CN112583915A - Report data pushing method and device - Google Patents

Report data pushing method and device Download PDF

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CN112583915A
CN112583915A CN202011445545.5A CN202011445545A CN112583915A CN 112583915 A CN112583915 A CN 112583915A CN 202011445545 A CN202011445545 A CN 202011445545A CN 112583915 A CN112583915 A CN 112583915A
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report
title node
time
access
title
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CN112583915B (en
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万亿兵
曾可
陈亚锋
冯期明
邵海涛
罗锶
卢道和
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WeBank Co Ltd
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WeBank Co Ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/55Push-based network services
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/23Updating
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/90Details of database functions independent of the retrieved data types
    • G06F16/95Retrieval from the web
    • G06F16/953Querying, e.g. by the use of web search engines
    • G06F16/9535Search customisation based on user profiles and personalisation

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  • Databases & Information Systems (AREA)
  • Theoretical Computer Science (AREA)
  • Data Mining & Analysis (AREA)
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  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Networks & Wireless Communication (AREA)
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  • Information Transfer Between Computers (AREA)

Abstract

The embodiment of the invention relates to the field of data processing, in particular to a report data pushing method and device, which are used for solving the problem that the attention of a user cannot be reflected due to the fact that report sequencing and report contents are relatively fixed. The method comprises the following steps: determining the pushing sequence of each report according to the access condition of each report, wherein the access condition comprises the access times in a set period and the access time of each access; and aiming at any report form in each report form, determining the occupied position of each title node in the report form according to the browsing condition of each title node of the report form to obtain an updated report form, wherein the browsing condition comprises the stay time of a user on each title node when browsing the report form, and further pushing each updated report form according to the pushing sequence of each report form.

Description

Report data pushing method and device
Technical Field
The embodiment of the invention relates to the field of data processing, in particular to a report data pushing method and device.
Background
With the development of computer technology, more and more technologies (such as big data or cloud computing) are applied to the financial field, the traditional financial industry is gradually changing to financial technology, under the background of big data technology, reports have a very important status for enterprises and users, and at present, reports are mainly configured by a report platform using a template technology and business rules, so that the pushed report sequencing is relatively fixed, and the displayed content of the same report is consistent for all users, and the user attention cannot be accurately reflected.
Disclosure of Invention
The embodiment of the invention provides a report data pushing method and a report data pushing device, which are used for solving the problem that the attention of a user cannot be reflected due to the fact that report sequencing and report contents are relatively fixed.
In a first aspect, a method for pushing report data provided in an embodiment of the present invention includes:
determining the pushing sequence of each report according to the access condition of each report; the access condition comprises the number of access times in a set period and the access time of each access;
aiming at any report form in the report forms, determining the occupied position of each title node in the report forms according to the browsing condition of each title node of the report forms, and obtaining updated report forms; the browsing condition comprises the stay time of each title node when the report is displayed;
and pushing the updated reports according to the pushing sequence of the reports.
Through the mode, the pushing sequence of each report is updated according to the access condition of the user to each report, so that the dynamic adjustment of the pushing sequence of the reports is realized; and the report is updated according to the browsing condition of the user on each title node in any report, so that the operation is simple and convenient when the report content is adjusted, the user attention is reflected to the report content of any pushed report, and the user can browse the report content conveniently.
In one possible design, the obtaining of the browsing status of each title node of the report includes:
aiming at any title node in the report display process, when the title node is determined to be in a visible area, determining the stay time of the title node according to the operation information of the report;
and obtaining the browsing condition of each title node of the report according to the stay time of each title node.
By the method, the attention degree of the user to each title node in any report can be determined according to the stay time of the user to each title node in any report in the visual area, accurate and reliable basis is provided for further determining the occupied position of each title node in the report and obtaining the updated report, and therefore the same report is achieved, and intelligent and accurate personalized display is carried out according to the attention degree for different users.
In one possible design, the determining that the title node is in front of the visible area further includes:
if the title node is determined not to be in the visible area currently, determining whether the content corresponding to the title node is in the visible area according to the operation information of the user; and if the content corresponding to the title node is in the visible area, determining that the title node is in the visible area.
By the method, the analysis of different conditions of whether the title node in any report is in the visual area is realized, namely the analysis of different conditions of the title node and the content of the title node in the visual area is considered, so that the detection mode of the title node which is regarded as being in the visual area has higher reliability and accuracy.
In one possible design, determining whether a title node is in a viewable area includes:
acquiring a first offset of the title node relative to a root node in the report;
acquiring a second offset of the root node relative to the upper boundary of the visual area;
and if the sum of the second offset and the height of the visual area is greater than the sum of the first offset and the height of the title node, and the sum of the first offset and the height of the title node is not less than the second offset, the title node is in the visual area.
By the method, the actual situation that each title node in any report is in the visible area is accurately determined by analyzing the height of the visible area, the height of the title node, the root node and the relation of the title nodes, and the actual situation that the content corresponding to each title node is in the visible area is reflected.
In a possible design, the determining the stay time of the title node according to the operation information of the report includes:
monitoring a sliding event and/or a rolling event which triggers the report;
and determining the stay time of the title node according to the starting trigger time and the ending trigger time of the sliding event and/or the rolling event.
By the method, different events are triggered by different hand actions, namely sliding or rolling operations, of the user for checking different title nodes in the report, so that the determination of the stay time of each title node in any report is accurately obtained, and the determination of the stay time of the user for the report content corresponding to each title node is reasonably reflected.
In one possible design, the determining the dwell time of the title node according to the start trigger time and the end trigger time of the sliding event and/or the scrolling event includes:
determining a moving speed according to the starting trigger time and the ending trigger time of the sliding event and/or the rolling event;
and when the moving speed meets a set threshold value, determining the stay time of the title node according to the starting trigger time and the ending trigger time.
By the mode, the speed of the user in actually checking each title node to perform hand motion, namely sliding or rolling, is limited and analyzed according to the set threshold, so that the reasonable screening of the stay time of each title node is realized, and the accuracy of the determined stay time of each title node is further improved.
