Article sampling inspection method, device and equipment and storage medium

By introducing the item sampling method into the logistics system, the error input problem caused by the lack of sampling function in the existing system is solved, and the sampling efficiency and user experience are improved.

CN120013372APending Publication Date: 2025-05-16BEIJING JINGDONG YUANSHENG TECH CO LTD
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Patent Information

Application Number
CN202311519438.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-14
Publication Date
2025-05-16

AI Technical Summary

Technical Problem

The existing logistics system lacks the sampling function, resulting in incorrect input of the weight and volume of the goods, affecting the delivery time and reducing the user experience.

Method used

Provide a method for random inspection of items. By determining the station to be randomly inspected and the inspection site, determining the waybill to be randomly inspected according to the preset random inspection rules, matching the current attribute information and standard attribute information of the item, and determining the random inspection results.

Benefits of technology

It improves the efficiency and accuracy of random inspections, reduces the possibility of misinput, and improves the efficiency and user experience of cold chain transportation.

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Abstract

The embodiment of the invention discloses an article sampling inspection method and device, equipment and a storage medium, and relates to the technical field of logistics. The method comprises the following steps: determining a to-be-casually-inspected site and an inspection site according to a received casually-inspected task, and then determining a to-be-casually-inspected waybill according to the to-be-casually-inspected site, the inspection site and a preset casually-inspected rule; determining a to-be-sampled article according to the to-be-sampled waybill; and matching the current attribute information of the to-be-sampled article with the standard attribute information, and determining a sampling result of the to-be-sampled article according to a matching result. Through the technical scheme of the embodiment of the invention, the casual inspection of the articles transferred by the logistics system is realized, and the purposes of improving the logistics efficiency and the user experience are achieved.
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Description

Technical Field

[0001] Embodiments of the present invention relate to the field of logistics technology, and in particular to an item sampling method, device, equipment and storage medium. Background Art

[0002] With the rapid development of the national economy, people's living standards are improving day by day, the output and circulation of fresh agricultural products are increasing year by year, and people have put forward higher requirements for the safety and quality of fresh agricultural products. Therefore, accelerating the development of cold chain logistics of fresh agricultural products is of great significance to improving user health and ensuring consumer safety.

[0003] An indispensable link in logistics distribution is transshipment, but there is no self-inspection process for weighing in the existing logistics system. When the originating cold chain transshipment center receives the goods, the wrong cargo information is entered, resulting in system record errors, which reduces customer experience, causes property disputes, and even receives complaints from users. Even if the staff of the transit cold chain transshipment center finds that the weight and volume of the goods are entered incorrectly, they cannot modify them, resulting in the inability to continue to circulate the goods. They need to be returned and re-transferred, affecting the delivery timeliness.

[0004] In the process of implementing the present invention, the inventors found that there are at least the following technical problems in the prior art:

[0005] The logistics system lacks sampling inspection function. Summary of the invention

[0006] The present invention provides an article random inspection method, device, equipment and storage medium to realize random inspection of articles transported by a logistics system, so as to achieve the purpose of improving logistics efficiency and user experience.

[0007] In a first aspect, an embodiment of the present invention provides an article sampling inspection method, comprising:

[0008] After determining the sites to be inspected and the inspection sites according to the received inspection tasks, determine the waybill to be inspected according to the sites to be inspected, the inspection sites and the preset inspection rules, wherein the site to be inspected is the previous site of the inspection site, and the inspection site is used as the current site to conduct inspection on the site to be inspected;

[0009] Determine the items to be sampled based on the waybill to be sampled;

[0010] The current attribute information of the items to be inspected is matched with the standard attribute information, and the inspection result of the items to be inspected is determined according to the matching result.

[0011] In a second aspect, an embodiment of the present invention further provides an article sampling inspection device, the device comprising:

[0012] The first determination module is used to determine the site to be inspected and the inspection site according to the received inspection task, and then determine the waybill to be inspected according to the site to be inspected, the inspection site and the preset inspection rules, wherein the site to be inspected is the previous site of the inspection site, and the inspection site is used as the current site to conduct inspection on the site to be inspected;

[0013] The second determination module is used to determine the items to be sampled according to the waybill to be sampled;

[0014] The execution module is used to match the current attribute information of the items to be inspected with the standard attribute information, and determine the inspection results of the items to be inspected according to the matching results.

