Grid port association information adjustment method and device, electronic equipment and computer medium

By adjusting the grid station grid association information and optimizing the division of delivery grids, the problem of low loading efficiency caused by manual experience layout in the existing technology is solved, and the efficiency of loading items to quickly find delivery grids is improved.

CN115689428BActive Publication Date: 2026-01-16BEIJING JINGDONG ZHENSHI INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202211177316.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-26
Publication Date
2026-01-16
Estimated Expiration
2042-09-26

AI Technical Summary

Technical Problem

In community group buying grid stations, when adding new delivery locations, existing technology requires manual experience to rearrange the delivery grids, resulting in low loading efficiency and an inability to quickly find the corresponding delivery grids.

Method used

By acquiring the location information and associated information sequence of the delivery grid stations, adjusting the grid association information according to the loading weight, generating the adjusted grid association information, optimizing the division of delivery grids, and making it easier for loading drivers to quickly find the delivery grids.

Benefits of technology

This improved the efficiency of loading goods, ensuring that drivers could quickly find the appropriate delivery slots, thus enhancing the overall efficiency of loading.

✦ Generated by Eureka AI based on patent content.

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Abstract

Embodiments of the present disclosure disclose a grid opening correlation information adjustment method and device, electronic equipment and a computer medium. A specific embodiment of the method comprises: obtaining delivery grid opening position information corresponding to a grid station, grid opening correlation information sequence and each item loading task, wherein the grid opening correlation information in the grid opening correlation information sequence corresponds to an item loading task in each item loading task, and the item loading task in each item loading task comprises a delivery grid opening sequence; for the first grid opening correlation information in the grid opening correlation information sequence, the following adjustment steps are performed: determining the loading weight associated with the delivery grid opening sequence corresponding to the grid opening correlation information according to the delivery grid opening position information; and adjusting the grid opening correlation information according to the loading weight and the delivery grid opening sequence to generate adjusted grid opening correlation information. This embodiment is related to a smart supply chain, which facilitates the quick finding of delivery grid openings by loading drivers and improves the loading efficiency of items.
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Description

TECHNICAL FIELD

[0001] Embodiments of the present disclosure relate to the technical field of computer technology, in particular to a grid port associated information adjustment method and device, electronic equipment and computer medium. BACKGROUND

[0002] In the application scenario of a community group purchase grid station (an article transfer station), a grid station has multiple delivery grid ports (multiple areas are divided in the grid station site, and each area represents a delivery grid port), and each delivery grid port corresponds to a delivery location (for example, a community).

[0003] Before delivery, in order to improve transportation efficiency, adjacent delivery locations are usually summarized into a transportation route, and after the route is confirmed, loading operation is performed. First, the corresponding delivery grid port is found according to the delivery location to be delivered, and then the goods are moved to the vehicle. When loading the goods of the delivery grid port, the loading method usually adopted is that the loading driver needs to quickly find each delivery grid port to be delivered, and then load the goods. When a delivery location is added to the grid station, the delivery grid ports of the grid station need to be rearranged, and the rearrangement method usually adopted is that the staff of the grid station rearranges the delivery grid ports of the grid station according to work experience. SUMMARY

[0004] The summary part of the present disclosure is used to introduce the concepts in a brief form, which will be described in detail in the specific implementation part. The summary part of the present disclosure is not intended to identify the key features or essential features of the claimed technical solutions, nor is it intended to limit the scope of the claimed technical solutions.

[0005] Some embodiments of the present disclosure propose a grid port associated information adjustment method, device, electronic equipment and computer readable medium to solve one or more of the technical problems mentioned in the background part.

[0006] In a first aspect, some embodiments of the present disclosure provide a grid port associated information adjustment method, which comprises: acquiring delivery grid port position information corresponding to a grid station, a grid port associated information sequence and each article loading task, wherein the grid port associated information in the grid port associated information sequence corresponds to an article loading task in each article loading task, and the article loading task in each article loading task comprises a delivery grid port sequence; for the first grid port associated information in the grid port associated information sequence, the following adjustment steps are performed: determining the loading weight associated with the delivery grid port sequence corresponding to the grid port associated information according to the delivery grid port position information; and adjusting the grid port associated information according to the loading weight and the delivery grid port sequence to generate an adjusted grid port associated information.

[0007] Optionally, the adjusting the grid mouth association information according to the loading weight and the sequence of the delivery grid mouths comprises: determining a first delivery grid mouth in the sequence of the delivery grid mouths as a target delivery grid mouth; performing the following updating steps based on the loading weight, the target delivery grid mouth, and the sequence of the delivery grid mouths: determining a task weight of each associated delivery grid mouth in an associated delivery grid mouth group and the target delivery grid mouth according to the sequence of the delivery grid mouths, to obtain a task weight group, wherein the associated delivery grid mouth group is each delivery grid mouth in the grid station except the target delivery grid mouth; selecting a target associated delivery grid mouth from the associated delivery grid mouth group based on the task weight group; and replacing a first delivery grid mouth in the sequence of the delivery grid mouths with the target associated delivery grid mouth to update the sequence of the delivery grid mouths, wherein the first delivery grid mouth is a delivery grid mouth in the sequence of the delivery grid mouths corresponding to a maximum task weight in the task weight group; and in response to determining that the updated loading weight is greater than or equal to the loading weight, adjusting the delivery grid mouths in the grid mouth association information according to the updated sequence of the delivery grid mouths to generate adjusted grid mouth association information, wherein the updated loading weight is a loading weight corresponding to the updated sequence of the delivery grid mouths.

[0008] Optionally, the selecting the target associated delivery grid mouth from the associated delivery grid mouth group based on the task weight group comprises: determining at least one minimum task weight in the task weight group as a candidate task weight group; determining each associated delivery grid mouth corresponding to the candidate task weight group as a candidate associated delivery grid mouth group; and determining a candidate associated delivery grid mouth closest to the target delivery grid mouth in the candidate associated delivery grid mouth group as the target associated delivery grid mouth.

[0009] Optionally, the method further comprises: in response to determining that the updated loading weight is less than the loading weight, taking the updated loading weight as the loading weight, taking the updated sequence of the delivery grid mouths as the sequence of the delivery grid mouths, taking a next delivery grid mouth corresponding to the target delivery grid mouth in the sequence of the delivery grid mouths as the target delivery grid mouth, and performing the updating steps again.

[0010] Optionally, the adjusting step further comprises: determining whether a target grid mouth association information sequence is empty, wherein the target grid mouth association information sequence is the grid mouth association information sequence from which the first grid mouth association information is removed.

