CN114900480A - Communication safety management and control system based on data platform - Google Patents

Communication safety management and control system based on data platform Download PDF

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CN114900480A
CN114900480A CN202210413314.9A CN202210413314A CN114900480A CN 114900480 A CN114900480 A CN 114900480A CN 202210413314 A CN202210413314 A CN 202210413314A CN 114900480 A CN114900480 A CN 114900480A
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CN114900480B (en
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王魁
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Hefei Yamooc Information Technology Co ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L47/00Traffic control in data switching networks
    • H04L47/70Admission control; Resource allocation
    • H04L47/76Admission control; Resource allocation using dynamic resource allocation, e.g. in-call renegotiation requested by the user or requested by the network in response to changing network conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/04Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks
    • H04L63/0428Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks wherein the data content is protected, e.g. by encrypting or encapsulating the payload
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/50Reducing energy consumption in communication networks in wire-line communication networks, e.g. low power modes or reduced link rate

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  • Computer Security & Cryptography (AREA)
  • Computer Networks & Wireless Communication (AREA)
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Abstract

The invention discloses a communication security management and control system based on a data platform, relates to the technical field of data transmission, and solves the technical problems that the transmission rate of transmitted data is too slow and the stolen coefficient in the transmission process is large; the capacity of data transmission is reasonably divided according to the bandwidth of a transmission channel, the data packets are divided into three different groups of data packets, different data packets are transmitted by adopting network channels with different bandwidths, the data packets with redundant capacity are processed again, the processing value is compared with the threshold value U inside a threshold value module, through the comparison result, the data packets with redundant capacity are adopted by adopting a corresponding transmission channel, the division transmission processing work of the data transmission is completed, the transmission mode is adopted, the efficiency is high, the slow data transmission cannot be caused, the encryption effect is improved in the data transmission process, the transmission efficiency is ensured, and the data transmission is enabled to obtain the sufficient transmission effect.