[0015] In a third aspect, an embodiment of the present invention further provides a computer device, the computer device comprising:

[0016] one or more processors;

[0017] a storage device for storing one or more programs,

[0018] When one or more programs are executed by one or more processors, the one or more processors implement any of the object sampling inspection methods described in the first aspect.

[0019] In a fourth aspect, an embodiment of the present invention further provides a storage medium comprising computer executable instructions, which, when executed by a computer processor, are used to execute any of the object sampling methods described in the first aspect.

[0020] The embodiments of the above invention have the following advantages or beneficial effects:

[0021] An embodiment of the present invention provides a method for spot-checking items, comprising: after determining a site to be spot-checked and an inspection site according to a received spot-checking task, determining a waybill to be spot-checked according to the site to be spot-checked, the inspection site and preset spot-checking rules; determining items to be spot-checked according to the waybill to be spot-checked; matching current attribute information of the items to be spot-checked with standard attribute information, and determining the spot-checking result of the items to be spot-checked according to the matching result. The above technical solution sets the sampling rules in advance before the logistics system receives the sampling task, and determines the sites to be sampled and the inspection sites according to the received sampling tasks, and then determines the waybills to be sampled based on the sites to be sampled, the inspection sites and the preset sampling rules, thereby improving the efficiency of determining the waybills to be sampled, thereby improving the sampling efficiency, thereby improving the efficiency of cold chain transportation; then, determine the items to be sampled according to the waybills to be sampled; then match the current attribute information of the items to be sampled with the standard attribute information, and finally determine the sampling results of the items to be sampled according to the matching results. According to the sampling results, it can be confirmed whether the attribute information entered at the site to be sampled is incorrect. When it is determined that the attribute information entered at the site to be sampled is incorrect, the on-site personnel can be reminded to modify the information entered into the system in time, thereby reducing the error rate, thereby improving the transmission efficiency, and then improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 A flowchart of an article sampling method provided by an embodiment of the present invention;

[0023] Figure 2 A flowchart of another method for sampling items provided by an embodiment of the present invention;

[0024] Figure 3 A flowchart of another method for sampling and inspecting items provided by an embodiment of the present invention;

[0025] Figure 4 A schematic diagram of the structure of an article sampling inspection device provided by an embodiment of the present invention;

[0026] Figure 5 A schematic diagram of the structure of a computer device provided in an embodiment of the present invention. DETAILED DESCRIPTION

[0027] The present invention will be further described in detail below in conjunction with the accompanying drawings and embodiments. It is to be understood that the specific embodiments described herein are only used to explain the present invention, rather than to limit the present invention. It should also be noted that, for ease of description, only parts related to the present invention, rather than all structures, are shown in the accompanying drawings.

[0028] It should be mentioned before discussing exemplary embodiments in more detail that some exemplary embodiments are described as processes or methods depicted as flow charts. Although the flow charts describe various operations (or steps) as sequential processes, many operations therein can be implemented in parallel, concurrently or simultaneously. In addition, the order of various operations can be rearranged. The process can be terminated when its operation is completed, but can also have additional steps not included in the accompanying drawings. The process can correspond to methods, functions, procedures, subroutines, subprograms, etc. In addition, the embodiments in the present invention and the features in the embodiments can be combined with each other without conflict.

[0029] Figure 1 The flowchart of a method for sampling inspection of articles provided in an embodiment of the present invention is applicable to situations where sampling inspection of articles transported by a logistics system is required. The method can be executed by an article sampling inspection device, which can be implemented by software and / or hardware. Figure 1 As shown, the method specifically comprises the following steps:

[0030] Step 110: After determining the sites to be inspected and the inspection sites according to the received inspection tasks, determine the waybills to be inspected according to the sites to be inspected, the inspection sites and the preset inspection rules.

[0031] Among them, the site to be inspected and the inspection site are any transfer sites in the logistics system. For the waybill to be inspected determined according to the inspection task, the site to be inspected is the previous site of the inspection site, and the inspection site can be used as the current site to conduct inspection on the site to be inspected.

