Cross-Time Zone Data Management Method Based on Supply Chain

By grouping and time zone benchmarking of cross-time zone supply chain nodes and adjusting temporary storage time errors and priorities, the problems of inconsistent timeliness and information lag across time zone supply chain data are solved, and higher timeliness and accuracy are achieved.

CN117688009BActive Publication Date: 2025-06-20HUNAN SANXIANG BANK CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202311661024.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-06
Publication Date
2025-06-20
Estimated Expiration
2043-12-06

AI Technical Summary

Technical Problem

The prior art cannot ensure the consistency of timeliness of supply chain data across time zones, and cannot effectively eliminate information lag caused by time difference, resulting in supply chain response time lag and information accuracy decreases.

Method used

By obtaining the interactive data of supply chain nodes, grouping nodes, determining the supply chain time difference and reference time zone, establishing a temporary storage library and adjusting the temporary storage time error, adjusting the reference time zone and temporary storage priority based on the recall location and time information, and obtaining interactive data for recording.

Benefits of technology

It effectively reduces the problem of information failure of cross-time zone supply chains, improves the timeliness and data accuracy of cross-time zone supply chains, and improves the robustness of supply chain systems.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN117688009B_ABST
    Figure CN117688009B_ABST
Patent Text Reader

Abstract

The present invention relates to the technical field of data processing, and in particular to a cross-time zone data management method based on a supply chain, including: obtaining interaction data of nodes of the supply chain; determining the supply chain time difference corresponding to the node group; determining the reference time zone corresponding to the node group according to the supply chain time difference; establishing a temporary repository and determining the temporary storage time error of the temporary repository according to the reference time zone; adjusting the reference time zone according to the location information to form an adjusted reference time zone; adjusting the temporary storage time error according to the time information and the adjusted reference time zone to obtain the temporary storage priority; obtaining the interaction data of the node group according to the temporary storage priority and recording it as supply chain data. The present invention utilizes the distance between the location of the retrieved node and the supply chain node to obtain the information within the group, effectively reducing the information invalidation caused by the cross-time zone of the supply chain while effectively improving the timeliness of the cross-time zone supply chain, thereby improving the accuracy of the supply chain data.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of data processing, and in particular, to a cross-time zone data management method based on a supply chain. Background Art

[0002] For cross-time zone supply chains, cloud supply chain management software is currently commonly used to manage and optimize global supply chains. To meet complex supply chain and inventory management requirements, the vast majority of enterprises today have to deploy multiple supply chain management software and inventory management system software.

[0003] For operations across cloud platforms, more complex compatibility issues will arise.

[0004] Chinese Patent Grant Publication No.: CN116542698B discloses an enterprise customized intelligent development management platform, including a server, which is communicatively connected with a customer management module, a requirement management module, a requirement matching module, an optimization analysis module, and a storage module; the customer management module is used to manage and analyze the customers of the development management platform: generate a management cycle, classify the new customers of the development management platform according to the business field, mark the new users within the industry classification as management objects, and obtain the scale coefficient GM and the timing data of the management objects; the present invention can manage and analyze the customers of the development management platform, and classify the new customers according to the business field in a periodic management manner.

[0005] However, the above method has the following problems:

[0006] (1) It is impossible to achieve consistent data timeliness for cross-time zone supply chain data;

[0007] (2) It is impossible to eliminate the information lag caused by time differences. Summary of the Invention

[0008] Therefore, the present invention provides a cross-time zone data management method based on a supply chain to overcome the problems in the prior art that it is impossible to achieve consistent data timeliness for cross-time zone supply chain data, and it is impossible to eliminate the information lag caused by time differences, resulting in a lag in the response time of the cross-time zone supply chain and thus a decrease in the accuracy of supply chain information.

[0009] To achieve the above object, the present invention provides a cross-time zone data management method based on a supply chain, including:

[0010] Obtain the interaction data of the nodes of the supply chain;

[0011] Group the nodes according to the interaction data of the nodes to form node groups;

[0012] Determine the supply chain time difference corresponding to the node group;

[0013] Determine the reference time zone corresponding to the node group according to the supply chain time difference;

[0014] Establishing a temporary storage library corresponding to the node group, and determining the temporary storage time error of the temporary storage library according to the reference time zone;

[0015] Acquire the retrieval location information corresponding to the retrieval data node, and adjust the reference time zone according to the location information to form an adjusted reference time zone;

[0016] Acquire the time information of the retrieved data, and adjust the temporary storage time error according to the time information and the adjustment reference time zone to obtain the temporary storage priority;

[0017] The interaction data of the node group is acquired according to the temporary storage priority and recorded as supply chain data.