[0011] Optionally, the method further comprises: in response to determining that the target grid mouth association information sequence is not empty, adjusting the target grid mouth association information sequence according to the adjusted grid mouth association information, taking the adjusted target grid mouth association information sequence as the grid mouth association information sequence, and performing the adjusting step again.

[0012] Optionally, the method further comprises: storing the generated adjustment grid port association information into a database of the grid station; and performing the article distribution processing according to the generated adjustment grid port association information.

[0013] Optionally, the method further comprises: in response to receiving the article distribution completion information of the grid station, for each distribution route corresponding to the grid station, performing the following processing steps: determining the adjustment order of the distribution order of each distribution point in the distribution route as the article loading order; and generating an article loading task corresponding to the article loading order according to the distribution route, the distribution grid port position information, and the grid port association information corresponding to the distribution route.

[0014] Optionally, for each generated article loading task, the following processing steps are performed: determining the transportation equipment terminal corresponding to the article loading task; and sending the article loading task to the transportation equipment terminal to control the associated vehicle to perform article distribution.

[0015] In a second aspect, some embodiments of the present disclosure provide a grid port association information adjustment device, the device comprising: an acquisition unit configured to acquire distribution grid port position information, a sequence of grid port association information, and each article loading task corresponding to a grid station, wherein the grid port association information in the sequence of grid port association information corresponds to an article loading task in the each article loading task, and the article loading task in the each article loading task comprises a sequence of distribution grid ports; and an adjustment unit configured to, for the first grid port association information in the sequence of grid port association information, perform the following adjustment steps: determining the loading weight associated with the sequence of distribution grid ports corresponding to the grid port association information according to the distribution grid port position information; and adjusting the grid port association information according to the loading weight and the sequence of distribution grid ports to generate an adjustment grid port association information.

[0016] Optionally, the adjusting unit is further configured to: determine a first delivery grid included in the delivery grid sequence as a target delivery grid; based on the loading weight, the target delivery grid, and the delivery grid sequence, perform the following updating steps: determine a task weight of each associated delivery grid in an associated delivery grid group to the target delivery grid according to the delivery grid sequence to obtain a task weight group, wherein the associated delivery grid group is each delivery grid in the grid station except the target delivery grid; select a target associated delivery grid from the associated delivery grid group based on the task weight group; replace a first delivery grid in the delivery grid sequence with the target associated delivery grid to update the delivery grid sequence, wherein the first delivery grid is a delivery grid in the delivery grid sequence corresponding to a maximum task weight in the task weight group; in response to determining that the updated loading weight is greater than or equal to the loading weight, adjust the delivery grid in the grid association information according to the updated delivery grid sequence to generate adjusted grid association information, wherein the updated loading weight is a loading weight corresponding to the updated delivery grid sequence.

[0017] Optionally, the adjusting unit is further configured to: determine at least one task weight with a minimum task weight in the task weight group as a candidate task weight group; determine each associated delivery grid corresponding to the candidate task weight group as a candidate associated delivery grid group; and determine a candidate associated delivery grid closest to the target delivery grid in the candidate associated delivery grid group as the target associated delivery grid.

[0018] Optionally, the device further comprises an updating unit configured to: in response to determining that the updated loading weight is less than the loading weight, take the updated loading weight as the loading weight, take the updated delivery grid sequence as the delivery grid sequence, take a next delivery grid corresponding to the target delivery grid in the delivery grid sequence as the target delivery grid, and perform the updating steps again.

[0019] Optionally, the adjusting unit is further configured to: determine whether the target grid association information sequence is empty, wherein the target grid association information sequence is the grid association information sequence with the first grid association information removed.

[0020] Optionally, the device further comprises a re-adjusting unit configured to: in response to determining that the target grid association information sequence is not empty, adjust the target grid association information sequence according to the adjusted grid association information, take the adjusted target grid association information sequence as the grid association information sequence, and perform the adjusting steps again.

[0021] Optionally, the device further comprises a storage unit configured to store the generated respective adjusted grid opening association information into a database of the grid station; and a distribution unit configured to perform an article distribution process according to the generated respective adjusted grid opening association information.

[0022] Optionally, the device further comprises a generation unit configured to, in response to receiving article distribution completion information corresponding to a grid station, perform the following processing steps for each distribution route corresponding to the grid station: determine an adjusted sequence of distribution orders of respective distribution points in the distribution route as an article loading order; and generate an article loading task corresponding to the article loading order according to the distribution route, distribution grid opening position information, and grid opening association information corresponding to the distribution route, wherein the distribution grid opening position information indicates positions of respective distribution grid openings in the grid station.

[0023] Optionally, the device further comprises a sending unit configured to, for each generated article loading task, perform the following processing steps: determine a transportation equipment terminal corresponding to the article loading task; and send the article loading task to the transportation equipment terminal, so that the transportation equipment terminal controls a vehicle associated with the transportation equipment terminal to perform article distribution.

[0024] In a third aspect, some embodiments of the present disclosure provide an electronic device, including: one or more processors; and a storage device having one or more programs stored thereon, wherein the one or more programs, when executed by the one or more processors, cause the one or more processors to implement the method described in any implementation manner of the first aspect.

[0025] In a fourth aspect, some embodiments of the present disclosure provide a computer-readable medium having a computer program stored thereon, wherein the program, when executed by a processor, implements the method described in any implementation manner of the first aspect.

[0026] The above various embodiments of the present disclosure have the following beneficial effects: through the grid opening association information adjustment method of some embodiments of the present disclosure, the loading efficiency of the goods is improved. Specifically, the reason for reducing the loading efficiency of the goods is that the distribution grids corresponding to adjacent distribution sites are usually arranged together, without considering whether the distribution grids corresponding to adjacent distribution sites correspond to the same distribution route, resulting in that the truck driver cannot quickly find the distribution grid, thereby reducing the loading efficiency of the goods. Based on this, the grid opening association information adjustment method of some embodiments of the present disclosure first acquires the distribution grid position information corresponding to the grid station, the grid opening association information sequence and each goods loading task. The grid opening association information in the above grid opening association information sequence corresponds to the goods loading task in each of the above goods loading tasks, and the goods loading task in each of the above goods loading tasks includes a distribution grid sequence. Thus, whether the distribution grid needs to be adjusted can be determined according to the distribution grid sequence included in each goods loading task. Then, for the first grid opening association information in the grid opening association information sequence, the following adjustment steps are performed: then, according to the above distribution grid position information, the loading weight associated with the distribution grid sequence corresponding to the above grid opening association information is determined. Thus, data support is provided for determining whether the current distribution grid sequence needs to be adjusted. Finally, the above grid opening association information is adjusted according to the above loading weight and the above distribution grid sequence to generate adjusted grid opening association information. Thus, the distribution grids corresponding to each distribution route in the grid station can be adjusted. Thus, the distribution grids can be divided according to the distribution routes, which facilitates the truck driver to quickly find the distribution grid and improves the loading efficiency of the goods. BRIEF DESCRIPTION OF DRAWINGS

[0027] The above and other features, advantages, and aspects of embodiments of the present disclosure will become more apparent upon consideration of the following detailed description, taken in conjunction with the accompanying drawings. In the drawings, like reference numerals refer to like elements. It should be understood that the drawings are schematic and elements and features are not necessarily to scale.

