CN112822122A - Method and system for dynamically judging and adjusting traffic use priority - Google Patents
Method and system for dynamically judging and adjusting traffic use priority Download PDFInfo
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- CN112822122A CN112822122A CN202011573131.0A CN202011573131A CN112822122A CN 112822122 A CN112822122 A CN 112822122A CN 202011573131 A CN202011573131 A CN 202011573131A CN 112822122 A CN112822122 A CN 112822122A
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- 238000000034 method Methods 0.000 title claims abstract description 19
- 238000012913 prioritisation Methods 0.000 claims 1
- 230000008901 benefit Effects 0.000 abstract description 9
- 230000006872 improvement Effects 0.000 description 9
- 206010044565 Tremor Diseases 0.000 description 3
- 230000008569 process Effects 0.000 description 3
- 230000004048 modification Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 238000012216 screening Methods 0.000 description 2
- 239000000126 substance Substances 0.000 description 2
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L47/00—Traffic control in data switching networks
- H04L47/10—Flow control; Congestion control
- H04L47/24—Traffic characterised by specific attributes, e.g. priority or QoS
- H04L47/2425—Traffic characterised by specific attributes, e.g. priority or QoS for supporting services specification, e.g. SLA
- H04L47/2433—Allocation of priorities to traffic types
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L47/00—Traffic control in data switching networks
- H04L47/70—Admission control; Resource allocation
- H04L47/80—Actions related to the user profile or the type of traffic
- H04L47/805—QOS or priority aware
Abstract
The invention provides a method and a system for dynamically judging and adjusting the traffic use priority, which relate to the related technical field of charging in the telecommunication industry and comprise the following steps: acquiring flow ordering data of a user in real time, wherein the flow ordering data comprises a flow type, a flow validity period and a flow residual amount; judging whether the user has effective flow data with at least two remaining flow types at the current moment; if yes, distinguishing the priority of the traffic data through a first condition to obtain a first priority and a second priority; if the first condition cannot be distinguished, distinguishing the priority of the traffic data through a second condition to obtain a first priority and a second priority; and reconfiguring the traffic use priority of the user according to the obtained first priority and the second priority. The invention obtains and judges whether the user flow priority has rationality problem in real time, and calculates the flow use priority for the user again, so that the flow use is more reasonable, and the benefit maximization of the user is further ensured.
Description
Technical Field
The invention relates to the technical field related to charging in the telecommunication industry, in particular to a method and a system for dynamically judging and adjusting the traffic use priority.
Background
Along with the evolution of the technology and the diversification of customer service in the telecommunication industry, a flow-based package strategy is more and more abundant, and besides a normal general flow package, directional flow (effective in the current month, not surplus in the next month and not circulating, such as a tremble directional flow package, a Tencent/Aiqiyi directional flow package and the like) and time-limited flow (effective in the current month, not surplus in the next month and not circulating, such as a 7-day flow package, a daily flow package and an hour flow package) and the like are also included; for these different types of traffic, traffic priority issues are involved in the usage of the user.
The current system is implemented by using fixed priority, such as time-limited flow priority, directional flow and universal flow. In the process of ordering the flow products, a general user orders according to actual self requirements, for example, the user A orders a general flow rate package of 10G to meet the requirements of daily normal internet surfing, voice and the like, and simultaneously orders a tremble sound directional flow rate package of 15G to meet the requirements of video browsing of a tremble sound client and the like. However, when a scene changes, the reasonability of the fixed priority level may have a problem, for example, if a user a uses a general traffic reaching 10G in a certain month No. 25, and then orders a time-limited traffic packet (time-limited traffic of general traffic property) with a validity period of 7 days, the time-limited traffic and the directional traffic are both valid at the end of the month according to a time dimension (i.e., the validity period of the time dimension is consistent at this time), but from the 2 traffic usage ranges, the directional traffic usage range is smaller than the time-limited traffic, and is judged from the rationality, at this time, if a jitter traffic ticket is generated by the user, the directional traffic should be used first, and if the fixed priority level is still used according to the time-limited traffic first, the directional traffic second, and the general traffic last, it is obviously unreasonable, and the benefit of the user traffic is not maximized.
Therefore, with the change of ordering packages by users and the evolution of time dimension, the flow use is judged based on fixed priority, so that the rationality problem exists, and the requirement of maximizing the benefit of the users cannot be met.
