CN114168746B - DIKW-based content compliance modeling and transmission method - Google Patents

DIKW-based content compliance modeling and transmission method Download PDF

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CN114168746B
CN114168746B CN202111446372.3A CN202111446372A CN114168746B CN 114168746 B CN114168746 B CN 114168746B CN 202111446372 A CN202111446372 A CN 202111446372A CN 114168746 B CN114168746 B CN 114168746B
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dikwp
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CN114168746A (en
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段玉聪
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Hainan University
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    • G06F16/30Information retrieval; Database structures therefor; File system structures therefor of unstructured textual data
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Abstract

The invention provides a DIKW-based content compliance modeling and transmission method, which comprises the following steps: detecting whether a sender and a receiver initiate a content transmission request, and if any one of the sender and the receiver initiates the content transmission request, executing the next step; the sender and the receiver respectively establish a sender DIKWP model and a receiver DIKWP model according to DIKWP maps; the sender DIKWP model and the receiver DIKWP model respectively judge compliance of own content transmission requests, and if the compliance is met, the sender and the receiver transmit the content; the sender DIKWP model and the receiver DIKWP model respectively collect content transmission requests which are not compliant with compliance of the own party; s5, the sender DIKWP model and the receiver DIKWP model respectively decompose the content transmission request collection which is not compliant with own, and send decomposition results to the sender and the receiver respectively. The invention can help the sender and the receiver to carry out the compliance content transmission and improve the quality of the content transmission.