[0032] The sampling task can be understood as a task of sampling a small number of items (samples) for inspection at a designated inspection site. The sampling task can be set according to actual conditions or needs. The content of the sampling task may include the number of items to be sampled, the site to be sampled, the inspection site, etc.

[0033] Specifically, after receiving the sampling inspection task, the first step is to determine the sites to be inspected and the inspection sites included in the sampling inspection task. Secondly, based on the preset sampling inspection rules, the waybills to be inspected can be determined in the logistics system where the previous site is the site to be inspected and the current site is the inspection site.

[0034] The preset sampling rules are rules for determining the waybills to be sampled and inspected according to actual conditions or requirements. The preset sampling rules may be that the delivery method of the waybills to be sampled and inspected is bulk delivery, at least one item in the waybills to be sampled and inspected has not been sampled and inspected in the last three sampling and inspection tasks, etc., and the embodiments of the present invention do not limit this. Before receiving the sampling and inspection tasks, in order to improve the sampling and inspection efficiency, the logistics system may preset the sampling and inspection rules in advance, and after determining the sites to be sampled and the inspection sites included in the sampling and inspection tasks, determine the waybills to be sampled and inspected in the logistics system based on the preset sampling and inspection rules, in the waybills whose previous site is the site to be sampled and the current site is the inspection site.

[0035] In an embodiment of the present invention, after determining the sites to be inspected and the inspection sites according to the inspection tasks, the preset inspection rules set in advance are used to determine the waybills to be inspected in the logistics system whose previous site is the site to be inspected and whose current site is the inspection site, thereby improving the efficiency of determining the waybills to be inspected, thereby improving the inspection efficiency, and thus improving the efficiency of cold chain transportation.

[0036] Step 120: Determine the items to be inspected based on the waybill to be inspected.

[0037] Among them, the items to be sampled are items that need to be inspected.

[0038] Specifically, after determining the waybill to be sampled, the items corresponding to the waybill to be sampled and the item information of the items can be determined in the logistics system, and the item information can include the sampling inspection record. Then, the items to be sampled can be determined from the items that have not been sampled in the latest three sampling inspection tasks corresponding to the waybill to be sampled according to the number of items included in the sampling inspection task.

[0039] For example, suppose the items in the waybill to be inspected are A, B, and C, and the latest three inspection tasks are October 15, 2023, October 16, 2023, and October 17, 2023, respectively. The inspection record of A is October 15, 2023, the inspection record of B is October 17, 2023, and the inspection record of C is October 14, 2023. Then it can be determined that the item to be inspected is C.

[0040] In the embodiment of the present invention, the items to be sampled are determined according to the waybill to be sampled.

[0041] Step 130: Match the current attribute information of the items to be inspected with the standard attribute information, and determine the inspection result of the items to be inspected according to the matching result.

[0042] The current attribute information of the items to be sampled is the information related to the items currently measured, such as the current weight and current volume of the items, which is not limited in the embodiment of the present invention. The standard attribute information is the information related to the items entered by the sampled site, such as the entered weight and entered volume of the items, which is not limited in the embodiment of the present invention.

[0043] Specifically, after determining the items to be inspected according to the waybill to be inspected, first, the standard attribute information of the items to be inspected entered by the inspection site can be obtained in the logistics system, for example, the input weight and input volume of the items to be inspected entered by the inspection site can be obtained in the logistics system; the current attribute information of the items to be inspected entered by the inspection personnel after on-site testing can also be received, for example, the current weight and current volume of the items to be inspected entered by the inspection personnel after on-site testing can be received. Secondly, the current attribute information of the items to be inspected can be matched with the standard attribute information to obtain the corresponding matching results, that is, the current weight of the items to be inspected can be matched with the input weight to obtain the weight matching result, and the current volume of the items to be inspected can be matched with the input volume to obtain the volume matching result. Finally, the inspection results of the items to be inspected can be obtained according to the matching results.

[0044] On the one hand, if the weight matching result is that the current weight and the entered weight are inconsistent, and / or the current volume and the entered volume are inconsistent, the sampling result of the item to be inspected is determined to be unqualified; otherwise, the sampling result of the item to be inspected is determined to be qualified.

