CN111917597A - Broadband service monitoring method and equipment - Google Patents

Broadband service monitoring method and equipment Download PDF

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Publication number
CN111917597A
CN111917597A CN201910381671.XA CN201910381671A CN111917597A CN 111917597 A CN111917597 A CN 111917597A CN 201910381671 A CN201910381671 A CN 201910381671A CN 111917597 A CN111917597 A CN 111917597A
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China
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broadband
target monitoring
online
users
monitoring area
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CN201910381671.XA
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CN111917597B (en
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陈晞
黄栋
张扬逸
罗卫鸿
杨慰民
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China Mobile Communications Group Co Ltd
China Mobile Group Fujian Co Ltd
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China Mobile Communications Group Co Ltd
China Mobile Group Fujian Co Ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/08Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters
    • H04L43/0876Network utilisation, e.g. volume of load or congestion level
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/06Management of faults, events, alarms or notifications
    • H04L41/0631Management of faults, events, alarms or notifications using root cause analysis; using analysis of correlation between notifications, alarms or events based on decision criteria, e.g. hierarchy, tree or time analysis
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/08Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters

Abstract

The embodiment of the invention provides a method and a device for monitoring broadband services, wherein the method comprises the following steps: selecting a target monitoring area in each level of administrative areas covered by the broadband service, or selecting a target monitoring area in broadband providing areas respectively corresponding to each level of broadband providing equipment; acquiring the number of broadband online users, the number of broadband registered users and the total number of online and offline times of broadband users in a target monitoring area in a current monitoring period, and acquiring the number of communication users executing communication behaviors based on broadband services in the target monitoring area in the previous N monitoring periods; determining the broadband health degree of a target monitoring area in the current monitoring period according to the number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users and the number of communication users; and judging whether to generate a broadband abnormity alarm aiming at the target monitoring area according to the broadband health degree. In the embodiment, the monitoring efficiency of the broadband service is improved by determining the index value reflecting the broadband communication quality of the online user.

Description

Broadband service monitoring method and equipment
Technical Field
The present invention relates to the field of broadband networks, and in particular, to a method and an apparatus for monitoring broadband services.
Background
With the rapid increase of the number of broadband users, the number of network devices of the telecom operator also shows a rapid increase trend, and meanwhile, the broadband network architecture is more and more complex, so that the difficulty of operation and maintenance work and broadband customer service work of the telecom operator broadband network is continuously increased.
Real-time monitoring of broadband network operation indexes is an important means for telecom operators to carry out broadband network operation work and broadband customer service work. Currently, the overall situation of broadband users can only be monitored by periodically outputting the online rate of broadband users of the province or city dimensionality through a broadband authentication system, and the monitoring efficiency of broadband services is influenced due to the lack of indexes reflecting the broadband communication quality of the online users.
Disclosure of Invention
The embodiment of the invention aims to provide a method and equipment for monitoring broadband services, which improve the monitoring efficiency of the broadband services by determining an index value reflecting the broadband communication quality of an online user.
To solve the above technical problem, the embodiment of the present invention is implemented as follows:
in a first aspect, an embodiment of the present invention provides a method for monitoring a broadband service, including:
selecting a target monitoring area in each level of administrative areas covered by the broadband service, or selecting a target monitoring area in broadband providing areas respectively corresponding to each level of broadband providing equipment;
acquiring the number of broadband online users, the number of broadband registered users and the total number of online and offline times of broadband users in the target monitoring area in the current monitoring period, and acquiring the number of communication users executing communication behaviors based on the broadband service in the target monitoring area in the previous N monitoring periods; n is an integer greater than 1;
determining the broadband health degree corresponding to the target monitoring area in the current monitoring period according to the number of the broadband online users, the number of the broadband registered users, the total number of online and offline times of the broadband users and the number of the communication users; the broadband health is used for representing the broadband communication quality of the target monitoring area;
and judging whether to generate a broadband abnormity alarm aiming at the target monitoring area according to the broadband health degree.
In a second aspect, an embodiment of the present invention provides a broadband service monitoring device, including:
the area determining module is used for selecting a target monitoring area in each administrative area covered by the broadband service, or selecting a target monitoring area in broadband providing areas respectively corresponding to each broadband providing device;
the data acquisition module is used for acquiring the number of broadband online users, the number of broadband registered users and the total number of online and offline times of the broadband users in the target monitoring area in the current monitoring period, and acquiring the number of communication users executing communication behaviors based on the broadband service in the target monitoring area in the previous N monitoring periods; n is an integer greater than 1;
the index confirmation module is used for determining the broadband health degree corresponding to the target monitoring area in the current monitoring period according to the number of the broadband online users, the number of the broadband registered users, the total number of online and offline times of the broadband users and the number of the communication users; the broadband health is used for representing the broadband communication quality of the target monitoring area;
and the broadband alarm module is used for judging whether to generate a broadband abnormity alarm aiming at the target monitoring area according to the broadband health degree.
In a third aspect, an embodiment of the present invention provides a broadband service monitoring device, including: a memory, a processor and a computer program stored on the memory and executable on the processor, the computer program, when executed by the processor, implementing the steps of the broadband traffic monitoring method according to the first aspect.
In a fourth aspect, an embodiment of the present invention provides a computer-readable storage medium, where a computer program is stored on the computer-readable storage medium, and when the computer program is executed by a processor, the steps of the broadband traffic monitoring method according to the first aspect are implemented.
According to the embodiment of the invention, a target monitoring area is determined in each administrative area covered by broadband service, or the target monitoring area is determined in broadband providing areas respectively corresponding to broadband providing equipment at each level, the broadband health degree corresponding to the target monitoring area in the current monitoring period is determined according to the acquired number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users and the number of communication users of the target monitoring area in the first N monitoring periods in the current monitoring period, and whether a broadband abnormity alarm aiming at the target monitoring area is generated is judged according to the broadband health degree, wherein the broadband health degree is used for expressing the broadband communication quality of the target monitoring area. Therefore, the broadband health degree reflecting the broadband communication quality of the target monitoring area can be determined through the embodiment, so that whether broadband abnormal alarm needs to be carried out or not is judged through the broadband health degree, and the monitoring efficiency of broadband services is improved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below, it is obvious that the drawings in the following description are only some embodiments described in the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic flow chart of a broadband service monitoring method according to an embodiment of the present invention;
FIG. 2 is a schematic diagram of a region-level vector diagram provided in accordance with an embodiment of the present invention;
FIG. 3 is a diagram of a device-level vector diagram provided in accordance with an embodiment of the present invention;
fig. 4 is a schematic diagram illustrating a module composition of a broadband service monitoring device according to an embodiment of the present invention;
fig. 5 is a schematic structural diagram of a broadband service monitoring device according to an embodiment of the present application.