Description

DIKW-based content compliance modeling and transmission method
Technical Field
The invention relates to the technical field of content transmission, in particular to a DIKW-based content compliance modeling and transmission method.
Background
With the development of information technology, interactive transmission of content is more and more frequent, however, how to perform content compliance transmission in content transmission between sender and receiver is always a primary goal of improving content transmission efficiency, and at present, the sender and receiver of content transmission directly perform direct sending of content of both parties when performing interaction, and do not perform compliance judgment on respective content, so that invalid content transmission is derived, and quality of content transmission is further reduced.
Disclosure of Invention
Accordingly, it is an object of the present invention to provide a DIKW-based content compliance modeling and transmission method to solve at least the above problems.
The technical scheme adopted by the invention is as follows:
DIKW-based content compliance modeling and transmission method, comprising the steps of:
S1, detecting whether a sender and a receiver initiate a content transmission request, and if any one of the sender and the receiver initiates the content transmission request, executing the next step;
S2, respectively establishing a sender DIKWP model and a receiver DIKWP model by the sender and the receiver according to DIKWP maps;
s3, respectively carrying out compliance judgment on own content transmission requests by a sender DIKWP model and a receiver DIKWP model, and if the compliance is met, carrying out content transmission by the sender and the receiver;
s4, the sender DIKWP model and the receiver DIKWP model respectively collect content transmission requests which are not in compliance with own side;
S5, the sender DIKWP model and the receiver DIKWP model respectively decompose the content transmission request collection which is not compliant with own, and send decomposition results to the sender and the receiver respectively.
Further, the DIKWP patterns include a data pattern, an information pattern, a knowledge pattern and an intention pattern, the data pattern is used for identifying data resources, the information pattern is used for identifying information patterns, the knowledge pattern is used for identifying knowledge resources, and the intention pattern is obtained by converting the data resources, the information resources and the knowledge resources.
Further, the sender and the receiver respectively establish a sender DIKWP model and a receiver DIKWP model according to DIKWP maps, and specifically include the following steps:
S21, content transmission requests of a sender and a receiver are respectively subjected to resource screening and classifying to respective maps through a data map, an information map and a knowledge map;
S22, carrying out intention judgment through resource screening and classifying of a data map, an information map and a knowledge map to obtain an intention map;
And S23, establishing a sender DIKWP model and a receiver DIKWP model according to the data spectrum, the information spectrum and the knowledge spectrum which are subjected to resource screening and classifying and the intention judgment to obtain the intention spectrum.
Further, the compliance content transfer request includes a fairness content transfer request, and a transparency content transfer request.
Further, the sender DIKWP model and the receiver DIKWP model respectively perform compliance judgment on the own content transmission request, and if the compliance is met, the sender and the receiver perform content transmission, specifically including the following steps:
And S31, detecting whether the fairness content transmission request, the fairness content transmission request and the transparency content transmission request are in compliance or not through a sender DIKWP model and a receiver DIKWP model, and if so, transmitting the content by the sender and the receiver.
Further, the sender DIKWP model and the receiver DIKWP model respectively collect content transmission requests which are not compliant with own, and specifically include the following steps:
s41, establishing a filtering model through a sender DIKWP model and a receiver DIKWP model;
S42, the filtering model gathers the content transmission requests which do not meet fairness and the content transmission requests which are not transparent.
Further, the sender DIKWP model and the receiver DIKWP model respectively decompose the content transmission request collection which is not compliant with own, and send decomposition results to the sender and the receiver respectively, which specifically includes the following steps:
S51, decomposing the collection of the content transmission requests which do not meet fairness, the content transmission requests which meet fairness and the content transmission requests which meet transparency through a filtering model;
The S52, DIKWP model and the receiver DIKWP model send the decomposed non-compliant fairness content transmission request, fairness content transmission request and transparency content transmission request to the sender and the receiver, respectively.
Compared with the prior art, the invention has the beneficial effects that:
The invention provides a content compliance modeling and transmission method based on DIKW, when a sender and a receiver initiate a content transmission request, respectively carrying out compliance judgment on respective transmission contents through a sender DIKWP model and a receiver DIKWP model, and transmitting the transmission contents conforming to the compliance judgment, so that the content transmission between the sender and the receiver can be carried out, meanwhile, the transmission contents not conforming to the compliance are collected and decomposed, and then the decomposition result is sent to the sender and the receiver, and the content transmission quality of the sender and the receiver can be helped through the transmission of the compliance transmission.
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In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the description of the embodiments will be briefly described below, and it is apparent that the drawings in the following description are only preferred embodiments of the present invention, and other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic overall flow chart of a content compliance modeling and transmission method based on DIKW according to an embodiment of the present invention.
Detailed Description
The principles and features of the present invention are described below with reference to the drawings, the illustrated embodiments are provided for the purpose of illustrating the invention and are not to be construed as limiting the scope of the invention.
Referring to fig. 1, the present invention provides a method for modeling and transmitting content compliance based on DIKW, the method comprising the steps of:
S1, detecting whether a sender and a receiver initiate a content transmission request, and if any one of the sender and the receiver initiates the content transmission request, executing the next step;
wherein, whether the sender and the receiver initiate the content transmission initiation request is detected by the network communication application program,
S2, respectively establishing a sender DIKWP model and a receiver DIKWP model by the sender and the receiver according to DIKWP maps;
Wherein, a sender DIKWP model and a receiver DIKWP model based on DIKWP patterns are respectively established on a carrier of the network communication application program.
S3, respectively carrying out compliance judgment on own content transmission requests by a sender DIKWP model and a receiver DIKWP model, and if the compliance is met, carrying out content transmission by the sender and the receiver;