[0045] On the other hand, the volume range and weight range of the items to be inspected can be determined based on the input volume and weight of the items to be inspected. If the current weight is not within the weight range, and / or the current volume and weight are not within the volume range, the inspection result of the items to be inspected is determined to be unqualified; otherwise, the inspection result of the items to be inspected is determined to be qualified. The volume range and weight range can be an acceptable error range set according to actual conditions or needs, and the embodiments of the present invention are not limited to this.

[0046] In an embodiment of the present invention, the current attribute information and standard attribute information of the items to be inspected are matched to obtain the matching result, and then the inspection result of the items to be inspected is determined based on the matching result. According to the inspection result, it can be confirmed whether the standard attribute information entered into the inspection site is incorrect. If there is an error, it can be modified in time, thereby improving transportation efficiency and further improving user experience.

[0047] The method for spot-checking items provided in an embodiment of the present invention includes: after determining the sites to be spot-checked and the inspection sites according to the received spot-checking tasks, determining the waybills to be spot-checked according to the sites to be spot-checked, the inspection sites and preset spot-checking rules; determining the items to be spot-checked according to the waybills to be spot-checked; matching the current attribute information of the items to be spot-checked with the standard attribute information, and determining the spot-checking results of the items to be spot-checked according to the matching results. The above technical solution sets the sampling rules in advance before the logistics system receives the sampling task, and determines the sites to be sampled and the inspection sites according to the received sampling tasks, and then determines the waybills to be sampled based on the sites to be sampled, the inspection sites and the preset sampling rules, thereby improving the efficiency of determining the waybills to be sampled, thereby improving the sampling efficiency, thereby improving the efficiency of cold chain transportation; then, determine the items to be sampled according to the waybills to be sampled; then match the current attribute information of the items to be sampled with the standard attribute information, and finally determine the sampling results of the items to be sampled according to the matching results. According to the sampling results, it can be confirmed whether the attribute information entered at the site to be sampled is incorrect. When it is determined that the attribute information entered at the site to be sampled is incorrect, the on-site personnel can be reminded to modify the information entered into the system in time, thereby reducing the error rate, thereby improving the transmission efficiency, and then improving the user experience.

[0048] Figure 2 A flow chart of another method for spot-checking items provided in an embodiment of the present invention. The embodiment of the present invention can be applied to situations where spot-checking of items transported by a logistics system is required. Based on the above embodiment, after determining the items to be spot-checked according to the waybill to be spot-checked, the embodiment of the present invention adds "determining the current attribute information of the items to be spot-checked according to the information input by the spot-checking personnel, and determining the standard attribute information of the items to be spot-checked in the logistics system", "determining the size range and weight range of the items to be spot-checked according to the standard size and standard weight of the items to be spot-checked", and "determining whether the spot-checking result of the items to be spot-checked is qualified according to the current size and current weight of the items to be spot-checked and the size range and weight range of the items to be spot-checked", and also adds "if the spot-checking result of the items to be spot-checked is unqualified, obtaining the item image of the items to be spot-checked; updating the item image and the number of spot-checking times of the items to be spot-checked", wherein the explanations of the terms that are the same or corresponding to the above embodiments are not repeated here. See Figure 2 The method for sampling items provided by the embodiment of the present invention includes:

[0049] Step 210: After determining the sites to be inspected and the inspection sites according to the received inspection tasks, determine the waybills to be inspected according to the sites to be inspected, the inspection sites and the preset inspection rules.

[0050] Among them, the sites to be inspected are the starting transfer sites.

[0051] In one embodiment, the preset sampling rules at least include: the delivery method of the waybill to be sampled is bulk delivery or full pallet delivery, and the waybill to be sampled includes at least one item that has not been sampled in a preset number of adjacent sampling tasks.

[0052] Exemplarily, the preset sampling rules may be that the items on the waybills to be sampled are all cold chain products, the delivery method of the waybills to be sampled is bulk delivery or full pallet delivery, and the waybills to be sampled include at least one item that has not been sampled in a preset number of adjacent sampling tasks.