Disclosure of Invention
Aiming at the problems, the invention provides a method and a system for dynamically judging and adjusting the traffic use priority, which are used for calculating in real time according to user traffic ordering data, time dimension and traffic use range so as to adjust a traffic priority strategy, solve the use problems of various traffic types and maximize the user traffic use benefits.
In order to achieve the above object, the present invention provides a method for dynamically determining and adjusting traffic usage priority, comprising:
acquiring flow ordering data of a user in real time, wherein the flow ordering data comprises a flow type, a flow validity period and a flow residual amount;
judging whether the user has effective flow data with at least two remaining flow types at the current moment;
if yes, distinguishing the priority of the traffic data through a first condition to obtain a first priority and a second priority;
if the first condition cannot be distinguished, distinguishing the priority of the traffic data through a second condition to obtain a first priority and a second priority; the first condition and the second condition both comprise a higher priority with a shorter remaining validity period time in a time validity period dimension and a higher priority with a smaller use range in a use range dimension, and the first condition and the second condition are different;
and reconfiguring the traffic use priority of the user according to the obtained first priority and second priority.
As a further improvement of the invention, a background real-time computing component is arranged, and the flow ordering data of the user is obtained in real time through the background real-time computing component.
As a further improvement of the present invention, the acquiring of the traffic ordering data of the user in real time includes acquiring the traffic ordering data of all users in the range in which the real-time computing component is responsible, and the background real-time computing component supports parallel computing.
As a further improvement of the present invention, if not, the user adopts a fixed priority; wherein the fixed priority is time-limited traffic > directed traffic > general traffic.
As a further improvement of the present invention, the first condition and the second condition are different and include:
when the first condition is that the priority of the short residual validity period is higher in the dimension of the time validity period, the second condition is that the priority of the small use range is higher in the dimension of the use range;
when the first condition is that the priority of the smaller usage range is higher in the usage range dimension, the second condition is that the priority of the remaining shorter validity period is higher in the time validity period dimension.
The invention also provides a system for realizing dynamic judgment and adjusting the traffic use priority, which comprises a real-time data acquisition module, a user judgment module, a priority recalculation module and a priority adjustment module;
the real-time data acquisition module is configured to:
acquiring flow ordering data of a user in real time, wherein the flow ordering data comprises a flow type, a flow validity period and a flow residual amount;
the user judgment module is used for:
judging whether the user has effective and residual flow data of at least two flow types at the current moment in the data acquired by the real-time data acquisition module;
the priority recalculation module is configured to:
if the user judgment module judges that the traffic data exists, the priority recalculation module distinguishes the priority of the traffic data through the first condition to obtain a first priority and a second priority;
if the first condition cannot be distinguished, distinguishing the priority of the traffic data through a second condition to obtain a first priority and a second priority; the first condition and the second condition both comprise a higher priority with a shorter remaining validity period time in a time validity period dimension and a higher priority with a smaller use range in a use range dimension, and the first condition and the second condition are different;
the priority adjustment module is configured to:
and reconfiguring the traffic use priority of the user according to the obtained first priority and second priority.
As a further improvement of the present invention, the real-time data acquisition module is provided with a background real-time computing component, and the flow ordering data of the user is acquired in real time through the background real-time computing component.
As a further improvement of the present invention, the real-time data acquisition module acquires the traffic ordering data of the user in real time, including acquiring the traffic ordering data of all users in the range in which the real-time computing component is responsible, and the background real-time computing component supports parallel computing.
As a further improvement of the present invention, if the user judgment module judges that the user does not exist, the user adopts a fixed priority; wherein the fixed priority is time-limited traffic > directed traffic > general traffic.
As a further improvement of the present invention, the first condition and the second condition are different and include:
when the first condition is that the priority of the short residual validity period is higher in the dimension of the time validity period, the second condition is that the priority of the small use range is higher in the dimension of the use range;
when the first condition is that the priority of the smaller usage range is higher in the usage range dimension, the second condition is that the priority of the remaining shorter validity period is higher in the time validity period dimension.
Compared with the prior art, the invention has the beneficial effects that:
according to the invention, the real-time computing component is arranged, users with possibly reasonableness problems in the flow priority can be obtained and screened in real time, and the user priority of flow use is re-computed for the users according to the user flow ordering condition, so that the flow use is more reasonable, and the benefit maximization of the users is further ensured.