Description

Communication safety management and control system based on data platform
Technical Field
The invention belongs to the technical field of data transmission, and particularly relates to a communication safety management and control system based on a data platform.
Background
Data communication is a new communication mode generated by combining communication technology and computer technology, a transmission channel is necessary for transmitting information between two places, and according to different transmission media, the data communication is divided into wired data communication and wireless data communication, but the wired data communication and the wireless data communication are connected through the transmission channel, so that the data terminals at different places can share software, hardware and information resources.
When the data platform transmits data, and when the data capacity is too large, the channel bandwidth of the transmission capacity is not suitable for corresponding transmission data, so that the transmission rate of the transmission data is too slow, meanwhile, in the data transmission process, a corresponding encryption mode is not set inside, so that the danger coefficient is large when the data is transmitted, and the data is easily stolen by external personnel,
disclosure of Invention
The present invention is directed to solving at least one of the problems of the prior art; therefore, the invention provides a communication safety management and control system based on a data platform, which is used for solving the technical problems that the transmission rate of the transmitted data is too slow and the stolen coefficient is large in the transmission process.
In order to achieve the above object, an embodiment according to a first aspect of the present invention provides a communication security management and control system based on a data platform, including a data acquisition end, a data management and control end, and a network channel transmission end;
the data acquisition end is used for acquiring the data capacity of the transmission data and acquiring the bandwidth of the internal network channel of the network channel transmission end;
the data management and control end divides the transmission data into a plurality of groups of data packets according to the data capacity and the bandwidth, then adopts three groups of different network channels to transmit the data packets, and encrypts the transmission data in the transmission process;
and the network channel transmission end is internally provided with three groups of network transmission channels, and the internal bandwidths of each group of network transmission channels are different.
Preferably, the data management and control end comprises a processing module, a threshold module and an encryption module, the encryption module comprises a numbering unit, a splitting unit and a management and control unit, the output end of the numbering unit is electrically connected with the input end of the splitting unit, and the output end of the splitting unit is electrically connected with the input end of the management and control unit.
Preferably, the bandwidths of the three groups of network transmission channels are marked as DK1, DK2 and DK3, wherein DK1 < DK2 < DK3, DK1 has small bandwidth and small transmission capacity but slow transmission rate, and DK3 has large bandwidth and large transmission capacity but slow transmission rate, wherein DK2 is centered.
Preferably, the data management and control end encrypts the transmission data in the following manner:
s1, the numbering unit numbers the transmission data in advance, the number value is not lower than the three groups of number values, and the numbering unit marks the number of the transmission data as 123;
s2, when the splitting unit splits and disassembles the transmission data with the serial number of 123, the transmission data are split into three groups of data packets, the internal marks of the three groups of data packets are respectively marked as 1, 2 and 3 according to the system setting, and the transmission data with the serial number of 123 are randomly split into three groups of numerical marks;
s3, the managing and controlling unit processes the three groups of numerical value marks again, the inside of the three groups of numerical value marks is set with an encrypted value alpha, the representation forms of the three groups of data packet numerical value marks are set to be X, Y and Z, and the marks X, Y and Z are changed into (X + alpha), (Y + alpha) and (Z + alpha);
s4, the management and control unit generates a memory terminal, the changed numerical markers (X + alpha), (Y + alpha) and (Z + alpha) of the three groups of data packets are memorized, the memory data also comprises the arrangement modes of (X + alpha), (Y + alpha) and (Z + alpha), after the three groups of data packets and the memory terminal are transmitted to the corresponding terminal through the network channel transmission end, the memory terminal arranges and binds the three groups of data packets according to the memorized numerical markers and the arrangement modes, and the transmitted data is arranged in order.
Preferably, the data management and control end divides the transmission data into a plurality of groups of data packets according to the data capacity and the bandwidth in a processing manner that:
the W1 and the data acquisition end firstly acquire the bandwidths of three groups of network channels, wherein the bandwidths of the three groups of network channels are respectively marked as DK1, DK2 and DK3, the data capacity of transmission data is acquired and marked as RL;
w2, use
Figure BDA0003604611730000031
Obtaining a capacity residual value SY, wherein
Figure BDA0003604611730000032
Is a correction factor, has a value of 0.98562, said
Figure BDA0003604611730000033
Is a factor for the change of the integer number,
Figure BDA0003604611730000034
is a positive integer;
w3, and the capacity residual value SY is processed again to adopt
Figure BDA0003604611730000035
And
Figure BDA0003604611730000036
three sets of channel determinations QD1, QD2, and QD3 were obtained;
w4, comparing the three groups of channel determination values QD1, QD2 and QD3 with an internal threshold U of a threshold module, extracting a channel determination value lower than the internal threshold U, then performing comparison processing on the channel determination values, extracting the minimum value of the channel determination values, then extracting the corresponding channel mark, determining a transmission channel, and transmitting a data packet with a capacity residual value SY by using the transmission channel;
