CN115050133B - Dynamic data display method and device - Google Patents

Dynamic data display method and device Download PDF

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Publication number
CN115050133B
CN115050133B CN202210607588.1A CN202210607588A CN115050133B CN 115050133 B CN115050133 B CN 115050133B CN 202210607588 A CN202210607588 A CN 202210607588A CN 115050133 B CN115050133 B CN 115050133B
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sequence
number calling
display
data
queue data
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CN115050133A (en
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孟国强
李海峰
孟萌
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Yarward Electronic Co ltd
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C11/00Arrangements, systems or apparatus for checking, e.g. the occurrence of a condition, not provided for elsewhere
    • 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
    • G06F16/24Querying
    • G06F16/245Query processing
    • G06F16/2458Special types of queries, e.g. statistical queries, fuzzy queries or distributed queries
    • G06F16/2474Sequence data queries, e.g. querying versioned data
    • 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
    • G06F16/24Querying
    • G06F16/248Presentation of query results
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C11/00Arrangements, systems or apparatus for checking, e.g. the occurrence of a condition, not provided for elsewhere
    • G07C2011/04Arrangements, systems or apparatus for checking, e.g. the occurrence of a condition, not provided for elsewhere related to queuing systems

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  • Probability & Statistics with Applications (AREA)
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Abstract

The application provides a dynamic data display method and equipment, wherein the method is based on the input operation of a number input terminal, and queue data corresponding to the input operation are divided into a plurality of number input sequences. And according to the sequence attribute of each number calling sequence, arranging the number calling sequences in sequence to obtain a number calling sequence group. And determining corresponding number calling interval duration according to the grouping number of the number calling sequence groups and the queue data volume of each number calling sequence, so as to match the dynamic display authority of each number calling sequence according to the number calling interval duration. According to the technical scheme, the dynamic data are displayed in real time and comprehensively, the screen setting cost is reduced, and public resources are saved.

Description

Dynamic data display method and device
Technical Field
The application relates to the technical field of internet, in particular to a dynamic data display method and device.
Background
With the development of technology, large-screen display devices are becoming more common, and the large-screen display content may include: advertisements, merchant information, promos, etc. The increase of the screen makes the display content more and richer.
For the display content of the large-screen display information, particularly for the dynamically changed data, when the information cannot be completely displayed, a plurality of display devices are often adopted to display the corresponding content respectively, so that the purpose of comprehensively displaying the information is achieved. However, in some environments with complex environments and limited space, a plurality of display devices are arranged, which obviously wastes public resources and increases the device layout cost.
Disclosure of Invention
In order to solve the above problems, embodiments of the present application provide a method and an apparatus for displaying dynamic data, which are used for displaying dynamic data in real time and comprehensively, reducing screen setting cost, and saving public resources.
In one aspect, an embodiment of the present application provides a dynamic data display method, where the method includes:
based on the input operation of the number calling input terminal, the queue data corresponding to the input operation are divided into a plurality of number calling sequences. And according to the sequence attribute of each number calling sequence, arranging the number calling sequences in sequence to obtain a number calling sequence group. And determining corresponding number calling interval duration according to the grouping number of the number calling sequence groups and the queue data volume of each number calling sequence, so as to match the dynamic display authority of each number calling sequence according to the number calling interval duration.
In one implementation of the present application, sequence attributes of a calling sequence are determined, and attribute correlation between the sequence attributes is calculated. The attribute correlation is obtained through cosine similarity of each sequence attribute. And determining an ordering queue of the sequence attribute of the number calling sequence according to the attribute relativity so as to orderly arrange the number calling sequences according to the ordering queue to obtain a number calling sequence group.
In one implementation of the present application, the relevant attribute values of each sequence attribute are determined through a preset text recognition model. The text recognition model is obtained through training of a plurality of attribute names. The correlation attribute value is a unique attribute value of the sequence attribute in each sequence attribute. And calculating cosine similarity between every two related attribute values according to the related attribute values of each sequence attribute, and taking the cosine similarity as the attribute correlation between the corresponding two sequence attributes.
In one implementation of the present application, an attribute name, a data object name, and a data presentation level of queue data corresponding to an entry operation are determined. And generating a display set corresponding to the attribute names according to the attribute names and the data object names. And according to the data display grade in each display set, arranging the data of each queue according to a preset sequence to obtain a number calling sequence.
