CN114415890A - Interface customization method of doctor evaluation system and teacher-side platform - Google Patents

Interface customization method of doctor evaluation system and teacher-side platform Download PDF

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CN114415890A
CN114415890A CN202210068328.1A CN202210068328A CN114415890A CN 114415890 A CN114415890 A CN 114415890A CN 202210068328 A CN202210068328 A CN 202210068328A CN 114415890 A CN114415890 A CN 114415890A
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韩江莉
沈宁
谷士贤
张爱京
王梦莹
孙震
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Peking University Third Hospital Peking University Third Clinical Medical College
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Abstract

The invention provides an interface customization method of a doctor evaluation system and a teacher-side platform. The scheme comprises the steps of receiving an operation instruction entering a target interface in a physician evaluation system; displaying the target interface according to the operation instruction; when a preset operation on a target interface is received, adjusting shortcut icons of all functional modules in the target interface according to the preset operation, wherein the aggregated information is preprocessed to obtain target processing data; and displaying the target processing data as a search result of the keyword. According to the scheme, the related information is aggregated through the keywords, and data centralization processing and data compression are performed according to the aggregation, so that the key information is rapidly acquired and displayed.

Description

Interface customization method of doctor evaluation system and teacher-side platform
Technical Field
The invention relates to the technical field of communication, in particular to an interface customization method of a doctor evaluation system and a teacher-side platform.
Background
Along with the popularization of computers and smart phones, various application software gradually enters the lives of people, such as application software for education, shopping, medical treatment and the like, and brings a lot of convenience to the lives of people.
At present, the interface design of most application software is fixed, and a user needs to search, click and enter the fixed interface layer by layer according to personal needs when using the application software, and then operates the application software. However, in practical applications, due to different individual functions and individual habits, people have different operational requirements for each functional module of application software, and especially, for educational software, the concerned contents of teachers, students, managers, and the like are different. Therefore, the multilayer operation design of most application software brings great inconvenience to the operation of users, and how to realize personalized customization of interfaces on the existing functions so as to meet the operation habits of different users and simplify the operation process of the users is a technical problem to be solved urgently.
Disclosure of Invention
In view of the above problems, the invention provides an interface customization method for a physician evaluation system and a teacher-side platform, and the method carries out aggregation of relevant information through keywords, and carries out data centralization processing and data compression according to aggregation to realize rapid acquisition and display of key information.
According to a first aspect of the embodiments of the present invention, there is provided a method for customizing an interface of a physician evaluation system.
In one or more embodiments, preferably, the interface customization method of the physician evaluation system includes:
receiving an operation instruction entering a target interface in a physician evaluation system;
displaying the target interface according to the operation instruction;
when a preset operation on a target interface is received, adjusting shortcut icons of all function modules in the target interface according to the preset operation, wherein the preset operation is an editing operation on the shortcut icons of the function modules in the doctor evaluation system;
the method further comprises the following steps:
receiving an input operation at a search entry;
displaying candidate words related to the input content in a target area in the input process;
when receiving the selection operation of the candidate vocabulary, taking the candidate vocabulary as a keyword to search;
when receiving the click operation of a search button, taking the current content in the search entry as a keyword for retrieval;
acquiring information related to the keywords from each functional module;
aggregating information related to the keywords to form aggregated information;
preprocessing the aggregation information to obtain target processing data;
displaying the target processing data as a search result of the keyword;
when the search content is the course name, obtaining information related to the keyword from each functional module, including:
acquiring the course scheduling and course statistical information of the course from a course module, and acquiring the out-of-service assessment arrangement of the course from an out-of-service management module;
aggregating information related to the keywords to form aggregated information, comprising:
aggregating the information related to the keywords to form comprehensive information of the overall schedule, the current teaching progress, the teaching effect and the examination arrangement of the course;
preprocessing the aggregation information to obtain target processing data, specifically comprising:
acquiring the aggregation information, and performing centralized processing to acquire basic processing data;
obtaining target center data by utilizing a first calculation formula according to the basic processing data;
acquiring a characteristic value of the target center data;
acquiring a characteristic vector corresponding to the characteristic value of the target center data;
obtaining a data compression matrix of the target center data by using a second calculation formula;
linear data preprocessing is carried out by utilizing a third calculation formula to obtain the target processing data;
the first calculation formula is:
Figure BDA0003481091960000021
wherein P is the target center data, P1、p2、…、pNRespectively 1 st, 2 nd, … nth data in the basic processing data,
Figure BDA0003481091960000022
a mean value for the base treatment data;
the second calculation formula is:
Figure BDA0003481091960000023
where K is the data dimension, S is the compression factor, λiFor the target-centric dataThe ith characteristic value, N is the total number of the basic processing data;
the third calculation formula is:
T=HTP
wherein T is the target processing data, HTAnd forming a matrix by eigenvectors corresponding to the maximum K eigenvalues.
In one or more embodiments, it is preferable to further include:
when receiving an operation that a user enters a physician evaluation system, displaying a login interface;
receiving login operation of a user on a login interface;
verifying account information input by the login operation;
loading basic frame data of the physician evaluation system when the verification passes, wherein the basic frame data comprises function module buttons;
receiving click operation of a button of the functional module;
and calling data corresponding to the account information under the functional module according to the clicking operation.
In one or more embodiments, preferably, the button of the function module includes a button of a function module corresponding to the target interface, and the entering the operation instruction of the target interface in the physician evaluation system includes:
clicking a button of a functional module corresponding to the target interface;
the calling of the data corresponding to the account information under the functional module according to the clicking operation comprises:
and loading shortcut icons of all functional modules in the target interface according to the account information. .
In one or more embodiments, preferably, the loading the basic framework data of the physician's evaluation system when the verification passes further comprises:
determining a user type corresponding to the account information according to the account information, wherein the user type comprises at least one of the following:
teacher users, political office users, student users, expert users, and administrator users;
and distributing corresponding authority to the user according to the user type, and loading basic frame data corresponding to the user type.