w5, when all three channel determination values QD1, QD2 and QD3 are greater than the threshold module internal threshold U, repeating steps W2 and W3 to make the three channel determination values QD1, QD2 and QD3 be greater than the threshold module internal threshold U
Figure BDA0003604611730000037
The calculation process is performed again until all of the three sets of channel determination values QD1, QD2, and QD3 are less than or equal to the threshold block internal threshold U, and the calculation is stopped.
Preferably, a corresponding threshold U is arranged inside the threshold module, and a comparison unit is arranged inside the threshold module, and the comparison unit is used for comparing the three sets of channel determination values QD1, QD2, and QD3 with the threshold U.
Compared with the prior art, the invention has the beneficial effects that: the method comprises the steps that firstly, the capacity of transmission data and the bandwidth of a transmission channel are obtained through a data obtaining end, wherein different network channels are provided with different bandwidths, the different bandwidths represent different transmission rates, the smaller bandwidth is suitable for the transmission of the data with the smaller capacity, the transmission rate is high, and when the channel with the smaller bandwidth transmits the data with the larger capacity, the data transmission is slow;
the capacity of the transmission data is reasonably divided according to the bandwidth of the transmission channel, the transmission data is divided into three groups of different data packets, the data packets with redundant capacity are processed again, the processing value is compared with the threshold value U inside the threshold value module, and the data packets with redundant capacity are transmitted through the corresponding transmission channel according to the comparison result to finish the division transmission processing work of the transmission data;
divide into three data packets with the data package, mark respectively three data packets of group again, adopt corresponding memory terminal to remember, transmit to corresponding equipment end after, arrange the arrangement to three data packets of group, this kind of transmission encryption mode, effectively promote the encryption nature, avoid outside personnel to steal data, adopt the multiunit passageway to transmit, simultaneously in transmission process, the mark to data changes, can effectively avoid outside personnel to extract according to the data serial number and obtain corresponding data, guarantee that data can not be stolen, promote encryption effect.
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Fig. 1 is a schematic diagram of the principle of the present invention.
Detailed Description
The technical solutions of the present invention will be described clearly and completely with reference to the following embodiments, and it should be understood 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.
Referring to fig. 1, the present application provides a communication security management and control system based on a data platform, including a data acquisition end, a data management and control end, and a network channel transmission end, where the data acquisition end and the data management and control end are both connected to the network channel transmission end in a bidirectional manner, and an output end of the data acquisition end is electrically connected to an input end of the data management and control end;
the data management and control end comprises a processing module, a threshold module and an encryption module, wherein the processing module is in bidirectional connection with the threshold module, and the processing module is in bidirectional connection with the encryption module;
the encryption module comprises a numbering unit, a splitting unit and a control unit, wherein the output end of the numbering unit is electrically connected with the input end of the splitting unit, and the output end of the splitting unit is electrically connected with the input end of the control unit;
the data acquisition terminal is used for acquiring the data capacity of the transmission data and acquiring the bandwidths of a plurality of groups of network channels, wherein the plurality of groups of network channels can be three groups;
the data management and control end divides the transmission data into a plurality of groups of data packets according to the data capacity and the bandwidth, then adopts three groups of different network channels to transmit the data packets, and encrypts the transmission data in the transmission process;
the data management and control end encrypts the transmission data in the following modes:
s1, the numbering unit numbers the transmission data in advance, the number value is not lower than three groups of number values, the numbering unit marks the number of the transmission data as 123, 123 is one of the expression forms, and can be 124, 125 or other values;
s2, when the splitting unit splits and splits the transmission data numbered 123, the transmission data are split into three groups of data packets, the internal flags of the three groups of data packets are respectively marked as 1, 2, and 3 according to the system setting, if the number is 1234, the internal flags of the three groups of data packets can be split into 1, 2, and 34, or 12, 3, and 4, or can be split into 1, 23, and 4, and the transmission data numbered 123 are randomly split into three groups of numerical flags;
s3, the managing and controlling unit processes the three groups of numerical value marks again, the inside of the three groups of numerical value marks is set with an encrypted value alpha, the representation forms of the three groups of data packet numerical value marks are set to be X, Y and Z, and the marks X, Y and Z are changed into (X + alpha), (Y + alpha) and (Z + alpha);
s4, the management and control unit generates a memory terminal, the changed numerical markers (X + alpha), (Y + alpha) and (Z + alpha) of the three groups of data packets are memorized, the memory data also comprises the arrangement modes of (X + alpha), (Y + alpha) and (Z + alpha), after the three groups of data packets and the memory terminal are transmitted to the corresponding terminal through the network channel transmission end, the memory terminal arranges and binds the three groups of data packets according to the memorized numerical markers and the arrangement modes, and the transmitted data is arranged in order.