According to the invention, users with possible flow priority reasonableness problems are screened by setting the screening conditions, so that the user range is filtered, the calculated amount is reduced, the calculation time is saved, and the calculation rate is increased.
Drawings
FIG. 1 is a flowchart of a method for dynamically determining and adjusting traffic utilization priority according to an embodiment of the present invention;
fig. 2 is a schematic diagram of a system for dynamically determining and adjusting traffic utilization priority according to an embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. All other embodiments, which can be obtained by a person skilled in the art without any inventive step based on the embodiments of the present invention, are within the scope of the present invention.
The invention is described in further detail below with reference to the attached drawing figures:
as shown in fig. 1, a method for dynamically determining and adjusting traffic usage priority provided by the present invention includes:
s1, obtaining flow ordering data of a user in real time, wherein the flow ordering data comprises a flow type, a flow validity period and a flow residual amount;
the method comprises the steps of setting a background real-time computing component, and acquiring flow ordering data of a user in real time through the background real-time computing component.
Further, the real-time obtaining of the traffic ordering data of the user includes obtaining of the traffic ordering data of all users in a range where the real-time computing component is responsible for, and the background real-time computing component supports parallel computing.
S2, judging whether the user has effective and residual flow data of at least two flow types at the current moment;
s3, if yes, distinguishing the priority of the traffic data through a first condition to obtain a first priority and a second priority;
further, in the above-mentioned case,
if not, the user adopts fixed priority; wherein the fixed priority is time-limited traffic > directed traffic > general traffic.
S4, if the first condition can not be distinguished, distinguishing the priority of the traffic data through a second condition to obtain a first priority and a second priority; the first condition and the second condition both comprise a higher priority with a shorter remaining validity period time in a time validity period dimension and a higher priority with a smaller use range in a use range dimension, and the first condition and the second condition are different;
wherein the content of the first and second substances,
when the first condition is that the priority of the short residual validity period is higher in the dimension of the time validity period, the second condition is that the priority of the small use range is higher in the dimension of the use range;
when the first condition is that the priority of the smaller usage range is higher in the usage range dimension, the second condition is that the priority of the remaining shorter validity period is higher in the time validity period dimension.
And S5, reconfiguring the traffic use priority of the user according to the obtained first priority and second priority.
As shown in fig. 2, the present invention further provides a system for dynamically determining and adjusting the traffic usage priority, which includes a real-time data obtaining module, a user determining module, a priority recalculating module, and a priority adjusting module;
the real-time data acquisition module is configured to:
acquiring flow ordering data of a user in real time, wherein the flow ordering data comprises a flow type, a flow validity period and a flow residual amount;
the real-time data acquisition module is provided with a background real-time calculation component, and the flow ordering data of the user is acquired in real time through the background real-time calculation component.
Further, the real-time obtaining of the traffic ordering data of the user includes obtaining of the traffic ordering data of all users in a range where the real-time computing component is responsible for, and the background real-time computing component supports parallel computing.
The user judgment module is used for:
judging whether the user has effective and residual flow data of at least two flow types at the current moment in the data acquired by the real-time data acquisition module;
the priority recalculation module is configured to:
if the user judgment module judges that the traffic data exists, the priority recalculation module distinguishes the priority of the traffic data through the first condition to obtain a first priority and a second priority;
if the first condition cannot be distinguished, distinguishing the priority of the traffic data through a second condition to obtain a first priority and a second priority; the first condition and the second condition both comprise a higher priority with a shorter remaining validity period time in a time validity period dimension and a higher priority with a smaller use range in a use range dimension, and the first condition and the second condition are different;
wherein the content of the first and second substances,
if the judgment result of the user judgment module is that the user does not exist, the user adopts a fixed priority; the fixed priority is time-limited flow > directional flow > general flow.
Further, in the above-mentioned case,
the first condition and the second condition are different and include:
when the first condition is that the priority of the short residual validity period is higher in the dimension of the time validity period, the second condition is that the priority of the small use range is higher in the dimension of the use range;
when the first condition is that the priority of the smaller usage range is higher in the usage range dimension, the second condition is that the priority of the remaining shorter validity period is higher in the time validity period dimension.
The priority adjustment module is configured to:
and reconfiguring the traffic use priority of the user according to the obtained first priority and second priority.