[0018] Further, when grouping the nodes, the node that initiates the interaction request is regarded as the requesting node, and the node that receives the interaction request is regarded as the sending node;

[0019] Among them, for a single node group, it consists of a single requesting node and a corresponding single sending node;

[0020] The requesting node and the sending node are adjacent to each other in the supply chain and form the node group.

[0021] Furthermore, for the single node group, when interacting,

[0022] The requesting node sends the request data to the sending node;

[0023] The sending node sends out sending data and directs the sending data to the corresponding requesting node;

[0024] The requesting node receives the sending data, and sends the receiving data to the corresponding sending node.

[0025] Further, when obtaining the reference time zone corresponding to the single node group, the average value of the time zones corresponding to the nodes constituting the node group is the reference time zone of the node group;

[0026] The time zone corresponding to each node is calculated based on the time zone of the geographical location.

[0027] Furthermore, when determining the temporary storage time error, for the single node group, the distance between the corresponding requesting node and the sending node is positively correlated with the temporary storage time error.

[0028] Furthermore, when obtaining request data for a single node group, this time is used as the initial time.

[0029] When obtaining the said transmitted data, store the transmission data time,

[0030] When obtaining the said received data, store the reception data time.

[0031] Further, when obtaining the retrieval location information, for the single node group, the midpoint of the connection line between the corresponding requesting node and the sending node is the reference point of this node group;

[0032] The distance between the retrieval location information and the reference point is the retrieval error distance.

[0033] Further, when obtaining the retrieval location information, determine the adjusted reference time zone according to the time zone difference between the retrieval location information and the reference time zone;

[0034] Wherein, the adjusted reference time zone is positively correlated with the time zone difference and is positively correlated with the retrieval error distance.

[0035] Further, when obtaining the retrieval time information, determine the temporary storage priority according to the transmission time zone difference between the sending node and the retrieval location information, and the request time zone difference between the requesting node and the retrieval location information;

[0036] Wherein, the temporary storage priority is to sort the transmission data time and the reception data time.

[0037] Further, when obtaining the interaction data of the node group, for the single node group, determine the supply chain data of this node group according to the corresponding temporary storage priority;

[0038] Wherein, the supply chain data is the transmitted data or the received data of the single node group.

[0039] Compared with the prior art, the beneficial effects of the present invention are that the supply chain is grouped by the interaction of nodes, and the reference time zone of each node within the group is determined. When retrieving data, the information within the group is obtained by using the distance between the location of the retrieving node and the supply chain node. While effectively reducing the information invalidation caused by the supply chain across time zones, the timeliness of the cross-time zone supply chain is effectively improved, thereby improving the accuracy of the supply chain data.

[0040] Further, by using the method of decomposing each node of the supply chain, the complexity of the supply chain is reduced. While effectively improving the robustness of the cross-time zone supply chain system, the accuracy of the supply chain data is further improved.

[0041] Furthermore, by decomposing the data transmission paths of the upstream and downstream nodes in the supply chain, the actual flow directions of information and / or logistics in the supply chain are determined, effectively reducing the information complexity of the supply chain while further improving the accuracy of supply chain data.

[0042] Furthermore, by setting a reference time zone, the adjacent nodes in the supply chain are preliminarily divided, thereby improving the timeliness of information and / or logistics in the supply chain, and further improving the accuracy of supply chain data.

[0043] Furthermore, by setting the temporary storage time error, the temporary storage time error is determined according to the distance between the requesting node and the sending node of a single node group, effectively improving the universality of the temporary storage time error while further improving the accuracy of supply chain data.

[0044] Furthermore, by determining a reference point and retrieving the distance between the location and the reference point to adjust the reference time zone, effectively improving the convenience of adjusting the reference time zone while further improving the accuracy of supply chain data.