In a possible design, the determining the occupied position of each title node in the report according to the browsing condition of each title node in the report includes:
for any title node, determining the attention of each title node according to the accumulated value of each browsing condition of the title node in the set time period, wherein the stay time in the browsing condition is in a forward relation with the attention;
and determining the occupied position of each title node in the report according to the attention degree of each title node, wherein the higher the attention degree is, the more forward the position of each title node in the report is.
By the method, the attention degree of each title node is determined in the preset time period, and then the specific position of each title node in the report is determined according to the attention degree of each title node, so that the corresponding adjustment of the position of each title node in the report according to the attention degree of each title node is realized, the content with high attention degree can be quickly checked when each title node in any report is conveniently displayed, and the problem that the searching is not convenient enough due to the fact that the report data is too huge is avoided.
In a possible design, the determining, according to the access condition of the user to each report, the pushing order of each report includes:
sorting the reports for the first time according to the access times in the set time period;
according to the reports with the same access times, determining the access weight according to the access time, and performing secondary sequencing on the reports with the same access times according to the access weight to obtain the pushing sequence of each report; the access time comprises a first access time and a second access time, the first access time is the first N periods closest to the updating time, and the second access time is the first M periods before the first N periods.
By means of the method, the priority consideration of the access times of the reports is guaranteed, the weights are determined according to the access time aiming at the same access times, the obtained attention of the reports is more accurate, the flexible adjustment of the sequencing of the pushed reports is achieved, and the attention of the user is reflected more accurately.
In a second aspect, an embodiment of the present invention provides a report data pushing apparatus, including:
the processing module is used for determining the pushing sequence of each report according to the access condition of each report; the access condition comprises the number of access times in a set period and the access time of each access; aiming at any report form in the report forms, determining the occupied position of each title node in the report forms according to the browsing condition of each title node of the report forms, and obtaining updated report forms; the browsing condition comprises the stay time of each title node when the report is displayed;
and the pushing module is used for pushing the updated reports according to the pushing sequence of the reports.
In a possible design, the processing module is specifically configured to determine, for any title node in the process of displaying the report, a retention time of the title node according to the operation information of the report when the title node is determined to be in the visible area; and obtaining the browsing condition of each title node of the report according to the stay time of each title node.
In a possible design, the processing module is further configured to determine, if it is determined that the title node is not currently located in the visible area, whether the content corresponding to the title node is located in the visible area according to operation information of a user; and if the content corresponding to the title node is in the visible area, determining that the title node is in the visible area.
In a possible design, the processing module is further configured to obtain a first offset of the title node in the report relative to the root node; acquiring a second offset of the root node relative to the upper boundary of the visual area; and if the sum of the second offset and the height of the visual area is greater than the sum of the first offset and the height of the title node, and the sum of the first offset and the height of the title node is not less than the second offset, the title node is in the visual area.
In one possible design, the monitoring module is configured to monitor a sliding event and/or a rolling event that triggers the report; and determining the stay time of the title node according to the starting trigger time and the ending trigger time of the sliding event and/or the rolling event.
In one possible design, the monitoring module is specifically configured to determine a moving speed according to a start trigger time and an end trigger time of the sliding event and/or the rolling event; and when the moving speed meets a set threshold value, determining the stay time of the title node according to the starting trigger time and the ending trigger time.
In a possible design, the processing module is specifically configured to determine, for any title node, a degree of attention of each title node according to an accumulated value of each browsing situation of the title node in the set time period, where a staying time in the browsing situation and the degree of attention are in a forward relationship; and determining the occupied position of each title node in the report according to the attention degree of each title node, wherein the higher the attention degree is, the more forward the position of each title node in the report is.
In a possible design, the processing module is specifically configured to perform first sorting on the reports according to the number of accesses within the set time period; according to the reports with the same access times, determining the access weight according to the access time, and performing secondary sequencing on the reports with the same access times according to the access weight to obtain the pushing sequence of each report; the access time comprises a first access time and a second access time, the first access time is the first N periods closest to the updating time, and the second access time is the first M periods before the first N periods.
In a third aspect, an embodiment of the present invention further provides a computing device, including: a memory for storing a computer program; a processor for calling the computer program stored in said memory and executing the method as described in the various possible designs of the first aspect according to the obtained program.
In a fourth aspect, embodiments of the present invention also provide a computer-readable non-volatile storage medium, which includes a computer-readable program, which, when read and executed by a computer, causes the computer to perform the method as set forth in the various possible designs of the first aspect.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without inventive exercise.
Fig. 1 is a flowchart of a report data pushing method according to an embodiment of the present invention;
FIG. 2 is a flowchart illustrating updating the order of reports according to an embodiment of the present invention;
fig. 3 is a flowchart of a specific report data pushing method according to an embodiment of the present invention;
fig. 4 is a schematic structural diagram of a report data pushing device according to an embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application clearer, the present application will be described in further detail with reference to the accompanying drawings, and it is obvious that the described embodiments are only a part of the embodiments of the present application, 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 application.
Based on the above description, fig. 1 shows a flowchart of a report data pushing method provided by an embodiment of the present invention in detail, and as shown in fig. 1, the flowchart specifically includes:
step 101, determining the pushing sequence of each report according to the access condition of each report; the access condition comprises the access times in a set period and the access time of each access;
102, aiming at any report form in each report form, determining the occupied position of each title node in the report form according to the browsing condition of each title node of the report form, and obtaining an updated report form; the browsing condition comprises the stay time of each title node when the report is displayed;
and 103, pushing the updated reports according to the pushing sequence of the reports.