Example (b):
the system fixed priority is: time-limited flow > directed flow > general flow;
the first condition is: in the dimension of the time validity period, the priority of the shorter remaining validity period is higher;
the second condition is: in the usage range dimension, a smaller usage range has a higher priority.
The flow-related order data in the user A package is as follows: (1) the general flow of a monthly package is 10G, (2) the directional flow of a certain APP of the monthly package is 15G, and (3) the flow package is 10G (with the general flow property) after the general flow is used up in 25 days of a month.
The flow-related ordering data in the user B package is as follows: (1) the general flow of the monthly package is 10G, and (2) the directional flow of certain APP of the monthly package is 15G.
The flow-related order data in the user C package is: (1) general flow 10G.
The actual operation process of the method at a certain moment of 25 days is as follows:
step 1, the background real-time computing component obtains the traffic ordering data of the users in the responsible area in real time, wherein the traffic ordering data comprises traffic ordering data of three users A, B, C, and the method comprises the following steps:
the flow-related order data in the user A package is as follows: (1) the general flow of the monthly package is 10G, 25 days are completely used up, (2) the directional flow of an APP in the monthly package is 15G, the rest is 2.4G, and (3) a 7-day flow packet 10G (with general flow property) is transacted in 25 days and is not used.
The flow-related ordering data in the user B package is as follows: (1) the general flow of the monthly set is 10G, the rest is 1.5G, and (2) the directional flow of certain APP in the monthly set is 15G, and the rest is 3G.
The flow-related order data in the user C package is: (1) general flow 10G, remaining 4G.
Step 2, judging whether effective and residual flow data of at least two flow types exist at the current moment, and obtaining that users of the flow data of the two flow types include a user A and a user B;
step 3, distinguishing the priority of the traffic data through a first condition, namely, in the dimension of the time validity period, the priority with shorter remaining validity period time is higher;
for a user B, firstly judging the time validity period, wherein the time validity period of the general flow of the monthly package is the same as the time validity period of the residual 3G of the directional flow of an APP of the monthly package, the priority cannot be distinguished, and the next step is carried out;
for a user A, firstly, judging the time validity period, wherein the residual 2.4G of the directional flow of an APP in a monthly combo is not used as the 10G of the 7-day flow packet handled in 25 days, and the time validity period is the same and reaches the end of the month;
step 4, if the first condition can not be distinguished, distinguishing the priority of the traffic data through a second condition; .
For the user B, judging the use range, wherein the use range of the residual 3G of the directional flow of the APP in the monthly package is smaller than the residual 1.5G of the general flow of the monthly package, so that the user level priority of the user B is as follows: directed traffic > general traffic;
for the user a, the usage range is continuously judged, the usage range of the 7-day traffic packet 10G is greater than the directional traffic of an APP in a monthly package 15G, and therefore, the user level priority of the user a is as follows: directed traffic >7 day traffic packets (general traffic).
And 5, reconfiguring the flow use priority of the user according to the obtained first priority and the second priority.
Step 6, the charging process needs to inquire whether the user has the reconfigured traffic using priority in real time, if the user A, B has the reconfigured traffic using priority, the user is charged by loading the reconfigured traffic using priority, and if the user C does not have the reconfigured traffic using priority, the user is charged by using the fixed priority;
the invention has the advantages that:
(1) through setting the real-time computing component, users with possibly reasonableness problems in traffic priority are obtained and screened in real time, and the user priority of traffic use is computed for the users again according to the user traffic ordering condition, so that the traffic use is more reasonable, and the benefit maximization of the users is further ensured.
(2) Through setting the screening condition, the users who probably have the problem of flow priority rationality are screened, the user range is filtered, the calculated amount is reduced, the calculation time is saved, and the calculation rate is improved.
(3) For the users who order various flows, the current flow use requirements of the users are met, meanwhile, the benefit maximization of the future flow use of the users is kept, and the flow use satisfaction of the users can be effectively improved.
(4) For telecommunication operators, the capacity of adjusting the priority of the flow in real time is provided, and the differentiated service of customers can be realized according to the market development strategy.