Detailed Description
In order to make those skilled in the art better understand the technical solution of the present invention, the technical solution in the embodiment of the present invention will be clearly and completely described below with reference to the drawings in the embodiment of the present invention, and it is obvious that the described embodiment is only a part of the embodiment of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Fig. 1 is a schematic flowchart of a broadband service monitoring method according to an embodiment of the present invention, where the method may be executed by a broadband service monitoring device, as shown in fig. 1, the method includes the following steps:
s102, selecting a target monitoring area in each level of administrative areas covered by the broadband service, or selecting a target monitoring area in broadband providing areas respectively corresponding to each level of broadband providing equipment;
s104, acquiring the number of broadband online users, the number of broadband registered users and the total number of online and offline times of the broadband users in a target monitoring area in the current monitoring period, and acquiring the number of communication users executing communication behaviors based on broadband services in the target monitoring area in the previous N monitoring periods; n is an integer greater than 1;
s106, determining the broadband health degree corresponding to the target monitoring area in the current monitoring period according to the number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users and the number of communication users; the broadband health degree is used for representing the broadband communication quality of the target monitoring area;
and S108, judging whether to generate a broadband abnormity alarm aiming at the target monitoring area according to the broadband health degree.
According to the embodiment of the invention, a target monitoring area is determined in each administrative area covered by broadband service, or the target monitoring area is determined in broadband providing areas respectively corresponding to broadband providing equipment at each level, the broadband health degree corresponding to the target monitoring area in the current monitoring period is determined according to the acquired number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users and the number of communication users of the target monitoring area in the first N monitoring periods in the current monitoring period, and whether a broadband abnormity alarm aiming at the target monitoring area is generated is judged according to the broadband health degree, wherein the broadband health degree is used for expressing the broadband communication quality of the target monitoring area. Therefore, the broadband health degree reflecting the broadband communication quality of the target monitoring area can be determined through the embodiment, so that whether broadband abnormal alarm needs to be carried out or not is judged through the broadband health degree, and the monitoring efficiency of broadband services is improved.
In step S102, the broadband service monitoring device selects a target monitoring area in each administrative area covered by the broadband service, or the broadband service monitoring device selects a target monitoring area in each broadband providing area corresponding to each broadband providing device. In the embodiment of the present invention, the step S102 includes:
(a1) sequentially taking the administrative areas of all levels as target monitoring areas according to the hierarchical relation among the administrative areas of all levels;
alternatively, the first and second electrodes may be,
(a2) and according to the hierarchical relationship among the broadband providing equipment of each level, the broadband providing areas respectively corresponding to the broadband providing equipment of each level are sequentially used as target monitoring areas.
In the above action (a1), the broadband service monitoring device sequentially uses the administrative areas of different levels as target monitoring areas according to the hierarchical relationship between the administrative areas of different levels, and the hierarchical relationship between the administrative areas of different levels may be arranged from high to low, and may be province, city, district, street, cell, corridor, or other administrative areas arranged according to the hierarchical relationship, which is not particularly limited herein.
In the action (a2), the Broadband service monitoring device sequentially uses the Broadband providing areas corresponding to the Broadband providing devices of each level as the target monitoring areas according to the hierarchical relationship between the Broadband providing devices of each level, and the hierarchical relationship between the Broadband providing devices of each level may be arranged from high to low, such as a BRAS (Broadband Access Server), a switch, an OLT (Optical line terminal), a PON (Passive Optical Network), an ONU (Optical Network Unit), a first splitter, a second splitter, or other Broadband providing devices of each level arranged according to the hierarchical relationship, where no special limitation is made here. The broadband providing area corresponding to the broadband providing device is an area where the broadband network is provided by the broadband providing device.
In step S104, the broadband service monitoring device may obtain, in real time, the number of broadband online users, the number of broadband registered users, and the total number of times of online and offline of broadband users in the target monitoring area in the current monitoring period in a database snapshot manner, and obtain the number of communication users performing communication behaviors based on the monitored broadband service in the target monitoring area in the previous N monitoring periods. Wherein the duration of the monitoring period is not particularly limited herein. In a preferred embodiment, while meeting the real-time requirement of broadband monitoring work, the load capacity of the broadband service monitoring database is considered, and the monitoring period is set to be 5 minutes according to the minimum time granularity. Therefore, the method can realize the real-time monitoring of the broadband user in the minute level by using the database snapshot mode, thereby improving the monitoring efficiency of the broadband service.
In the step S106, the broadband service monitoring device determines the broadband health degree corresponding to the target monitoring area in the current monitoring period according to the number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users, and the number of communication users; the broadband health is used to represent the broadband communication quality of the target monitored area.
In step S108, the broadband service monitoring device determines whether to generate a broadband anomaly alarm for the target monitoring area according to the broadband health degree. According to the embodiment, the broadband health degree reflecting the broadband communication quality of the target monitoring area can be determined, so that whether broadband abnormity warning needs to be carried out or not is judged according to the broadband health degree, and the monitoring efficiency of broadband services is improved.
In the embodiment of the present invention, determining the broadband health degree corresponding to the target monitoring area in the current monitoring period according to the number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users, and the number of communication users includes:
(b1) determining the online rate of the broadband online users according to the ratio of the number of the broadband online users to the number of the broadband registered users;
(b2) determining the fluctuation rate of the broadband online users according to the ratio of the number of the broadband online users to the number of the communication users;
(b3) normalizing the total online and offline times of the broadband user to obtain a normalized value of the total online and offline times of the broadband user;
(b4) and carrying out weighted summation calculation on the online rate, the fluctuation rate and the normalized value, and taking the calculation result as the broadband health degree.
In the above actions (b1) and (b2), the broadband service monitoring device determines the ratio of the number of broadband online users to the number of broadband registered users as the online rate of the broadband online users; and determining the ratio of the number of the broadband online users to the number of the communication users in the current monitoring period as the fluctuation rate of the broadband online users in the current monitoring period.
In the above action (b3), the broadband service monitoring device performs normalization processing on the total uplink and downlink times of the broadband user in the current monitoring period to obtain a normalized value of the total uplink and downlink times of the broadband user in the current monitoring period, where the normalization processing method of the total uplink and downlink times of the broadband user in the current monitoring period is not particularly limited, in a preferred embodiment, the normalization processing is performed on the total uplink and downlink times of the broadband user in the current monitoring period to obtain the normalized value of the total uplink and downlink times of the broadband user in the current monitoring period, and the normalization processing method includes:
(b31) acquiring total online and offline times of X broadband users corresponding to a target monitoring area in the previous X monitoring periods, and extracting the maximum total time and the minimum total time of the total online and offline times of the X broadband users; the target monitoring area corresponds to the total number of online and offline times of a broadband user in each monitoring period of the previous X monitoring periods, and X is an integer greater than 1;
(b32) calculating a first difference value between the total number of online and offline times of the broadband user corresponding to the current monitoring period of the target monitoring area and the minimum total number of times, and calculating a second difference value between the maximum total number of times and the minimum total number of times;
(b33) and taking the ratio of the first difference value and the second difference value as a normalization value of the total online and offline times of the broadband user corresponding to the current monitoring period of the target monitoring area.