In the specific implementation process of step 101, for different business requirements, there are various reports, such as loan product business operation daily reports, application program business operation daily reports, deposit operation daily reports, cash desk operation daily reports, and the like, when a user accesses a report each time, there is a sequence of accessing the report, the report which is particularly concerned is generally accessed first, and the report with lower attention is less, the probability of access opening is lower, even no access is obtained, and according to the access condition of the user to various reports, it can be determined which report the user is more inclined to access. For example, if a user is engaged in a cash register operation, the access requirement for the cash register operation daily report is large. Through the step 101, the pushing condition of the user for each report can be determined according to the access times and the access time of the user for each report, the report frequently accessed by the user can be preferentially checked, the pushing sequence of each report can be dynamically adjusted along with the adjustment of the user for the access condition of each report, after each time of pushing the report, the attention ranking of the user for the report can be known according to the link times and the sequence of the reports accessed by the user, and in the next pushing, the pushing is performed after the sorting of the reports is adjusted according to the attention ranking of the user for the report, so that the attention degree of the user for each report is reflected by the rough rate of the sorting of the reports obtained by the user.
In the specific implementation process of step 102, after the user clicks the report link and jumps to open the report page, the report content needs to be updated by the hand operation of the user, and each title node and the content corresponding to each title node in the report are browsed. For each form or view of the report, two parts of a title and a content are included, title nodes belong to the same level, all the title nodes of the level can be extracted through an element path of a DOM (Document Object Model), and the title nodes can be used for positioning the starting position of the corresponding form or view, namely the starting position of the corresponding content; therefore, according to the stay time of the user for each title node in the report, the user can determine which report contents are concerned more, so that the position sequence of each title node and the corresponding content of the title node in the report is adjusted and updated, and the title node with the long stay time is preferentially displayed on the report page.
In step 103, by obtaining the updated reports and the pushing sequence of the reports in the above steps 101 and 102, step 103 may be executed to push the updated reports to the user, so that the user may access the report with high attention first when viewing the reports next time, and may also click on the report link, jump to open the report page, and then may preferentially browse the content of interest of the user, without browsing the content of interest in the huge report data through too many hand operations.
Updating the pushing sequence of each report according to the access condition of the user to each report, thereby realizing the dynamic adjustment of the pushing sequence of the reports; and the report is updated according to the browsing condition of the user on each title node in any report, so that the operation is simple and convenient when the report content is adjusted, the user attention is reflected to the report content of any pushed report, and the user can browse the report content conveniently.
In step 101, according to the access condition of the user to each report, the push sequence of each report is determined, and several possible implementation manners are provided as follows.
Firstly, sorting all reports for the first time according to the access times in a set time period; according to the reports with the same access times, determining the access weight according to the access time, and performing secondary sequencing on the reports with the same access times according to the access weight to obtain the pushing sequence of each report; the access time comprises a first access time and a second access time, the first access time is the first N periods closest to the updating time, and the second access time is the first M periods before the first N periods. As shown in fig. 2, a specific implementation process is provided for determining the update sequence of each report in the first manner, and includes:
step 201, sorting each report for the first time according to the access times in a set time period; after the access times of the reports of the user are sorted for the first time, that is, sorted for the first time from the access times dimension, for each report to be sorted having the same number of clicks, step 202 is executed from the time dimension.
Step 202, determining the corresponding access weight of each report with the same access frequency according to the access time, wherein the access weight reflects the attention of each report with the same access frequency. The attention of each report is calculated by the following formula (1):
L=∑Wt*Lt……(1)
l represents the weighted sum of skip links of each report clicked each time in a pushing period, and the attention degree of the report is represented by the access weight weighted sum of the report obtained through calculation; lt represents whether each report form skip link is clicked, 1: there is a jump, 0: if not, namely the number is 1 when the report is accessed, effective calculation is included, and if the report is not accessed, the number is 0, and because the report is calculated aiming at the report with the same click times, Lt is taken as 1; only Wt needs to be calculated, wherein Wt represents the access weight of each report jump link clicked each time, and the value is a real number of [0, 1 ].
For the access weight of each report accessed every time, the access time from the last pushing to the current pushing, namely, the access time of each report accessed by the user in the pushing period, is recorded, and the formula (2) calculates the access time of each report:
Δt=(t1-t0)/60……(2)
the time for pushing each report last time is used as the starting time t0, and the click link jumping time of each report by the user is used as the click time t1, wherein the units of t0 and t1 are s (seconds); Δ t is the access time distance of each report in min (minutes).
Taking the push cycle as 24h (one day) as an example, when Δ t is less than 1 × 1440min, the first visit time is less than 1 × 1440min, the value range of N is 1 day, the second visit time is greater than 1 × 1440min, and the value range of M is an integer greater than 1; when the pushing cycle is 48h, for example, Δ t is less than 2 × 1440min, the first visit time is less than 2 × 1440min, the value range of N is 2 days, the second visit time is greater than 2 × 1440min, and the value range of M is an integer greater than 2; and determining the values of N and M by analogy. Calculation of the access weight Wt for each access to the report, as follows, equation (3) and equation (4) and equation (5), where:
Wt1=(1-α)*(1–Δt/1440)……(3)
Wt2=[α*(Δt%1440)]/(1440*ceil(Δt/1440))……(4)
Wt=Wt1+Wt2……(5)
wherein ceil in formula (4) represents rounding up, e.g., 0.3 rounding up is 1, and% represents modulo, e.g., 7% 4 ═ 3; in the formula (3) and the formula (4), alpha can be 0 or 1; when the value of α is 0, it indicates that the accessed report is clicked at the first access time, then the access weight of each report can be calculated by formula (3), and it can be known that the closer the access time for clicking the skip link of each report is to the push time, the greater the weight is, the closer the weight is to 1.0, at this time, Wt2 in formula (4) is 0, and Wt1+ Wt2 is Wt 1; when α is 1, it indicates that clicking each report jump link is completed at the second access time, then the access weight of each report can be calculated by formula (4), and in formula (3), Wt1 is 0, and Wt1+ Wt2 is Wt 2.