[0028] Figure 1 is an architecture diagram of an exemplary system to which some embodiments of the present disclosure can be applied;

[0029] Figure 2 is a flowchart of some embodiments of the grid opening association information adjustment method according to the present disclosure;

[0030] Figure 3 is a scenario diagram of the distribution grid position information in the grid opening association information adjustment method according to the present disclosure;

[0031] Figure 4 is another scenario diagram of the distribution grid position information in the grid opening association information adjustment method according to the present disclosure;

[0032] Figure 5 is a flow chart of another embodiment of the cell site association information adjustment method according to the present disclosure;

[0033] Figure 6 is a structural schematic diagram of some embodiments of the cell site association information adjustment apparatus according to the present disclosure;

[0034] Figure 7 is a structural schematic diagram of an electronic device suitable for use to implement some embodiments of the present disclosure. DETAILED DESCRIPTION

[0035] Embodiments of the present disclosure will be described below in greater detail with reference to the accompanying drawings. While certain embodiments of the present disclosure are shown in the drawings, it is understood that the present disclosure can be embodied in various forms and should not be interpreted as being limited to the embodiments set forth herein. Rather, these embodiments are provided so that the present disclosure can be more thoroughly and completely understood. It should be understood that the drawings of the present disclosure and the embodiments are only for exemplary purposes and should not be used to limit the scope of protection of the present disclosure.

[0036] It should also be noted that, for the sake of brevity, only the parts of the drawings that are relevant to the present application are shown. The embodiments in the present disclosure and the features in the embodiments can be combined with each other in the case of no conflict.

[0037] It should be noted that the terms “first”, “second”, and the like in the present disclosure are only used to distinguish different devices, modules, or units, and are not intended to limit the order or interdependence of the functions performed by these devices, modules, or units.

[0038] It should be noted that the terms “one”, “multiple” in the present disclosure are illustrative and not restrictive, and those skilled in the art should understand that “one” or “multiple” should be understood as “one or more” unless otherwise explicitly indicated in the context.

[0039] The names of the messages or information exchanged between the devices in the embodiments of the present disclosure are only used for illustrative purposes and are not intended to limit the scope of the messages or information.

[0040] The present disclosure will be described in detail below with reference to the accompanying drawings and in conjunction with the embodiments.

[0041] Figure 1 An exemplary system architecture 100 of the cell site association information adjustment method or the cell site association information adjustment apparatus to which some embodiments of the present disclosure can be applied is shown.

[0042] As Figure 1As shown, the system architecture 100 can include terminal devices 101, 102, 103, a network 104, and a server 105. The network 104 is a medium for providing a communication link between the terminal devices 101, 102, 103 and the server 105. The network 104 can include various connection types, such as wired, wireless communication links, or fiber optic cables, and the like.

[0043] A user can use the terminal devices 101, 102, 103 to interact with the server 105 through the network 104 to receive or send messages, and the like. Various communication client applications can be installed on the terminal devices 101, 102, 103, such as web browser applications, logistics service applications, search applications, instant messaging tools, email clients, social platform software, and the like.

[0044] The terminal devices 101, 102, 103 can be hardware or software. When the terminal devices 101, 102, 103 are hardware, they can be various electronic devices with display screens and supporting information display, including but not limited to smart phones, tablet computers, e-book readers, laptop computers, desktop computers, and the like. When the terminal devices 101, 102, 103 are software, they can be installed in the above-listed electronic devices. They can be implemented as, for example, multiple software or software modules for providing distributed services, or as a single software or software module. No specific limitation is made herein.

[0045] The server 105 can be a server for providing various services, such as a background server for supporting information displayed on the terminal devices 101, 102, 103. The background server can analyze and process received requests and the like, and feed back the processing results to the terminal devices.

[0046] It should be noted that the cell association information adjustment method provided by the embodiments of the present disclosure can be executed by the terminal devices 101, 102, 103, or by the server 105. Correspondingly, the cell association information adjustment apparatus can be arranged in the terminal devices 101, 102, 103, or in the server 105. No specific limitation is made herein.

[0047] It should be noted that the server can be hardware or software. When the server is hardware, it can be implemented as a distributed server cluster composed of multiple servers, or as a single server. When the server is software, it can be implemented as, for example, multiple software or software modules for providing distributed services, or as a single software or software module. No specific limitation is made herein.

[0048] It should be understood that, Figure 1The number of terminal devices, networks, and servers in the system is only illustrative. Any number of terminal devices, networks, and servers can be provided according to implementation needs.

[0049] With reference to Figure 2 , a flow 200 of some embodiments of the grid port association information adjustment method according to the present disclosure is shown. The grid port association information adjustment method includes the following steps:

[0050] In step 201, the delivery grid port position information corresponding to the grid station, the grid port association information sequence, and each item loading task are obtained.

[0051] In some embodiments, the execution subject of the grid port association information adjustment method (for example Figure 1 The server shown can obtain the delivery grid port position information corresponding to the grid station, the grid port association information sequence, and each item loading task from the terminal device through wired or wireless connection. The grid port association information in the grid port association information sequence corresponds to the item loading task in each item loading task, and the item loading task in each item loading task includes a delivery grid port sequence. The grid station can represent a transit station for delivering items. The grid station can include multiple delivery grid ports (multiple areas are divided in the grid station site, and each area represents a delivery grid port). Each delivery grid port corresponds to a delivery point (for example, a cell). Each delivery route corresponds to at least one delivery point. The delivery grid port position information can represent the position of each delivery grid port in the grid station. For example, the delivery grid port position information can represent a layout diagram of each delivery grid port in the grid station. Here, the grid port association information can represent the mapping relationship between the delivery grid port in each delivery grid port corresponding to a delivery route and the delivery point in each delivery point corresponding to the delivery route. For example, the grid port association information can be “delivery grid port 1-A delivery point; delivery grid port 3-B delivery point; delivery grid port 5-C delivery point”. The item loading task can refer to the delivery task information of the item to be transported corresponding to a delivery route. For example, the item loading task can include a delivery route, a delivery grid port sequence, and a delivery grid port position group.