In the action (b31), the broadband service monitoring device obtains total online and offline times of X broadband users corresponding to the target monitoring area in the previous X monitoring periods, each monitoring period of the target monitoring area in the previous X monitoring periods corresponds to total online and offline times of one broadband user, and extracts a maximum total time and a minimum total time of the total online and offline times of the X broadband users, where X is an integer greater than 1, and no special limitation is imposed on the value of X.
In the above actions (b32) and (b33), the broadband service monitoring device calculates a first difference between the total number of online and offline times of the broadband user corresponding to the current monitoring period of the target monitoring area and the minimum total number of times, and calculates a second difference between the maximum total number of times and the minimum total number of times. Taking a ratio of the first difference and the second difference as a normalized value of the total online and offline times of the broadband user corresponding to the target monitoring area in the current monitoring period, for example, the monitoring period is set to 5 minutes, in the total online and offline times of the X broadband users corresponding to the target monitoring area in the previous X monitoring periods, X is 288, the broadband service monitoring device calculates a first difference between the total online and offline times of the broadband user corresponding to the beijing city in the current 5 minutes and the minimum total time to be 15000, calculates a second difference between the maximum total online and minimum total times of the broadband user corresponding to the beijing city in the previous 24 hours (i.e., 288 × 5/60) to be 10000, and then the normalized value of the total online and offline times of the broadband user corresponding to the current 5 minutes in the beijing city is 15000/10000 equal to 1.5.
In the above action (B4), the broadband service monitoring device performs weighted summation calculation on the online rate of the current monitoring period, the fluctuation rate of the current monitoring period, and the normalized value of the total number of online and offline times of the broadband user corresponding to the current monitoring period, and uses the calculation result as the broadband health degree, where the weighted summation coefficient is not specially limited, in a preferred embodiment, the coefficient corresponding to the online rate a of the current monitoring period is 0.4, the coefficient corresponding to the fluctuation rate B of the current monitoring period is 0.4, and the coefficient corresponding to the normalized value C of the total number of online and offline times of the broadband user corresponding to the current monitoring period is 0.2, that is, the broadband health degree H is 0.4A +0.4B + 0.2C.
In the embodiment of the invention, judging whether to generate a broadband abnormity alarm aiming at a target monitoring area according to the broadband health degree comprises the following steps:
(c1) determining each next-level administrative region or each next-level broadband providing region belonging to the target monitoring region; calculating a first average value of the determined broadband health degree of each area in the current monitoring period; if the ratio of the broadband health degree corresponding to the current monitoring period of the target monitoring area to the first average value is smaller than a first preset percentage, generating a broadband abnormity alarm aiming at the target monitoring area;
alternatively, the first and second electrodes may be,
(c2) acquiring M broadband health degrees corresponding to the target monitoring area in the previous M monitoring periods; calculating a second average value of the M broadband health degrees; if the ratio of the broadband health degree corresponding to the current monitoring period of the target monitoring area to the second average value is smaller than a second preset percentage, generating a broadband abnormity alarm aiming at the target monitoring area; the target monitoring area corresponds to a broadband health degree in each monitoring period of the previous M monitoring periods, and M is an integer greater than 1.
In the above action (c1), the broadband service monitoring device determines each next administrative area or each next broadband provision area belonging to the target monitoring area; and calculating a first average value of the broadband health degree of each determined area in the current monitoring period, for example, if the target monitoring area is shanxi province, the broadband service monitoring equipment determines ten prefectures belonging to the next stage of the shanxi province, and calculates the first average value of the broadband health degree of the ten prefectures in the current monitoring period. If the ratio of the broadband health degree corresponding to the current monitoring period of the target monitoring area to the first average value is smaller than a first preset percentage, generating a broadband abnormity alarm for the target monitoring area, wherein the value of the first preset percentage can be 80% or 90%, no special limitation is made here, and the generated broadband abnormity alarm for the target monitoring area can be a text prompt message or a specific music prompt, and no special limitation is made here.
In the action (c2), the broadband service monitoring device obtains M broadband health degrees corresponding to the target monitoring area in the first M monitoring periods, where the target monitoring area corresponds to one broadband health degree in each monitoring period of the first M monitoring periods, and M is an integer greater than 1, and calculates a second average value of the M broadband health degrees, for example, the broadband service monitoring device obtains ten broadband health degrees corresponding to the switch device in the first ten monitoring periods, and calculates the second average value of the ten broadband health degrees. If the ratio of the broadband health degree corresponding to the current monitoring period of the target monitoring area to the second average value is smaller than a second preset percentage, generating a broadband abnormal alarm for the target monitoring area, wherein the second preset percentage may be 80% or 90%, and may be the same as or different from the first preset percentage, where no special limitation is made, and the generated broadband abnormal alarm for the target monitoring area may be a text prompt message or a specific music prompt, where no special limitation is made.
In the embodiment of the invention, the method further comprises the following steps:
(d1) constructing a region level vector diagram according to the level relation between all levels of administrative regions, wherein the region level vector diagram displays the identification of all levels of administrative regions;
(d2) after generating a broadband abnormal alarm aiming at a target monitoring area, acquiring a query request of a user aiming at the target monitoring area;
(d3) and if the target monitoring area is selected from each level of administrative areas, displaying the online rate, the total online and offline times of broadband users, the fluctuation rate and the broadband health degree corresponding to the target monitoring area in the area level vector diagram according to the query request.
In the action (d1), the broadband service monitoring device may use HTML5+ SVG + JavaScript technology to construct an area-level vector diagram according to the level relationship of each level of administrative areas, or may use other technologies, which is not particularly limited herein; the region-level vector diagram displays identifiers of administrative regions of different levels, for example, the region-level vector diagram displays identifiers of administrative regions of four levels, namely, china, province, city and district, and the region-level vector diagram includes an online rate, a total number of online and offline times of broadband users, a fluctuation rate and a broadband health degree of a current monitoring period corresponding to each monitoring region.
Fig. 2 is a schematic structural diagram of a region-level vector diagram according to an embodiment of the present invention, as shown in fig. 2, the region-level vector diagram includes A, B, C, D provinces for each of the next-level administration regions corresponding to the XX country, where the a province includes a plurality of corresponding city administration regions such as a1 city, a2 city, and A3 city, the B province includes a plurality of corresponding city administration regions such as B1 city, B2 city, and B3 city, the C province includes a plurality of corresponding city administration regions such as C1 city, C2 city, and C3 city, and each region includes an online rate, a total offline number of broadband users, a fluctuation rate, and a broadband health degree of a current monitoring period corresponding thereto.
In the above actions (d2) and (d3), after the broadband service monitoring device generates a broadband anomaly alarm for the target monitoring area, the broadband service monitoring device obtains an inquiry request of the user for the target monitoring area; and if the target monitoring area is selected from each level of administrative areas, displaying the online rate of the current monitoring period, the total online and offline times of broadband users in the current monitoring period, the fluctuation rate of the current monitoring period and the broadband health degree of the current monitoring period corresponding to the target monitoring area in the area level vector diagram according to the query request.