[0053] In one implementation, determining the waybill to be inspected according to the site to be inspected, the inspection site and the preset inspection rules includes:

[0054] The waybill whose previous station is the station to be inspected and whose current station is the inspection station is determined as the target waybill; the target waybill whose receiving method is bulk receiving or full pallet receiving and which includes at least one item that has not been inspected in the preset number of adjacent inspection tasks is determined as the waybill to be inspected.

[0055] The target waybill is the waybill confirmed by the inspection site and the site to be sampled. The preset number is the number of sample inspection tasks set according to the actual situation or demand.

[0056] Specifically, after receiving the sampling inspection task, the sites to be inspected and the inspection sites included in the sampling inspection task can be determined first. The site to be inspected is the previous site of the inspection site. Since the site to be inspected is the site where the standard attribute information of the items is entered, the site to be inspected must be the originating transfer site. Then the waybill whose previous site is the site to be inspected and the current site is the inspection site is determined as the target waybill, and then based on the preset sampling inspection rules, the waybill to be inspected is determined in the target waybill whose previous site is the site to be inspected and the current site is the inspection site in the logistics system. Specifically, on the one hand, the waybill with the delivery method of bulk delivery or whole plate delivery in the target waybill can be determined as the first intermediate waybill, and then the waybill in the first intermediate waybill that includes at least one item that has not been inspected in the preset number of adjacent sampling inspection tasks is determined as the second intermediate waybill, and then the waybill to be inspected can be randomly determined in the second intermediate waybill according to the number of waybills to be inspected contained in the sampling inspection task. On the other hand, the target waybill includes at least one waybill of items that have not been sampled in a preset number of adjacent sampling tasks and can be determined as the first intermediate waybill, and then the waybill in the first intermediate waybill with the delivery method of bulk delivery or whole pallet delivery can be determined as the second intermediate waybill, and then the waybill to be sampled can be randomly determined in the second intermediate waybill according to the number of waybills to be sampled contained in the sampling task.

[0057] For example, if the current station A is the inspection station, and the previous station of the current station A is the origin transfer station B, then the waybill with the current station A and the previous station B can be determined as the target waybill. The preset sampling rule is that the delivery method of the waybill to be sampled is bulk delivery or full pallet delivery, and the waybill to be sampled includes at least one item that has not been sampled in the preset number of adjacent sampling tasks, and the preset number is 3. Therefore, if the delivery method of the target waybill is bulk delivery or full pallet delivery and there is an item in the waybill that has not been sampled in the last three sampling tasks, then the target waybill is determined as the waybill to be sampled.

[0058] In an embodiment of the present invention, after determining the sites to be inspected and the inspection sites according to the inspection tasks, based on the delivery method and the preset quantity, the waybill to be inspected is determined in the target waybill in the logistics system whose previous site is the site to be inspected and the current site is the inspection site, thereby improving the efficiency of determining the waybill to be inspected, and further improving the accuracy and efficiency of the inspection.

[0059] Step 220: Determine the items to be sampled according to the waybill to be sampled.

[0060] In one implementation, step 220 may specifically include:

[0061] Determine the items corresponding to the waybills to be inspected and the inspection status of each item; determine the items corresponding to the waybills to be inspected that have not been inspected in the preset number of adjacent inspection tasks as the items to be inspected.

[0062] Specifically, after determining the waybill to be sampled, the corresponding items in the waybill to be sampled and the item information of the items can be obtained in the logistics system, and the item information can include the sampling inspection record. Then, according to the sampling inspection record, the items corresponding to the waybill to be sampled that have not been sampled in the preset number of adjacent sampling inspection tasks are determined. Specifically, the items to be sampled can be determined according to the number of items included in the sampling inspection task among the items corresponding to the waybill to be sampled that have not been sampled in the preset number of adjacent sampling inspection tasks.

[0063] For example, assuming that the preset quantity is 2, the items in the waybill to be sampled are A, B, and C, and the latest two sampling tasks are October 16, 2023 and October 17, 2023, respectively. The sampling record of A is October 15, 2023, the sampling record of B is October 17, 2023, and the sampling record of C is October 14, 2023. Then it can be determined that the items to be sampled are A and C.