According to the formula, the access weight Wt of each report jump link is clicked each time, one of Wt1 and Wt2 is taken, and for a user, the report pushed at the first access time can be accessed, and the report pushed at the second access time can be accessed. After steps 201 and 202 are executed, step 203 can be executed to obtain the pushing sequence of each report. The method and the device can complete calculation of the attention of each report. Before the business report is pushed every time, the access weight of each report accessed by the user since the last time of pushing the report is calculated, the attention of each report accessed by the user is obtained, and the reports are sequentially sequenced according to the attention, so that the user can see that each report is the updated and adjusted report.
For example, the reports include a loan product business operation daily report (denoted as report a), an application business operation daily report (denoted as report B), a deposit operation daily report (denoted as report C), a cashier desk operation daily report (denoted as report D), and the order of pushing each report from the last time is as follows: report A-report B-report C-report D; the last push time is t0 ═ 0:00, finishing clicking in a period aiming at each report, wherein the user of the report A accesses 7 times, the user of the report B accesses 10 times, the user of the report C accesses 3 times, and the user of the report D accesses 3 times, then sequencing each report for the first time according to the access times from high to low, knowing that the access times of the report B is greater than that of the report A, and the access times of the report C and the report D are the same; recording access time is respectively 18:00, 20:00 and 21:00 aiming at the three times of access of the report C, and recording access time is respectively 15:00, 18:00 and 20:00 aiming at the three times of click of the report D; calculating the access weight Wt of each report access according to the formula (3) and the formula (4), wherein since each report completes clicking in one period, α is known to be 0, that is, Wt2 ═ α (Δ t% 1440) ]/(1440 × ceil (Δ t/1440)) ═ 0 of each report; further, access weights were calculated for report C and report D, respectively, based on Wt1 ═ 1- α (1- Δ t/1440), yielding table 1.
TABLE 1
Report C Report D
First visit (visit weight) 0.25 0.38
Second visit (visit weight) 0.17 0.25
Third visit (visit weight) 0.13 0.17
Access weight weighted sum 0.56 0.79
As can be seen from Table 1, the attention of report C is 0.56; the attention degree for the report D is 0.79, and the sorting condition for pushing each report this time is as follows: report B-report A-report D-report C.
For example, taking a cycle of 24h as an example, the starting time of pushing the report E, the report F, and the report G last time is t0 ═ 0:00, if the report E, the report F, and the report G are clicked once in a cycle after a cycle, for example, the jump link is clicked on the report E after 26h, then t1 ═ 26h, and α is known to be 1, that is, Wt1 of the report E is (1- α) × (1- Δ t/1440) ═ 0; further, according to Wt2 ═ α (Δ t% 1440) ]/(1440 ceil (Δ t/1440)), the report E was calculated an access weight:
Wt2=[α*(Δt%1440)](1440 × ceil (Δ t/1440)) -120/(1440 × ceil (1.08)) -120/(1440 × 2) -0.04; then LEThe result is that the access weight of the report E in a period after one period is 0.04, that is, the attention of the report E is 0.04. The method for determining the access weight according to the second access time is given by the formula, so that the reports with the same access times can be further sorted for the second time according to the access weight, and the pushing sequence of each report is obtained.
By the aid of the method, the priority consideration of the access times of the reports is guaranteed, the weights are determined according to the access time aiming at the same access times, the obtained attention of the reports is more accurate, flexible adjustment of the pushed ordering of the reports is achieved, and the attention of a user is reasonably reflected.
And secondly, knowing according to the access condition of the user to each report, the user can access the report with high user attention preferentially, namely, the reports can be firstly sorted according to the access time in a set time period, the access time threshold can be set, the access time of the report lower than the access time threshold is not counted, the report lower than the access time threshold can be considered, and the attention is 0. And obtaining the pushing sequence of each report form through the second mode. The method for determining the pushing sequence of each report is not limited in the present application, and a person skilled in the art may adopt different methods according to actual needs.
In step 102, a specific implementation manner is provided as follows for obtaining the browsing condition of each title node of the report by the user for any report in each report.
And aiming at any title node in the report displaying process, when the title node is determined to be in the visible area, determining the stay time of the title node according to the operation information of the report, and further obtaining the browsing condition of each title node of the report according to the stay time of each title node.
After clicking a report link and jumping to open a report page, a user can enable the report content to be browsed to be in a visual area through hand operation and the like, for example, the visual area is a visual window of a terminal device such as a smart phone and a computer, and then the browsing condition of each title node in the report displaying process is displayed, for example, the time for the interested title node is long, and the time for the irrelevant title node and the content corresponding to the title node is short. Recording the time of entering the report page every time, and indicating that the report page is in an active state, namely in a browsing state; and recording the time of leaving the report page every time, indicating that the page is in invisible or leaving states, namely not in a browsing state, and when the report page is in an active state, acquiring the specific stay time of the user for each title node to determine the content attention degree condition of the user for the title nodes and the corresponding title nodes.
For example, if the user is working in a cash register service, then when accessing a cash register operating diary (denoted as statement D), because the report D has various title nodes and contents corresponding to the title nodes, such as service data statistics, product general statistics, account balance of a cooperation platform, account opening statistics, platform customer statistics and the like, a user can enable the title node of the product general statistics to be in a visual area by sliding a screen of the smart phone, the retention time of the user in the content part of the product general statistics report is determined to be 50s, the stay time of business data statistics, cooperation platform account balance, account opening statistics, platform customer number statistics and the like is determined to be 30s, 1s, 40s, 20s and the like, and through the stay time of each title node, it can be seen how the user browses the content for each title node and each title node.
Another possible implementation manner is that, when determining that a user views each title node in a visible area for any title node in the process of displaying the report, the moving speed of viewing each title node is determined according to the operation of the user on the report, and the viewing condition of the user on each title node of the report is determined according to the speed value.
For the judgment of whether each title node is in the visible area, a specific implementation manner is provided as follows:
acquiring a first offset of a title node relative to a root node in a report and a second offset of the root node relative to an upper boundary of a visible area; and if the sum of the second offset and the height of the visible area is greater than the sum of the first offset and the height of the title node, and the sum of the first offset and the height of the title node is not less than the second offset, the title node is in the visible area.