In one or more embodiments, preferably, aggregating the information related to the keyword to form aggregated information includes:
and aggregating the information related to the keywords to form comprehensive information of the overall schedule, the current teaching progress, the teaching effect and the examination arrangement of the course.
In one or more embodiments, preferably, the method further comprises:
when receiving a submission operation of a first user on the data to be reviewed, pushing the data to be reviewed to a second user;
when an approval result submitted by a second user is received, verifying a handwritten signature in the approval result;
when the handwritten signature in the approval result passes the verification, determining that the second user is a legal user, and pushing the approval result to the first user;
and when the handwritten signature in the approval result is not verified, sending prompt information of verification failure to the second user.
In one or more embodiments, preferably, the verifying the handwritten signature in the approval result includes:
comparing the handwritten signature in the approval result with the handwritten signature template of the second user;
when the similarity between the handwritten signature in the approval result and the handwritten signature template of the second user is greater than a first preset value, extracting feature points of the handwritten signature in the approval result;
calculating the geometric relation between the characteristic points of the handwritten signature in the approval result;
and when the similarity between the geometric relationship between the characteristic points of the handwritten signature in the approval result and the geometric relationship between the characteristic points in the handwritten signature template is greater than a second preset value, determining that the handwritten signature in the approval result passes verification.
In one or more embodiments, preferably, the obtaining the aggregation information is performed with centralized processing, which specifically includes:
randomly selecting one piece of data as initialization center data for the aggregation information;
calculating the two-dimensional straight-line distance between the initialization center data and each datum by using a fourth calculation formula;
calculating the sum of all the two-dimensional linear distances by using a fifth calculation formula, and storing the sum as a target distance sum;
sequentially selecting data except the initialization center data from the aggregation information to update the initialization center data, and calculating the sum of all the two-dimensional linear distances by using the fifth calculation formula;
selecting the initialization center data corresponding to the target distance and the minimum numerical value as the basic processing data of the aggregation information;
the fourth calculation formula:
Dj=||p’j-p’0||
wherein Dj is the two-dimensional linear distance of the jth aggregation information;
the fifth calculation formula:
SUM=ΣDj
wherein SUM is the SUM of target distances, p'0The initialization center data, p 'of the polymerization information'jFor the j data in the aggregation information
According to a second aspect of embodiments of the present invention, a teacher-side platform is provided.
In one or more embodiments, preferably, the teacher-side platform includes:
the login module is used for receiving login operation of a user and verifying account information input by the login operation; when the verification is passed, determining the user type corresponding to the account information according to the account information; distributing corresponding authority to the user according to the user type, and loading basic frame data corresponding to the user type;
the signature module is used for receiving a handwritten signature input by a user; comparing the handwritten signature with a handwritten signature template of the user; when the similarity between the handwritten signature and a handwritten signature template of the user is greater than a first preset value, extracting feature points of the handwritten signature; calculating the geometric relation among the characteristic points of the handwritten signature; when the similarity between the geometric relationship between the feature points of the handwritten signature and the geometric relationship between the feature points in the handwritten signature template is greater than a second preset value, determining that the handwritten signature passes verification; when the handwritten signature fails to be verified, sending prompt information of verification failure to the user;
the department management module is used for receiving a department examination application submitted by a secretary of a department and pushing the department examination application to a department officer; receiving an approval result of a subject and a principal, and pushing the application to an education place when the approval result is that the approval is passed; the system is also used for receiving a mini-CEX table submitted by a scoring teacher and pushing the mini-CEX table to a supervisor; receiving the supervising results of supervising personnel and pushing the supervising results to an education place; the department rotary application system is also used for receiving a department rotary application submitted by a secretary of a department and pushing the department rotary application to an education department; the system is also used for displaying the final out-of-medical examination result;
the course module is used for displaying the course information, the teaching condition, the in-hospital course information and the course statistical information of the user;
the teacher and student management module is used for displaying teacher information and student information;
the workbench module is used for displaying a target interface; when a preset operation on a target interface is received, adjusting shortcut icons of all function modules in the target interface according to the preset operation, wherein the preset operation is an editing operation on the shortcut icons of the function modules in the teacher end platform;
the teacher-end platform is further implemented to:
receiving an input operation at a search entry;
displaying candidate words related to the input content in a target area in the input process;
when receiving the selection operation of the candidate vocabulary, taking the candidate vocabulary as a keyword to search;
when receiving the click operation of a search button, taking the current content in the search entry as a keyword for retrieval;
acquiring information related to the keywords from each functional module;
aggregating information related to the keywords to form aggregated information;
preprocessing the aggregation information to obtain target processing data;
displaying the target processing data as a search result of the keyword;
when the search content is the course name, obtaining information related to the keyword from each functional module, including:
acquiring the course scheduling and course statistical information of the course from a course module, and acquiring the out-of-service assessment arrangement of the course from an out-of-service management module;
aggregating information related to the keywords to form aggregated information, comprising:
aggregating the information related to the keywords to form comprehensive information of the overall schedule, the current teaching progress, the teaching effect and the examination arrangement of the course;
preprocessing the aggregation information to obtain target processing data, specifically comprising:
acquiring the aggregation information, and performing centralized processing to acquire basic processing data;
obtaining target center data by utilizing a first calculation formula according to the basic processing data;
acquiring a characteristic value of the target center data;
acquiring a characteristic vector corresponding to the characteristic value of the target center data;
obtaining a data compression matrix of the target center data by using a second calculation formula;
linear data preprocessing is carried out by utilizing a third calculation formula to obtain the target processing data;
the first calculation formula is:
Figure BDA0003481091960000061
wherein P is the target center data, P1、p2、…、pNRespectively 1 st, 2 nd, … nth data in the basic processing data,
Figure BDA0003481091960000062
a mean value for the base treatment data;
the second calculation formula is:
Figure BDA0003481091960000063
where K is the data dimension, S is the compression factor, λiThe ith characteristic value of the target center data is N, and the total number of the basic processing data is N;
the third calculation formula is:
T=HTP
wherein T is the target processing data, HTAnd forming a matrix by eigenvectors corresponding to the maximum K eigenvalues.