[0045] Furthermore, by setting priorities, the supply chain data of each node group is determined, effectively improving the timeliness of supply chain data while further improving the accuracy of supply chain data. BRIEF DESCRIPTION OF THE DRAWINGS

[0046] Figure 1 is a flowchart of the cross-time zone data management method based on the supply chain of the present invention;

[0047] Figure 2 is a schematic diagram of a horizontal map of an embodiment of the present invention;

[0048] Figure 3 is a schematic diagram of a vertical map of an embodiment of the present invention;

[0049] Figure 4 is a schematic diagram of the structure of the cash management platform of an embodiment of the present invention;

[0050] Wherein: 1, the first node; 2, the second node; 3, the horizontal reference point; 4, the vertical reference point. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0051] In order to make the objectives and advantages of the present invention clearer, the present invention will be further described below in conjunction with embodiments; it should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0052] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are only used to explain the technical principles of the present invention and do not limit the protection scope of the present invention.

[0053] It should be noted that in the description of the present invention, the terms indicating directions or positional relationships such as "upper", "lower", "left", "right", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present invention.

[0054] In addition, it should be noted that in the description of the present invention, unless otherwise clearly specified and defined, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0055] Please refer to Figure 1 as shown in the figure, which is a flowchart of the cross-time zone data management method based on the supply chain of the present invention. The cross-time zone data management method based on the supply chain includes:

[0056] Obtain the interaction data of the nodes in the supply chain;

[0057] Group the nodes according to the interaction data of the nodes to form node groups;

[0058] Determine the supply chain time difference corresponding to the node group;

[0059] Determine the reference time zone corresponding to the node group according to the supply chain time difference;

[0060] Establish a temporary repository corresponding to the node group and determine the temporary storage time error of the temporary repository according to the reference time zone;

[0061] Obtain the retrieval location information corresponding to the data retrieval node and adjust the reference time zone according to the location information to form an adjusted reference time zone;

[0062] Obtain the time information of the retrieved data and adjust the temporary storage time error according to the time information and the adjusted reference time zone to obtain the temporary storage priority;

[0063] Obtain the interaction data of the node group according to the temporary storage priority and record it as supply chain data.

[0064] Compared with the prior art, the beneficial effect of the present invention lies in that the supply chain is grouped according to the interaction of nodes, and the base time zone of each node in the group is determined. When retrieving data, the information in the group is acquired by using the distance between the location of the retrieving node and the supply chain node. This effectively reduces the information failure caused by cross-time zone in the supply chain, and effectively improves the timeliness of the cross-time zone supply chain, thereby improving the accuracy of the supply chain data.

[0065] Specifically, when grouping the nodes, the node that initiates the interaction request is regarded as the requesting node, and the node that receives the interaction request is regarded as the sending node;

[0066] Among them, for a single node group, it consists of a single requesting node and a corresponding single sending node;

[0067] Among them, the requesting node and the sending node are adjacent in the supply chain and form a node group.

[0068] Furthermore, by decomposing each node of the supply chain, the complexity of the supply chain is reduced, which effectively improves the robustness of the cross-time zone supply chain system and further improves the accuracy of the supply chain data.

[0069] In implementation, for a single supply chain, which consists of k nodes, when the i-th node issues an interaction request, the requester is the i'th node, then the i-th node and the i'th node together form a node group, which is recorded as the (i, i') node group, where i=1,2,3,...,k, i'=1,2,3,...,k, i and i' are not equal;

[0070] Take the second, third and fifth nodes as examples:

[0071] If the second node sends an interaction request to the third node, and at the same time, the second node sends an interaction request to the fifth node, then the (2,3) node group and the (2,5) node group are generated;

[0072] If the second node sends an interaction request to the third node, and at the same time, the third node sends an interaction request to the second node, then the (2, 3) node group and the (3, 2) node group are generated.

[0073] Specifically, for a single node group, when they interact,

[0074] The requesting node sends the request data to the sending node;

[0075] The sending node sends the sending data and directs the sending data to the corresponding requesting node;

[0076] The requesting node receives the sent data and sends the received data to the corresponding sending node.

