S42, record the period marked as the problem channel as an abnormal period, confirm the recording rate of the problem channel during recording in the abnormal period, average several recording rates in the abnormal period to confirm the recording average rate, then confirm the receiving rate generated by the receiver of the problem signal, average several receiving rates in the abnormal period to confirm the receiving average rate, if the recording average rate ≤ the receiving average rate, mark the problem channel as an interference channel, otherwise, generate a reception insufficient signal for display; S43. Based on the calibrated interference channel, the coding rate of this interference channel is continuously reduced in subsequent cycles. The coding rate is reduced by one unit value at each unit time interval. The unit time and unit quantity are both preset values. The coding rate stops being reduced when the channel utilization rate associated with the interference channel meets the standard. When the coding rate is reduced below the threshold and its channel utilization rate still cannot meet the standard, an error signal is directly generated for display. The threshold is a preset value.

6. A telecommunication service information processing system, the system being operated according to a telecommunication service information processing method according to any one of claims 1 to 5, characterized in that: include: The information classification processing end classifies the telecommunication service information received in the current batch, and divides the received telecommunication service information into user information and other information based on the headers of different information in the telecommunication service information; The real-time verification terminal uses a real-time verification processing method to input user information classified in the telecommunications service information in real time, confirms the hash value characteristics of the user information during the real-time input process, and reconfirms the hash value characteristics of part of the user information that has been input in real time, assesses whether the input user information is accurate, and modifies the user information in real time based on the assessment results; The information type combination end, for other information classified in the telecommunications business information, first determines the information type contained in the other information, then determines the total number of preset input channels, and based on the numerical comparison result of the information type and the total number of input channels, assesses whether it is necessary to combine specific information of different information types, then confirms the total input value characteristics associated with the type combination, and then locks the best type combination and performs combination processing on other information, and locks the information combination package to be entered; The input supervision end, based on the information combination packages to be input confirmed by other information, divides the information combination packages to be input into different input channels for input processing, and during the input processing, periodically monitors the channel utilization rate of each input channel, and adjusts the coding rate of the designated input channel based on the monitoring results.

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