CN116596670A - Industry information automatic symmetry system and method based on Chinese and multilingual supply and demand transaction information drive - Google Patents
Industry information automatic symmetry system and method based on Chinese and multilingual supply and demand transaction information drive Download PDFInfo
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Abstract
The invention discloses an automatic industry information symmetry system and method based on Chinese and multilingual supply and demand transaction information drive, comprising a transaction information receiving and transmitting module, a transaction information module, a central server and a transition server, wherein the transaction information receiving and transmitting module is electrically connected with the transaction information receiving and transmitting module, the transaction information receiving and transmitting module is electrically connected with the central server, the transaction information receiving and transmitting module comprises an information sharing module, a compression symmetry module and a normal symmetry module, the information sharing module electrically connects adjacent transaction information receiving and transmitting modules, and the central server is electrically connected with the transition server through the compression symmetry module; the transaction information receiving and transmitting module is used for receiving and transmitting transaction information generated by transaction behaviors, the transactor module is used for inputting the transaction information obtained by the transaction behaviors by a transactor, and the central server is used for uniformly processing the transaction information obtained by the transaction behaviors by the transactor.
Description
Technical Field
The invention relates to the technical field of cross-border transactions, in particular to an automatic industry information symmetry system and method based on driving of Chinese and multilingual supply and demand transaction information.
Background
When the cross-border transaction of the product is carried out, a large amount of transaction information can be generated in the transaction among the transactors in each country, such as various attributes and characteristics of the product, product pricing and the like, and the exchange of the Chinese transaction information and the multilingual transaction information is generally carried out by uploading the information to a centralized server, so that statistics and information interaction are convenient.
The information quantity is different in each multilingual transaction behavior, the information quantity is reflected on the total amount of the transaction information with high probability, if the transaction information is handed to the central server for processing each time, the central server may not be busy, the processing quality is reduced or the transaction information is in an unprocessed state for a long time, the transaction operators also lack interaction, the transaction behaviors of other people are not known, the information is asymmetric, and if all the transaction information is handed to the transaction operators for processing, the centralized server is difficult to master the comprehensive data. Therefore, it is necessary to design an automatic industrial information symmetry system and method based on the driving of Chinese and multilingual trade information with high symmetry efficiency.
Disclosure of Invention
The invention aims to provide an automatic industrial information symmetry system and method based on Chinese and multilingual supply and demand transaction information drive, so as to solve the problems in the background technology.
In order to solve the technical problems, the invention provides the following technical scheme: the industrial information automatic symmetry system based on Chinese and multilingual supply and demand transaction information drive comprises a transaction information receiving and transmitting module, a transaction information module, a central server and a transition server, wherein the transaction information receiving and transmitting module is electrically connected with the transaction information receiving and transmitting module, the transaction information receiving and transmitting module is electrically connected with the central server, the transaction information receiving and transmitting module comprises an information sharing module, a compression symmetry module and a normal symmetry module, the information sharing module is used for electrically connecting adjacent transaction information receiving and transmitting modules, and the central server is electrically connected with the transition server through the compression symmetry module;
the transaction information receiving and transmitting module is used for receiving and transmitting transaction information generated by transaction behaviors, the transaction information receiving and transmitting module is used for inputting the transaction information obtained by the transaction behaviors by a transaction person, the central server is used for uniformly processing the transaction information obtained by the transaction behaviors by the transaction person, the information sharing module is used for receiving and transmitting the transaction information among the transaction persons, the compression symmetry module is used for compressing the transaction information shared by the transaction persons and then transmitting the transaction information to the central server for final processing, the normal symmetry module is used for transmitting the transaction information to the central server for direct processing in a wireless transmission mode, and the transition server is used for carrying out induction arrangement on the transaction information shared by the transaction person.
According to the technical scheme, the transaction information receiving and transmitting module comprises an information quantity measuring module, an online sending triggering module, a sharing proportion adjusting module, a large transaction information indicating module and a transaction information distributing module, wherein the sharing proportion adjusting module and the large transaction information indicating module are respectively and electrically connected with the sharing triggering module, and the large transaction information indicating module is electrically connected with the transaction information distributing module;
the information quantity measuring module is used for counting the total transaction amount uploaded by each transactor, the online sending triggering module is used for controlling transaction information generated by wireless transmission transaction receiving and transmitting actions, the sharing triggering module is used for controlling transaction information receiving and transmitting actions on the information sharing module, the sharing proportion adjusting module is used for controlling proportion of transaction information receiving and transmitting actions, the big transaction information indicating module is used for indicating key processing of transaction information which is just sent out by the transactor, the central server is helped to save processing time, and the transaction information distributing module is used for distributing transaction information receiving and transmitting working modes according to the total transaction amount of each normal symmetrical module.