s4, the sender DIKWP model and the receiver DIKWP model respectively collect content transmission requests which are not in compliance with own side;
S5, the sender DIKWP model and the receiver DIKWP model respectively decompose the content transmission request collection which is not compliant with own, and send decomposition results to the sender and the receiver respectively.
In the network communication application, when detecting that the sender and the receiver initiate a content transmission request, the sender DIKWP model and the receiver DIKWP model respectively perform compliance judgment on the respective transmission contents, and the transmission contents conforming to the compliance judgment can be transmitted between the sender and the receiver.
The DIKWP patterns comprise a data pattern, an information pattern, a knowledge pattern and an intention pattern, wherein the data pattern is used for identifying data resources, the information pattern is used for identifying information patterns, the knowledge pattern is used for identifying knowledge resources, and the intention pattern is obtained by converting the data resources, the information resources and the knowledge resources.
Illustratively, the data spectrum is made up of a data resource, which is a series of discrete elements that without context have no specific meaning and are not associated with a particular purpose of a human being. The information map is composed of information resources, the information resources are used for analyzing and expressing the interaction relationship between two entities, and the entities can be people or things, and can be obtained directly through typing targets or obtained through converting data resources and information resources. The knowledge graph is composed of knowledge resources, the knowledge resources are obtained by carrying out structured and formal statistics and deduction on data resources and information resources, and the abstract summary is carried out on entity relations on the basis of the information resources. The intent map is composed of intent resources, which are specifically intended things or intended results of an individual, taking into account intent resources by combining them with data resources into the form of information resources, and mapping them with related data resources, information resources and knowledge resources. The intention resources themselves have relationships such as inclusion and concatenation.
The sender and the receiver respectively establish a sender DIKWP model and a receiver DIKWP model according to DIKWP maps, and specifically comprise the following steps:
S21, content transmission requests of a sender and a receiver are respectively subjected to resource screening and classifying to respective maps through a data map, an information map and a knowledge map;
illustratively, the sender and the receiver categorize the content to be transmitted by their own into respective profiles via data profiles, information profiles and knowledge profiles, so as to transform the transmitted content in a targeted manner.
S22, carrying out intention judgment through resource screening and classifying of a data map, an information map and a knowledge map to obtain an intention map;
And S23, establishing a sender DIKWP model and a receiver DIKWP model according to the data spectrum, the information spectrum and the knowledge spectrum which are subjected to resource screening and classifying and the intention judgment to obtain the intention spectrum.
The transmission content of the sender and the receiver is illustratively judged by judging whether the data, the information and the knowledge are of the same type or not through the data spectrum, the information spectrum and the knowledge spectrum, the intention spectrum is obtained through the conversion among the data spectrum, the information spectrum and the knowledge spectrum and the cross-type conversion, and then the sender DIKWP model and the receiver DIKWP model are built by the intention spectrum obtained through the data spectrum, the information spectrum and the knowledge spectrum and the intention judgment.
The compliance content transfer requests include fairness content transfer requests, and transparency content transfer requests. For example, fairness, and openness requirements are satisfied when the sender and the receiver transmit contents, so as to ensure that the sender and the receiver receive the respective transmitted contents truly, accurately, and completely, respectively.
The sender DIKWP model and the receiver DIKWP model respectively perform compliance judgment on own content transmission requests, and if the compliance is met, the sender and the receiver perform content transmission, specifically comprising the following steps:
And S31, detecting whether the fairness content transmission request, the fairness content transmission request and the transparency content transmission request are in compliance or not through a sender DIKWP model and a receiver DIKWP model, and if so, transmitting the content by the sender and the receiver. The transmission content is converted into an intention spectrum of fairness, fairness and transparency through a data spectrum, an information spectrum, a knowledge spectrum and a cross type, and the sender and the receiver transmit the intention spectrum of fairness, fairness and transparency.
The sender DIKWP model and the receiver DIKWP model respectively collect content transmission requests which are not compliant with compliance of own parties, and specifically comprise the following steps:
s41, establishing a filtering model through a sender DIKWP model and a receiver DIKWP model;
S42, the filtering model gathers the content transmission requests which do not meet fairness and the content transmission requests which are not transparent.
Illustratively, the sender DIKWP model and the receiver DIKWP model collect the data patterns, information patterns, knowledge patterns, and intention patterns of unfairness, and opacity obtained by cross-type conversion through the filtering model, so as to facilitate readjustment of the transmission contents by the sender and the receiver
The sender DIKWP model and receiver DIKWP model do not agree with each other. The regular content transmission request collection is decomposed, and the decomposition result is respectively sent to a sender and a receiver, specifically comprising the following steps:
S51, decomposing the collection of the content transmission requests which do not meet fairness, the content transmission requests which meet fairness and the content transmission requests which meet transparency through a filtering model;
The S52, DIKWP model and the receiver DIKWP model send the decomposed non-compliant fairness content transmission request, fairness content transmission request and transparency content transmission request to the sender and the receiver, respectively. Illustratively, the filtering model decomposes the unfairness, opacity intent patterns into data patterns, information patterns and knowledge patterns, which then categorize the content transmissions into unfair content transmission requests, fair content transmission requests and transparency content transmissions in respective patterns and send them to the sender and the receiver, respectively, which modify and adjust the portions of the data, information and knowledge involved in the transmission of the content.
The foregoing description of the preferred embodiments of the invention is not intended to limit the invention to the precise form disclosed, and any such modifications, equivalents, and alternatives falling within the spirit and scope of the invention are intended to be included within the scope of the invention.