In one or more embodiments, preferably, the teacher-side platform further includes: the out-of-office management module is also used for responding to the score query request of the student; the signature module is also used for prompting the target user to maintain the handwritten signature when the target user signature is not stored in the teacher platform.
The technical scheme provided by the embodiment of the invention can have the following beneficial effects:
1) according to the embodiment of the invention, the related information is aggregated through the keywords, and then the aggregated information is subjected to data centralization processing to obtain the basic data only containing the keyword core information, so that the retrieval and processing efficiency of each time is improved.
2) In the embodiment of the invention, data dimensionality is reduced by data compression of basic data, and doctor evaluation under the condition of less occupied resources is realized.
3) In the embodiment of the invention, a user can adjust the function module of the target interface in a self-defining mode or a mode of authority application, authority establishment and the like, and adjust the specific function module to the target interface or remove the specific function module from the target interface according to personal requirements, so that a plurality of common function modules are integrated into one interface, and the position of the shortcut icon of the function module in the target interface is adjusted, thereby realizing personalized customization of the interface, meeting the operation habits of different users, simplifying the operation process of the user, improving the efficiency of searching the target function module and improving the use experience of the user.
Additional features and advantages of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. The objectives and other advantages of the invention will be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings.
The technical solution of the present invention is further described in detail by the accompanying drawings and embodiments.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, 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 invention, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 is a flow chart of a method for customizing an interface of a physician evaluation system in accordance with an embodiment of the present invention;
fig. 2 is a flow chart of the contents of claim 6 in the interface customization method of the physician's evaluation system according to an embodiment of the present invention.
FIG. 3 is a flow chart of a method for customizing an interface of a physician's review system in accordance with an embodiment of the present invention;
FIG. 4 is a flow chart of a method for customizing an interface of a physician evaluation system in accordance with an embodiment of the present invention;
FIG. 5 is a flow chart of a method for customizing an interface of a physician's review system in accordance with an embodiment of the present invention;
fig. 6 is a flow chart of the contents of claim 7 in the interface customization method of the physician's rating system according to an embodiment of the present invention.
FIG. 7 is a block diagram of a teacher-side platform in accordance with one embodiment of the invention;
FIG. 8 is a diagram illustrating a login interface of a teacher platform in accordance with an embodiment of the present invention;
FIG. 9 is a curriculum module of a teacher platform in accordance with an embodiment of the invention;
FIG. 10 is a teacher and student management module of a teacher end platform according to an embodiment of the present invention;
FIG. 11 is a block diagram of a workbench module of a teacher end platform, in accordance with an embodiment of the present invention.
Detailed Description
In some of the flows described in the present specification and claims and in the above figures, a number of operations are included that occur in a particular order, but it should be clearly understood that these operations may be performed out of order or in parallel as they occur herein, with the order of the operations being indicated as 101, 102, etc. merely to distinguish between the various operations, and the order of the operations by themselves does not represent any order of performance. Additionally, the flows may include more or fewer operations, and the operations may be performed sequentially or in parallel. It should be noted that, the descriptions of "first", "second", etc. in this document are used for distinguishing different messages, devices, modules, etc., and do not represent a sequential order, nor limit the types of "first" and "second" to be different.
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Along with the popularization of computers and smart phones, various application software gradually enters the lives of people, such as application software for education, shopping, medical treatment and the like, and brings a lot of convenience to the lives of people.
At present, the interface design of most application software is fixed, and a user needs to search, click and enter the fixed interface layer by layer according to personal needs when using the application software, and then operates the application software. However, in practical applications, due to different individual functions and individual habits, people have different operational requirements for each functional module of application software, and especially, for educational software, the concerned contents of teachers, students, managers, and the like are different. Therefore, the multilayer operation design of most application software brings great inconvenience to the operation of users, and how to realize personalized customization of interfaces on the existing functions so as to meet the operation habits of different users and simplify the operation process of the users is a technical problem to be solved urgently.
The embodiment of the invention provides an interface customization method of a doctor evaluation system and a teacher-side platform. According to the scheme, the related information is aggregated through the keywords, and data centralization processing and data compression are performed according to the aggregation, so that the key information is rapidly acquired and displayed.
Fig. 1 is a flowchart of an interface customization method for a physician evaluation system in an embodiment of the present application, which can be applied to the physician evaluation system, as shown in fig. 1, and can be implemented as the following steps S11-S13:
in step S11, receiving an operation instruction entering a target interface in the physician evaluation system;
in step S12, displaying a target interface according to the operation instruction;
in step S13, when a preset operation on the target interface is received, the shortcut icons of the function modules in the target interface are adjusted according to the preset operation, where the preset operation is an editing operation on the shortcut icons of the function modules in the physician evaluation system.
At present, an operation interface in most software is a fixed interface, but for the reason that the application requirements of users on the software are different, multiple click operations are required for entering a target application module, the operation is complex, and a large amount of time is wasted for the users. Therefore, if the user can gather the common functions in the same interface according to the requirement of the user, the user operation can be simplified, and the time of the user can be saved.