According to the technical scheme, the cooperative regulation method of the system comprises the following specific steps:
s0, registering each transactor module, and constructing signal connection logic relations of an information sharing module, a compression symmetry module and a normal symmetry module of the transaction information receiving and transmitting module between the central server and the transactor module;
s1, starting a normal symmetry module by using an online transmission triggering module, using a large transaction information schematic module to schematic a transaction information key processing part from a transaction behavior, and using an information quantity measuring module to count the total transaction amount in real time, wherein the sharing triggering module is in a disabled state;
s2, when a certain transaction information exceeds a specified total amount in statistics, starting a sharing triggering module, intercepting the transaction information which is originally sent to a central server by a normal symmetrical module, and redistributing and sharing the transaction information among transaction person modules;
s3, when the statistics of transaction information of all transactor modules exceeds the condition of the specified total amount, temporarily storing the transaction information with more total amount in a cloud database, and preferentially processing the transaction information with less total amount;
s4, conveying transaction information exceeding the specified total amount to other transaction person modules which are not distributed and shared, distributing transaction information sharing work according to the respective shared total amount, enabling a plurality of normal symmetrical modules to cooperatively transmit and receive, conveying the transaction information to a transition server, processing the transaction information by the transition server, and sending the transaction information to a central server side.
According to the above technical solution, in the step S4, the transaction information receiving and transmitting work is allocated by the following method,
s4-1, when the information sharing module of the transactor module does not work, namely transaction information sent by other transactor modules does not appear in statistics, the information sharing module can completely accept sharing work of other transaction information;
s4-2, when the information sharing module of the transactor module starts working, namely transaction information sent by other transactor modules starts to appear when counting, the proportion of the transaction information receiving and transmitting work of other normal symmetrical modules is reduced, and the specific distribution mode is that the total transaction amount for receiving redundant transaction information in real time is reduced in proportion to the total transaction amount per se until the total transaction amount reaches the stipulated total transaction amount, and the total transaction amount is zero.
According to the above technical solution, in the step S4, a specific allocation formula of the transaction information transceiving operation is:
wherein A is the total transaction amount of the transaction information work of the transaction module which receives other normal symmetrical modules in real time, A is the total transaction amount of the transaction information work of the transaction module 0 Upper limit of total amount of transactions processable by the transactor module, A 1 The total amount of transactions s generated for the transactor module itself 0 To prescribe the total amount s 1 The transaction total amount is used for receiving transaction information of other transactor modules in real time.
According to the technical scheme, the large transaction information schematic module comprises a total prompt quantity statistics module, a measurement module, a fine calculation module and a large transaction distribution module, wherein the total prompt quantity statistics module is electrically connected with the measurement module and the fine calculation module, and the information quantity measurement module is electrically connected with the total prompt quantity statistics module;
the total prompt quantity statistics module is used for counting the schematic quantity of large transaction information of transaction information, the measurement module is used for counting the total amount generated by each transaction information, the calculation module is used for judging whether the prompt quantity of the current large transaction information is redundant or not, and the large transaction distribution module is used for distributing the quantity and the total amount of the large transaction information of the transaction information corresponding to each transactor module.
According to the technical scheme, the specific method for calculating the optimal solution of the transaction information key information schematic quantity of the sharing triggering module by the large-stroke transaction information schematic module is as follows:
s5, total sum W which can be processed by a central server of the system, wherein all transactor modules of the system have total q transaction information, and all total sum of all transaction information isWhen->When the transaction information is redundant, the transaction information is firstly transmitted to the central server by the transaction agent module which ensures that the total amount is small to maintain the processing work of the central server, then the rest transaction information is distributed, the transaction agent processes the transaction information which is mutually processed and then indicates the heavy point information for the central server to process in a key way, when->When the transaction information is just enough, whenAt this point the transaction information can be completely processed by the central server.
Compared with the prior art, the invention has the following beneficial effects: the invention can distribute the transaction information of the traders according to the total amount of each transaction and the processing capacity of the central server, wherein one part adopts the mutual processing among the traders, the other part directly processes the transaction information for the central server, and the traders indicate a certain proportion of key information during the processing, so that the central server can finally process the transaction information to improve the efficiency.