In one implementation of the present application, it is determined whether a tag exists for each queue of data in the presentation set. And determining the data of each queue in the display set, and taking the data input time of the queue data as the data display level under the condition that no label exists, so as to arrange the data of each queue according to a preset sequence, thereby obtaining a number calling sequence. And determining the data of each queue in the display set, and under the condition that the labeling label exists, taking the queue data carrying the labeling label as a first-stage display grade and adding the first-stage display grade to a preset data container. Splicing a preset data container at the head of the display set, and taking the remaining queue data of the display set as a second-level display level so as to sequentially arrange the remaining queue data according to the data input time of the remaining queue data. And using the spliced queue data of the first-level display grade and the queued queue data of the second-level display grade as a number calling sequence.
In one implementation of the present application, the number of packets of the current number-calling sequence group is determined, so as to determine a corresponding sequence group display duration according to the number of packets. And determining the number calling sequence of the maximum data volume in the queue data volume of each number calling sequence group as a delay sequence. And determining whether the queue data volume corresponding to the delay sequence is larger than a preset threshold value. And under the condition that the queue data volume corresponding to the delay sequence is larger than a preset threshold value, determining corresponding delay time length based on the ratio of the queue data volume of the delay sequence to the preset threshold value, and adding the delay time length to the sequence group display time length of the number calling sequence group where the delay sequence is positioned so as to display the updated sequence group display time length as the number calling interval time length.
In one implementation of the method, the input operation in the number calling interval duration is acquired, the queue data corresponding to the input operation is determined, and the queue data is updated. And adding the update queue data to the corresponding number calling sequence according to the corresponding sequence attribute of the update queue data. And determining whether the queue data amount of the number calling sequence added with the updated queue data is a delay sequence. And determining the queue data volume of the number calling sequence after adding the updated queue data, and calculating the corresponding updating delay time length based on the ratio of the queue data volume corresponding to the delay sequence to a preset threshold value under the condition that the queue data volume is the delay sequence. And comparing the updating delay time length with the delay time length of the number calling sequence group before the queue data is updated. Under the condition that the updating delay time length is inconsistent with the delay time length of the number calling sequence group before the queue data is updated, adding the updating delay time length to the sequence group display time length of the number calling sequence group where the delay sequence is located, and taking the updated sequence group display time length as the number calling interval time length.
In one implementation of the present application, it is determined whether a dynamic presentation sequence is included in a currently presented set of dialing sequences. The dynamic display sequence is a sequence with the data volume of the queue being larger than a preset threshold value. Under the condition that the currently displayed number calling sequence group comprises dynamic display sequences, dynamic paging of the dynamic display sequences is determined according to the queue data quantity of the dynamic display sequences and a preset threshold value, so that the display weight proportion of the dynamic display sequences is determined according to the queue data quantity in the dynamic paging, and the dynamic display authority of each number calling sequence is determined according to the display weight proportion and the number calling interval duration. The dynamic display permission is the display duration of each dynamic page.
In one implementation manner of the method, a number calling sequence group and a number calling sequence corresponding to a plurality of waiting patients are sent to corresponding waiting display screens, so that the number calling sequences are dynamically displayed on the waiting display screens according to the number calling interval duration through dynamic display authorities. Wherein the number calling sequence group is obtained according to the name of the department. Dynamic presentations include page turning presentations, scroll presentations.
In another aspect, an embodiment of the present application further provides a dynamic data display device, including:
at least one processor; and a memory communicatively coupled to the at least one processor. Wherein the memory stores instructions executable by the at least one processor, the instructions being executable by the at least one processor to enable the at least one processor to:
based on the input operation of the number calling input terminal, the queue data corresponding to the input operation are divided into a plurality of number calling sequences. And according to the sequence attribute of each number calling sequence, arranging the number calling sequences in sequence to obtain a number calling sequence group. And determining corresponding number calling interval duration according to the grouping number of the number calling sequence groups and the queue data volume of each number calling sequence, so as to match the dynamic display authority of each number calling sequence according to the number calling interval duration.