The data transmission mode can effectively improve the encryption property, avoids the stealing of data by external personnel, adopts a plurality of groups of channels for transmission, and simultaneously changes the marks of the data in the transmission process, can effectively avoid the external personnel from extracting corresponding data according to the data serial number, ensures that the data can not be stolen, and improves the encryption effect;
the data management and control end divides the transmission data into a plurality of groups of data packets according to the data capacity and the bandwidth in a processing mode that:
the method comprises the steps that a W1 and a data acquisition end firstly acquire bandwidths of three groups of network channels, and the bandwidths of the three groups of network channels are respectively marked as DK1, DK2 and DK3, wherein DK1 is larger than DK2 and smaller than DK3, the bandwidth of a DK1 network channel is small, the transmission capacity is small, but the transmission rate is slow, the bandwidth of a DK3 network channel is large, the transmission capacity is large, but the transmission rate is slow, and the DK2 is centered, acquires the data capacity of transmission data, and marks the data capacity as RL;
w2, use
Figure BDA0003604611730000061
Obtaining a capacity residual value SY, wherein
Figure BDA0003604611730000062
Is a correction factor, has a value of 0.98562, said
Figure BDA0003604611730000063
Is a factor for the change of the integer number,
Figure BDA0003604611730000064
is a positive integer;
w3, and processing the capacity surplus value SY again to adopt
Figure BDA0003604611730000065
And
Figure BDA0003604611730000066
three sets of channel determinations QD1, QD2, and QD3 were obtained;
w4, comparing the three groups of channel determination values QD1, QD2 and QD3 with an internal threshold U of a threshold module, extracting a channel determination value lower than the internal threshold U, then performing comparison processing on the channel determination values, extracting the minimum value of the channel determination values, then extracting the corresponding channel mark, determining a transmission channel, and transmitting a data packet with a capacity residual value SY by using the transmission channel;
w5, when all three channel determination values QD1, QD2 and QD3 are greater than the threshold module internal threshold U, repeating steps W2 and W3 to make the three channel determination values QD1, QD2 and QD3 be greater than the threshold module internal threshold U
Figure BDA0003604611730000071
The calculation process is performed again until all of the three sets of channel determination values QD1, QD2, and QD3 are less than or equal to the threshold block internal threshold U, and the calculation is stopped.
The threshold module is internally provided with a corresponding threshold U, and the threshold module is internally provided with a comparison unit which is used for comparing the three groups of channel determination values QD1, QD2 and QD3 with the threshold U;
the method comprises the steps that firstly, the capacity of transmission data and the bandwidth of a transmission channel are obtained through a data obtaining end, wherein different network channels are provided with different bandwidths, the different bandwidths represent different transmission rates, the smaller bandwidth is suitable for the transmission of the data with the smaller capacity, the transmission rate is high, and when the channel with the smaller bandwidth transmits the data with the larger capacity, the data transmission is slow;
the capacity of data transmission is reasonably divided according to the bandwidth of a transmission channel, the data packets are divided into three different groups of data packets, the data packets with redundant capacity are processed again, the processing value is compared with the threshold value U inside the threshold value module, the corresponding transmission channel is adopted for the data packets with redundant capacity through the comparison result, the division transmission processing work of the data transmission is completed, the transmission mode is adopted, the efficiency is high, the data transmission is slow, the encryption effect is improved in the data transmission process, the transmission efficiency is guaranteed simultaneously, and the data transmission is enabled to obtain the sufficient transmission effect.
Part of data in the formula is obtained by removing dimension and taking the value to calculate, and the formula is obtained by simulating a large amount of collected data through software and is closest to a real situation; the preset parameters and the preset threshold values in the formula are set by those skilled in the art according to actual conditions or obtained through simulation of a large amount of data.
The working principle of the invention is as follows: the method comprises the steps that firstly, the capacity of transmission data and the bandwidth of a transmission channel are obtained through a data obtaining end, wherein different network channels are provided with different bandwidths, the different bandwidths represent different transmission rates, the smaller bandwidth is suitable for the transmission of the data with the smaller capacity, the transmission rate is high, and when the channel with the smaller bandwidth transmits the data with the larger capacity, the data transmission is slow;
the capacity of the transmission data is reasonably divided according to the bandwidth of the transmission channel, the transmission data is divided into three groups of different data packets, the data packets with redundant capacity are processed again, the processing value is compared with the threshold value U inside the threshold value module, and the data packets with redundant capacity are transmitted through the corresponding transmission channel according to the comparison result to finish the division transmission processing work of the transmission data;
divide into three data packets with the data package, mark respectively three data packets of group again, adopt corresponding memory terminal to remember, transmit to corresponding equipment end after, arrange the arrangement to three data packets of group, this kind of transmission encryption mode, effectively promote the encryption nature, avoid outside personnel to steal data, adopt the multiunit passageway to transmit, simultaneously in transmission process, the mark to data changes, can effectively avoid outside personnel to extract according to the data serial number and obtain corresponding data, guarantee that data can not be stolen, promote encryption effect.
Although the present invention has been described in detail with reference to the preferred embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the spirit and scope of the present invention.