When the report content is browsed, the first offset of each title node, the actual size and the outer margin of each title node, namely the height of each title node, are sequentially obtained, and after the report page is generated, the height of each title node is fixed.
The specific way to obtain each offset data is as follows:
height ($ (window). height ()), representing the height of the visible area;
outer _ height ═ $ ('# title'). outer height (), denotes the height of the title node, i.e., the height of the actual size of the title node;
offset _ top ═ $ (' # title). offset (). top, representing the first offset of the title node relative to the root node in the report; the absolute offset of the title node relative to the root node of the report page can be understood, namely the distance from the upper boundary of the actual frame of the title node to the top end of the page;
scroll _ top ═ window (scrollTop) denotes the second offset of the root node relative to the border on the visible area, where the root node can be understood as the top of the report page;
judging whether each title node is in the visible area or not according to whether the sum of the second offset and the height of the visible area is larger than the sum of the first offset and the height of the title node or not and whether the sum of the first offset and the height of the title node is not smaller than the second offset; if:
if the control _ top + height > offset _ top + outer _ height > -control _ top, it indicates that the title node is in the visible area;
for example, when the visual area is at the initial position, that is, there is no mobile report content, the second offset of scroll _ top is 0, the first offset of the first title element node is 100px, and the height of the visual area is 600 px; the height of the first header node is: outer _ height ═ 20 px; it can be known that: scroll _ top + height > offset _ top + outer _ height > -scroll _ top, i.e. 0+600>100+20> 0; therefore, it can be determined that the title node is in the visible area.
The above provides a specific way of determining whether the title node is in the visible area, and then determines that each title node is in the visible area for a specific situation that each title node is actually in the visible area, and a specific implementation is provided as follows:
if the title node is determined not to be in the visible area currently, determining whether the content corresponding to the title node is in the visible area according to the operation information of the user; and if the content corresponding to the title node is in the visible area, determining that the title node is in the visible area.
Whether the title node is regarded as being in the visible area or not is measured, further analysis can be carried out according to the hand operation information of the user, and if the title node is determined to be located at the upper edge of the visible area, even if only one part of the title node is visible, the content of the title node is visible, and the title node is regarded as being in the visible area; if the title node is positioned at the lower edge of the visible area, and when the title node is partially visible, the content of the title node is invisible, the title node is not considered to be positioned in the visible area; if the visible area has no title node, the content corresponding to the title node is determined to be in the visible area, and the title node is determined to be in the visible area at the previous moment, then the partial report content is the content corresponding to the title node, and then the title node is determined to be in the visible area.
In a possible embodiment, the following conditions may be used: and if the title node is determined not to be in the visible area currently and the title node is in the visible area at the previous moment, determining that the content corresponding to the title node is in the visible area according to the operation information of the user, and further determining that the title node is in the visible area.
For example, the height of the viewable area is: height is 600px, and in the report, the second offset of the root node relative to the boundary on the visual area is: scroll _ top is 100 px;
the height of the title node P is: outer _ height ═ 20 px;
the first offset of the header node P is: offset _ top is 20 px;
the height of the title node Q is: outer _ height ═ 20 px;
the first offset of the header node Q is offset _ top ═ 800 px;
then, the title node P is computed: offset _ top + out _ height is 40px, so that offset _ top + out _ height < scroll _ top, i.e., 40px <100px, the header node P is above the upper boundary of the viewable area; calculating the header node Q, wherein offset _ top + out _ height is 820 px; then the judgment is made according to the condition of scroll _ top + height > offset _ top + outer _ height > -scroll _ top: the condition 700px >820px >100px is not satisfied, and therefore, if the title node Q is below the lower boundary and none of the neighboring nodes is in the visible area, the content corresponding to the title node of the visible area is regarded as the content of the title node P in the visible area at the previous moment, and the title node P is regarded as being in the visible area. If the title P is determined to be in the visible area, the dwell time of the title node P can be regarded as valid data.
By the method, whether the title node in any report is in the visual area or not is analyzed, the title node in the visual area in any report is determined, reasonable consideration that the content of the title node is not in the visual area and the corresponding title content is in the visual area is considered, and the actual situation that the content corresponding to each title node is in the visual area is reflected.
After determining that each title of any report is in the visible area, determining browsing information of title nodes according to operation information of a user on each title node, and providing a specific implementation manner as follows:
monitoring a sliding event and/or a rolling event which triggers the report, and determining the stay time of the title node according to the starting trigger time and the ending trigger time of the sliding event and/or the rolling event.
The determination of the stay time of each title node and corresponding content in the report page by the user can be obtained by monitoring the event of the user operation page, and simultaneously recording the event trigger time.
When the document loading is completed, it is marked as an initial time Ts 0; recording each title node in a visible area, such as title node a and title node b; when monitoring a sliding event of a user operation page, such as touchStart, touchEnd and other events, recording touchStart event start trigger times Ts1 and Ts2 … of each title node; recording ending trigger time Te1, Te2 and … of the touchEnd event; recording title node lists of the visual areas at different trigger time points aiming at different start trigger time and end trigger time, wherein when the start trigger time is recorded as Ts1, the title nodes of the visual areas are title node a and title node b; when the triggering time Te1 is finished, the title nodes of the visible area are title node b and title node c; when the starting triggering time is Ts2, the title nodes of the visual area are a title node b and a title node c; when the triggering time Te2 is finished, the title nodes of the visible area are a title node d and a title node e; by analogy, the description is omitted here; then, the dwell time of the title node a and the title node b can be obtained through the difference value Ts1-Ts 0; the residence time lengths of the title node a, the title node b and the title node c can be obtained through the difference Te1-Ts1, which can be understood as the residence time lengths of the title nodes a, b and c, the average distribution time, and 1/4,2/4 and 1/4 of Te1-Ts1 with the obtained residence time lengths of the title nodes a, b and c being the difference; the dwell time lengths of the title node b and the title node c can be obtained through the difference Te2-Ts2, which can be understood as the dwell time lengths of the title nodes b, c, b and c, the average distribution time, and 1/2 and 1/2 of Te2-Ts2, wherein the dwell time lengths obtained by the title nodes b and c are the difference; by analogy, after the condition that each title of any report is in the visible area is determined by the method, the stay time of the title node is determined.