By the embodiment, the real-time monitoring on the health degree of the broadband can be realized, the position of an abnormal target monitoring area can be directly displayed after the broadband abnormity warning, and the processing efficiency of the rapid fault positioning of the broadband service is improved.
SVG (Scalable Vector Graphics) technology can be used in the region level Vector diagram, the presentation of each level region is realized by using nodes and the incidence relation mode among the nodes, the realization of the technology comprises a foreground presentation module, a background logic processing module and a database module, and the specific realization process comprises the following steps:
s111: the foreground interface submits a query request to the background logic processing module;
s112: the background logic processing module inquires the latest updating time point from the database;
s113: the database returns the time point information of the existing data to the background logic processing module;
s114: the background logic processing module converts the format of the information and returns the information to the foreground presenting module;
s115: the foreground presenting module receives the administrative region corresponding to the target monitoring region, and the foreground program submits the information of the geographic mark corresponding to the administrative region of the node to the background logic processing module;
s116: the background logic processing module judges the next level node to be inquired according to the node information submitted by the foreground presenting module, generates a corresponding database inquiry statement and submits the database inquiry statement;
s117: the database queries and returns corresponding result information, wherein the result information comprises the online rate of the current monitoring period corresponding to the target monitoring area, the total online and offline times of the broadband user, the fluctuation rate and the broadband health degree;
s118: the background logic processing module converts the format of the returned result information and then returns the result information to the foreground presenting module, and the foreground presenting module receives the returned latest result information to the selected node in the step S115 to realize multi-level presentation.
In the embodiment of the invention, the method further comprises the following steps:
(e1) constructing a device level vector diagram according to the level relation among all levels of broadband providing devices, wherein the device level vector diagram displays the identification of all levels of broadband providing devices;
(e2) after generating a broadband abnormal alarm aiming at a target monitoring area, acquiring a query request of a user aiming at the target monitoring area;
(e3) and if the target monitoring area is selected from the broadband providing areas corresponding to the broadband providing equipment of each level, displaying the online rate, the total online and offline times, the fluctuation rate and the broadband health degree corresponding to the target monitoring area in the equipment level vector diagram according to the query request.
In the above action (e1), the broadband service monitoring device may use HTML5+ SVG + JavaScript technology to construct a device level vector diagram according to the level relationship between broadband providing devices at different levels, or may use other technologies, which is not specially limited herein; the device level vector diagram displays identifiers of broadband providing devices at each level, for example, the area level vector diagram displays identifiers of broadband providing devices at seven levels, such as BRAS, switch, OLT, PON, ONU, primary optical splitter and secondary optical splitter, and the area level vector diagram includes an online rate of a current monitoring period, a total number of online and offline times of a broadband user, a fluctuation rate and a broadband health degree, corresponding to each monitoring area.
Fig. 3 is a schematic structural diagram of a device-level vector diagram provided in an embodiment of the present invention, as shown in fig. 3, each device has a corresponding broadband provision area, and the device-level vector diagram includes a device a (corresponding to the broadband provision area a) corresponding to the device 1 (corresponding to the broadband provision area 1), a device B (corresponding to the broadband provision area B), a device C (corresponding to the broadband provision area C), and a device D (corresponding to the broadband provision area D), where the device a corresponds to a device a1 (corresponding to the broadband provision area a1), a2 (corresponding to the broadband provision area a2), A3 (corresponding to the broadband provision area A3), and the device B corresponds to a device B1 (corresponding to the broadband provision area B1), a device B2 (corresponding to the broadband provision area B2), respectively, The device B3 (corresponding to the broadband providing area B3), the next-stage devices corresponding to the device C are respectively the device C1 (corresponding to the broadband providing area C1), the device C2 (corresponding to the broadband providing area C2), and the device C3 (corresponding to the broadband providing area C3), the next-stage devices corresponding to the device D are respectively the device D1 (corresponding to the broadband providing area D1), the device D2 (corresponding to the broadband providing area D2), and the device D3 (corresponding to the broadband providing area D3), and the broadband providing area corresponding to each device includes the online rate, the total number of online and offline times, the fluctuation rate, and the broadband health degree of the current monitoring period corresponding to each device.
In the above actions (e2) and (e3), after the broadband service monitoring device generates the broadband anomaly alarm for the target monitoring area, the broadband service monitoring device obtains the query request of the user for the target monitoring area, and if the target monitoring area is selected from the broadband providing areas corresponding to the broadband providing devices at all levels, the online rate, the total number of online and offline times, the fluctuation rate, and the broadband health degree corresponding to the target monitoring area are displayed in the device level vector diagram according to the query request. The SVG technology can be used in the device-level vector diagram, and the presentation of each level region is realized by using nodes and the association relationship between the nodes, and the specific implementation flow is as described in step S111 to step S118, which is not described herein again. By the embodiment, the real-time monitoring on the health degree of the broadband can be realized, the position of an abnormal target monitoring area can be directly displayed after the broadband abnormity warning, and the processing efficiency of the rapid fault positioning of the broadband service is improved.
According to the embodiment of the invention, a target monitoring area is determined in each administrative area covered by broadband service, or the target monitoring area is determined in broadband providing areas respectively corresponding to broadband providing equipment at each level, the broadband health degree corresponding to the target monitoring area in the current monitoring period is determined according to the acquired number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users and the number of communication users of the target monitoring area in the first N monitoring periods in the current monitoring period, and whether a broadband abnormity alarm aiming at the target monitoring area is generated is judged according to the broadband health degree, wherein the broadband health degree is used for expressing the broadband communication quality of the target monitoring area. Therefore, the broadband health degree reflecting the broadband communication quality of the target monitoring area can be determined through the embodiment, so that whether broadband abnormal alarm needs to be carried out or not is judged through the broadband health degree, and the monitoring efficiency of broadband services is improved.
Fig. 4 is a schematic diagram of a module composition of a broadband service monitoring device according to an embodiment of the present invention, as shown in fig. 4, the device includes:
the area determining module 41 is configured to select a target monitoring area in each administrative area covered by the broadband service, or select a target monitoring area in each broadband providing area corresponding to each broadband providing device;
a data obtaining module 42, configured to obtain the number of broadband online users, the number of broadband registered users, and the total number of times of online and offline of broadband users in the target monitoring area in a current monitoring period, and obtain the number of communication users performing communication behaviors based on the broadband service in the target monitoring area in the previous N monitoring periods; n is an integer greater than 1;
an index confirmation module 43, configured to determine, according to the number of broadband online users, the number of broadband registered users, the total number of times of online and offline of the broadband user, and the number of communication users, a broadband health degree corresponding to the target monitoring area in a current monitoring period; the broadband health is used for representing the broadband communication quality of the target monitoring area;
and the broadband warning module 44 is configured to determine whether to generate a broadband abnormal warning for the target monitoring area according to the broadband health degree.