[0077] Furthermore, by decomposing the data transmission paths of the upstream and downstream nodes in the supply chain, the actual flow of information and / or logistics in the supply chain is determined, effectively reducing the information complexity of the supply chain while further improving the accuracy of supply chain data.

[0078] In implementation, for the (i, i') node group, its interaction process is as follows:

[0079] The i-th node sends request data. After a period of time, the i'-th node receives the request data and replies with a send data. After another period of time, the i-th node receives the send data and sends the received information as received data to the i'-th node.

[0080] Specifically, when obtaining the reference time zone corresponding to a single node group, the average value of the time zones corresponding to the nodes constituting the node group is the reference time zone of the node group;

[0081] Among them, the time zones corresponding to each node are calculated based on the time zone where the geographical location is located.

[0082] Furthermore, by setting the reference time zone, the adjacent nodes in the supply chain are initially divided, thereby improving the timeliness of information and / or logistics in the supply chain, and further improving the accuracy of supply chain data.

[0083] In implementation:

[0084] If the i-th node is at 116°20′ east longitude and 39°56′ north latitude, its corresponding location belongs to the eighth time zone, and the timing is based on the eighth time zone, then this location is calculated based on the eighth time zone;

[0085] If the i'-th node is at 86°37′ east longitude and 42°45′ north latitude, its corresponding location belongs to the sixth time zone, and the timing is based on the eighth time zone, then this location is calculated based on the sixth time zone.

[0086] Specifically, when determining the temporary storage time error, for a single node group, the distance between its corresponding request node and send node is positively correlated with the temporary storage time error.

[0087] Furthermore, by setting the temporary storage time error, the temporary storage time error is determined according to the distance between the request node and the send node of a single node group, effectively improving the universality of the temporary storage time error while further improving the accuracy of supply chain data.

[0088] In implementation, for the (i, i') node group, the distance between the i-th node and the i'-th node is Lii', and its corresponding temporary storage time error is Tii', and Tii' is determined by the following formula:

[0089] Tii’ = k × Lii’

[0090] Among them, k is the transmission speed of data per unit distance, which is related to the data transmission method.

[0091] It can be understood that for several node groups with the same distance between nodes within the group, the temporary storage time errors of each node group are different.

[0092] Specifically, when obtaining the requested data of a single node group, this time is used as the initial time.

[0093] When obtaining the sent data, store the time when the data is sent.

[0094] When obtaining the received data, store the time when the data is received.

[0095] In implementation, for the (i, i’) node group, timing is performed when the data is sent from the i-th node.

[0096] When the data is transmitted to the i’-th node and the i’-th node makes a reply and generates reply data, record this time and use it as the sent data time.

[0097] When the reply data arrives at the i-th node and the i-th node makes a reply and generates received data, record this time and use it as the received data time.

[0098] Specifically, when obtaining the retrieved position information, for a single node group, the midpoint of the line connecting the corresponding requested node and the sending node is the reference point of this node group.

[0099] The distance between the retrieved position information and the reference point is the retrieved error distance.

[0100] Particularly, the determination of the reference point should be carried out by connecting lines respectively on the vertical map and the horizontal map, and taking the line with the minimum length as its corresponding reference point.

[0101] Please refer to Figure 2 As shown, it is a schematic diagram of the horizontal map of the embodiment of the present invention. Among them, the first node 1 and the second node 2 are connected by a line in the figure, and the midpoint of their connection line is used as the horizontal reference point 3.

[0102] Please refer to Figure 3 As shown, it is a schematic diagram of the vertical map of the embodiment of the present invention. Among them, the first node 1 and the second node 2 are connected by a line in the figure, and the midpoint of their connection line is used as the vertical reference point 4.

[0103] In the figure, the horizontal reference point 3 and the vertical reference point 4 are in different time zones. In this embodiment, the length of the connection line on the horizontal map is less than the length of the connection line on the vertical map, so the horizontal reference point 3 is used as the reference point of the first node 1 and the second node 2.

[0104] Specifically, when obtaining the retrieval location information, the adjusted reference time zone is determined according to the time zone difference between the retrieval location information and the reference time zone.

[0105] Among them, the adjusted reference time zone is positively correlated with the time zone difference and is also positively correlated with the retrieval error distance.