In this embodiment, a physician evaluation system is improved, and specifically, an operation instruction entering a target interface in the physician evaluation system is received, where the operation instruction may be a click operation, a pull operation, and the like, and the target interface may be an independent interface, a partial area embedded in another page, or a floating button area; displaying the target interface according to an operation instruction; when a preset operation on a target interface is received, the shortcut icons of the function modules in the target interface are adjusted according to the preset operation, wherein the preset operation is an editing operation on the shortcut icons of the function modules in the physician evaluation system, for example, the shortcut icons of the function modules are added or deleted by clicking or pulling, and a user can also adjust the positions of the shortcut icons of the function modules according to own habits.
The beneficial effect of this application lies in: the user can adjust the target interface function module in a self-defined mode or a mode of authority application, authority establishment and the like, and can adjust a specific function module to a target interface or remove the specific function module from the target interface according to personal requirements, so that a plurality of commonly-used function modules are integrated into one interface, the position of a shortcut icon of the function module in the target interface is adjusted, personalized customization of the interface is realized, operation habits of different users are met, the operation process of the user is simplified, the efficiency of searching for the target function module is improved, and the use experience of the user is improved.
In an embodiment, the buttons of the function modules include a button of a function module corresponding to a target interface, and enter the target interface in the physician evaluation system by clicking the button of the function module corresponding to the target interface, and load a shortcut icon of each function module in the target interface according to account information, where, for example, after a user logs in through the account information before, the shortcut icon in the target interface is adjusted, then, the shortcut icon of each function module in the target interface loaded according to the account information is the target interface adjusted when the user logs in through the account information last time, and the adjustment of the target interface mainly includes operations of adding a shortcut icon, deleting a shortcut icon, adjusting the position of the shortcut icon on the target interface, and the like.
In the embodiment, the user can realize customized display of the target interface through a user-defined mode or a mode of authority application, authority establishment and the like according to the requirement of the user. And after software is logged in, loading basic frame data corresponding to a login account, wherein the basic frame data comprises a button of a target interface function template. After clicking a function template button of the target interface, the target interface loads basic frame data of the target interface module, including shortcut icons of all function modules, and after clicking a shortcut icon of a specific function module, the contents of the corresponding function module are displayed or the user-defined optimization function module is adjusted, so that on the basis of realizing personalized customization, on the premise of being convenient for a user to use, data loading time is saved, and system resources are saved.
In one embodiment, the physician evaluation system includes a search portal, and the method may be further implemented as steps a1-a 4:
in step a1, an input operation at a search entry is received;
in step a2, displaying candidate words related to the input content in the target area during the input process;
in step a3, when a selection operation of a candidate word is received, the candidate word is used as a keyword for retrieval;
in step a4, when a click operation on a search button is received, the current content in the search entry is retrieved as a keyword.
In this embodiment, an input operation at the search entry is received; in the input process, displaying candidate words related to input contents in a target area, wherein the candidate words can be words stored in advance by a system, and when the candidate words do not have the input contents required by a user, the system takes the input contents of the user as new words to enter the candidate words; when receiving the selection operation of the candidate vocabulary, taking the candidate vocabulary as a keyword for retrieval; and when the clicking operation on the search button is received, retrieving the current content in the search entry as a keyword.
For example, a search entry is provided on a home page, and an entry corresponding to a function module is returned by inputting a function module name; providing a search entry in a teacher and student management module, and returning a related personnel file by inputting personnel names and personnel information to be searched; a search entry is provided in the course module to return the relevant course schedule by entering the course name.
The beneficial effect of this embodiment lies in: by setting the query search function, the user can conveniently search the function modules which are not frequently used, the user can conveniently and rapidly position specific contents in a large amount of similar information, and the search efficiency is improved.
In one embodiment, the method may also be implemented as steps B1-B4:
in step B1, information related to the keyword is acquired from each function module;
in step B2, aggregating the information related to the keywords to form aggregated information;
in step B3, preprocessing the aggregate information to obtain target processing data;
in step B4, the target processed data is displayed as a search result of the keyword.
In the embodiment, information related to the keyword is acquired from each functional module; aggregating information related to the keywords to form aggregated information; and displaying the aggregation information as a search result of the keyword.
For example, when the search content is a course name, the course schedule and the course statistical information of the course can be obtained from the course module, the examination arrangement of the course can be obtained from the management module of the subject, and the information is aggregated and displayed to form comprehensive information of the course such as the overall schedule, the current teaching progress, the teaching effect, the examination arrangement and the like; when the search content is the name of a certain student, the name, the specialty, the grade, the culture scheme and other information of the student can be acquired from the teacher and student management module, the course progress, the course score and other information selected by the student can be acquired from the course module, and the information is aggregated and displayed to form comprehensive data of the basic information, the course information, the culture progress and the score information of the student.
The beneficial effect of this embodiment lies in: by setting the query search function and aggregating the related information to form aggregated information for display, the method and the device facilitate the comprehensive query and comparison of different contents for users, simplify the operation of calling the related information for many times by the users, improve the query efficiency and improve the user experience.
As shown in fig. 2, in one or more embodiments, preferably, the preprocessing is performed on the aggregation information to obtain target processing data, and specifically includes:
s201, acquiring the aggregation information, performing centralized processing, and acquiring basic processing data;
s202, obtaining target center data by utilizing a first calculation formula according to the basic processing data;
s203, obtaining a characteristic value of the target center data;
s204, acquiring a feature vector corresponding to the feature value of the target center data;
s205, obtaining a data compression matrix of the target center data by using a second calculation formula;
s206, linear data preprocessing is carried out by utilizing a third calculation formula to obtain the target processing data;
the first calculation formula is:
Figure BDA0003481091960000101
wherein P is the target center data, P1、p2、…、pNRespectively 1 st, 2 nd, … nth data in the basic processing data,
Figure BDA0003481091960000111
a mean value for the base treatment data;
the second calculation formula is:
Figure BDA0003481091960000112
where K is the data dimension, S is the compression factor, λiThe ith characteristic value of the target center data is N, and the total number of the basic processing data is N;
the third calculation formula is:
T=HTP
wherein T is the target processing data, HTAnd forming a matrix by eigenvectors corresponding to the maximum K eigenvalues.