[0064] In an embodiment of the present invention, based on the items corresponding to the waybills to be inspected and the inspection status of the items, the items corresponding to the waybills to be inspected that have not been inspected in a preset number of adjacent inspection tasks are determined as the items to be inspected, thereby improving the efficiency and accuracy of the inspection.

[0065] Step 230: Determine the current attribute information of the items to be inspected based on the information input by the inspection personnel, and determine the standard attribute information of the items to be inspected in the logistics system.

[0066] Among them, the current attribute information includes at least the current size and the current weight; the standard attribute information includes at least the standard size and the standard weight.

[0067] Exemplarily, the current attribute information may be the current size, current weight and item name; the standard attribute information may be the standard size, standard weight and item name.

[0068] Specifically, after determining the items to be inspected, first, the inspection personnel conduct on-site testing on the items to be inspected to obtain relevant information about the items to be inspected, and then the inspection personnel input the relevant information about the items to be inspected obtained after the on-site testing, that is, the current attribute information, into the logistics system. For example, the current attribute information can be the current weight and current size of the items to be inspected input by the inspection personnel after the on-site testing; then, the standard attribute information of the items to be inspected entered by the inspection site can be obtained in the logistics system, for example, the input weight and input size of the items to be inspected entered by the inspection site can be obtained in the logistics system.

[0069] For example, when the item to be inspected is a box of apples, the inspector conducts an on-site test on the box of apples and can obtain the current size of the item to be inspected as 58cm (centimeter) long, 38cm wide, and 41cm high, and the current weight is 1kg (kilogram), which is the current attribute information of the item to be inspected. Then, the standard attribute information of the items in the waybill to be inspected can be determined in the logistics system based on the waybill to be inspected, and then the standard attribute information of the item to be inspected can be obtained. It can be determined that the input size of the item to be inspected is 60cm long, 40cm wide, and 40cm high, and the input weight is 1kg. The standard attribute information of the items to be inspected is entered into the logistics system at the originating transfer station.

[0070] In the embodiment of the present invention, the item information of the items to be sampled is entered into the logistics system in advance, which improves the efficiency of querying the item information and provides a data basis for subsequent matching.

[0071] Step 240: Determine the size range and weight range of the items to be inspected according to the standard size and standard weight of the items to be inspected.

[0072] Among them, the standard size and standard weight of the items to be inspected are the standard attribute information of the items to be inspected.

[0073] Specifically, after obtaining the standard size and standard weight of the items to be inspected in the logistics system, the size range and weight range of the items to be inspected can be determined according to the standard size and standard weight of the items to be inspected. The size range and weight range of the items to be inspected are acceptable error ranges set according to actual conditions or needs.

[0074] For example, when the standard size of the item to be inspected is 60 cm in length, 60 cm in width, and 60 cm in height, and the standard weight is 1 kg, its size range can be length: 57 cm to 63 cm, width: 57 cm to 63 cm, height: 57 cm to 63 cm, and the weight range can be 950 g to 1050 g.

[0075] In the embodiment of the present invention, due to the limitations of the sensitivity and resolution of the instrument, the instability of the environment, the mental state of the person and other factors, errors are inevitable. If the error range is not set, any excess will be judged as unqualified, which is not conducive to the development of logistics work. Therefore, it is necessary to set an error range to ensure the smooth progress of logistics work.

[0076] Step 250: Determine whether the inspection result of the items to be inspected is qualified according to the current size and current weight of the items to be inspected and the size range and weight range of the items to be inspected.

[0077] Among them, the current size and current weight of the item to be inspected are the current attribute information of the item to be inspected.

[0078] Furthermore, step 250 may specifically include:

[0079] If it is determined that the current size of the item to be inspected is within the size range and the current weight is within the weight range, the inspection result of the item to be inspected is determined to be qualified; otherwise, the inspection result of the item to be inspected is determined to be unqualified.

[0080] Specifically, the standard size and standard weight of the items to be inspected are obtained from the logistics system, and then the size range and weight range of the items to be inspected are determined based on the standard size and standard weight of the items to be inspected. Then, whether the inspection result of the items to be inspected is qualified is determined based on the current size, current weight, size range and weight range of the items to be inspected. If the current size of the items to be inspected is within the size range and the current weight is within the weight range, the inspection result of the items to be inspected is determined to be qualified. Otherwise, the inspection result of the items to be inspected is determined to be unqualified.