[0052] As Figure 3 shown, the delivery grid port position information can represent a layout diagram of each delivery grid port in the grid station. For example, the delivery grid port position information can include “delivery grid port 1, delivery grid port 2, delivery grid port 3, delivery grid port 4, delivery grid port 5, delivery grid port 6, delivery grid port 7, delivery grid port 8, delivery grid port 9, delivery grid port 10, delivery grid port 17, delivery grid port 12”, and represents the positional relationship between each delivery grid port.

[0053] In step 202, for the first grid port association information in the grid port association information sequence, the following adjustment steps are performed:

[0054] In step 2021, the loading weight associated with the delivery hatch sequence corresponding to the hatch association information is determined according to the delivery hatch position information.

[0055] In some embodiments, the execution subject can determine the loading weight associated with the delivery hatch sequence corresponding to the hatch association information according to the delivery hatch position information.

[0056] Firstly, the delivery hatch position of each delivery hatch in the delivery hatch sequence can be selected from the delivery hatch position information to obtain a delivery hatch position sequence. Then, the distance between each two delivery hatch positions in the delivery hatch position sequence can be determined as a distance weight to obtain a distance weight sequence. Finally, the sum of each distance weight included in the distance weight sequence can be determined as the loading weight. Here, the distance weight can represent the actual interval between two delivery hatches. The loading weight can represent the sum of the distance weights of the actual interval between each two delivery hatches in the delivery hatch sequence. Here, the delivery hatch sequence corresponding to the hatch association information is the delivery hatch sequence included in the loading task of the goods corresponding to the hatch association information.

[0057] In step 2022, the hatch association information is adjusted according to the loading weight and the delivery hatch sequence to generate adjusted hatch association information.

[0058] In some embodiments, the execution subject can adjust the hatch association information according to the loading weight and the delivery hatch sequence to generate adjusted hatch association information. In practice, in response to the loading weight being greater than or equal to a preset weight, firstly, the delivery hatch sequence excluding the first delivery hatch is determined as a to-be-adjusted delivery hatch sequence. Then, a neighboring delivery hatch sequence adjacent to the first delivery hatch is determined. The number of neighboring delivery hatches included in the neighboring delivery hatch sequence is the same as the number of to-be-adjusted delivery hatches included in the to-be-adjusted delivery hatch sequence. Finally, each delivery hatch in the hatch association information corresponding to the to-be-adjusted delivery hatch sequence is replaced by a neighboring delivery hatch in the neighboring delivery hatch sequence. Thus, the adjusted hatch association information is generated. Here, the delivery hatch sequence can represent the loading order of the goods stored in each delivery hatch corresponding to a delivery route. For example, the delivery hatch sequence can be “delivery hatch 4→ delivery hatch 5→ delivery hatch 6→ delivery hatch 7→ delivery hatch 1”, which can represent that the goods stored in the delivery hatch 4 are loaded first, followed by the goods in “delivery hatch 5→ delivery hatch 6→ delivery hatch 7”, and finally the goods stored in the delivery hatch 1 are loaded.

[0059] In practice, according to the loading weight and the sequence of the delivery grid, the execution subject can adjust the grid association information to generate adjusted grid association information by the following steps:

[0060] Firstly, the first delivery grid in the sequence of the delivery grid is determined as the target delivery grid.

[0061] Secondly, based on the loading weight, the target delivery grid and the sequence of the delivery grid, the following updating steps are performed:

[0062] Firstly, according to the sequence of the delivery grid, the task weight of each associated delivery grid in the associated delivery grid group and the target delivery grid is determined to obtain a task weight group. The associated delivery grid group is each delivery grid in the grid station except the target delivery grid.

[0063] In practice, firstly, the first task weight is determined as the task weight of the associated delivery grid corresponding to the second delivery grid in the sequence of the delivery grid and the target delivery grid. Then, the associated delivery grid corresponding to each delivery grid after the second delivery grid in the sequence of the delivery grid is determined as the candidate delivery grid to obtain a candidate delivery grid sequence. Then, the second task weight is determined as the task weight of each associated delivery grid in the candidate delivery grid sequence and the target delivery grid. After that, the third task weight is determined as the task weight of each associated delivery grid in the target associated delivery grid group and the target delivery grid. Thus, the task weight group is obtained. The target associated delivery grid group is the associated delivery grid group from which the associated delivery grids corresponding to the sequence of the delivery grid are removed. Here, the first task weight, the second task weight and the third task weight are pre-set weights. The first task weight is greater than the second task weight, and the second task weight is greater than the third task weight. Here, the third task weight indicates that the two delivery grids do not belong to the same delivery route. The second task weight indicates that the two delivery grids belong to the same delivery route, but the two delivery grids are not adjacent in the same delivery route. The first task weight indicates that the two delivery grids belong to the same delivery route and the two delivery grids are adjacent in the same delivery route.

[0064] Secondly, based on the task weight group, the target associated delivery grid is selected from the associated delivery grid group.

[0065] In practice, the second updating step can include the following sub-steps:

[0066] Firstly, at least one task weight with the smallest task weight in the task weight group is determined as a candidate task weight group.

[0067] A second sub-step is to determine each associated delivery compartment corresponding to each candidate task weight group as a candidate associated delivery compartment group. That is, each associated delivery compartment corresponding to each candidate task weight in the candidate task weight group can be determined as a candidate associated delivery compartment, and a candidate associated delivery compartment group is obtained.

[0068] A third sub-step is to determine the candidate associated delivery compartment closest to the target delivery compartment in the candidate associated delivery compartment group as a target associated delivery compartment.

[0069] A third step is to replace the first delivery compartment in the delivery compartment sequence with the target associated delivery compartment to update the delivery compartment sequence. The first delivery compartment is the delivery compartment in the delivery compartment sequence corresponding to the maximum task weight in the task weight group.

[0070] In response to determining that the updated loading weight is greater than or equal to the loading weight, the delivery compartment in the compartment association information is adjusted according to the updated delivery compartment sequence to generate adjusted compartment association information. The updated loading weight is the loading weight corresponding to the updated delivery compartment sequence. In practice, first, each delivery compartment in the compartment association information that is different from any delivery compartment in the updated delivery compartment sequence is determined as a delivery compartment to be adjusted. Then, the delivery compartment to be adjusted in the compartment association information can be replaced with an updated delivery compartment to generate adjusted compartment association information. The updated delivery compartment is a delivery compartment in the updated delivery compartment sequence that is different from any delivery compartment in the compartment association information.

[0071] Alternatively, in response to determining that the updated loading weight is less than the loading weight, the updated loading weight is used as the loading weight, the updated delivery compartment sequence is used as the delivery compartment sequence, the next delivery compartment corresponding to the target delivery compartment in the delivery compartment sequence is used as the target delivery compartment, and the update step is executed again.