In the embodiment of the invention, data conversion is carried out on the basis of obtaining basic processing data, the basic processing data are converted into data with an average value as a center, specific characteristic data are utilized for further data compression, the degree of compression depends on a preset data compression coefficient S, the specific target processing data are determined by the method, the original data characteristics are reserved, and meanwhile, less resources are occupied.
As shown in FIG. 3, in one embodiment, the method may also be implemented as the following steps S21-S26:
in step S21, when an operation of entering the physician evaluation system by the user is received, a login interface is displayed;
in step S22, a login operation of a user on a login interface is received;
in step S23, account information input by the login operation is verified;
in step S24, when the verification passes, loading basic frame data of the physician evaluation system, wherein the basic frame data includes function module buttons;
in step S25, a click operation on a button of a function module is received;
in step S26, data corresponding to the account information under the function module is called according to the click operation.
In the embodiment, when receiving an operation that a user enters a physician evaluation system, a login interface is displayed; receiving login operation of a user on a login interface, wherein the login operation can be login by inputting an account number and a password, can also be authentication login by scanning a two-dimensional code through other equipment, and can also be login through biological characteristic information such as face recognition; verifying account information input by login operation; when the verification is passed, loading basic frame data of the doctor evaluation system, wherein the basic frame data comprises function module buttons, and the function modules can be function modules with differentiated data, such as personalized customization interfaces, personal information interfaces and the like; receiving click operation of a button of a functional module; and calling data corresponding to the account information of the functional module according to the clicking operation.
The beneficial effect of this embodiment lies in: after the user logs in the system, the basic frame data is loaded firstly without loading all data under each corresponding module, and the data loading mode is optimized by calling the data under the corresponding function module after the user clicks the corresponding function module, so that the system resources and the data loading time are saved.
In one embodiment, when the verification passes, the above step S24 is further implemented as the following steps C1-C2:
in step C1, a user type corresponding to the account information is determined according to the account information, where the user type includes at least one of:
teacher users, education department users, student users, expert users, and administrator users;
in step C2, corresponding permissions are assigned to the users according to the user types, and basic framework data corresponding to the user types are loaded.
In this embodiment, a user type corresponding to the account information is determined according to the account information, where the user type includes at least one of the following: teacher users, education department users, student users, expert users, and administrator users; the method comprises the steps of distributing corresponding authorities to users according to user types, loading basic frame data corresponding to the user types, for example, for teacher users, inquiring professional scores of students relevant to the teacher users, inquiring all scores of students in a whole college at an education department, and for an optimization function module, loading corresponding modules in a self-defined mode or an authority application mode, an authority opening mode and the like, for example, a scoring module carried out by expert users for professional examination.
The beneficial effect of this embodiment lies in: by classifying users, different access authorities and operation authorities are distributed to different user types, different basic framework data are loaded, and different user interfaces are displayed; for special items related to personal information or items related to and approving authorities, the loading optimization function module can be set up in the later period according to self definition or authorities. Therefore, the customization of the personalized interface is realized under the conditions of facilitating the operation of the user and reducing the occupation of system resources.
In one embodiment, as shown in FIG. 4, the method may also be implemented as the following steps S31-S3:
in step S31, when receiving a submission operation of the first user on the to-be-reviewed data, pushing the to-be-reviewed data to the second user;
in step S32, when the approval result submitted by the second user is received, the handwritten signature in the approval result is verified;
in step S33, when the handwritten signature in the approval result passes the verification, it is determined that the second user is a valid user, and the approval result is pushed to the first user;
in step S34, when the handwritten signature in the approval result fails to be verified, a prompt is sent to the second user that the verification failed.
In the embodiment, when the submitting operation of the first user on the to-be-audited data is received, the to-be-audited data is pushed to the second user; when an approval result submitted by a second user is received, verifying the handwritten signature in the approval result; when the handwritten signature in the approval result passes the verification, determining that the second user is a legal user, and pushing the approval result to the first user; and when the handwritten signature in the approval result is not verified, sending a prompt message of verification failure to the second user.
The beneficial effect of this embodiment lies in: for the examination and approval items, the verification of the handwritten signature is added, so that the authenticity of the signature and the accuracy of the examination and approval result are ensured; and when the handwritten signature can not pass the verification, a prompt message of verification failure is sent to the signature user, so that the risk of signature by others is reduced.
As shown in fig. 5, in an embodiment, the step S32 for verifying the handwritten signature in the approval result can be implemented as the following steps S41-S42:
in step S41, comparing the handwritten signature in the approval result with the handwritten signature template of the second user;
in step S42, when the similarity between the handwritten signature in the approval result and the handwritten signature template of the second user is greater than a first preset value, extracting feature points of the handwritten signature in the approval result;
in step S43, calculating a geometric relationship between feature points of the handwritten signature in the approval result;
in step S44, when the similarity between the geometric relationship between the feature points of the handwritten signature in the approval result and the geometric relationship between the feature points in the handwritten signature template is greater than a second preset value, it is determined that the handwritten signature in the approval result passes verification.
In this embodiment, the handwritten signature in the approval result is compared with the handwritten signature templates of the second users, wherein the handwritten signature templates may include the handwritten signatures of a plurality of second users, and the handwritten signature passing each time of verification may enter the signature template to update the signature template; when the similarity between the handwritten signature in the approval result and the handwritten signature template of the second user is greater than a first preset value, extracting feature points of the handwritten signature in the approval result, for example, 10 signatures exist in the handwritten signature template, calculating the similarity between the signature in the approval result and 10 signatures in the handwritten signature template and calculating an average value, and when the result is greater than the first preset value, extracting feature points from the handwritten signature in the approval result, wherein the feature points can be selected from a starting point, a turning point, an intersection point and the like; calculating the geometric relationship among the feature points of the handwritten signature in the approval result, for example, calculating the distance, angle, proportion and the like between each feature point and other feature points to obtain the feature vector of each signature, and further calculating the similarity of different signatures; and when the similarity between the geometric relationship between the characteristic points of the handwritten signature and the geometric relationship between the characteristic points in the handwritten signature template is greater than a second preset value, determining that the handwritten signature in the approval result passes verification.