The above is only a preferred embodiment of the present invention, and is not intended to limit the present invention, and various modifications and changes will occur to those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (10)
1. A method for dynamically determining and adjusting traffic usage priority, comprising:
acquiring flow ordering data of a user in real time, wherein the flow ordering data comprises a flow type, a flow validity period and a flow residual amount;
judging whether the user has effective flow data with at least two remaining flow types at the current moment;
if yes, distinguishing the priority of the traffic data through a first condition to obtain a first priority and a second priority;
if the first condition cannot be distinguished, distinguishing the priority of the traffic data through a second condition to obtain a first priority and a second priority; the first condition and the second condition both comprise a higher priority with a shorter remaining validity period time in a time validity period dimension and a higher priority with a smaller use range in a use range dimension, and the first condition and the second condition are different;
and reconfiguring the traffic use priority of the user according to the obtained first priority and second priority.
2. The method of adjusting traffic usage priority according to claim 1, wherein: and setting a background real-time computing component, and acquiring the flow ordering data of the user in real time through the background real-time computing component.
3. The method of adjusting traffic usage priority according to claim 2, wherein: the real-time acquisition of the flow ordering data of the users comprises the acquisition of the flow ordering data of all users in the range in which the real-time computing component is responsible, and the background real-time computing component supports parallel computing.
4. The method of adjusting traffic usage priority according to claim 1, wherein: if not, the user adopts fixed priority; wherein the fixed priority is time-limited traffic > directed traffic > general traffic.
5. The method of adjusting traffic usage priority according to claim 1, wherein: the first and second conditions are different and include:
when the first condition is that the priority of the short residual validity period is higher in the dimension of the time validity period, the second condition is that the priority of the small use range is higher in the dimension of the use range;
when the first condition is that the priority of the smaller usage range is higher in the usage range dimension, the second condition is that the priority of the remaining shorter validity period is higher in the time validity period dimension.
6. A system for implementing dynamic decision and traffic utilization prioritization, comprising: the system comprises a real-time data acquisition module, a user judgment module, a priority recalculation module and a priority adjustment module;
the real-time data acquisition module is configured to:
acquiring flow ordering data of a user in real time, wherein the flow ordering data comprises a flow type, a flow validity period and a flow residual amount;
the user judgment module is used for:
judging whether the user has effective and residual flow data of at least two flow types at the current moment in the data acquired by the real-time data acquisition module;
the priority recalculation module is configured to:
if the user judgment module judges that the traffic data exists, the priority recalculation module distinguishes the priority of the traffic data through the first condition to obtain a first priority and a second priority;
if the first condition cannot be distinguished, distinguishing the priority of the traffic data through a second condition to obtain a first priority and a second priority; the first condition and the second condition both comprise a higher priority with a shorter remaining validity period time in a time validity period dimension and a higher priority with a smaller use range in a use range dimension, and the first condition and the second condition are different;
the priority adjustment module is configured to:
and reconfiguring the traffic use priority of the user according to the obtained first priority and second priority.
7. The system for adjusting traffic usage priority according to claim 6, wherein: the real-time data acquisition module is provided with a background real-time calculation component, and the flow ordering data of the user is acquired in real time through the background real-time calculation component.
8. The system for adjusting traffic usage priority according to claim 7, wherein: the real-time data acquisition module acquires flow ordering data of users in real time, the flow ordering data of all users in the real-time calculation component responsible range is acquired, and the background real-time calculation component supports parallel calculation.
9. The system for adjusting traffic usage priority according to claim 1, wherein: if the judgment result of the user judgment module is that the user does not exist, the user adopts a fixed priority; wherein the fixed priority is time-limited traffic > directed traffic > general traffic.
10. The system for adjusting traffic usage priority according to claim 1, wherein: the first and second conditions are different and include:
when the first condition is that the priority of the short residual validity period is higher in the dimension of the time validity period, the second condition is that the priority of the small use range is higher in the dimension of the use range;
when the first condition is that the priority of the smaller usage range is higher in the usage range dimension, the second condition is that the priority of the remaining shorter validity period is higher in the time validity period dimension.
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CN111132016A (en) * | 2020-03-31 | 2020-05-08 | 友刻(北京)通讯技术有限公司 | Method and device for selecting flow package |
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US20170257220A1 (en) * | 2014-11-19 | 2017-09-07 | Huawei Technologies Co., Ltd. | Directional-traffic statistics method, device, and system |
CN107104807A (en) * | 2017-04-24 | 2017-08-29 | 深圳天珑无线科技有限公司 | A kind of data traffic monitoring method and device |
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