Drawings
The accompanying drawings are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate the invention and together with the embodiments of the invention, serve to explain the invention. In the drawings:
fig. 1 is a schematic block diagram of the present invention.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1, the present invention provides the following technical solutions: the automatic industry information symmetry system based on Chinese and multilingual supply and demand transaction information drive comprises a transaction information receiving and transmitting module, a transaction information module, a central server and a transition server, wherein the transaction information receiving and transmitting module is electrically connected with the transaction information receiving and transmitting module, the transaction information receiving and transmitting module is electrically connected with the central server, the transaction information receiving and transmitting module comprises an information sharing module, a compression symmetry module and a normal symmetry module, the information sharing module electrically connects adjacent transaction information receiving and transmitting modules, and the central server is electrically connected with the transition server through the compression symmetry module;
the transaction information receiving and transmitting module is used for receiving and transmitting transaction information generated by transaction behaviors, the transaction information receiving and transmitting module is used for inputting the transaction information obtained by the transaction behaviors by a transaction person, the central server is used for uniformly processing the transaction information obtained by the transaction behaviors by the transaction person, the information sharing module is used for receiving and transmitting the transaction information among the transaction persons, the compression symmetry module is used for compressing the transaction information shared by the transaction persons and then transmitting the compressed transaction information to the central server for final processing, the normal symmetry module is used for transmitting the transaction information to the central server in a wireless transmission mode for direct processing, and the transition server is used for carrying out inductive arrangement on the transaction information shared by the transaction persons;
the transaction information receiving and transmitting module comprises an information quantity measuring module, an online sending triggering module, a sharing proportion adjusting module, a large transaction information indicating module and a transaction information distributing module, wherein the sharing proportion adjusting module and the large transaction information indicating module are respectively and electrically connected with the sharing triggering module, and the large transaction information indicating module is electrically connected with the transaction information distributing module;
the information quantity measuring module is used for counting the total transaction amount uploaded by each transactor, the online sending triggering module is used for controlling transaction information generated by wireless transmission transaction receiving and transmitting actions, the sharing triggering module is used for controlling transaction information receiving and transmitting actions generated by the transaction actions on the information sharing module, the sharing proportion adjusting module is used for controlling proportion of transaction information receiving and transmitting actions, the large transaction information indicating module is used for the transactor to carry out key processing indication on the transaction information just coming out of the transaction actions, the central server is helped to save processing time, and the transaction information distributing module is used for distributing transaction information receiving and transmitting working modes according to the total transaction amount of each normal symmetrical module;
the cooperative regulation method of the system comprises the following specific steps:
s0, registering each transactor module, and constructing signal connection logic relations of an information sharing module, a compression symmetry module and a normal symmetry module of the transaction information receiving and transmitting module between the central server and the transactor module;
s1, starting a normal symmetry module by using an online transmission triggering module, using a large transaction information schematic module to schematic a transaction information key processing part from a transaction behavior, and using an information quantity measuring module to count the total transaction amount in real time, wherein the sharing triggering module is in a disabled state;
s2, when a certain transaction information exceeds a specified total amount in statistics, starting a sharing triggering module, intercepting the transaction information which is originally sent to a central server by a normal symmetrical module, and redistributing and sharing the transaction information among transaction person modules;
s3, when the statistics of transaction information of all transactor modules exceeds the condition of the specified total amount, temporarily storing the transaction information with more total amount in a cloud database, and preferentially processing the transaction information with less total amount;
s4, conveying transaction information exceeding the specified total amount to other transaction person modules which are not distributed and shared, distributing transaction information sharing work according to the respective shared total amount, enabling a plurality of normal symmetrical modules to cooperatively transmit and receive, conveying the transaction information to a transition server, processing the transaction information by the transition server, and sending the processed transaction information to a central server side;
in the above step S4, the transaction information transmitting and receiving operation is allocated by the method,
s4-1, when the information sharing module of the transactor module does not work, namely transaction information sent by other transactor modules does not appear in statistics, the information sharing module can completely accept sharing work of other transaction information;
s4-2, when the information sharing module of the transactor module starts working, namely transaction information sent by other transactor modules starts to appear when counting, the proportion of the transaction information receiving and transmitting work of other normal symmetrical modules is reduced, and the concrete allocation mode is that the total transaction amount for receiving redundant transaction information in real time is reduced in proportion to the total transaction amount per se until the total transaction amount reaches the stipulated total transaction amount, and the total transaction amount is zero;
in the step S4, a specific allocation formula of the transaction information transceiving operation is as follows:
wherein A is the total transaction amount of the transaction information work of the transaction module which receives other normal symmetrical modules in real time, A is the total transaction amount of the transaction information work of the transaction module 0 Upper limit of total amount of transactions processable by the transactor module, A 1 The total amount of transactions s generated for the transactor module itself 0 To prescribe the total amount s 1 The transaction total amount is used for receiving transaction information of other transactor modules in real time;
the large-stroke transaction information indication module comprises a total prompt quantity statistics module, a measurement module, a fine calculation module and a large-stroke transaction distribution module, wherein the total prompt quantity statistics module is electrically connected with the measurement module and the fine calculation module, and the information quantity measurement module is electrically connected with the total prompt quantity statistics module;
the total prompt quantity statistics module is used for counting the schematic quantity of the large transaction information of the transaction information, the measurement module is used for counting the total amount generated by each transaction information, the calculation module is used for judging whether the prompt quantity of the current large transaction information is redundant, and the large transaction distribution module is used for distributing the quantity and the total amount of the large transaction information of the transaction information corresponding to each transactor module;
the specific method for calculating the optimal solution of the transaction information key information schematic quantity of the sharing triggering module by the large-stroke transaction information schematic module is as follows:
s5, total sum W which can be processed by a central server of the system, wherein all transactor modules of the system have total q transaction information, and all total sum of all transaction information isWhen->When the transaction information is redundant, the transaction information is firstly transmitted to the central server by the transaction agent module which ensures that the total amount is small to maintain the processing work of the central server, then the rest transaction information is distributed, the transaction agent processes the transaction information which is mutually processed and then indicates the heavy point information for the central server to process in a key way, when->When the transaction information is just enough, whenAt this time, the transaction information can be completely processed by the central server, wherein W i I is the number of a transactor, i is the total amount of a transaction;
example 1: in the step S5, the transaction information key information schematic proportion optimal solution y of the large transaction allocation module is:
j is the transaction information receiving and transmitting quantity on all normal symmetrical modules, and is determined according to the requirement of a central server,for all total amounts of transaction information to be directly submitted, < > for>All total amounts for transaction information processed with each other.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Finally, it should be noted that: the foregoing description is only a preferred embodiment of the present invention, and the present invention is not limited thereto, but it is to be understood that modifications and equivalents of some of the technical features described in the foregoing embodiments may be made by those skilled in the art, although the present invention has been described in detail with reference to the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (8)
1. An automatic industry information symmetry system driven by Chinese and multilingual supply and demand transaction information is characterized in that: the system comprises a transaction information receiving and transmitting module, a transaction person module, a central server and a transition server, wherein the transaction person module is electrically connected with the transaction information receiving and transmitting module, the transaction information receiving and transmitting module is electrically connected with the central server, the transaction information receiving and transmitting module comprises an information sharing module, a compression symmetry module and a normal symmetry module, the information sharing module is used for electrically connecting adjacent transaction person modules with each other, and the central server is electrically connected with the transition server through the compression symmetry module;
the transaction information receiving and transmitting module is used for receiving and transmitting transaction information generated by transaction behaviors, the transaction information receiving and transmitting module is used for inputting the transaction information obtained by the transaction behaviors by a transaction person, the central server is used for uniformly processing the transaction information obtained by the transaction behaviors by the transaction person, the information sharing module is used for receiving and transmitting the transaction information among the transaction persons, the compression symmetry module is used for compressing the transaction information shared by the transaction persons and then transmitting the transaction information to the central server for final processing, the normal symmetry module is used for transmitting the transaction information to the central server for direct processing in a wireless transmission mode, and the transition server is used for carrying out induction arrangement on the transaction information shared by the transaction person.
2. The system for automatically symmetric industrial information driven by Chinese and multilingual supply and demand transaction information according to claim 1, wherein the system comprises: the transaction information receiving and transmitting module comprises an information quantity measuring module, an online sending triggering module, a sharing proportion adjusting module, a large transaction information indicating module and a transaction information distributing module, wherein the sharing proportion adjusting module and the large transaction information indicating module are respectively and electrically connected with the sharing triggering module, and the large transaction information indicating module is electrically connected with the transaction information distributing module;
the information quantity measuring module is used for counting the total transaction amount uploaded by each transactor, the online sending triggering module is used for controlling transaction information generated by wireless transmission transaction receiving and transmitting actions, the sharing triggering module is used for controlling transaction information receiving and transmitting actions generated by the transaction actions on the information sharing module, the sharing proportion adjusting module is used for controlling proportion of transaction information receiving and transmitting actions, the big transaction information indicating module is used for indicating key processing of transaction information just coming out of the transaction actions by the transactor, and the transaction information distributing module is used for distributing transaction information receiving and transmitting working modes according to the total transaction amount of each normal symmetrical module.