The beneficial effect of this embodiment lies in: for the handwritten signature, the similarity between the handwritten signature and a template of the handwritten signature is obtained through calculation, when the similarity is larger than a first preset value, the similarity of the geometric relationship between the handwritten signature and the feature points in the template is verified, and the similarity judgment is carried out on the features of the internal structure of the font, so that the handwritten signature is verified from two aspects of the external shape and the internal structure features, and the accuracy of the verification result is improved.
As shown in fig. 6, in one or more embodiments, preferably, the obtaining the aggregation information performs a centralized processing, which specifically includes:
s601, randomly selecting one piece of data as initialization center data for the aggregation information;
s602, calculating the two-dimensional straight-line distance between the initialization center data and each datum by using a fourth calculation formula;
s603, calculating the sum of all the two-dimensional linear distances by using a fifth calculation formula, and storing the sum as a target distance sum;
s604, sequentially selecting data except the initialized central data from the aggregation information to update the initialized central data, and calculating the sum of all the two-dimensional linear distances by using the fifth calculation formula;
s605, selecting the initialization center data corresponding to the target distance and the minimum numerical value as the basic processing data of the aggregation information;
the fourth calculation formula:
Dj=||p’j-p’0||
wherein Dj is the two-dimensional linear distance of the jth aggregation information;
the fifth calculation formula:
SUM=ΣDj
wherein SUM is the SUM of target distances, p'0The initialization center data, p 'of the polymerization information'jIs the jth data in the aggregation information.
In the embodiment of the invention, the centralized processing is carried out on the aggregated information, so that the centralized processing of all the search information obtained by inputting the keywords is realized, and the centralized data is used as the basic processing data to prevent the centralized data from falling into the data sea when the keywords are searched by the physician evaluation system.
An embodiment of the present application further provides a teacher-side platform, as shown in fig. 7, including:
the login module 51 is used for receiving login operation of a user and verifying account information input by the login operation; when the verification is passed, determining the user type corresponding to the account information according to the account information; distributing corresponding authority for the user according to the user type, and loading basic frame data corresponding to the user type;
a signature module 52 for receiving a handwritten signature input by a user; comparing the handwritten signature with a handwritten signature template of the user; when the similarity between the handwritten signature and a handwritten signature template of a user is greater than a first preset value, extracting feature points of the handwritten signature; calculating the geometric relation between the characteristic points of the handwritten signature; when the similarity between the geometric relationship between the characteristic points of the handwritten signature and the geometric relationship between the characteristic points in the handwritten signature template is greater than a second preset value, determining that the handwritten signature passes verification; when the handwritten signature fails to pass the verification, sending prompt information of verification failure to a user;
the department management module 53 is used for receiving a department examination application submitted by a secretary of a department and pushing the department examination application to a chief deputy; receiving the approval result of the subject and the principal, and pushing the application to an education place when the approval result is that the approval is passed; the system is also used for receiving a mini-CEX table submitted by a scoring teacher and pushing the mini-CEX table to a supervisor; receiving the supervising results of supervising personnel and pushing the supervising results to an education place; the department rotary application system is also used for receiving a department rotary application submitted by a secretary of a department and pushing the department rotary application to an education department; and the final examination result is displayed.
A course module 54 for displaying the course information, the teaching condition, the in-hospital course information and the course statistical information of the user;
a teacher-student management module 55 for displaying teacher information and student information;
a workbench module 56 for displaying a target interface; and when the preset operation of the target interface is received, adjusting the shortcut icons of the functional modules in the target interface according to the preset operation, wherein the preset operation is the editing operation of the shortcut icons of the functional modules in the teacher end platform.
FIG. 8 is a login interface of the present embodiment, which is clicked to enter a user name/password/authentication code correctly after the physician evaluation system is clicked; fig. 9 is a curriculum module of this embodiment, in which the curriculum statistical information may be used to count total curriculum, attendance rate, total class time, student scores, and the like, and may link statistical results of learning conditions and teaching conditions related to different identities by selecting different identities of students through departments with different scholars, to perform quality control on the teaching conditions of teachers, and to monitor, compare and analyze the learning conditions of students; fig. 10 is a teacher-student management module in this embodiment, in which student information includes a training scheme, a teacher in a department only displays student information related to the teacher, a master or secretary value in the department displays information of students in the department, and an education department can display student information in the whole department; fig. 11 is a table module in this embodiment, and a user can customize a display interface in a customized manner by self-defining or permission applying, permission setting, and the like.
In one embodiment, the departmental management module 53 is further configured to respond to a student's achievement inquiry request;
the signature module 52 is further configured to prompt the target user to maintain the handwritten signature when the target user signature is not stored in the teacher platform.
It should be noted that, in the embodiment corresponding to the interface customization method for the physician evaluation system, the teacher-side platform may be used as an execution subject, that is, the teacher-side platform may execute any embodiment corresponding to the interface customization method for the physician evaluation system. In addition, the physician evaluation system in the above embodiments is equivalent to a teacher-side platform, and although the physician evaluation system (i.e., teacher-side platform) is taken as an example in the present application, it is understood that the solution can also be applied to customizing interfaces of other software, applications or systems.
The technical scheme provided by the embodiment of the invention can have the following beneficial effects:
1) according to the embodiment of the invention, the related information is aggregated through the keywords, and then the aggregated information is subjected to data centralization processing to obtain the basic data only containing the keyword core information, so that the retrieval and processing efficiency of each time is improved.