[0072] In some embodiments, in response to determining that the updated loading weight is less than the loading weight, the updated loading weight is used as the loading weight, the updated delivery compartment sequence is used as the delivery compartment sequence, the next delivery compartment corresponding to the target delivery compartment in the delivery compartment sequence is used as the target delivery compartment, and the update step is executed again.

[0073] As Figure 4For example, the delivery slot sequence corresponding to the slot association information before adjustment can be "delivery slot 1, delivery slot 3, delivery slot 5". The delivery slot sequence corresponding to the slot association information after adjustment can be "delivery slot 1, delivery slot 2, delivery slot 4".

[0074] Optionally, the adjusting step further includes determining whether the target slot association information sequence is empty.

[0075] In some embodiments, the execution subject can determine whether the target slot association information sequence is empty. The target slot association information sequence is the slot association information sequence with the first slot association information removed.

[0076] Optionally, in response to determining that the target slot association information sequence is not empty, the target slot association information sequence is adjusted according to the adjusted slot association information, and the adjusted target slot association information sequence is taken as the slot association information sequence, and the adjusting step is executed again.

[0077] In some embodiments, in response to determining that the target slot association information sequence is not empty, the target slot association information sequence is adjusted according to the adjusted slot association information, and the adjusted target slot association information sequence is taken as the slot association information sequence, and the adjusting step is executed again. In practice, first, the delivery slot that has been adjusted in the adjusted slot association information can be determined as a reference delivery slot. Then, the target slot association information in the target slot association information sequence corresponding to the reference delivery slot can be determined as a target slot association information to be adjusted. Then, the delivery point corresponding to the reference delivery slot can be determined as a reference delivery point. After that, the historical delivery slot (the delivery slot corresponding to the reference delivery point before the reference delivery point is adjusted) corresponding to the reference delivery point can be determined as an adjusted delivery slot. Finally, the delivery slot corresponding to the reference delivery slot in the target slot association information to be adjusted can be exchanged for the adjusted delivery slot.

[0078] Optionally, each of the generated adjusted slot association information is stored in the database of the grid station.

[0079] In some embodiments, the execution subject can store each of the generated adjusted slot association information in the database of the grid station.

[0080] Therefore, when the next time the goods are delivered, it is convenient for the truck driver to query the delivery slot, and the efficiency of loading the goods is improved.

[0081] Optionally, according to each of the generated adjusted slot association information, the goods are distributed.

[0082] In some embodiments, the execution subject described above can perform the article distribution processing according to the generated respective adjusted grid mouth association information. The article distribution can represent the distribution of respective articles to be delivered to respective delivery grids within a preset time period.

[0083] The above-mentioned various embodiments of the present disclosure have the following beneficial effects: the grid mouth association information adjustment method of some embodiments of the present disclosure improves the loading efficiency of articles. Specifically, the reason for reducing the loading efficiency of articles is that the delivery grids corresponding to adjacent delivery locations are usually arranged together, without considering whether the delivery grids corresponding to adjacent delivery locations correspond to the same delivery route, resulting in that the truck driver cannot quickly find the delivery grid, thereby reducing the loading efficiency of articles. Based on this, the grid mouth association information adjustment method of some embodiments of the present disclosure first acquires the delivery grid position information corresponding to the grid station, the grid mouth association information sequence, and respective article loading tasks. The grid mouth association information in the grid mouth association information sequence corresponds to an article loading task in the respective article loading tasks, and the article loading task in the respective article loading tasks includes a delivery grid sequence. Thus, whether the delivery grid needs to be adjusted can be determined according to the delivery grid sequence included in the respective article loading tasks. Then, for the first grid mouth association information in the grid mouth association information sequence, the following adjustment steps are performed: then, according to the delivery grid position information, the loading weight associated with the delivery grid sequence corresponding to the grid mouth association information is determined. Thus, data support is provided for determining whether the current delivery grid sequence needs to be adjusted. Finally, the grid mouth association information is adjusted according to the loading weight and the delivery grid sequence to generate adjusted grid mouth association information. Thus, the delivery grids corresponding to respective delivery routes in the grid station can be adjusted. Thus, the delivery grids can be divided according to the delivery routes, which facilitates the truck driver to quickly find the delivery grid and improves the loading efficiency of articles.

[0084] Further reference is made to Figure 5 , which shows another embodiment of the grid mouth association information adjustment method according to the present disclosure. The grid mouth association information adjustment method includes the following steps:

[0085] Step 501, acquiring the delivery grid position information corresponding to the grid station, the grid mouth association information sequence, and respective article loading tasks.

[0086] Step 502, for the first grid mouth association information in the grid mouth association information sequence, the following adjustment steps are performed: according to the delivery grid position information, the loading weight associated with the delivery grid sequence corresponding to the grid mouth association information is determined; the grid mouth association information is adjusted according to the loading weight and the delivery grid sequence to generate adjusted grid mouth association information.

[0087] In some embodiments, the specific implementation of steps 501-502 and the resulting technical effects can be found in [reference needed]. Figure 2 Steps 201-202 in the corresponding embodiments will not be repeated here.

[0088] Step 503: In response to receiving the item distribution completion information corresponding to the grid station, for each delivery route corresponding to the above grid station, the following processing steps are performed:

[0089] Step 5031: Determine the order of adjusting the delivery sequence corresponding to each delivery point in the above delivery route as the order of loading the goods.

[0090] In some embodiments, the executing entity of the grid association information adjustment method (e.g.) Figure 1 The server shown can determine the loading order of goods by adjusting the delivery order corresponding to each delivery point in the above delivery route. Here, the adjusted order can refer to the order after adjusting the delivery order. For example, the adjusted order can refer to the order after swapping any two delivery points corresponding to the above delivery order, or it can refer to the reverse order of the delivery order. For example, the delivery order can be "ABCDE", and the reverse order of the delivery order can be "EDCBA". In practice, the above-mentioned executing entity can determine the loading order of goods by determining the reverse order of the delivery order corresponding to each delivery point in the above delivery route. The item distribution completion information can indicate that each item to be delivered within a preset time period has been distributed to each delivery slot.

[0091] Therefore, the order in which goods are loaded onto the vehicle can be determined by the principle of first-in, last-out, which facilitates the orderly unloading of goods and improves the efficiency of goods delivery.

[0092] Step 5032: Based on the above delivery route, delivery compartment location information and corresponding compartment association information of the above delivery route, generate an item loading task corresponding to the above item loading sequence.