Claims (5)

1. DIKW-based content compliance modeling and transmission method, characterized in that it comprises the following steps:
S1, detecting whether a sender and a receiver initiate a content transmission request, and if any one of the sender and the receiver initiates the content transmission request, executing the next step;
S2, a sender and a receiver respectively establish a sender DIKWP model and a receiver DIKWP model according to DIKWP maps, and the method further comprises the following substeps:
S21, content transmission requests of a sender and a receiver are respectively subjected to resource screening and classifying to respective maps through a data map, an information map and a knowledge map;
S22, carrying out intention judgment through resource screening and classifying of a data map, an information map and a knowledge map to obtain an intention map;
S23, establishing a sender DIKWP model and a receiver DIKWP model according to the data spectrum, the information spectrum and the knowledge spectrum which are subjected to resource screening and classifying and the intention judgment to obtain an intention spectrum;
s3, respectively carrying out compliance judgment on own content transmission requests by a sender DIKWP model and a receiver DIKWP model, and if the compliance is met, carrying out content transmission by the sender and the receiver;
S4, the sender DIKWP model and the receiver DIKWP model respectively collect content transmission requests which are not in compliance with own side; the method also comprises the following substeps:
s41, establishing a filtering model through a sender DIKWP model and a receiver DIKWP model;
S42, the filtering model gathers the content transmission requests which do not meet fairness and the content transmission requests which are not transparency;
S5, the sender DIKWP model and the receiver DIKWP model respectively decompose the content transmission request collection which is not compliant with own, and send decomposition results to the sender and the receiver respectively.
2. The DIKW-based content compliance modeling and transmission method according to claim 1, wherein the DIKWP profile includes a data profile, an information profile, a knowledge profile, and an intent profile, the data profile is used to identify data resources, the information profile is used to identify information profiles, the knowledge profile is used to identify knowledge resources, and the intent profile is converted from the data resources, the information resources, and the knowledge resources.
3. The DIKW-based content compliance modeling and delivery method as claimed in claim 2, wherein the compliance content delivery request includes a fairness content delivery request, and a transparency content delivery request.
4. The method for modeling and transmitting content compliance based on DIKW as claimed in claim 3, wherein the sender DIKWP model and the receiver DIKWP model respectively perform compliance judgment on own content transmission requests, and if the compliance is met, the sender and the receiver perform content transmission, specifically comprising the following steps:
And S31, detecting whether the fairness content transmission request, the fairness content transmission request and the transparency content transmission request are in compliance or not through a sender DIKWP model and a receiver DIKWP model, and if so, transmitting the content by the sender and the receiver.
5. The DIKW-based content compliance modeling and delivery method according to claim 4, wherein the sender DIKWP model and the receiver DIKWP model decompose the own non-compliant content delivery request aggregate, respectively, and send the decomposition results to the sender and the receiver, respectively, specifically comprising the steps of:
S51, decomposing the collection of the content transmission requests which do not meet fairness, the content transmission requests which meet fairness and the content transmission requests which meet transparency through a filtering model;
The S52, DIKWP model and the receiver DIKWP model send the decomposed non-compliant fairness content transmission request, fairness content transmission request and transparency content transmission request to the sender and the receiver, respectively.
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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111178424A (en) * 2019-12-26 2020-05-19 中国石油大学(北京) Petrochemical production site safety compliance real-time detection system and method
CN111988339A (en) * 2020-09-07 2020-11-24 珠海市一知安全科技有限公司 Network attack path discovery, extraction and association method based on DIKW model
CN112182509A (en) * 2020-09-16 2021-01-05 支付宝(杭州)信息技术有限公司 Method, device and equipment for detecting abnormity of compliance data
CN112231750A (en) * 2020-10-14 2021-01-15 海南大学 Multi-mode privacy protection method integrating fairness, justice and transparent regulation technologization
CN113645284A (en) * 2021-07-29 2021-11-12 海南大学 Intention-driven multi-mode DIKW content transmission method

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10212251B2 (en) * 2015-03-16 2019-02-19 Invensense, Inc. Method and system for generating exchangeable user profiles

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111178424A (en) * 2019-12-26 2020-05-19 中国石油大学(北京) Petrochemical production site safety compliance real-time detection system and method
CN111988339A (en) * 2020-09-07 2020-11-24 珠海市一知安全科技有限公司 Network attack path discovery, extraction and association method based on DIKW model
CN112182509A (en) * 2020-09-16 2021-01-05 支付宝(杭州)信息技术有限公司 Method, device and equipment for detecting abnormity of compliance data
CN112231750A (en) * 2020-10-14 2021-01-15 海南大学 Multi-mode privacy protection method integrating fairness, justice and transparent regulation technologization
CN113645284A (en) * 2021-07-29 2021-11-12 海南大学 Intention-driven multi-mode DIKW content transmission method

Non-Patent Citations (4)

* Cited by examiner, † Cited by third party
Title
Employing GPT-4 to realize the DIKWPsystem-An example of gout diagnosis andtreatment;Yucong Duan;《ResearchGate》;20231114;1-20 *
Fairness Modelling, Checking and Adjustment for Purpose Driven Content Filling over DIKW;Heather J. Van Meter;《LAW, TECHNOLOGY AND HUMANS》;20201231;第2卷(第2期);69-80 *
Purpose-driven Content Network Transmission Protocol Crossing DIKW Modals;Yucong Duan等;《2021 IEEE 23rd Int Conf on High Performance Computing & Communications》;20220530;2322-2327 *
大数据时代下的个人信息概念界定研究;李莎莎;《中国优秀硕士学位论文全文数据库社会科学Ⅰ辑》;20210115(第01期);G116-169 *

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