2) In the embodiment of the invention, data dimensionality is reduced by data compression of basic data, and doctor evaluation under the condition of less occupied resources is realized.
3) In the embodiment of the invention, a user can adjust the function module of the target interface in a self-defining mode or a mode of authority application, authority establishment and the like, and adjust the specific function module to the target interface or remove the specific function module from the target interface according to personal requirements, so that a plurality of common function modules are integrated into one interface, and the position of the shortcut icon of the function module in the target interface is adjusted, thereby realizing personalized customization of the interface, meeting the operation habits of different users, simplifying the operation process of the user, improving the efficiency of searching the target function module and improving the use experience of the user.
As will be appreciated by one skilled in the art, embodiments of the present invention may be provided as a method, system, or computer program product. Accordingly, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment or an embodiment combining software and hardware aspects. Furthermore, the present invention may take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage, optical storage, and the like) having computer-usable program code embodied therein.
The present invention is described with reference to flowchart illustrations and/or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of the invention. It will be understood that each flow and/or block of the flow diagrams and/or block diagrams, and combinations of flows and/or blocks in the flow diagrams and/or block diagrams, can be implemented by computer program instructions. These computer program instructions may be provided to a processor of a general purpose computer, special purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, create means for implementing the functions specified in the flowchart flow or flows and/or block diagram block or blocks.
These computer program instructions may also be stored in a computer-readable memory that can direct a computer or other programmable data processing apparatus to function in a particular manner, such that the instructions stored in the computer-readable memory produce an article of manufacture including instruction means which implement the function specified in the flowchart flow or flows and/or block diagram block or blocks.
These computer program instructions may also be loaded onto a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart flow or flows and/or block diagram block or blocks.
It will be apparent to those skilled in the art that various changes and modifications may be made in the present invention without departing from the spirit and scope of the invention. Thus, if such modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (10)

1. A method for customizing an interface of a physician evaluation system, comprising:
receiving an operation instruction entering a target interface in a physician evaluation system;
displaying the target interface according to the operation instruction;
when a preset operation on a target interface is received, adjusting shortcut icons of all function modules in the target interface according to the preset operation, wherein the preset operation is an editing operation on the shortcut icons of the function modules in the doctor evaluation system;
the method further comprises the following steps:
receiving an input operation at a search entry;
displaying candidate words related to the input content in a target area in the input process;
when receiving the selection operation of the candidate vocabulary, taking the candidate vocabulary as a keyword to search;
when receiving the click operation of a search button, taking the current content in the search entry as a keyword for retrieval;
acquiring information related to the keywords from each functional module;
aggregating information related to the keywords to form aggregated information;
preprocessing the aggregation information to obtain target processing data;
displaying the target processing data as a search result of the keyword;
when the search content is the course name, obtaining information related to the keyword from each functional module, including:
acquiring the course scheduling and course statistical information of the course from a course module, and acquiring the out-of-service assessment arrangement of the course from an out-of-service management module;
aggregating information related to the keywords to form aggregated information, comprising:
aggregating the information related to the keywords to form comprehensive information of the overall schedule, the current teaching progress, the teaching effect and the examination arrangement of the course;
preprocessing the aggregation information to obtain target processing data, specifically comprising:
acquiring the aggregation information, and performing centralized processing to acquire basic processing data;
obtaining target center data by utilizing a first calculation formula according to the basic processing data;
acquiring a characteristic value of the target center data;
acquiring a characteristic vector corresponding to the characteristic value of the target center data;
obtaining a data compression matrix of the target center data by using a second calculation formula;
linear data preprocessing is carried out by utilizing a third calculation formula to obtain the target processing data;
the first calculation formula is:
Figure FDA0003481091950000021
wherein P is the target center data, P1、p2、…、pNRespectively 1 st, 2 nd, … nth data in the basic processing data,
Figure FDA0003481091950000022
a mean value for the base treatment data;
the second calculation formula is:
Figure FDA0003481091950000023
where K is the data dimension, S is the compression factor, λiThe ith characteristic value of the target center data is N, and the total number of the basic processing data is N;
the third calculation formula is:
T=HTP
wherein T is the target processing data, HTAnd forming a matrix by eigenvectors corresponding to the maximum K eigenvalues.
2. The method of interface customization according to claim 1, further comprising:
when receiving an operation that a user enters a physician evaluation system, displaying a login interface;
receiving login operation of a user on a login interface;
verifying account information input by the login operation;
loading basic frame data of the physician evaluation system when the verification passes, wherein the basic frame data comprises function module buttons;
receiving click operation of a button of the functional module;
and calling data corresponding to the account information under the functional module according to the clicking operation.
3. The method as claimed in claim 2, wherein the button of the function module includes a button of a function module corresponding to the target interface, and the operation instruction entering the target interface in the physician evaluation system includes:
clicking a button of a functional module corresponding to the target interface;
the calling of the data corresponding to the account information under the functional module according to the clicking operation comprises:
and loading shortcut icons of all functional modules in the target interface according to the account information. .
4. The method of claim 2, wherein loading the basic framework data of the physician's assessment system when the verification passes further comprises:
determining a user type corresponding to the account information according to the account information, wherein the user type comprises at least one of the following:
teacher users, political office users, student users, expert users, and administrator users;
and distributing corresponding authority to the user according to the user type, and loading basic frame data corresponding to the user type.
5. The method of claim 1, wherein aggregating information associated with the keywords to form aggregated information comprises:
and aggregating the information related to the keywords to form comprehensive information of the overall schedule, the current teaching progress, the teaching effect and the examination arrangement of the course.