Optionally, the region determining module 41 is specifically configured to:
according to the hierarchical relation among all levels of administrative regions, sequentially taking all levels of administrative regions as the target monitoring regions;
alternatively, the first and second electrodes may be,
and according to the hierarchical relationship among the broadband providing equipment of each level, sequentially taking the broadband providing areas respectively corresponding to the broadband providing equipment of each level as the target monitoring areas.
Optionally, the index confirming module 43 is specifically configured to:
determining the online rate of the broadband online users according to the ratio of the number of the broadband online users to the number of the broadband registered users;
determining the fluctuation rate of the broadband online users according to the ratio of the number of the broadband online users to the number of the communication users;
normalizing the total number of the online and offline times of the broadband user to obtain a normalized value of the total number of the online and offline times of the broadband user;
and performing weighted summation calculation on the online rate, the fluctuation rate and the normalized value, and taking the calculation result as the broadband health degree.
Optionally, the broadband warning module 44 is specifically configured to:
determining each next-level administrative region or each next-level broadband provision region belonging to the target monitoring region; calculating a first average value of the determined broadband health degree of each area in the current monitoring period; if the ratio of the broadband health degree corresponding to the current monitoring period of the target monitoring area to the first average value is smaller than a first preset percentage, generating a broadband abnormity alarm aiming at the target monitoring area;
alternatively, the first and second electrodes may be,
acquiring M broadband health degrees corresponding to the target monitoring area in the previous M monitoring periods; calculating a second average of the M broadband health degrees; if the ratio of the broadband health degree corresponding to the target monitoring area in the current monitoring period to the second average value is smaller than a second preset percentage, generating a broadband abnormity alarm aiming at the target monitoring area; wherein the target monitoring area corresponds to a broadband health degree in each monitoring period of the first M monitoring periods, and M is an integer greater than 1.
Optionally, the index confirming module 43 is further specifically configured to:
acquiring total online and offline times of X broadband users corresponding to the target monitoring area in the previous X monitoring periods, and extracting the maximum total time and the minimum total time in the total online and offline times of the X broadband users; the target monitoring area corresponds to the total number of online and offline times of a broadband user in each monitoring period of the previous X monitoring periods, and X is an integer greater than 1;
calculating a first difference value between the total number of the broadband users who are on and off the line corresponding to the current monitoring period of the target monitoring area and the minimum total number, and calculating a second difference value between the maximum total number and the minimum total number;
and taking the ratio of the first difference value to the second difference value as a normalization value of the total online and offline times of the broadband user corresponding to the current monitoring period of the target monitoring area.
Optionally, the system further comprises a build region module, configured to:
constructing a region level vector diagram according to the level relation between all levels of administrative regions, wherein the region level vector diagram displays the marks of all levels of administrative regions;
after generating a broadband abnormal alarm aiming at the target monitoring area, acquiring a query request of a user aiming at the target monitoring area;
and if the target monitoring area is selected from the administrative areas of all levels, displaying the online rate, the total online and offline times of the broadband user, the fluctuation rate and the broadband health degree corresponding to the target monitoring area in the area level vector diagram according to the query request.
Optionally, the system further comprises a construction equipment module, configured to:
constructing a device level vector diagram according to the level relation among all levels of broadband providing devices, wherein the device level vector diagram displays the identification of all levels of broadband providing devices;
after generating a broadband abnormal alarm aiming at the target monitoring area, acquiring a query request of a user aiming at the target monitoring area;
and if the target monitoring area is selected from the broadband providing areas corresponding to the broadband providing equipment at each level, displaying the online rate, the total online and offline times of the broadband users, the fluctuation rate and the broadband health degree corresponding to the target monitoring area in the equipment level vector diagram according to the query request.
According to the embodiment of the invention, a target monitoring area is determined in each administrative area covered by broadband service, or the target monitoring area is determined in broadband providing areas respectively corresponding to broadband providing equipment at each level, the broadband health degree corresponding to the target monitoring area in the current monitoring period is determined according to the acquired number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users and the number of communication users of the target monitoring area in the first N monitoring periods in the current monitoring period, and whether a broadband abnormity alarm aiming at the target monitoring area is generated is judged according to the broadband health degree, wherein the broadband health degree is used for expressing the broadband communication quality of the target monitoring area. Therefore, the broadband health degree reflecting the broadband communication quality of the target monitoring area can be determined through the embodiment, so that whether broadband abnormal alarm needs to be carried out or not is judged through the broadband health degree, and the monitoring efficiency of broadband services is improved.
The broadband service monitoring device provided by the embodiment of the application can realize each process in the method embodiments and achieve the same functions and effects, and the process is not repeated here.
Further, an embodiment of the present application further provides a broadband service monitoring device, and fig. 5 is a schematic structural diagram of the broadband service monitoring device provided in the embodiment of the present application, and as shown in fig. 5, the device includes: memory 601, processor 602, bus 603, and communication interface 604. The memory 601, processor 602, and communication interface 604 communicate via the bus 603. the communication interface 604 may include input and output interfaces including, but not limited to, a keyboard, mouse, display, microphone, and the like.
In fig. 5, the memory 601 stores thereon computer-executable instructions executable on the processor 602, and when executed by the processor 602, the computer-executable instructions implement the following processes:
selecting a target monitoring area in each level of administrative areas covered by the broadband service, or selecting a target monitoring area in broadband providing areas respectively corresponding to each level of broadband providing equipment;
acquiring the number of broadband online users, the number of broadband registered users and the total number of online and offline times of broadband users in the target monitoring area in the current monitoring period, and acquiring the number of communication users executing communication behaviors based on the broadband service in the target monitoring area in the previous N monitoring periods; n is an integer greater than 1;
determining the broadband health degree corresponding to the target monitoring area in the current monitoring period according to the number of the broadband online users, the number of the broadband registered users, the total number of online and offline times of the broadband users and the number of the communication users; the broadband health is used for representing the broadband communication quality of the target monitoring area;
and judging whether to generate a broadband abnormity alarm aiming at the target monitoring area according to the broadband health degree.
Optionally, when the computer executable instruction is executed by the processor, selecting a target monitoring area in each level of administrative areas covered by the broadband service, or selecting a target monitoring area in each level of broadband providing areas corresponding to the broadband providing devices respectively, includes:
according to the hierarchical relation among all levels of administrative regions, sequentially taking all levels of administrative regions as the target monitoring regions;
alternatively, the first and second electrodes may be,
and according to the hierarchical relationship among the broadband providing equipment of each level, sequentially taking the broadband providing areas respectively corresponding to the broadband providing equipment of each level as the target monitoring areas.