Through the scheme, when the display screen dynamically displays data, the data can be displayed sequentially according to the number calling sequence and the corresponding number calling sequence group, and information needing to be conveyed can be displayed comprehensively through one screen under some scenes such as complex environments and limited space. In addition, the scheme of the application can save the hardware installation cost without using a multi-screen installation mode. In addition, through carrying out the dynamic display of data, can increase user and the interaction of display screen, improve user's experience of watching the display screen.
Drawings
The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiments of the application and together with the description serve to explain the application and do not constitute an undue limitation to the application. In the drawings:
FIG. 1 is a schematic flow chart of a dynamic data display method according to an embodiment of the present application;
FIG. 2 is a schematic diagram of a dynamic data display method according to an embodiment of the present application;
FIG. 3 is a schematic flow chart of a dynamic data display method according to an embodiment of the present application;
fig. 4 is a schematic structural diagram of a dynamic data display device according to an embodiment of the present application.
Detailed Description
For the purposes, technical solutions and advantages of the present application, the technical solutions of the present application will be clearly and completely described below with reference to specific embodiments of the present application and corresponding drawings. It will be apparent that the described embodiments are only some, but not all, of the embodiments of the present application. All other embodiments, which can be made by one of ordinary skill in the art without undue burden from the present disclosure, are within the scope of the present disclosure.
The technical background of the scheme is based on an android application development technology, a front-end programming (JavaScript, JS) technology, an android front-end interaction technology and a Message Queue (MQ) communication technology, and according to a data paging algorithm and an android front-end interaction mechanism, the display screen can display a plurality of transverse switching queues and vertical switching queues of Queue data to be displayed, so that a data screen-switching scene application of one display screen displaying multi-screen data is realized.
Based on the above, the embodiment of the application provides a dynamic data display method and device, which are used for displaying dynamic data in real time and comprehensively, so that the screen setting cost is reduced, and public resources are saved.
Various embodiments of the present application are described in detail below with reference to the accompanying drawings.
The embodiment of the application provides a dynamic data display method, as shown in fig. 1, the method may include steps S101-S103:
s101, the server divides queue data corresponding to the input operation into a plurality of number calling sequences based on the input operation of the number calling input terminal.
It should be noted that, the server is merely an example as an execution body of the dynamic data presentation method, and the execution body is not limited to the server, and the present application is not limited thereto specifically.
The number calling input terminal can be a mobile phone, a computer and other devices, and the number calling input terminal is not particularly limited in the application. In an application scenario of the dynamic data display method, the registration input terminal can be a registration terminal of a hospital, the registration data is input into the terminal by a user or medical staff, and the server determines registration information corresponding to the input operation, namely the queue data corresponding to the input operation.
In this embodiment of the present application, the dividing operation may divide the queue data corresponding to the input operation into a plurality of number calling sequences according to related information of the queue data of the input operation, and specifically, the dividing, by the server, the queue data corresponding to the input operation includes:
firstly, the server determines attribute names, data object names and data display grades of queue data corresponding to the input operation.
In the embodiment of the present application, the attribute name may be a data attribute name of the queue data, for example, a waiting department name of the waiting data is an attribute name, such as "orthopedics," "dermatology," and the like; and then or waiting for the vehicle in the waiting hall, such as the train number names "Gxxxxx001", "a train number", etc. The data object name may be the name of the pointing object of the queue data, and the data object name may be the code number, for example, the name of a waiting person, the section of a ticket corresponding to the waiting number in the waiting hall, for example, the ticket section of "a number b carriage" is [10,20], that is, the data object name is the ticket with the serial number between 10 and 20, so that the ticket holders holding different tickets are classified as the queue data. When the data display grade is the grade input by the input operation, the grade input by the number-calling input terminal can be used for arranging the sequence of the queue data, so that a number-calling sequence is obtained.
For example, the data presentation level is level 1, arranged according to the time sequence entered; the data display grade is 2, and the labels endowed by the terminal are input according to the number calling and are sequentially arranged; the data presentation level is level 3, placed at the head of the dialing sequence, etc.
And then, the server generates a display set corresponding to the attribute name according to the attribute name and the data object name.
In the embodiment of the application, the display sets are classified according to different attribute names, and the queue data in the same display set correspond to the same attribute name.