[0093] In some embodiments, the executing entity can generate a loading task corresponding to the loading sequence of the goods based on the delivery route, the delivery grid location information, and the grid association information corresponding to the delivery route. The delivery grid location information represents the location of each delivery grid in the grid station. For example, the delivery grid location information can represent a layout diagram of each delivery grid in the grid station. Here, the grid association information can represent the mapping relationship between the delivery grids corresponding to the delivery route and the delivery points corresponding to the delivery route. For example, the grid association information can be "Delivery grid 1 - Delivery point A; Delivery grid 3 - Delivery point B; Delivery grid 5 - Delivery point C".

[0094] In practice, according to the above distribution route, the distribution compartment position information and the compartment association information corresponding to the above distribution route, the execution subject can generate the article loading task corresponding to the above article loading sequence by the following steps:

[0095] First, select the distribution compartment position of each distribution compartment corresponding to the compartment association information from the distribution compartment position information to obtain a distribution compartment position group.

[0096] Second, sort each distribution compartment corresponding to the compartment association information according to the article loading sequence to obtain a distribution compartment sequence.

[0097] Third, combine the distribution route, the distribution compartment sequence and the distribution compartment position group to generate the article loading task.

[0098] Optionally, for each generated article loading task, the following processing steps are performed:

[0099] First, determine the transport equipment terminal corresponding to the article loading task. Here, the transport equipment terminal can refer to the terminal of the transport equipment transporting the article corresponding to the article loading task, or to the handheld terminal of the loading driver controlling the transport equipment transporting the article corresponding to the article loading task.

[0100] Second, send the article loading task to the transport equipment terminal to control the associated vehicle to perform article distribution. Here, the associated vehicle can refer to the vehicle in communication connection with the transport equipment terminal, or to the vehicle controlled by the loading driver corresponding to the transport equipment terminal.

[0101] In actual application scenarios, after receiving the article loading task, the transport equipment terminal will control the associated vehicle to drive to each distribution compartment in sequence according to the distribution compartment sequence and the distribution compartment position group included in the article loading task to perform article loading. After completing the loading of each article corresponding to the article loading task, the vehicle is controlled to perform article distribution according to the distribution route included in the article loading task.

[0102] From Figure 5 It can be seen that, compared with Figure 2 the description of some embodiments corresponding to Figure 5The process 500 in some embodiments corresponding has the following beneficial effects: improve the efficiency of goods delivery. Specifically, the reason for reducing the efficiency of goods delivery is that the order of goods loading of the same route is usually chaotic (the goods that may be delivered first in the route are found first and then loaded into the car) because the truck driver queries the delivery slot corresponding to the same route, resulting in the need to search for goods in the car during actual delivery, reducing the efficiency of goods delivery. Based on this, the slot association information adjustment method of some embodiments of the present disclosure, in response to receiving the goods distribution completion information corresponding to the grid station, for each delivery route corresponding to the above grid station, performs the following processing steps: first, determine the adjustment order of the delivery order of each delivery point in the above delivery route as the goods loading order. Thus, for the orderly loading of goods corresponding to the same delivery route, a reference basis is provided. Then, according to the above delivery route, the delivery slot position information and the slot association information corresponding to the above delivery route, generate the goods loading task corresponding to the above goods loading order. Wherein, the delivery slot position information represents the position of each delivery slot in the grid station. Thus, the truck driver can query the delivery slot using the goods loading task constructed by the goods loading order. Thus, the goods in the delivery slot can be loaded in order, so that the goods can be taken out in order during subsequent delivery, improving the efficiency of goods delivery.

[0103] Further reference Figure 6 , as an implementation of the method shown in the above figures, the present disclosure provides some embodiments of a slot association information adjustment device, which corresponds to the method embodiments shown in Figure 2 , the slot association information adjustment device can be applied to various electronic devices.

[0104] As Figure 6 shown, the slot association information adjustment device 600 of some embodiments includes an acquisition unit 601 and an adjustment unit 602. Wherein, the acquisition unit 601 is configured to acquire the delivery slot position information, the slot association information sequence and each goods loading task corresponding to the grid station, wherein the slot association information in the above slot association information sequence corresponds to the goods loading task in the above each goods loading task, and the goods loading task in the above each goods loading task includes a delivery slot sequence; the adjustment unit 602 is configured to perform the following adjustment steps for the first slot association information in the slot association information sequence: determine the loading weight associated with the delivery slot sequence corresponding to the above slot association information according to the above delivery slot position information; adjust the above slot association information according to the above loading weight and the above delivery slot sequence to generate an adjusted slot association information.

[0105] Optionally, the adjusting unit 602 is further configured to: determine a first delivery grid included in the delivery grid sequence as a target delivery grid; based on the loading weight, the target delivery grid, and the delivery grid sequence, perform the following updating steps: determine a task weight of each associated delivery grid in an associated delivery grid group to the target delivery grid according to the delivery grid sequence, to obtain a task weight group, wherein the associated delivery grid group is each delivery grid in the grid station except the target delivery grid; select a target associated delivery grid from the associated delivery grid group based on the task weight group; replace a first delivery grid in the delivery grid sequence with the target associated delivery grid to update the delivery grid sequence, wherein the first delivery grid is a delivery grid in the delivery grid sequence corresponding to the maximum task weight in the task weight group; in response to determining that the updated loading weight is greater than or equal to the loading weight, adjust the delivery grid in the grid association information according to the updated delivery grid sequence to generate adjusted grid association information, wherein the updated loading weight is a loading weight corresponding to the updated delivery grid sequence.

[0106] Optionally, the adjusting unit 602 is further configured to: determine at least one task weight with the minimum task weight in the task weight group as a candidate task weight group; determine each associated delivery grid corresponding to the candidate task weight group as a candidate associated delivery grid group; and determine a candidate associated delivery grid closest to the target delivery grid in the candidate associated delivery grid group as the target associated delivery grid.

[0107] Optionally, the apparatus 600 further includes an updating unit configured to: in response to determining that the updated loading weight is less than the loading weight, take the updated loading weight as the loading weight, take the updated delivery grid sequence as the delivery grid sequence, take a next delivery grid corresponding to the target delivery grid in the delivery grid sequence as the target delivery grid, and perform the updating steps again.

[0108] Optionally, the adjusting unit 602 is further configured to: determine whether the target grid association information sequence is empty, wherein the target grid association information sequence is the grid association information sequence with the first grid association information removed.

[0109] Optionally, the apparatus 600 further includes a re-adjusting unit configured to: in response to determining that the target grid association information sequence is not empty, adjust the target grid association information sequence according to the adjusted grid association information, take the adjusted target grid association information sequence as the grid association information sequence, and perform the adjusting steps again.

[0110] Optionally, the device 600 further includes: a storage unit configured to store the generated adjustment grid association information into the database of the grid station; and a distribution unit configured to perform item distribution processing based on the generated adjustment grid association information.