6. The method of interface customization according to claim 1, further comprising:
when receiving a submission operation of a first user on the data to be reviewed, pushing the data to be reviewed to a second user;
when an approval result submitted by a second user is received, verifying a handwritten signature in the approval result;
when the handwritten signature in the approval result passes the verification, determining that the second user is a legal user, and pushing the approval result to the first user;
and when the handwritten signature in the approval result is not verified, sending prompt information of verification failure to the second user.
7. The method of claim 1, wherein the verifying the handwritten signature in the approval result comprises:
comparing the handwritten signature in the approval result with the handwritten signature template of the second user;
when the similarity between the handwritten signature in the approval result and the handwritten signature template of the second user is greater than a first preset value, extracting feature points of the handwritten signature in the approval result;
calculating the geometric relation between the characteristic points of the handwritten signature in the approval result;
and when the similarity between the geometric relationship between the characteristic points of the handwritten signature in the approval result and the geometric relationship between the characteristic points in the handwritten signature template is greater than a second preset value, determining that the handwritten signature in the approval result passes verification.
8. The method according to claim 1, wherein the obtaining of the aggregated information is performed with a centralized process, specifically comprising:
randomly selecting one piece of data as initialization center data for the aggregation information;
calculating the two-dimensional straight-line distance between the initialization center data and each datum by using a fourth calculation formula;
calculating the sum of all the two-dimensional linear distances by using a fifth calculation formula, and storing the sum as a target distance sum;
sequentially selecting data except the initialization center data from the aggregation information to update the initialization center data, and calculating the sum of all the two-dimensional linear distances by using the fifth calculation formula;
selecting the initialization center data corresponding to the target distance and the minimum numerical value as the basic processing data of the aggregation information;
the fourth calculation formula:
Dj=||p’j-p’0||
wherein Dj is the two-dimensional linear distance of the jth aggregation information;
the fifth calculation formula:
SUM=ΣDj
wherein SUM is the SUM of target distances, p'0The initialization center data, p 'of the polymerization information'jIs the jth data in the aggregation information.
9. A teacher-side platform, comprising:
the login module is used for receiving login operation of a user and verifying account information input by the login operation; when the verification is passed, determining the user type corresponding to the account information according to the account information; distributing corresponding authority to the user according to the user type, and loading basic frame data corresponding to the user type;
the signature module is used for receiving a handwritten signature input by a user; comparing the handwritten signature with a handwritten signature template of the user; when the similarity between the handwritten signature and a handwritten signature template of the user is greater than a first preset value, extracting feature points of the handwritten signature; calculating the geometric relation among the characteristic points of the handwritten signature; when the similarity between the geometric relationship between the feature points of the handwritten signature and the geometric relationship between the feature points in the handwritten signature template is greater than a second preset value, determining that the handwritten signature passes verification; when the handwritten signature fails to be verified, sending prompt information of verification failure to the user;
the department management module is used for receiving a department examination application submitted by a secretary of a department and pushing the department examination application to a department officer; receiving an approval result of a subject and a principal, and pushing the application to an education place when the approval result is that the approval is passed; the system is also used for receiving a mini-CEX table submitted by a scoring teacher and pushing the mini-CEX table to a supervisor; receiving the supervising results of supervising personnel and pushing the supervising results to an education place; the department rotary application system is also used for receiving a department rotary application submitted by a secretary of a department and pushing the department rotary application to an education department; the system is also used for displaying the final out-of-medical examination result;
the course module is used for displaying the course information, the teaching condition, the in-hospital course information and the course statistical information of the user;
the teacher and student management module is used for displaying teacher information and student information;
the workbench module is used for displaying a target interface; when a preset operation on a target interface is received, adjusting shortcut icons of all function modules in the target interface according to the preset operation, wherein the preset operation is an editing operation on the shortcut icons of the function modules in the teacher end platform;
the teacher-end platform is further implemented to:
receiving an input operation at a search entry;
displaying candidate words related to the input content in a target area in the input process;
when receiving the selection operation of the candidate vocabulary, taking the candidate vocabulary as a keyword to search;
when receiving the click operation of a search button, taking the current content in the search entry as a keyword for retrieval;
acquiring information related to the keywords from each functional module;
aggregating information related to the keywords to form aggregated information;
preprocessing the aggregation information to obtain target processing data;
displaying the target processing data as a search result of the keyword;
when the search content is the course name, obtaining information related to the keyword from each functional module, including:
acquiring the course scheduling and course statistical information of the course from a course module, and acquiring the out-of-service assessment arrangement of the course from an out-of-service management module;
aggregating information related to the keywords to form aggregated information, comprising:
aggregating the information related to the keywords to form comprehensive information of the overall schedule, the current teaching progress, the teaching effect and the examination arrangement of the course;
preprocessing the aggregation information to obtain target processing data, specifically comprising:
acquiring the aggregation information, and performing centralized processing to acquire basic processing data;
obtaining target center data by utilizing a first calculation formula according to the basic processing data;
acquiring a characteristic value of the target center data;
acquiring a characteristic vector corresponding to the characteristic value of the target center data;
obtaining a data compression matrix of the target center data by using a second calculation formula;
linear data preprocessing is carried out by utilizing a third calculation formula to obtain the target processing data;
the first calculation formula is:
Figure FDA0003481091950000051
wherein P is the target center data, P1、p2、…、pNRespectively 1 st, 2 nd, … nth data in the basic processing data,
Figure FDA0003481091950000052
a mean value for the base treatment data;
the second calculation formula is:
Figure FDA0003481091950000053
where K is the data dimension, S is the compression factor, λiIs the ith of the target center dataA characteristic value, N is the total number of the basic processing data;
the third calculation formula is:
T=HTP
wherein T is the target processing data, HTAnd forming a matrix by eigenvectors corresponding to the maximum K eigenvalues.
10. A teacher-end platform, comprising: the out-of-office management module is also used for responding to the score query request of the student; the signature module is also used for prompting the target user to maintain the handwritten signature when the target user signature is not stored in the teacher platform.
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