And then, the server arranges the data of each queue according to a preset sequence according to the data display grade in each display set so as to obtain a number calling sequence.
In this embodiment of the present application, according to the data display level in each display set, the server arranges the data of each queue according to a preset sequence to obtain a number calling sequence, which specifically includes:
first, the server determines whether there is a labeling tag for each queue of data in the presentation set.
The labeling label can be labeled by a number calling input terminal when the queue data is input.
Secondly, the server determines data of each queue in the display set, and when no labeling label exists, the data input time of the queue data is used as a data display grade, so that the data of each queue are arranged according to a preset sequence, and a number calling sequence is obtained.
That is, when the label tag does not exist in the queue data, the generation of the number calling sequence can be performed according to the data input time of the queue data. The data input time may be a registration time of the patient or a ticket purchasing time of a ticket purchasing person.
The server determines each queue data in the display set, and under the condition that the label exists, the queue data carrying the label is used as a first-level display grade and is added to a preset data container.
The preset data container loads queue data carrying labeling labels, for example, the queue data carrying labeling labels is: patient 1, patient 4, patient 7, the preset data container may be represented as { patient 1, patient 4, patient 7}.
Then, the server splices the preset data container at the head of the display set, and takes the remaining queue data of the display set as a second-level display level, so that the remaining queue data are sequentially arranged according to the data input time of the remaining queue data.
In the embodiment of the application, after the server obtains the preset data container, the preset data container is spliced at the head of the display set, and after the preset data container is determined, the queue data consistent with the preset data container in the display set is removed. The specific splice is followed by the head: { patient 1, patient 4, patient 7} + body { patient 2, patient 3, patient 5, patient 6}.
And then, the server takes the spliced first-level display level queue data and the queued second-level display level queue data as a number calling sequence.
According to the scheme, the sequences displayed on the screen can be sequenced in sequence in the actual use process, so that the ordered display of the queue data is ensured, and the information expression efficiency is improved.
S102, the server sequentially arranges the number calling sequences according to the sequence attribute of the number calling sequences to obtain a number calling sequence group.
The number calling sequence group can be a number calling sequence that can be displayed by a screen at the same time, and as shown in fig. 2, 201, 202, 203, 204 and 205 are the same number calling sequence group.
In this embodiment of the present application, the server sequentially arranges the number calling sequences according to the sequence attribute of each number calling sequence to obtain a number calling sequence group, and specifically includes:
firstly, the server determines the sequence attribute of the number calling sequence and calculates the attribute correlation degree among the sequence attributes.
The attribute correlation is obtained through cosine similarity of each sequence attribute.
In this embodiment of the present application, the calculating, by the server, the attribute correlation between the sequence attributes specifically includes:
the first step, the server determines the related attribute value of each sequence attribute through a preset text recognition model.
The text recognition model is obtained through training of a plurality of attribute names. The correlation attribute value is a unique attribute value of the sequence attribute in each sequence attribute.
The text recognition model can be trained through a plurality of attribute names, such as a plurality of department names, after binary coding is carried out and the text recognition model is input, the text recognition model is trained, and the relevant attribute values of the input department names are obtained. The correlation attribute value is a unique code of each attribute name in a set of all attribute names, and the code can be used for calculating the correlation degree among each sequence attribute. For example, the correlation attribute value of X is 10 and the correlation attribute value of y is 20.
And secondly, calculating cosine similarity between every two related attribute values by the server according to the related attribute values of each sequence attribute, and taking the cosine similarity as the attribute correlation between the corresponding two sequence attributes.
The cosine similarity calculation formula is as follows:
wherein cos i is the cosine similarity of the sequence attribute X and the sequence attribute Y.
And then, the server determines a sequencing queue of the sequence attribute of the number calling sequence according to the attribute relativity so as to sequentially arrange the number calling sequences according to the sequencing queue to obtain a number calling sequence group.
After obtaining the attribute correlation, the server can arrange the number calling sequences according to the sequence from the high attribute to the low attribute correlation from a certain sequence attribute; after queuing, the queued dialing sequences are divided into a plurality of dialing sequence groups according to a preset number of queue packets.