Claims (6)

1. The communication safety management and control system based on the data platform is characterized by comprising a data acquisition end, a data management and control end and a network channel transmission end;
the data acquisition end is used for acquiring the data capacity of the transmission data and acquiring the bandwidth of the internal network channel of the network channel transmission end;
the data management and control end divides the transmission data into a plurality of groups of data packets according to the data capacity and the bandwidth, then adopts three groups of different network channels to transmit the data packets, and encrypts the transmission data in the transmission process;
and the network channel transmission end is internally provided with three groups of network transmission channels, and the internal bandwidths of each group of network transmission channels are different.
2. The data platform-based communication security management and control system of claim 1, wherein the data management and control end comprises a processing module, a threshold module and an encryption module, the encryption module comprises a numbering unit, a splitting unit and a management and control unit, an output end of the numbering unit is electrically connected with an input end of the splitting unit, and an output end of the splitting unit is electrically connected with an input end of the management and control unit.
3. The data platform based communication security management system of claim 2, wherein the bandwidths of the three groups of network transmission channels are labeled as DK1, DK2 and DK3, wherein DK1 < DK2 < DK3, DK1 has small network channel bandwidth, small transmission capacity and slow transmission rate, and DK3 has large network channel bandwidth, large transmission capacity and slow transmission rate, wherein DK2 is centered.
4. The communication security management and control system based on the data platform according to claim 3, wherein the data management and control end encrypts the transmission data in a manner that:
s1, the numbering unit numbers the transmission data in advance, the number value is not lower than the three groups of number values, and the numbering unit marks the number of the transmission data as 123;
s2, when the splitting unit splits and splits the transmission data with the serial number of 123, the transmission data are split into three groups of data packets, the internal marks of the three groups of data packets are respectively marked as 1, 2 and 3 according to the system setting, and the transmission data with the serial number of 123 are randomly split into three groups of numerical marks;
s3, the managing and controlling unit processes the three groups of numerical value marks again, the inside of the three groups of numerical value marks is set with an encrypted value alpha, the representation forms of the three groups of data packet numerical value marks are set to be X, Y and Z, and the marks X, Y and Z are changed into (X + alpha), (Y + alpha) and (Z + alpha);
s4, the management and control unit generates a memory terminal, the changed numerical markers (X + alpha), (Y + alpha) and (Z + alpha) of the three groups of data packets are memorized, the memory data also comprises the arrangement modes of (X + alpha), (Y + alpha) and (Z + alpha), after the three groups of data packets and the memory terminal are transmitted to the corresponding terminal through the network channel transmission end, the memory terminal arranges and binds the three groups of data packets according to the memorized numerical markers and the arrangement modes, and the transmitted data is arranged in order.
5. The communication security management and control system based on the data platform as claimed in claim 4, wherein the data management and control end divides the transmission data into a plurality of groups of data packets according to the data capacity and bandwidth by the following processing method:
the W1 and the data acquisition end firstly acquire the bandwidths of three groups of network channels, wherein the bandwidths of the three groups of network channels are respectively marked as DK1, DK2 and DK3, the data capacity of transmission data is acquired and marked as RL;
w2, use
Figure FDA0003604611720000021
Obtaining a capacity remaining value SY, wherein ^ is a correction factor, and the value is 0.98562, wherein
Figure FDA0003604611720000024
Is a factor for the change of the integer number,
Figure FDA0003604611720000025
is a positive integer;
w3, and processing the capacity surplus value SY again to adopt
Figure FDA0003604611720000022
And
Figure FDA0003604611720000023
three sets of channel determinations QD1, QD2, and QD3 were obtained;
w4, comparing the three groups of channel determination values QD1, QD2 and QD3 with an internal threshold U of a threshold module, extracting a channel determination value lower than the internal threshold U, then performing comparison processing on the channel determination values, extracting the minimum value of the channel determination values, then extracting the corresponding channel mark, determining a transmission channel, and transmitting a data packet with a capacity residual value SY by using the transmission channel;
w5, when all three channel determination values QD1, QD2 and QD3 are greater than the threshold module internal threshold U, repeating steps W2 and W3 to make the three channel determination values QD1, QD2 and QD3 be greater than the threshold module internal threshold U
Figure FDA0003604611720000031
The calculation process is performed again until all of the three sets of channel determination values QD1, QD2, and QD3 are less than or equal to the threshold block internal threshold U, and the calculation is stopped.
6. The data platform-based communication security management and control system of claim 5, wherein a corresponding threshold U is disposed inside the threshold module, and a comparison unit is disposed inside the threshold module, and the comparison unit is configured to compare the three sets of channel determination values QD1, QD2 and QD3 with the threshold U.
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CN115438359B (en) * 2022-09-14 2023-05-12 山东科迅信息技术有限公司 Data matching sharing system for project declaration
CN116389466A (en) * 2023-06-05 2023-07-04 贯文信息技术(苏州)有限公司 Enterprise data cloud office digital management system
CN116389466B (en) * 2023-06-05 2023-08-08 贯文信息技术(苏州)有限公司 Enterprise data cloud office digital management system
CN117474672A (en) * 2023-09-26 2024-01-30 云上广西网络科技有限公司 Public resource transaction data interaction system based on SpringBoot framework
CN117474672B (en) * 2023-09-26 2024-09-06 云上广西网络科技有限公司 Common resource transaction data interaction system based on SpringBoot framework
CN117499872A (en) * 2023-10-25 2024-02-02 北京金信瑞通科技股份有限公司 Method and system for realizing short message sending platform
CN117499872B (en) * 2023-10-25 2024-04-30 北京金信瑞通科技股份有限公司 Method and system for realizing short message sending platform

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