[0081] For example, assuming that the standard size of the item to be inspected is 60cm long, 60cm wide, 60cm high, and the standard weight is 1kg, its size range can be 57cm to 63cm long, 57cm to 63cm wide, 57cm to 63cm high, and the weight range can be 950g to 1050g. If the current size of the item to be inspected is 58cm long, 59cm wide, 60cm high, and the current weight is 1kg, it can be determined that the inspection result of the item to be inspected is qualified.

[0082] In the embodiment of the present invention, whether the inspection result of the items to be inspected is qualified is determined based on the current size and current weight of the items to be inspected and the size range and weight range of the items to be inspected, thereby improving the efficiency of the inspection, reducing the implementation complexity, saving time, and thus reducing costs.

[0083] In one implementation, after step 250, the process further includes:

[0084] If the inspection result of the item to be inspected is unqualified, the item image of the item to be inspected is obtained; and the item image and the number of inspections of the item to be inspected are updated.

[0085] The object image at least includes a size image and a weight image.

[0086] Specifically, when the inspection result of the items to be inspected is unqualified, the logistics system needs to be maintained and the actual information of the items needs to be modified in time to avoid disputes with customers, so the unqualified items to be inspected need to be recorded. Therefore, the item image of the items to be inspected can be obtained, and the item image includes at least a size image and a weight image. The size image includes the display of the length, width and height of the item, and the weight image includes the display of the weight of the item. The obtained item image information is entered into the logistics system to update the item image of the items to be inspected, and the number of inspections is updated at the same time.

[0087] In the embodiment of the present invention, if the sampling inspection result is found to be unqualified through the sampling inspection process, the on-site personnel can be reminded to modify the item information maintained in the system in a timely manner. Updating the information of the items whose sampling inspection results are unqualified can help the logistics system to modify the actual information of the items in a timely manner to avoid disputes with customers. For the items whose sampling inspection results are unqualified, the on-site personnel can update the original information in the logistics system by uploading the image of the item, so that there is no need to return to the sampling inspection start page to re-enter the sampling inspection information after submitting the sampling inspection data, which avoids the on-site personnel from repeatedly entering the same item information and improves work efficiency.

[0088] The article sampling inspection method provided by the embodiment of the present invention includes: after determining the site to be sampled and the inspection site according to the received sampling inspection task, determining the waybill to be sampled according to the site to be sampled, the inspection site and the preset sampling inspection rules; determining the articles to be sampled according to the waybill to be sampled; then determining the current attribute information of the articles to be sampled according to the information input by the sampling inspection personnel, and determining the standard attribute information of the articles to be sampled in the logistics system; then determining the size range and weight range of the articles to be sampled according to the standard size and standard weight of the articles to be sampled; finally, determining whether the sampling inspection result of the articles to be sampled is qualified according to the current size and current weight of the articles to be sampled and the size range and weight range of the articles to be sampled. The above technical scheme sets the sampling inspection rules in advance before the logistics system receives the sampling inspection task, and determines the sites to be sampled and the inspection sites according to the received sampling inspection tasks, and then determines the waybills to be sampled based on the sites to be sampled, the inspection sites and the preset sampling inspection rules, thereby improving the efficiency of determining the waybills to be sampled, thereby improving the sampling inspection efficiency and accuracy, thereby improving the efficiency of cold chain transportation; then, determine the items to be sampled according to the waybills to be sampled; then, determine the current attribute information of the items to be sampled according to the information input by the sampling inspection personnel, and determine the standard attribute information of the items to be sampled in the logistics system. Here, by entering the item information of the items to be sampled into the logistics system in advance, the efficiency of querying their item information is improved, and a data basis is provided for subsequent matching; then, determine the standard size and standard weight of the items to be sampled according to the standard size and standard weight of the items to be sampled. Determine the size range and weight range of the items to be sampled. Due to the limitations of the sensitivity and resolution of the instrument, the instability of the environment, and the mental state of people, errors are inevitable. If the error range is not set, it will be judged as unqualified if it exceeds a certain point, which is not conducive to the development of logistics work. Therefore, it is necessary to set an error range to ensure the smooth progress of logistics work; finally, according to the current size and current weight of the items to be sampled and the size range and weight range of the items to be sampled, determine whether the sampling results of the items to be sampled are qualified, which improves the efficiency of sampling, reduces the complexity of implementation, saves time, and thus reduces costs; if the current size information of the items to be sampled is within the size range and the current weight information is within the weight range, the sampling results of the items to be sampled are qualified, otherwise they are unqualified. Therefore, according to the sampling results, the on-site personnel can be reminded to modify the information maintained in the system in time, reduce the error rate, and thus improve the transportation efficiency. At the same time, it improves the user's physical examination, reduces property disputes, and avoids disputes with customers.