The number of queue packets can also be obtained according to the number of the current number calling sequences and the preset number of sequence bearers (the number of the sequence bearers is obtained according to the aspect ratio of the screen), as shown in fig. 2, 201, 202, 203, 204, 205 are the same number calling sequence group, and 206, 207, 208 are the same number calling sequence group.
S103, the server determines corresponding number calling interval duration according to the grouping number of the number calling sequence groups and the queue data quantity of each number calling sequence, so as to match the dynamic display authority of each number calling sequence according to the number calling interval duration.
In this embodiment of the present application, the server determines a corresponding number calling interval duration according to the number of packets of the number calling sequence group and the queue data amount of each number calling sequence, and specifically includes:
firstly, the server determines the grouping number of the current number calling sequence group so as to determine the corresponding sequence group display duration according to the grouping number.
For example, the number of packets of the number calling sequence group is 2, then it may be as follows: 60 seconds/2=30 seconds, then the duration of one number calling sequence group is 30 seconds, and it should be noted that the duration of 30 seconds is only exemplary, and may be set and optionally changed based on the user's needs during actual use.
Then, the server determines the number calling sequence with the largest data volume in the queue data volume of each number calling sequence group as a delay sequence.
The maximum number sequence refers to the number of patients waiting for 201 as shown in fig. 2, while the number of other patients waiting for the number sequence is less than 16, and 201 is the maximum number sequence.
And then, the server determines whether the queue data amount corresponding to the delay sequence is larger than a preset threshold value.
The preset threshold may be obtained according to an aspect ratio of the screen and a display ratio of the queue data, for example, the screen is 1 m long, and the display height of the queue data is 10 cm, so that 10 queue data can be displayed in a row of the queue data at the same time, and the preset threshold may be set to 10. As shown in fig. 2, the preset threshold value of the queue data amount is 11.
And under the condition that the queue data volume corresponding to the delay sequence is larger than a preset threshold value, the server determines corresponding delay time length based on the ratio of the queue data volume of the delay sequence to the preset threshold value, and adds the delay time length to the sequence group display time length of the number calling sequence group where the delay sequence is positioned, so that the updated sequence group display time length is used as the number calling interval time length.
If the queue data size 201 in fig. 2 is 16, the preset threshold is 11, the ratio is 16/11, and the ratio is a value greater than 1 and less than 2, then the current queue data size needs to be displayed in two pages. The delay time is the delay time when the queue data is turned or slid, so that the queue data in the same number calling sequence can be completely displayed, for example, after the display time of the sequence group is reached in fig. 2, the delay time is entered, and the page is turned 201 in fig. 2, so that the queue data of the waiting patient 12-the waiting patient 16 is displayed in the delay time. The delay time may be set according to a user requirement, for example, in a case where page turning is required, the delay time is increased by 5 seconds when one page needs to be turned.
And under the condition that the data volume of the queue corresponding to the delay sequence is not larger than a preset threshold value, the sequence group display duration is used as the number calling interval duration.
In this embodiment of the present application, if the queue data is added while the queue data is displayed, the server needs to adjust the display duration in time and display the added queue data, so that the server displays the updated sequence group display duration, and after the updated sequence group display duration is used as the number calling interval duration, the method further includes:
firstly, a server acquires an input operation in the length of a number calling interval, determines queue data corresponding to the input operation, and updates the queue data.
Then, the server adds the update queue data to the corresponding number calling sequence according to the corresponding sequence attribute of the update queue data.
For example, the sequence data (department name) of the updated queue data is the queue data of 201 in fig. 2, the application can determine whether the updated queue data is the queue data carrying the labeling label, if not, the updated queue data can be added to the waiting patient 16; if the label tag is carried, the updated queue data is spliced before the waiting patient 1.
The server determines whether the queue data amount of the number calling sequence added with the updated queue data is a delay sequence.
After the update queue data is added, a possible number calling sequence becomes a delay sequence, for example, when the delay sequence does not exist in the same number calling sequence group, after the update queue data is added to a certain number calling sequence, the queue data amount of the updated number calling sequence is greater than a preset threshold value, so that the delay sequence needs to be determined again to ensure that the updated queue data is displayed completely.
And under the condition that the queue data volume of the calling sequence added with the updated queue data is the delay sequence, calculating the corresponding updating delay time based on the ratio of the queue data volume corresponding to the delay sequence to the preset threshold value.