Optionally, when executed by the processor, the determining, according to the number of broadband online users, the number of broadband registered users, the total number of times of online and offline of the broadband users, and the number of communication users, a broadband health degree corresponding to the target monitoring area in a current monitoring period includes:
determining the online rate of the broadband online users according to the ratio of the number of the broadband online users to the number of the broadband registered users;
determining the fluctuation rate of the broadband online users according to the ratio of the number of the broadband online users to the number of the communication users;
normalizing the total number of the online and offline times of the broadband user to obtain a normalized value of the total number of the online and offline times of the broadband user;
and performing weighted summation calculation on the online rate, the fluctuation rate and the normalized value, and taking the calculation result as the broadband health degree.
Optionally, when executed by the processor, the computer-executable instructions determine whether to generate a broadband anomaly alarm for the target monitoring area according to the broadband health degree, including:
determining each next-level administrative region or each next-level broadband provision region belonging to the target monitoring region; calculating a first average value of the determined broadband health degree of each area in the current monitoring period; if the ratio of the broadband health degree corresponding to the current monitoring period of the target monitoring area to the first average value is smaller than a first preset percentage, generating a broadband abnormity alarm aiming at the target monitoring area;
alternatively, the first and second electrodes may be,
acquiring M broadband health degrees corresponding to the target monitoring area in the previous M monitoring periods; calculating a second average of the M broadband health degrees; if the ratio of the broadband health degree corresponding to the target monitoring area in the current monitoring period to the second average value is smaller than a second preset percentage, generating a broadband abnormity alarm aiming at the target monitoring area; wherein the target monitoring area corresponds to a broadband health degree in each monitoring period of the first M monitoring periods, and M is an integer greater than 1.
Optionally, when executed by the processor, the computer-executable instructions perform normalization processing on the total number of the online and offline times of the broadband user to obtain a normalized value of the total number of the online and offline times of the broadband user, including:
acquiring total online and offline times of X broadband users corresponding to the target monitoring area in the previous X monitoring periods, and extracting the maximum total time and the minimum total time in the total online and offline times of the X broadband users; the target monitoring area corresponds to the total number of online and offline times of a broadband user in each monitoring period of the previous X monitoring periods, and X is an integer greater than 1;
calculating a first difference value between the total number of the broadband users who are on and off the line corresponding to the current monitoring period of the target monitoring area and the minimum total number, and calculating a second difference value between the maximum total number and the minimum total number;
and taking the ratio of the first difference value to the second difference value as a normalization value of the total online and offline times of the broadband user corresponding to the current monitoring period of the target monitoring area.
Optionally, the computer executable instructions, when executed by the processor, further comprise:
constructing a region level vector diagram according to the level relation between all levels of administrative regions, wherein the region level vector diagram displays the marks of all levels of administrative regions;
after generating a broadband abnormal alarm aiming at the target monitoring area, acquiring a query request of a user aiming at the target monitoring area;
and if the target monitoring area is selected from the administrative areas of all levels, displaying the online rate, the total online and offline times of the broadband user, the fluctuation rate and the broadband health degree corresponding to the target monitoring area in the area level vector diagram according to the query request.
Optionally, the computer executable instructions, when executed by the processor, further comprise:
constructing a device level vector diagram according to the level relation among all levels of broadband providing devices, wherein the device level vector diagram displays the identification of all levels of broadband providing devices;
after generating a broadband abnormal alarm aiming at the target monitoring area, acquiring a query request of a user aiming at the target monitoring area;
and if the target monitoring area is selected from the broadband providing areas corresponding to the broadband providing equipment at each level, displaying the online rate, the total online and offline times of the broadband users, the fluctuation rate and the broadband health degree corresponding to the target monitoring area in the equipment level vector diagram according to the query request.
According to the embodiment of the invention, a target monitoring area is determined in each administrative area covered by broadband service, or the target monitoring area is determined in broadband providing areas respectively corresponding to broadband providing equipment at each level, the broadband health degree corresponding to the target monitoring area in the current monitoring period is determined according to the acquired number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users and the number of communication users of the target monitoring area in the first N monitoring periods in the current monitoring period, and whether a broadband abnormity alarm aiming at the target monitoring area is generated is judged according to the broadband health degree, wherein the broadband health degree is used for expressing the broadband communication quality of the target monitoring area. Therefore, the broadband health degree reflecting the broadband communication quality of the target monitoring area can be determined through the embodiment, so that whether broadband abnormal alarm needs to be carried out or not is judged through the broadband health degree, and the monitoring efficiency of broadband services is improved.
The broadband service monitoring device provided by the embodiment of the application can realize each process in the method embodiments and achieve the same functions and effects, and the process is not repeated here.
Further, an embodiment of the present application also provides a computer-readable storage medium for storing computer-executable instructions, which when executed by a processor implement the following process:
selecting a target monitoring area in each level of administrative areas covered by the broadband service, or selecting a target monitoring area in broadband providing areas respectively corresponding to each level of broadband providing equipment;
acquiring the number of broadband online users, the number of broadband registered users and the total number of online and offline times of broadband users in the target monitoring area in the current monitoring period, and acquiring the number of communication users executing communication behaviors based on the broadband service in the target monitoring area in the previous N monitoring periods; n is an integer greater than 1;
determining the broadband health degree corresponding to the target monitoring area in the current monitoring period according to the number of the broadband online users, the number of the broadband registered users, the total number of online and offline times of the broadband users and the number of the communication users; the broadband health is used for representing the broadband communication quality of the target monitoring area;
and judging whether to generate a broadband abnormity alarm aiming at the target monitoring area according to the broadband health degree.
Optionally, when the computer executable instruction is executed by the processor, selecting a target monitoring area in each level of administrative areas covered by the broadband service, or selecting a target monitoring area in each level of broadband providing areas corresponding to the broadband providing devices respectively, includes:
according to the hierarchical relation among all levels of administrative regions, sequentially taking all levels of administrative regions as the target monitoring regions;
alternatively, the first and second electrodes may be,
and according to the hierarchical relationship among the broadband providing equipment of each level, sequentially taking the broadband providing areas respectively corresponding to the broadband providing equipment of each level as the target monitoring areas.
Optionally, when executed by the processor, the determining, according to the number of broadband online users, the number of broadband registered users, the total number of times of online and offline of the broadband users, and the number of communication users, a broadband health degree corresponding to the target monitoring area in a current monitoring period includes:
determining the online rate of the broadband online users according to the ratio of the number of the broadband online users to the number of the broadband registered users;
determining the fluctuation rate of the broadband online users according to the ratio of the number of the broadband online users to the number of the communication users;
normalizing the total number of the online and offline times of the broadband user to obtain a normalized value of the total number of the online and offline times of the broadband user;
and performing weighted summation calculation on the online rate, the fluctuation rate and the normalized value, and taking the calculation result as the broadband health degree.