When a scroll event of a user operation page, such as a scroll event, is monitored, the scroll event start trigger times Ts1, Ts2 and … and the window top offset are recorded, a timer is started, when the window scrolling top offset is not changed, trigger end times Te1, Te2 and … are recorded, and the stay duration of each title node is recorded aiming at each title node in a visual area.
For example, for a user browsing the operation daily report of the cash register, the report content includes service data statistics, product profile statistics, account balance of the cooperation platform, account opening statistics, platform client number statistics, etc., when the user browses the two title nodes and corresponding content of the service data statistics and account opening statistics, browsing the content by sliding the hand, and aiming at the two title nodes, each sliding of the operation page by the user, the starting time of the sliding, i.e., the start trigger time, and the end trigger time when the screen content is no longer moving, and the title node of the current viewable area, are recorded, then, for a number of user swipes of the two title nodes, the dwell time for the "traffic data statistics" of the title node and the "account opening statistics" of the title node are recorded separately.
The difference of the attention situation of the user to each title node in any report causes the specific situation of monitoring the sliding event and/or the rolling event of the user to be different, and the stay time of the title node is determined according to the starting trigger time and the ending trigger time of the sliding event and/or the rolling event, and a specific implementation mode is provided as follows:
and determining the moving speed according to the starting trigger time and the ending trigger time of the sliding event and/or the rolling event, and determining the stay time of the title node according to the starting trigger time and the ending trigger time when the moving speed meets a set threshold value.
When a sliding event of a user operation page is monitored, determining starting trigger time Ts1, Ts2 and … through touchStart, touchEnd and other events; and ending trigger time Te1, Te2, …, further monitoring a touchMove event, recording the moving speed of a second offset of the touchMove event during the duration, judging whether the moving speed of the second offset accords with the sliding speed of a daily user when browsing report contents according to a set threshold, if the moving speed of the second offset is higher than the set threshold, indicating that the title node is fast moving, and if the moving speed of the second offset is lower than the set threshold, indicating that the title node is slow moving, ignoring the title node corresponding to the fast moving, and keeping the stay time of the title node corresponding to the slow moving. It should be noted that, a person skilled in the art may set the set threshold according to practical experience, for example, the set threshold is set to be a threshold that moves 200 pixels in a vertical direction for 100 milliseconds, and the embodiment of the present application is not particularly limited.
When a scroll event of a user operation page, such as a scroll event, is monitored, a start trigger time Ts1, Ts2, … and an end trigger time Te1, Te2, … are determined, a second offset is recorded, when page scrolling stops, a scrolling direction and a scrolling speed are recorded, each title node passed by a visual area is determined through the scrolling direction, the scrolling speed when the passed title nodes meet the daily user browsing report content is determined through the recorded scrolling speed, the title nodes meeting the conditions in the passed title nodes are determined according to a set threshold, and the stay time of the title nodes corresponding to the part of title nodes is reserved.
The method and the device have the advantages that different events triggered by different hand actions are realized aiming at different hand actions, namely sliding or rolling operations, of a user on each title node in a browsed report, further, the determination of the stay time of each title node in any report is accurately obtained, the determination of the stay time of the user on the report content corresponding to each title node is reasonably reflected, the speed of the user in actually browsing each title node through the setting of a threshold value is limited and analyzed, the reasonable screening of the stay time of each title node is realized, and the accuracy of the determined stay time of each title node is further improved.
According to the browsing condition of the user to each title node of the report, determining the occupied position of each title node in the report, and providing a specific implementation mode as follows:
for any title node, determining the attention of each title node according to the accumulated value of each browsing condition of the title node in a set time period, wherein the stay time in the browsing condition is in a positive relation with the attention; and determining the occupied position of each title node in the report according to the attention degree of each title node, wherein the higher the attention degree is, the more forward the position of each title node in the report is.
The above contents have been described in detail, and are not described herein again, specifically, the manner of recording the stay time for each operation of the user, and obtaining the stay time for any title. Determining the accumulated value of each browsing situation in a set period of time when the stay time of any title node is recorded to the page operated by the user each time, wherein for each title node, the higher the attention degree of the user to the title node, the larger the accumulated value of the corresponding stay time, and calculating the attention degree of each title node by a formula (6):
Ri=∑(Wij*Sij)......(6)
wherein, i represents a title node number, and the value is an integer greater than or equal to 0, for example, if the 2 nd title node of the report is 1; j represents the sequence number of the browsing times of the user obtained by the title node, the report content in the visible area moves back and forth, the same title node can obtain attention at different time points, and different number marks are used, for example, for a first title node, a first browsing and a second browsing exist during the operation of the user, j is 1 for the first browsing, and j is 2 for the second browsing; sij represents whether the title node is displayed in a visible area, 0: not displayed and 1: displayed; wij represents the weight of the title node i when obtaining attention for the jth time; ri represents the accumulated value of the corresponding stay time length of the title node i since the last push, namely the user attention obtained by the title i.
The calculation mode for the weight Wij is that the ratio of the stay time of each time for browsing the title node and the corresponding content to the total user in the set time period is the weight corresponding to the browsing.
For example, for a report of a cashier desk daily report, there are 20 title nodes and corresponding contents of the title nodes, where for a 6 th title node of "business data statistics", i.e., i is 6, and j is 1.. 6; the user browses the content in 5 minutes, and performs 6 sliding operations, each time of stay duration and corresponding weight, to obtain table 2.