3. The system for automatically symmetric industrial information driven by Chinese and multilingual supply and demand transaction information according to claim 2, wherein: the cooperative regulation method of the system comprises the following specific steps:
s1, starting a normal symmetry module by using an online transmission triggering module, using a large transaction information schematic module to schematic a transaction information key processing part from a transaction behavior, and using an information quantity measuring module to count the total transaction amount in real time, wherein the sharing triggering module is in a disabled state;
s2, when a certain transaction information exceeds a specified total amount in statistics, starting a sharing triggering module, intercepting the transaction information which is originally sent to a central server by a normal symmetrical module, and redistributing and sharing the transaction information among transaction person modules;
s3, when the statistics of transaction information of all transactor modules exceeds the condition of the specified total amount, temporarily storing the transaction information with more total amount in a cloud database, and preferentially processing the transaction information with less total amount;
s4, conveying transaction information exceeding the specified total amount to other transaction person modules which are not distributed and shared, distributing transaction information sharing work according to the respective shared total amount, enabling a plurality of normal symmetrical modules to cooperatively transmit and receive, conveying the transaction information to a transition server, processing the transaction information by the transition server, and sending the transaction information to a central server side.
4. The system for automatically symmetry of industry information based on driving of chinese and multilingual supply and demand transaction information according to claim 3, wherein: in the above step S4, the transaction information transmitting and receiving operation is allocated by the method,
s4-1, when the information sharing module of the transactor module does not work, namely transaction information sent by other transactor modules does not appear in statistics, the information sharing module can completely accept sharing work of other transaction information;
s4-2, when the information sharing module of the transactor module starts working, namely transaction information sent by other transactor modules starts to appear when counting, the proportion of the transaction information receiving and transmitting work of other normal symmetrical modules is reduced, and the concrete allocation mode is that the total transaction amount for receiving redundant transaction information in real time is reduced in proportion to the total transaction amount per se.
5. The system for automatically symmetric driving of industrial information based on Chinese and multilingual supply and demand transaction information according to claim 4, wherein: in the step S4, a specific allocation formula of the transaction information transceiving operation is as follows:
wherein A is the total transaction amount of the transaction information work of the transaction module which receives other normal symmetrical modules in real time, A is the total transaction amount of the transaction information work of the transaction module 0 Upper limit of total amount of transactions processable by the transactor module, A 1 The total amount of transactions s generated for the transactor module itself 0 To prescribe the total amount s 1 The transaction total amount is used for receiving transaction information of other transactor modules in real time.
6. The system for automatically symmetric driving of industrial information based on Chinese and multilingual supply and demand transaction information according to claim 5, wherein: the large-stroke transaction information indication module comprises a total prompt quantity statistics module, a measurement module, a fine calculation module and a large-stroke transaction distribution module, wherein the total prompt quantity statistics module is electrically connected with the measurement module and the fine calculation module, and the information quantity measurement module is electrically connected with the total prompt quantity statistics module;
the total prompt quantity statistics module is used for counting the schematic quantity of large transaction information of transaction information, the measurement module is used for counting the total amount generated by each transaction information, the calculation module is used for judging whether the prompt quantity of the current large transaction information is redundant or not, and the large transaction distribution module is used for distributing the quantity and the total amount of the large transaction information of the transaction information corresponding to each transactor module.
7. The system for automatically symmetric driving of industrial information based on Chinese and multilingual supply and demand transaction information according to claim 6, wherein: the specific method for calculating the optimal solution of the transaction information key information schematic quantity of the shared trigger module by the large transaction information schematic module is as follows:
s5, total sum W which can be processed by a central server of the system, wherein all transactor modules of the system have total q transaction information, and all total sum of all transaction information is
8. The system for automatically symmetric driving of industrial information based on Chinese and multilingual supply and demand transaction information according to claim 7, wherein: in the above S5, whenWhen the transaction information is redundant, the transaction information is firstly transmitted to the central server by the transaction agent module which ensures that the total amount is small to maintain the processing work of the central server, then the rest transaction information is distributed, the transaction agent processes the transaction information which is mutually processed and then indicates the heavy point information for the central server to process in a key way, when->At this time, the transaction information is just sufficient, when +.>At this point the transaction information can be completely processed by the central server.
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