[0111] Optionally, the device 600 further includes a generation unit configured to: in response to receiving the item distribution completion information corresponding to the grid station, for each delivery route corresponding to the grid station, perform the following processing steps: determine the adjustment order of the delivery order corresponding to each delivery point in the delivery route as the item loading order; generate an item loading task corresponding to the item loading order based on the delivery route, the delivery slot location information and the slot association information corresponding to the delivery route, wherein the delivery slot location information indicates the location of each delivery slot in the grid station.

[0112] Optionally, the device 600 further includes a sending unit configured to perform the following processing steps for each generated item loading task: determine the transportation equipment terminal corresponding to the item loading task; send the item loading task to the transportation equipment terminal so that the transportation equipment terminal can control the associated vehicle to deliver the item.

[0113] It is understandable that the units described in the grid-related information adjustment device 600 are related to the reference. Figure 2 The steps in the described method correspond to each other. Therefore, the operations, features, and beneficial effects described above for the method also apply to the grid association information adjustment device 600 and the units contained therein, and will not be repeated here.

[0114] The following is for reference. Figure 7 It illustrates electronic devices suitable for implementing some embodiments of this disclosure (e.g., Figure 1 The diagram shows the structure of the server 700. Electronic devices in some embodiments of this disclosure may include, but are not limited to, mobile terminals such as mobile phones, laptops, digital broadcast receivers, PDAs (personal digital assistants), PADs (tablet computers), PMPs (portable multimedia players), in-vehicle terminals (e.g., in-vehicle navigation terminals), and fixed terminals such as digital TVs and desktop computers. Figure 7 The electronic device shown is merely an example and should not be construed as limiting the functionality and scope of the embodiments of this disclosure.

[0115] like Figure 7As shown, the electronic device 700 can include a processing device (e.g., a central processing unit, a graphics processing unit, etc.) 701 that can perform various appropriate actions and processes according to programs stored in a read-only memory (ROM) 702 or loaded into a random access memory (RAM) 703 from a storage device 708. Various programs and data required for the operation of the electronic device 700 are also stored in the RAM 703. The processing device 701, the ROM 702, and the RAM 703 are connected to each other through a bus 704. An input / output (I / O) interface 705 is also connected to the bus 704.

[0116] Generally, the following devices can be connected to the I / O interface 705: input devices 706 including, for example, a touch screen, a touch pad, a keyboard, a mouse, a camera, a microphone, an accelerometer, a gyroscope, etc.; output devices 707 including, for example, a liquid crystal display (LCD), a speaker, a vibrator, etc.; storage devices 708 including, for example, a magnetic tape, a hard disk, etc.; and communication devices 709. The communication devices 709 can allow the electronic device 700 to exchange data with other devices wirelessly or through wires. Although Figure 7 The electronic device 700 is shown with various devices, but it should be understood that not all of the shown devices are required to be implemented or present. More or fewer devices can alternatively be implemented or present. Figure 7 Each block shown in the flowcharts can represent a device or multiple devices as needed.

[0117] In particular, processes described above with reference to the flowcharts can be implemented as a computer software program according to some embodiments of the present disclosure. For example, some embodiments of the present disclosure include a computer program product including a computer program carried on a computer readable medium, the computer program containing program code for performing the methods shown in the flowcharts. In some such embodiments, the computer program can be downloaded and installed from a network through the communication devices 709, or installed from the storage devices 708, or installed from the ROM 702. When the computer program is executed by the processing device 701, the above-described functions defined in the methods of some embodiments of the present disclosure are performed.

[0118] Note that the computer readable medium in some embodiments of the present disclosure can be a computer readable signal medium or a computer readable storage medium or any combination thereof. The computer readable storage medium can be, for example but not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus or device, or any suitable combination of the foregoing. More specific examples of the computer readable storage medium can include, but are not limited to, an electrical connection having one or more wires, a portable computer diskette, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or Flash memory), an optical fiber, a portable compact disc read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the foregoing. In some embodiments of the present disclosure, the computer readable storage medium can be any tangible medium that contains or stores a program used by an instruction execution system, apparatus or device, or that can be used by or in connection with an instruction execution system, apparatus or device. In some embodiments of the present disclosure, the computer readable signal medium can include a computer readable program code propagated in or on a carrier medium, in which the computer readable program code is embodied. Such propagated computer readable program code can take many forms, including but not limited to, an electromagnetic signal, an optical signal or any suitable combination of the foregoing. The computer readable signal medium can also be any computer readable medium that is not a computer readable storage medium and that can communicate, propagate or transport a program for use by or in connection with an instruction execution system, apparatus or device. Program code embodied on a computer readable medium can be transmitted using any suitable medium, including but not limited to, wire, cable, wireless, RF, infrared or any suitable combination of the foregoing.

[0119] In some embodiments, the client, server, or both can communicate using any current known or future developed network protocol, such as HTTP (HyperText Transfer Protocol), and can be interconnected with any form or medium of digital data communication (e.g., a communication network). Examples of communication networks include local area networks ("LAN"), wide area networks ("WAN"), the Internet, and peer-to-peer networks (e.g., ad hoc peer-to-peer networks), as well as any current known or future developed networks.

[0120] The computer readable medium can be included in the electronic device; or can exist independently of the electronic device. The computer readable medium carries one or more programs which, when executed by the electronic device, cause the electronic device to: acquire distribution grid station corresponding distribution grid location information, grid association information sequence and each article loading task, wherein the grid association information in the grid association information sequence corresponds to an article loading task in each article loading task, and the article loading task in each article loading task comprises a distribution grid sequence; for the first grid association information in the grid association information sequence, perform the following adjustment step: according to the distribution grid location information, determine the loading weight associated with the distribution grid sequence corresponding to the grid association information; and according to the loading weight and the distribution grid sequence, adjust the grid association information to generate adjusted grid association information.

[0121] Computer program code for carrying out operations of some embodiments of the disclosure can be written in any combination of one or more programming languages, including an object oriented programming language such as Java, Smalltalk, C++ or the like, and conventional procedural programming languages, such as the "C" programming language or similar programming languages. The program code can execute entirely on the user's computer, partly on the user's computer, as a stand-alone software package, partly on the user's computer and partly on a remote computer or entirely on the remote computer or server. In the latter scenario, the remote computer can be connected to the user's computer through any type of network, including a local area network (LAN) or a wide area network (WAN), or the connection can be made to an external computer (for example, through the Internet using an Internet Service Provider).