TABLE 2
For the first time For the second time The third time Fourth time Fifth time The sixth time
Dwell time(s) 30 10 20 15 20 15
Weight of 0.1 0.03 0.06 0.05 0.06 0.05
As can be seen from table 2, when Ri ═ Σ (Wij × Sij) ═ 0.35, the attention degree of the 6 th title node is 0.35, and it can be seen that the attention degree of the user to any title node can be calculated in the same manner, and for each title node, the longer the stay time is, the higher the attention degree of the user to the title node is, and the position of each title node in the report is adjusted and updated according to the attention degree of each title node, so that the title node with the high attention degree is determined, and the position in the report is located at the front. And updating the report according to the pushing sequence of the title nodes of the report, so that the title nodes with high attention of any updated report can be preferentially displayed in front of the report, thereby facilitating the user to browse the contents with high attention when browsing the title nodes in any report, and avoiding the problem of inconvenient searching for the user due to excessively large report data. And aiming at the position sequence of each title node in any updated report, a navigation anchor label can be generated aiming at any report, and a user can quickly position the report content to be concerned when browsing the content.
Fig. 3 is a flowchart of a specific report data pushing method according to an embodiment of the present invention;
the method specifically comprises the following steps:
in steps 301 to 302 (same as steps 201 to 203), the push sequence of each report is adjusted, and the specific process has been described in detail above and is not described herein again.
Step 303, judging each title node when the title node is in a visible area aiming at any title node in the process of browsing the report form by the user; according to the browsing condition of the user on each title node in any report, which part of title nodes and corresponding contents are currently in the visible area can be determined, and according to the actual condition that each title node is judged to be in the visible area, step 304 is executed on each title node in the visible area, and step 304 is not executed on the title nodes which are not currently in the visible area. The above description is provided in detail for a specific method for determining whether each title node is in the visible area.
Step 304, monitoring a sliding event and/or a rolling event of a report triggered by a user; when the user views each title node and corresponding content in the report, browsing is realized by sliding or rolling hands, and corresponding monitoring events are triggered according to different hand operations of the user, and step 305 is executed.
Step 305, determining the stay time of the title node according to the start trigger time and the end trigger time of the sliding event and/or the rolling event; for any title node, determining the attention of each title node according to the accumulated value of each browsing condition of the title node in a set time period;
after step 304 is executed, for each sliding or rolling of the user, a corresponding sliding event or rolling event is triggered, the stay time of browsing any node every time is recorded, a reasonable stay time is screened according to a set threshold, the attention degree of each title node is determined according to the accumulated value of the stay time of each title node in a preset time period, the higher the accumulated value of the stay time is, the higher the attention degree of the corresponding title node is, and the sequence of each title node in the report is updated and adjusted according to the sequence of the attention degrees.
And step 306, pushing the updated reports according to the pushing sequence of the reports. The updated reports are pushed according to the updated reports, so that a user can preferentially browse the reports with high attention and corresponding report contents with high attention according to the pushed updated reports.
From the above, it can be seen that: the embodiment of the invention provides a report data pushing method and a related device, wherein the pushing sequence of each report is determined according to the access condition of a user to each report, and the access condition comprises the access times in a set time period and the access time of each access; and aiming at any report form in each report form, determining the occupied position of each title node in the report form according to the browsing condition of each title node of the report form by a user to obtain an updated report form, wherein the browsing condition comprises the stay time of each title node when the report form is displayed, and further pushing each updated report form according to the pushing sequence of each report form. Updating the pushing sequence of each report according to the access condition of the user to each report, thereby realizing the dynamic adjustment of the pushing sequence of the reports; and the report is updated according to the browsing condition of the user on each title node in any report, so that the operation is simple and convenient when the report content is adjusted, the user attention is reflected to the report content of any pushed report, and the user can browse the report content conveniently.
Fig. 4 exemplarily shows a schematic structural diagram of a report data pushing device according to an embodiment of the present invention.
Based on the same concept, the schematic structural diagram of the report data pushing apparatus 400 provided in the embodiment of the present invention, as shown in fig. 4, includes:
the processing module 401 is configured to determine a pushing sequence of each report according to an access condition of each report; the access condition comprises the access times in a set period and the access time of each access; aiming at any report form in each report form, determining the occupied position of each title node in the report form according to the browsing condition of each title node of the report form to obtain an updated report form, wherein the specific browsing condition comprises the stay time of each title node when the report form is displayed;
the pushing module 403 is configured to push each updated report according to the pushing sequence of each report.
In a possible design, the processing module 401 is specifically configured to determine, for any title node in the process of displaying the report, a retention time of the title node according to the operation information of the report when the title node is determined to be in the visible area; and obtaining the browsing condition of each title node of the report according to the stay time of each title node.
In a possible design, the processing module 401 is further configured to determine, according to operation information of a user, whether a content corresponding to the title node is in the visible area if it is determined that the title node is not currently in the visible area, and determine that the title node is in the visible area if the content corresponding to the title node is in the visible area.
In a possible design, the processing module 401 is further configured to obtain a first offset of the title node in the report relative to the root node, and obtain a second offset of the root node relative to the boundary on the visual area; and if the sum of the second offset and the height of the visual area is greater than the sum of the first offset and the height of the title node, and the sum of the first offset and the height of the title node is not less than the second offset, indicating that the title node is in the visual area.
In one possible design, the monitoring module 402 is configured to monitor a sliding event and/or a rolling event that triggers the report; and determining the stay time of the title node according to the starting trigger time and the ending trigger time of the sliding event and/or the rolling event.
In one possible design, the monitoring module is specifically configured to determine the moving speed according to a start trigger time and an end trigger time of the sliding event and/or the scrolled event; and when the moving speed meets a set threshold, determining the stay time of the title node according to the starting trigger time and the ending trigger time.
In a possible design, the processing module 401 is specifically configured to determine, for any title node, the attention of each title node according to an accumulated value of each browsing condition of the title node in a set time period, where a staying time duration in the browsing condition is in a forward relationship with the attention; and determining the occupied position of each title node in the report according to the attention degree of each title node, wherein the higher the attention degree is, the more front the position of each title node in the report is.