[0106] Furthermore, by determining the reference point and adjusting the reference time zone according to the distance between the retrieval location and the reference point, while effectively improving the convenience of adjusting the reference time zone, the accuracy of supply chain data is further improved.

[0107] For the (i, i') node group, its corresponding reference time zone is Qii', the distance between the reading location and the reference point is Pii', and its corresponding adjusted reference time zone Q0ii' is:

[0108] Q0ii' = Qii' + k × Pii'

[0109] Among them, k is the transmission speed of data per unit distance, which is related to the data transmission method.

[0110] Specifically, when obtaining the retrieval time information, the temporary storage priority is determined according to the time zone difference between the sending node and the sending time zone of the retrieval location information, and the time zone difference between the requesting node and the requesting time zone of the retrieval location information.

[0111] Among them, the temporary storage priority is to sort the data sending time and the data receiving time.

[0112] In implementation, for the (i, i') node group, the adjusted reference time zone Q0ii' is compared with the time zones corresponding to the i-th node and the i'-th node.

[0113] If the adjusted reference time zone Q0ii' is closer to the i-th node, the priority of the i-th node is higher than that of the i'-th node;

[0114] If the adjusted reference time zone Q0ii' is closer to the i'-th node, the priority of the i'-th node is higher than that of the i-th node.

[0115] Taking the (2, 3) node group as an example:

[0116] The 2nd node is in the sixth time zone east, and the 3rd node is in the eighth time zone east:

[0117] If the adjusted reference time zone is the fifth time zone east, the temporary storage priority of the 2nd node is set to level 2, and the temporary storage priority of the 3rd node is set to level 1;

[0118] If the adjusted reference time zone is the seventh time zone east, the temporary storage priority of the 2nd node is set to level 1, and the temporary storage priority of the 3rd node is set to level 1;

[0119] If the reference time zone is adjusted to the eighth time zone east, the temporary storage priority of the second node is set to level 1, and the temporary storage priority of the third node is set to level 2;

[0120] Among them, the node with a temporary storage priority of level 2 is greater than the node with a temporary storage priority of level 1.

[0121] Specifically, when calling data, the temporary storage priority represents the positional relationship between the location where the data is called and the locations of each node.

[0122] Specifically, when obtaining the interaction data of a node group, for a single node group, the supply chain data of the node group is determined according to the corresponding temporary storage priority;

[0123] Among them, the supply chain data is the sent data or received data of a single node group.

[0124] When calling the supply chain data, for the (i, i') node group,

[0125] If the temporary storage priority of the i-th node is greater than the temporary storage priority of the i'-th node, when calling the corresponding data of the (i, i') node group, the received data sent by the i-th node is recorded as the supply chain data of the (i, i') node group based on the time of storing the received data;

[0126] If the temporary storage priority of the i-th node is equal to the temporary storage priority of the i'-th node, when calling the corresponding data of the (i, i') node group, the received data sent by the i-th node is recorded as the supply chain data of the (i, i') node group based on the time of sending the data;

[0127] If the temporary storage priority of the i-th node is less than the temporary storage priority of the i'-th node, when calling the corresponding data of the (i, i') node group, the sent data sent by the i-th node is recorded as the supply chain data of the (i, i') node group based on the time of sending the data.

[0128] In implementation, taking the (2, 3) node group as an example:

[0129] The second node is located in the sixth time zone east, with a temporary storage priority of level 2, and the third node is located in the eighth time zone east, with a temporary storage priority of level 1;

[0130] The second node sends a request for data at 08:00,

[0131] The third node receives the request for data at 11:00 and sends the sent data at 11:30,

[0132] The second node receives the sent data at 10:30 and sends the received data at 10:45;

[0133] The third node receives the received data at 13:45.

[0134] At this time, if the supply chain data of the (2, 3) node group is recorded based on the time in the sixth time zone east:

[0135] If the recording time is 10:31, the sent data will be recorded as the supply chain data;

[0136] If the recording time is 10:00, the data of this node group will not be recorded.

[0137] Furthermore, by setting priorities, the supply chain data of each node group is determined, which not only effectively improves the timeliness of the supply chain data but also further enhances the accuracy of the supply chain data.