Optionally, when executed by the processor, the computer-executable instructions determine whether to generate a broadband anomaly alarm for the target monitoring area according to the broadband health degree, including:
determining each next-level administrative region or each next-level broadband provision region belonging to the target monitoring region; calculating a first average value of the determined broadband health degree of each area in the current monitoring period; if the ratio of the broadband health degree corresponding to the current monitoring period of the target monitoring area to the first average value is smaller than a first preset percentage, generating a broadband abnormity alarm aiming at the target monitoring area;
alternatively, the first and second electrodes may be,
acquiring M broadband health degrees corresponding to the target monitoring area in the previous M monitoring periods; calculating a second average of the M broadband health degrees; if the ratio of the broadband health degree corresponding to the target monitoring area in the current monitoring period to the second average value is smaller than a second preset percentage, generating a broadband abnormity alarm aiming at the target monitoring area; wherein the target monitoring area corresponds to a broadband health degree in each monitoring period of the first M monitoring periods, and M is an integer greater than 1.
Optionally, when executed by the processor, the computer-executable instructions perform normalization processing on the total number of the online and offline times of the broadband user to obtain a normalized value of the total number of the online and offline times of the broadband user, including:
acquiring total online and offline times of X broadband users corresponding to the target monitoring area in the previous X monitoring periods, and extracting the maximum total time and the minimum total time in the total online and offline times of the X broadband users; the target monitoring area corresponds to the total number of online and offline times of a broadband user in each monitoring period of the previous X monitoring periods, and X is an integer greater than 1;
calculating a first difference value between the total number of the broadband users who are on and off the line corresponding to the current monitoring period of the target monitoring area and the minimum total number, and calculating a second difference value between the maximum total number and the minimum total number;
and taking the ratio of the first difference value to the second difference value as a normalization value of the total online and offline times of the broadband user corresponding to the current monitoring period of the target monitoring area.
Optionally, the computer executable instructions, when executed by the processor, further comprise:
constructing a region level vector diagram according to the level relation between all levels of administrative regions, wherein the region level vector diagram displays the marks of all levels of administrative regions;
after generating a broadband abnormal alarm aiming at the target monitoring area, acquiring a query request of a user aiming at the target monitoring area;
and if the target monitoring area is selected from the administrative areas of all levels, displaying the online rate, the total online and offline times of the broadband user, the fluctuation rate and the broadband health degree corresponding to the target monitoring area in the area level vector diagram according to the query request.
Optionally, the computer executable instructions, when executed by the processor, further comprise:
constructing a device level vector diagram according to the level relation among all levels of broadband providing devices, wherein the device level vector diagram displays the identification of all levels of broadband providing devices;
after generating a broadband abnormal alarm aiming at the target monitoring area, acquiring a query request of a user aiming at the target monitoring area;
and if the target monitoring area is selected from the broadband providing areas corresponding to the broadband providing equipment at each level, displaying the online rate, the total online and offline times of the broadband users, the fluctuation rate and the broadband health degree corresponding to the target monitoring area in the equipment level vector diagram according to the query request.
According to the embodiment of the invention, a target monitoring area is determined in each administrative area covered by broadband service, or the target monitoring area is determined in broadband providing areas respectively corresponding to broadband providing equipment at each level, the broadband health degree corresponding to the target monitoring area in the current monitoring period is determined according to the acquired number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users and the number of communication users of the target monitoring area in the first N monitoring periods in the current monitoring period, and whether a broadband abnormity alarm aiming at the target monitoring area is generated is judged according to the broadband health degree, wherein the broadband health degree is used for expressing the broadband communication quality of the target monitoring area. Therefore, the broadband health degree reflecting the broadband communication quality of the target monitoring area can be determined through the embodiment, so that whether broadband abnormal alarm needs to be carried out or not is judged through the broadband health degree, and the monitoring efficiency of broadband services is improved.
The computer-readable storage medium includes a Read-Only Memory (ROM), a Random Access Memory (RAM), a magnetic disk or an optical disk.
The computer-readable storage medium provided by the embodiment of the present application can implement the processes in the foregoing method embodiments, and achieve the same functions and effects, which are not repeated here.
The embodiments in the present specification are described in a progressive manner, and the same and similar parts among the embodiments are referred to each other, and each embodiment focuses on the differences from the other embodiments. In particular, for the system embodiment, since it is substantially similar to the method embodiment, the description is simple, and for the relevant points, reference may be made to the partial description of the method embodiment.
The above description is only an example of the present application and is not intended to limit the present application. Various modifications and changes may occur to those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the scope of the claims of the present application.

Claims (10)

1. A method for monitoring broadband service is characterized by comprising the following steps:
selecting a target monitoring area in each level of administrative areas covered by the broadband service, or selecting a target monitoring area in broadband providing areas respectively corresponding to each level of broadband providing equipment;
acquiring the number of broadband online users, the number of broadband registered users and the total number of online and offline times of broadband users in the target monitoring area in the current monitoring period, and acquiring the number of communication users executing communication behaviors based on the broadband service in the target monitoring area in the previous N monitoring periods; n is an integer greater than 1;
determining the broadband health degree corresponding to the target monitoring area in the current monitoring period according to the number of the broadband online users, the number of the broadband registered users, the total number of online and offline times of the broadband users and the number of the communication users; the broadband health is used for representing the broadband communication quality of the target monitoring area;
and judging whether to generate a broadband abnormity alarm aiming at the target monitoring area according to the broadband health degree.
2. The method according to claim 1, wherein selecting the target monitoring area in each administrative area covered by the broadband service, or selecting the target monitoring area in the broadband providing area corresponding to each broadband providing device, comprises:
according to the hierarchical relation among all levels of administrative regions, sequentially taking all levels of administrative regions as the target monitoring regions;
alternatively, the first and second electrodes may be,
and according to the hierarchical relationship among the broadband providing equipment of each level, sequentially taking the broadband providing areas respectively corresponding to the broadband providing equipment of each level as the target monitoring areas.
3. The method according to claim 1, wherein determining the broadband health corresponding to the target monitoring area in the current monitoring period according to the number of broadband online users, the number of broadband registered users, the total number of online and offline times of broadband users, and the number of communication users comprises:
determining the online rate of the broadband online users according to the ratio of the number of the broadband online users to the number of the broadband registered users;
determining the fluctuation rate of the broadband online users according to the ratio of the number of the broadband online users to the number of the communication users;
normalizing the total number of the online and offline times of the broadband user to obtain a normalized value of the total number of the online and offline times of the broadband user;
and performing weighted summation calculation on the online rate, the fluctuation rate and the normalized value, and taking the calculation result as the broadband health degree.
4. The method of claim 1, wherein determining whether to generate a broadband anomaly alert for the target monitoring area based on the broadband health comprises:
determining each next-level administrative region or each next-level broadband provision region belonging to the target monitoring region; calculating a first average value of the determined broadband health degree of each area in the current monitoring period; if the ratio of the broadband health degree corresponding to the current monitoring period of the target monitoring area to the first average value is smaller than a first preset percentage, generating a broadband abnormity alarm aiming at the target monitoring area;
alternatively, the first and second electrodes may be,
acquiring M broadband health degrees corresponding to the target monitoring area in the previous M monitoring periods; calculating a second average of the M broadband health degrees; if the ratio of the broadband health degree corresponding to the target monitoring area in the current monitoring period to the second average value is smaller than a second preset percentage, generating a broadband abnormity alarm aiming at the target monitoring area; wherein the target monitoring area corresponds to a broadband health degree in each monitoring period of the first M monitoring periods, and M is an integer greater than 1.