In a possible design, the processing module 401 is specifically configured to sort the reports for the first time according to the number of accesses within a set time period; according to the reports with the same access times, determining the access weight according to the access time, and performing secondary sequencing on the reports with the same access times according to the access weight to obtain the pushing sequence of each report; the access time comprises a first access time and a second access time, the first access time is the first N periods closest to the updating time, and the second access time is the first M periods before the first N periods.
Based on the same inventive concept, the embodiment of the present invention further provides another computer device, which may specifically be a desktop computer, a portable computer, a smart phone, a tablet computer, a Personal Digital Assistant (PDA), and the like. The computer device may include a Central Processing Unit (CPU), a memory, an input/output device, etc., the input device may include a keyboard, a mouse, a touch screen, etc., and the output device may include a Display device, such as a Liquid Crystal Display (LCD), a Cathode Ray Tube (CRT), etc.
The memory may include Read Only Memory (ROM) and Random Access Memory (RAM), and provides the processor with program instructions and data stored in the memory. In the embodiment of the present invention, the memory may be used to store the program of the report data pushing method.
The processor is used for executing the report data pushing method according to the obtained program instruction by calling the program instruction stored in the memory.
Based on the same inventive concept, an embodiment of the present invention provides a computer storage medium for storing computer program instructions for the computer device, which includes a program for executing the report data pushing method.
The computer storage media may be any available media or data storage device that can be accessed by a computer, including, but not limited to, magnetic memory (e.g., floppy disks, hard disks, magnetic tape, magneto-optical disks (MOs), etc.), optical memory (e.g., CDs, DVDs, BDs, HVDs, etc.), and semiconductor memory (e.g., ROMs, EPROMs, EEPROMs, non-volatile memory (NAND FLASH), Solid State Disks (SSDs)), etc.
It will be apparent to those skilled in the art that various modifications and variations can be made in the embodiments of the present invention without departing from the spirit and scope of the application. Thus, if such modifications and variations of the embodiments of the present invention fall within the scope of the claims of the present application and their equivalents, the present application is also intended to encompass such modifications and variations.

Claims (11)

1. A report data pushing method is characterized by comprising the following steps:
determining the pushing sequence of each report according to the access condition of each report; the access condition comprises the number of access times in a set period and the access time of each access;
aiming at any report form in the report forms, determining the occupied position of each title node in the report forms according to the browsing condition of each title node of the report forms, and obtaining updated report forms; the browsing condition comprises the stay time of each title node when the report is displayed;
and pushing the updated reports according to the pushing sequence of the reports.
2. The method of claim 1, wherein obtaining the browsing status of each title node of the report comprises:
aiming at any title node in the report display process, when the title node is determined to be in a visible area, determining the stay time of the title node according to the operation information of the report;
and obtaining the browsing condition of each title node of the report according to the stay time of each title node.
3. The method of claim 2, wherein said determining that the title node is in a visible area further comprises:
if the title node is determined not to be in the visible area currently, determining whether the content corresponding to the title node is in the visible area according to the operation information of the user; and if the content corresponding to the title node is in the visible area, determining that the title node is in the visible area.
4. The method of claim 3, wherein determining whether the title node is in the viewable area comprises:
acquiring a first offset of the title node relative to a root node in the report;
acquiring a second offset of the root node relative to the upper boundary of the visual area;
and if the sum of the second offset and the height of the visual area is greater than the sum of the first offset and the height of the title node, and the sum of the first offset and the height of the title node is not less than the second offset, the title node is in the visual area.
5. The method according to claim 2, wherein the determining the stay time of the title node according to the operation information of the report includes:
monitoring a sliding event and/or a rolling event which triggers the report;
and determining the stay time of the title node according to the starting trigger time and the ending trigger time of the sliding event and/or the rolling event.
6. The method of claim 5, wherein determining the dwell time of the title node according to the start trigger time and the end trigger time of the sliding event and/or the scrolling event comprises:
determining a moving speed according to the starting trigger time and the ending trigger time of the sliding event and/or the rolling event;
and when the moving speed meets a set threshold value, determining the stay time of the title node according to the starting trigger time and the ending trigger time.
7. The method according to any one of claims 1 to 6, wherein the determining the occupied position of each title node in the report according to the browsing condition of each title node in the report comprises:
for any title node, determining the attention of each title node according to the accumulated value of each browsing condition of the title node in the set time period, wherein the stay time in the browsing condition is in a forward relation with the attention;
and determining the occupied position of each title node in the report according to the attention degree of each title node, wherein the higher the attention degree is, the more forward the position of each title node in the report is.
8. The method according to any one of claims 1 to 6, wherein the determining the pushing sequence of the reports according to the access condition of the user to the reports comprises:
sorting the reports for the first time according to the access times in the set time period;
according to the reports with the same access times, determining the access weight according to the access time, and performing secondary sequencing on the reports with the same access times according to the access weight to obtain the pushing sequence of each report; the access time comprises a first access time and a second access time, the first access time is the first N periods closest to the updating time, and the second access time is the first M periods before the first N periods.
9. A report data pushing device is characterized by comprising:
the processing module is used for determining the pushing sequence of each report according to the access condition of each report; the access condition comprises the number of access times in a set period and the access time of each access; aiming at any report form in the report forms, determining the occupied position of each title node in the report forms according to the browsing condition of each title node of the report forms, and obtaining updated report forms; the browsing condition comprises the stay time of each title node when the report is displayed;
and the pushing module is used for pushing the updated reports according to the pushing sequence of the reports.
10. A computer device, comprising:
a memory for storing program instructions;
a processor for calling program instructions stored in said memory to execute the method of any one of claims 1 to 8 in accordance with the obtained program.
11. A computer-readable storage medium having stored thereon computer-executable instructions for causing a computer to perform the method of any one of claims 1-8.
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