[0122] The flow and block diagrams in the drawings show architectural, functional, and operational representations of possible implementations of systems, methods, and computer program products according to various embodiments of the present disclosure. In this regard, each block in the flow and block diagrams can represent a module, a segment, or a portion of code, which comprises one or more executable instructions for implementing the specified logical function(s). It should also be noted that in some alternative implementations, the functions noted in the blocks can occur out of the order noted in the figures. For example, two blocks shown in succession may, in fact, be executed substantially concurrently or the blocks may be executed in the reverse order, depending on the functionality involved. It will also be noted that each block of the block diagrams and / or flowchart illustrations, and combinations thereof, can be implemented by a dedicated hardware-based system that performs the specified functions or operations, or combinations of hardware and computer instructions.

[0123] The units described in some embodiments of the present disclosure can be implemented in the form of software, or can be implemented in the form of hardware. The described units can also be arranged in a processor, for example, can be described as: a processor comprising an acquisition unit and an adjustment unit. Among them, the name of these units does not constitute a limitation to the units themselves in some cases, for example, the acquisition unit can also be described as: "a unit for acquiring the delivery bin position information corresponding to the grid station, the bin association information sequence, and each item loading task".

[0124] The functions described above in the present document can be performed at least in part by one or more hardware logic components. For example, non-limiting example types of hardware logic components that can be used include: field-programmable gate arrays (FPGAs), application-specific integrated circuits (ASICs), application-specific standard products (ASSPs), system-on-a-chip (SOCs), complex programmable logic devices (CPLDs), etc.

[0125] The above description is merely some preferred embodiments of the present disclosure and a description of the principles of the technology used. Those skilled in the art should understand that the scope of the application involved in the embodiments of the present disclosure is not limited to the technical solutions formed by the specific combinations of the above technical features, and should also cover other technical solutions formed by any combination of the above technical features or their equivalent features without departing from the above inventive concept. For example, the above features and the technical features disclosed in the embodiments of the present disclosure (but not limited to) with similar functions are replaced with each other to form a technical solution.

Claims

1. A method for adjusting grid opening associated information, comprising: obtaining delivery grid opening position information corresponding to a grid station, a grid opening associated information sequence, and each article loading task, wherein the grid opening associated information in the grid opening associated information sequence corresponds to an article loading task in the each article loading task, and the article loading task in the each article loading task comprises a delivery grid opening sequence; for a first grid opening associated information in the grid opening associated information sequence, performing the following adjustment step: determining a loading weight associated with the delivery grid opening sequence corresponding to the grid opening associated information according to the delivery grid opening position information, determining a first delivery grid opening included in the delivery grid opening sequence as a target delivery grid opening, performing the following update step: determining task weights of each associated delivery grid opening in the grid station other than the target delivery grid opening and the target delivery grid opening according to the delivery grid opening sequence to obtain a task weight group, selecting a target associated delivery grid opening from the each associated delivery grid opening based on the task weight group, and replacing a delivery grid opening corresponding to a maximum task weight in the delivery grid opening sequence with the target associated delivery grid opening to update the delivery grid opening sequence; in response to determining that an updated loading weight is greater than or equal to the loading weight, adjusting a delivery grid opening in the grid opening associated information according to the updated delivery grid opening sequence to generate an adjusted grid opening associated information, wherein the updated loading weight is a loading weight corresponding to the updated delivery grid opening sequence.

2. The method of claim 1, wherein, The method further comprises: in response to determining that the updated loading weight is less than the loading weight, taking the updated loading weight as the loading weight, taking the updated delivery grid opening sequence as the delivery grid opening sequence, taking a next delivery grid opening corresponding to the target delivery grid opening in the delivery grid opening sequence as a target delivery grid opening, and performing the update step again. The method further comprises: determining whether a target grid opening associated information sequence is empty, wherein the target grid opening associated information sequence is the grid opening associated information sequence from which the first grid opening associated information is removed.

3. The method of claim 1, wherein, The method further comprises: in response to determining that the target grid opening associated information sequence is not empty, adjusting the target grid opening associated information sequence according to the adjusted grid opening associated information, taking the adjusted target grid opening associated information sequence as the grid opening associated information sequence, and performing the adjustment step again.

4. The method of claim 1, wherein, The method further comprises: storing each generated adjusted grid opening associated information into a database of the grid station; 5. The method of claim 4, wherein, performing article distribution processing according to each generated adjusted grid opening associated information. The method further comprises:

6. The method of claim 1, wherein, ​ ​ ​ 7. The method according to one of claims 1 to 6, wherein ​ In response to receiving the item distribution completion information corresponding to the grid station, for each distribution route corresponding to the grid station, the following processing steps are performed: The adjustment order of the distribution order corresponding to each distribution point in the distribution route is determined as the item loading order; According to the distribution route, the distribution compartment position information, and the compartment association information corresponding to the distribution route, an item loading task corresponding to the item loading order is generated, wherein the distribution compartment position information represents the position of each distribution compartment in the grid station.

8. The method of claim 7, wherein, The method further comprises: For each generated item loading task, the following processing steps are performed: A transportation device terminal corresponding to the item loading task is determined; The item loading task is sent to the transportation device terminal for controlling the associated vehicle to perform item distribution.

9. A compartment association information adjustment apparatus, comprising: An acquisition unit configured to acquire distribution compartment position information corresponding to a grid station, a compartment association information sequence, and each item loading task, wherein the compartment association information in the compartment association information sequence corresponds to an item loading task in the each item loading task, and the item loading task in the each item loading task includes a distribution compartment sequence; An adjustment unit configured to, for a first compartment association information in the compartment association information sequence, perform the following adjustment steps: determining, according to the distribution compartment position information, a loading weight associated with a distribution compartment sequence corresponding to the compartment association information; determining a first distribution compartment included in the distribution compartment sequence as a target distribution compartment; performing the following update steps: determining, according to the distribution compartment sequence, a task weight of each associated distribution compartment in the grid station other than the target distribution compartment and the target distribution compartment to obtain a task weight group; selecting a target associated distribution compartment from the each associated distribution compartment based on the task weight group; replacing, in the distribution compartment sequence, a distribution compartment corresponding to the largest task weight with the target associated distribution compartment to update the distribution compartment sequence; and in response to determining that an updated loading weight is greater than or equal to the loading weight, adjusting the distribution compartment in the compartment association information according to the updated distribution compartment sequence to generate an adjusted compartment association information, wherein the updated loading weight is a loading weight corresponding to the updated distribution compartment sequence.

10. An electronic device, comprising: one or more processors; storage having one or more programs stored thereon; when the one or more programs are executed by the one or more processors, the one or more processors implement the method of any one of claims 1-8.

11. A computer readable medium having stored thereon a computer program, wherein, The program is executed by the processor to implement the method of any one of claims 1-8. The program is executed by the processor to implement the method of any one of claims 1-8.

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