5. The method according to claim 3, wherein the normalizing the total number of the broadband user online and offline times to obtain a normalized value of the total number of the broadband user online and offline times comprises:
acquiring total online and offline times of X broadband users corresponding to the target monitoring area in the previous X monitoring periods, and extracting the maximum total time and the minimum total time in the total online and offline times of the X broadband users; the target monitoring area corresponds to the total number of online and offline times of a broadband user in each monitoring period of the previous X monitoring periods, and X is an integer greater than 1;
calculating a first difference value between the total number of the broadband users who are on and off the line corresponding to the current monitoring period of the target monitoring area and the minimum total number, and calculating a second difference value between the maximum total number and the minimum total number;
and taking the ratio of the first difference value to the second difference value as a normalization value of the total online and offline times of the broadband user corresponding to the current monitoring period of the target monitoring area.
6. The method of claim 3, further comprising:
constructing a region level vector diagram according to the level relation between all levels of administrative regions, wherein the region level vector diagram displays the marks of all levels of administrative regions;
after generating a broadband abnormal alarm aiming at the target monitoring area, acquiring a query request of a user aiming at the target monitoring area;
and if the target monitoring area is selected from the administrative areas of all levels, displaying the online rate, the total online and offline times of the broadband user, the fluctuation rate and the broadband health degree corresponding to the target monitoring area in the area level vector diagram according to the query request.
7. The method of claim 3, further comprising:
constructing a device level vector diagram according to the level relation among all levels of broadband providing devices, wherein the device level vector diagram displays the identification of all levels of broadband providing devices;
after generating a broadband abnormal alarm aiming at the target monitoring area, acquiring a query request of a user aiming at the target monitoring area;
and if the target monitoring area is selected from the broadband providing areas corresponding to the broadband providing equipment at each level, displaying the online rate, the total online and offline times of the broadband users, the fluctuation rate and the broadband health degree corresponding to the target monitoring area in the equipment level vector diagram according to the query request.
8. A broadband traffic monitoring device, comprising:
the area determining module is used for selecting a target monitoring area in each administrative area covered by the broadband service, or selecting a target monitoring area in broadband providing areas respectively corresponding to each broadband providing device;
the data acquisition module is used for acquiring the number of broadband online users, the number of broadband registered users and the total number of online and offline times of the broadband users in the target monitoring area in the current monitoring period, and acquiring the number of communication users executing communication behaviors based on the broadband service in the target monitoring area in the previous N monitoring periods; n is an integer greater than 1;
the index confirmation module is used for determining the broadband health degree corresponding to the target monitoring area in the current monitoring period according to the number of the broadband online users, the number of the broadband registered users, the total number of online and offline times of the broadband users and the number of the communication users; the broadband health is used for representing the broadband communication quality of the target monitoring area;
and the broadband alarm module is used for judging whether to generate a broadband abnormity alarm aiming at the target monitoring area according to the broadband health degree.
9. A broadband traffic monitoring device, comprising: memory, processor and computer program stored on the memory and executable on the processor, which computer program, when executed by the processor, carries out the steps of the broadband traffic monitoring method according to any one of claims 1 to 7.
10. A computer-readable storage medium, characterized in that the computer-readable storage medium has stored thereon a computer program which, when being executed by a processor, carries out the steps of the broadband traffic monitoring method according to any one of claims 1 to 7.
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115842760A (en) * 2022-12-08 2023-03-24 中国联合网络通信集团有限公司 Fault detection method and device, electronic equipment and storage medium
CN116056123A (en) * 2023-03-24 2023-05-02 新华三技术有限公司 Equipment detection method and device, electronic equipment and storage medium

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101056193A (en) * 2006-05-12 2007-10-17 华为技术有限公司 A network operation analysis server, analysis system and analysis method
US7843964B1 (en) * 2005-12-31 2010-11-30 At&T Intellectual Property Ii, L.P. Method and apparatus for dynamically adjusting broadband access bandwidth
CN102740247A (en) * 2011-04-15 2012-10-17 中国移动通信集团山东有限公司 Method and device for generating warning message
CN103414958A (en) * 2013-08-21 2013-11-27 中广有线信息网络有限公司 Cable television network broad band user experience evaluation system
CN104320795A (en) * 2014-10-17 2015-01-28 四川公用信息产业有限责任公司 Evaluation method for health degree of multidimensional wireless network
CN104778642A (en) * 2015-03-20 2015-07-15 北京邮电大学 Data processing method, server and monitoring system for campus users based on WiFi
CN106209472A (en) * 2016-07-26 2016-12-07 长沙湘移通信技术有限公司 A kind of broadband user's data mining and the method for early warning
CN106376032A (en) * 2016-08-31 2017-02-01 鲁向东 Method and apparatus for automatically identifying hotspot area
CN107087284A (en) * 2016-02-16 2017-08-22 大唐移动通信设备有限公司 Quality control method and monitoring system, the server of a kind of network cell

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7843964B1 (en) * 2005-12-31 2010-11-30 At&T Intellectual Property Ii, L.P. Method and apparatus for dynamically adjusting broadband access bandwidth
CN101056193A (en) * 2006-05-12 2007-10-17 华为技术有限公司 A network operation analysis server, analysis system and analysis method
CN102740247A (en) * 2011-04-15 2012-10-17 中国移动通信集团山东有限公司 Method and device for generating warning message
CN103414958A (en) * 2013-08-21 2013-11-27 中广有线信息网络有限公司 Cable television network broad band user experience evaluation system
CN104320795A (en) * 2014-10-17 2015-01-28 四川公用信息产业有限责任公司 Evaluation method for health degree of multidimensional wireless network
CN104778642A (en) * 2015-03-20 2015-07-15 北京邮电大学 Data processing method, server and monitoring system for campus users based on WiFi
CN107087284A (en) * 2016-02-16 2017-08-22 大唐移动通信设备有限公司 Quality control method and monitoring system, the server of a kind of network cell
CN106209472A (en) * 2016-07-26 2016-12-07 长沙湘移通信技术有限公司 A kind of broadband user's data mining and the method for early warning
CN106376032A (en) * 2016-08-31 2017-02-01 鲁向东 Method and apparatus for automatically identifying hotspot area

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115842760A (en) * 2022-12-08 2023-03-24 中国联合网络通信集团有限公司 Fault detection method and device, electronic equipment and storage medium
CN116056123A (en) * 2023-03-24 2023-05-02 新华三技术有限公司 Equipment detection method and device, electronic equipment and storage medium
CN116056123B (en) * 2023-03-24 2023-06-20 新华三技术有限公司 Equipment detection method and device, electronic equipment and storage medium

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