In the embodiment of the present application, the calculating manner of the updated delay time is identical to the calculating manner of the delay time in the above scheme, which is not described herein.
Then, the server compares the update delay time length with the delay time length of the calling sequence group before updating the queue data.
And finally, the server adds the updated delay time length to the sequence group display time length of the number calling sequence group where the delay sequence is positioned under the condition that the comparison of the updated delay time length and the delay time length of the number calling sequence group before updating the queue data is inconsistent, so as to use the updated sequence group display time length as the number calling interval time length.
In this embodiment of the present application, the inconsistency of the comparison may be understood as that before the queue data is updated, the number of the queue data may be 16, and the number of the queue data after updating is 21, and the ratio becomes a number greater than 2 and less than 3, which indicates that three pages of the queue data are needed to be displayed. Therefore, the number calling interval duration needs to be redetermined.
In this embodiment of the present application, the server matches dynamic display rights of each number calling sequence according to the number calling interval duration, and specifically includes:
first, the server determines whether a dynamic presentation sequence is included in a currently presented call sequence group.
The dynamic display sequence is a sequence with the data volume of the queue being larger than a preset threshold value.
The server determines that the currently displayed number calling sequence group comprises a dynamic display sequence, determines dynamic paging of the dynamic display sequence according to the queue data quantity of the dynamic display sequence and a preset threshold value, determines the display weight proportion of the dynamic display sequence according to the queue data quantity in the dynamic paging, and determines the dynamic display authority of each number calling sequence according to the display weight proportion and the number calling interval duration. The dynamic display permission is the display duration of each dynamic page.
In the embodiment of the application, according to the number calling interval time length after the delay time length is increased, the server can obtain the display time of each page of the page turning according to the queue data size. Specifically, as shown in fig. 2, when the number calling interval is 20 seconds and the queue data size is 16, the preset threshold is 11, and then (16-11)/(16+11) is 20 seconds, which is the display time of the waiting patient 12-the waiting patient 16, and (11)/(16+11) is 20 seconds, which is the display time of the waiting patient 1-the waiting patient 11.
In this embodiment of the present application, after the server matches the dynamic display rights of each number calling sequence according to the number calling interval duration, the method further includes:
the server sends the number calling sequence groups and the number calling sequences corresponding to the waiting patients to the corresponding waiting display screen so as to dynamically display the number calling sequences on the waiting display screen according to the number calling interval time length and through dynamic display permission. Wherein the number calling sequence group is obtained according to the name of the department. Dynamic presentations include page turning presentations, scroll presentations.
According to the scheme, when a large screen can display all dynamic data, when one screen cannot display all dynamic data completely, the data sequences are generated, the sequences are grouped, and the displayed number calling interval duration and different dynamic display authorities (queue dynamic display durations) are respectively distributed for the grouped sequences. Therefore, when dynamic data display is carried out, the data are displayed in real time and comprehensively, so that multiple screens are not needed for displaying the data, public resources are saved, and hardware and installation cost are saved.
In addition, after the vertical multi-column data page turning display is completed through one large screen display, other data columns are displayed through horizontal page turning, interaction between a user and the large screen can be improved, when the user watches display content, the user is more focused on the screen display content, and use experience of the user on the large screen device is improved.