[0138] In implementation, the cash management platform applying the cross-time zone data management method based on the supply chain of the present invention includes:

[0139] A data acquisition module for acquiring the business transaction data of the upstream and downstream enterprises of the enterprise to be managed;

[0140] An evaluation module for evaluating the current enterprise's financial status based on the business transactions between the enterprise to be managed and its upstream enterprise;

[0141] A calculation module for calculating the capital retention ratio of the enterprise to be managed;

[0142] A comparison module, which is connected to the calculation module, compares the retention ratio calculated by the calculation module with a pre-set standard retention ratio to obtain a comparison result;

[0143] A determination module for determining the response time of the bank to provide financial services to the enterprise to be managed and the financing amount according to the comparison result.

[0144] So far, the technical solution of the present invention has been described in conjunction with the preferred embodiments shown in the drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of the present invention.

[0145] The above are only the preferred embodiments of the present invention and are not used to limit the present invention; for those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent substitution, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A cross-time zone data management method based on the supply chain, characterized in that, Including: Obtaining the interaction data of the nodes in the supply chain; Grouping the nodes according to the interaction data of the nodes to form node groups; Determining the supply chain time difference corresponding to the node groups; Determining the reference time zone corresponding to the node groups according to the supply chain time difference; Establishing a staging repository corresponding to the node groups, and determining the staging time error of the staging repository according to the reference time zone; Obtaining the retrieval location information corresponding to the data retrieval node, and adjusting the reference time zone according to the location information to form an adjusted reference time zone; Obtaining the time information of the retrieved data, and adjusting the staging time error according to the time information and the adjusted reference time zone to obtain the staging priority; Obtaining the interaction data of the node groups according to the staging priority, and recording it as supply chain data; When grouping each node, the node that initiates the interaction request is used as the request node, and the node that receives the interaction request is used as the sending node; wherein, for a single node group, it consists of a single request node and the corresponding single sending node; Wherein, the request node and the sending node are adjacent in the supply chain and form the node group; When obtaining the retrieval location information, for the single node group, the midpoint of the connection line between the corresponding request node and the sending node is the reference point of the node group; The distance between the retrieval location information and the reference point is the retrieval error distance; When obtaining the retrieval location information, determining the adjusted reference time zone according to the time zone difference between the retrieval location information and the reference time zone; Wherein, the adjusted reference time zone is positively correlated with the time zone difference and positively correlated with the retrieval error distance.

2. The cross-time zone data management method based on the supply chain according to claim 1, characterized in that, For the single node group, when it conducts interaction, The request node sends the request data to the sending node; The sending node sends the sending data and points the sending data to the corresponding request node; The request node receives the sending data and sends the received data to the corresponding sending node.

3. The cross-time zone data management method based on the supply chain according to claim 1, characterized in that, When obtaining the reference time zone corresponding to the single node group, the average value of the time zones corresponding to each node constituting the node group is the reference time zone of the node group; Wherein, the time zones corresponding to each node are calculated based on the time zones where the geographical locations are located.

4. The cross-time zone data management method based on the supply chain according to any one of claims 2 or 3, characterized in that, When determining the staging time error, for the single node group, the distance between the corresponding request node and the sending node is positively correlated with the staging time error.

5. The cross-time zone data management method based on the supply chain according to claim 4, characterized in that, When obtaining the request data of a single node group, using this time as the initial time, When obtaining the sending data, storing the sending data time, When obtaining the received data, storing the received data time.

6. The cross-time zone data management method based on the supply chain according to claim 5, characterized in that, When obtaining the retrieval time information, determining the staging priority according to the sending time zone difference between the sending node and the retrieval location information, and the request time zone difference between the request node and the retrieval location information; Wherein, the staging priority is to sort the sending data time and the received data time.

7. The cross-time zone data management method based on the supply chain according to claim 2, characterized in that, When obtaining the interaction data of the node groups, for the single node group, determining the supply chain data of the node group according to the corresponding staging priority; Wherein, the supply chain data is the sending data or the received data of the single node group.

Citation Information

Patent Citations

  • A customized intelligent development and management platform for enterprises

    CN116542698B

  • Data processing method and device in multi-time-zone scene, electronic equipment and medium

    CN115017171A

  • Cross-time-zone data processing method and device, equipment and storage medium

    CN115455068A