In the embodiment of the present application, when the dynamic data display method is applied to a waiting screen of a hospital, the execution flow of the server may be as shown in fig. 3, which specifically includes the following steps:
s301, initializing a paging TIME interval page_time=8 (the paging TIME interval is 8 seconds), wherein the vertical PAGE SIZE page_size=10 (the preset threshold is 10) of each waiting queue, and the number of the horizontal one-screen queues column_page_size=6 (the number calling sequence group contains 6 number calling sequences at most);
s302, acquiring a waiting queue ID ARRAY H_ARRAY (queue data);
s303, an MQ message service monitoring process;
s304, receiving a waiting message of a new patient added by the server;
s305, initializing a lateral COLUMN PAGE count variable column_page_num=1 (packet number);
s306, initialize vertical page counter MAP component c_pager= { column ID: column current page number = 1};
s307, acquiring multi-queue total waiting patient DATA COLUMN_DATA corresponding to the H_ARRAY;
s308, traversing a max_size_queue of the most waiting patients in all QUEUEs in a column_Page_NUM PAGE of the COLUMN DATA column_DATA;
s309, traversing all queues in the COLUMN_DATA COLUMN_PAGE_NUM PAGE, and taking DATA TMP from each queue according to the C_PAGER= { COLUMN ID: vertical paging number };
s3010, assembling current page data TMP of each queue as a screen number, pushing a front-end template, and displaying waiting screen data;
s3011, judging whether the current queue waiting patient data is turned over;
s3012, the column waiting data paging control variable c_pager= { column ID: vertical split number +1};
s3013, delaying PAGE_TIME seconds;
s3014, the current QUEUE ID is the longest QUEUE MAX_SIZE_QUEUE;
s3015, the current column waiting data paging control variable resets c_pager= { column ID:1};
s3016, delaying PAGE_TIME seconds;
s3017, COLUMN_PAGE_NUM plus 1;
s3018, COLUMN_PAGE_NUM is greater than the COLUMN_DATA length;
s3019, reset COLUMN_PAGE_NUM to 1;
s3020, the data paging control variable reset c_pager= { column ID:1};
s3021, delaying page_time for seconds.
Fig. 4 is a schematic diagram of a dynamic data presentation apparatus according to an embodiment of the present application, where the apparatus includes:
at least one processor; and a memory communicatively coupled to the at least one processor. Wherein the memory stores instructions executable by the at least one processor, the instructions being executable by the at least one processor to enable the at least one processor to:
based on the input operation of the number calling input terminal, the queue data corresponding to the input operation are divided into a plurality of number calling sequences. And according to the sequence attribute of each number calling sequence, arranging the number calling sequences in sequence to obtain a number calling sequence group. And determining corresponding number calling interval duration according to the grouping number of the number calling sequence groups and the queue data volume of each number calling sequence, so as to match the dynamic display authority of each number calling sequence according to the number calling interval duration.
All embodiments in the application are described in a progressive manner, and identical and similar parts of all embodiments are mutually referred, so that each embodiment mainly describes differences from other embodiments. In particular, for the apparatus embodiments, since they are substantially similar to the method embodiments, the description is relatively simple, and reference is made to the description of the method embodiments in part.
The devices and the methods provided in the embodiments of the present application are in one-to-one correspondence, so that the devices also have similar beneficial technical effects as the corresponding methods, and since the beneficial technical effects of the methods have been described in detail above, the beneficial technical effects of the devices are not described here again.
It should also be noted that the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one … …" does not exclude the presence of other like elements in a process, method, article or apparatus that comprises the element.
The foregoing is merely exemplary of the present application and is not intended to limit the present application. Various modifications and changes may be made to the present application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc. which are within the spirit and principles of the present application are intended to be included within the scope of the claims of the present application.

Claims (8)

1. A method of dynamic data presentation, the method comprising:
dividing queue data corresponding to the input operation into a plurality of number calling sequences based on the input operation of the number calling input terminal;
sequentially arranging the number calling sequences according to the sequence attribute of the number calling sequences to obtain a number calling sequence group;
determining corresponding number calling interval duration according to the grouping number of the number calling sequence groups and the queue data volume of each number calling sequence, so as to match the dynamic display authority of each number calling sequence according to the number calling interval duration;
the determining a corresponding number calling interval duration according to the number of the packets of the number calling sequence group and the queue data volume of each number calling sequence specifically comprises:
determining the grouping number of the current number calling sequence group so as to determine the corresponding sequence group display duration according to the grouping number;
determining the number calling sequence with the largest data volume in the queue data volume of each number calling sequence group as a delay sequence;
determining whether the queue data volume corresponding to the delay sequence is larger than a preset threshold value;
if yes, determining corresponding delay time length based on the ratio of the queue data volume of the delay sequence to the preset threshold value, and adding the delay time length to the sequence group display time length of the number calling sequence group where the delay sequence is located, so as to use the updated sequence group display time length as the number calling interval time length;
the matching of the dynamic display authority of each number calling sequence according to the number calling interval duration specifically comprises the following steps:
determining whether the currently displayed number calling sequence group comprises a dynamic display sequence or not; the dynamic display sequence is a sequence with the queue data volume larger than a preset threshold value;
if yes, determining dynamic paging of the dynamic display sequence according to the queue data volume of the dynamic display sequence and the preset threshold value, determining display weight proportion of the dynamic display sequence according to the queue data volume in the dynamic paging, and determining dynamic display authority of each number calling sequence according to the display weight proportion and the number calling interval duration; the dynamic display permission is the display duration of each dynamic page.
2. The method of claim 1, wherein the sequentially arranging the number calling sequences according to the sequence attribute of the number calling sequences to obtain the number calling sequence group specifically comprises:
determining sequence attributes of the number calling sequence, and calculating attribute correlation among the sequence attributes; the attribute correlation degree is obtained through cosine similarity of each sequence attribute;
and determining an ordering queue of the sequence attribute of the number calling sequence according to the attribute relativity so as to sequentially arrange the number calling sequences according to the ordering queue to obtain the number calling sequence group.
3. The method according to claim 2, wherein calculating the attribute correlation between the sequence attributes specifically comprises:
determining the related attribute value of each sequence attribute through a preset text recognition model; the text recognition model is obtained through training of a plurality of attribute names; the related attribute value is the unique code of the attribute name in the corresponding set formed by the attribute names; the code is used for calculating the correlation degree between the sequence attributes;
and calculating cosine similarity between every two related attribute values according to the related attribute values of every sequence attribute, and taking the cosine similarity as the attribute correlation between the corresponding two sequence attributes.
4. The method according to claim 1, wherein the dividing the queue data corresponding to the input operation into a plurality of number calling sequences specifically includes:
determining attribute names, data object names and data display grades of queue data corresponding to the input operation;
generating a display set corresponding to the attribute name according to the attribute name and the data object name;
and according to the data display grade in each display set, arranging the queue data according to a preset sequence to obtain the number calling sequence.
5. The method of claim 4, wherein the queuing data is arranged according to a preset order according to the data presentation level in each presentation set to obtain the number calling sequence, and specifically includes:
determining whether labeling labels exist in each queue data in the display set;
if the queue data does not exist, taking the data input time of the queue data as the data display grade so as to arrange the queue data according to a preset sequence to obtain the number calling sequence;
if the queue data carrying the labeling label exists, the queue data is used as a first-level display grade and is added to a preset data container;
splicing the preset data container at the head of the display set, and taking the remaining queue data of the display set as a secondary display level so as to sequentially arrange the remaining queue data according to the data input time of the remaining queue data;
and using the spliced queue data of the first-level display grade and the queued queue data of the second-level display grade as the number calling sequence.
6. The method of claim 1, wherein after displaying the updated sequence group presentation duration as the number calling interval duration, the method further comprises:
acquiring the input operation in the number calling interval time, and determining the queue data corresponding to the input operation as updated queue data;
adding the update queue data to a corresponding number calling sequence according to the sequence attribute corresponding to the update queue data; and
determining whether the queue data amount of the number calling sequence added with the updated queue data is the delay sequence;
if yes, calculating corresponding updating delay time based on the ratio of the queue data volume corresponding to the delay sequence to the preset threshold value;
comparing the update delay time length with the delay time length of the number calling sequence group before updating the queue data;
and under the condition that the updating delay time length is inconsistent with the delay time length of the number calling sequence group before the queue data is updated, adding the updating delay time length to the sequence group display time length of the number calling sequence group where the delay sequence is located, so as to use the updated sequence group display time length as the number calling interval time length.
7. The method of claim 1, wherein after matching the dynamic presentation rights of each of the number calling sequences according to the number calling interval duration, the method further comprises:
the number calling sequence groups and the number calling sequences corresponding to a plurality of waiting patients are sent to corresponding waiting display screens, so that the number calling sequences are dynamically displayed on the waiting display screens according to the number calling interval duration and the dynamic display authority; the number calling sequence group is obtained according to the name of a department; the dynamic display comprises page turning display and rolling display.
8. A dynamic data presentation device, the device comprising:
at least one processor; the method comprises the steps of,
a memory communicatively coupled to the at least one processor; wherein,
the memory stores instructions executable by the at least one processor to enable the at least one processor to perform a dynamic data presentation method as claimed in any one of claims 1 to 7.
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