[0089] In addition, after determining the sites to be inspected and the inspection sites according to the sampling inspection tasks, based on the delivery method and preset quantity, the waybill to be inspected is determined in the target waybill in the logistics system where the previous site is the site to be inspected and the current site is the inspection site, thereby improving the efficiency of determining the waybill to be inspected, and thereby improving the accuracy and efficiency of the sampling inspection.

[0090] Based on the items corresponding to the waybills to be inspected and the inspection status of the items, the items corresponding to the waybills to be inspected that have not been inspected in a preset number of adjacent inspection tasks are determined as the items to be inspected, thereby improving the efficiency and accuracy of the inspection.

[0091] If the inspection result of the item to be inspected is unqualified, the item image of the item to be inspected is obtained, and then the item image and the number of inspections of the item to be inspected in the logistics system are updated through the item image of the item to be inspected. In this way, not only can the unqualified items be discovered through the inspection process, but also the on-site personnel can be reminded to modify the information maintained in the system in a timely manner. In addition, updating the error information of the unqualified items can help the logistics system to modify the actual information of the goods in a timely manner to avoid disputes with customers. For items with unqualified inspection results, the on-site personnel can update the original information in the logistics system by uploading the item image, so that there is no need to return to the inspection start page to re-enter the inspection information after submitting the inspection data, which avoids the on-site personnel from repeatedly entering the same item information and improves work efficiency.

[0092] Figure 3 The flowchart of another method for sampling and inspecting articles provided in the embodiment of the present invention is an exemplary implementation method. Figure 3 As shown, the implementation method may specifically include the following steps:

[0093] Step 310: Determine the sites to be sampled and the inspection sites according to the received sampling tasks.

[0094] Specifically, after receiving the sampling inspection task, the sites to be inspected and the inspection sites included in the sampling inspection task can be determined first. The site to be inspected is the previous site of the inspection site, and the inspection site is used as the current site to inspect the site to be inspected.

[0095] Step 311, determine the initial transfer order according to the inspection site.

[0096] Specifically, after determining the sites to be sampled and the inspection sites, the transfer order number can be determined at the inspection site. Specifically, the transfer order number when the current site is the inspection site can be determined as the initial transfer order.

[0097] Step 312: determine any initial transfer order as the current transfer order, and determine whether the previous transfer site of the current transfer order is the originating transfer site.

[0098] If the previous transfer station of the current transfer order is the originating transfer station, execute step 313; otherwise, execute step 317.

[0099] Specifically, because the site to be inspected is the site where the standard attribute information of the items is entered, the site to be inspected must be the originating transfer site. Therefore, after determining the initial transfer order, each initial transfer order can be used as the current transfer order to determine the previous transfer site of the current transfer order. When it is determined that the previous transfer site of the current transfer order is the originating transfer site, the current transfer order can be determined as the first intermediate transfer order to achieve initial screening of the transfer order.

[0100] The first intermediate transfer order is the transfer order in which the previous transfer station in the initial transfer order is the originating transfer station.

[0101] Step 313: Determine whether the current transfer order is the first intermediate transfer order, and determine whether the items transported by the first intermediate transfer order are cold chain items.

[0102] If the items transported by the first intermediate transfer order are cold chain items, execute step 314; otherwise, execute step 317.

[0103] Specifically, determining whether all the items transported by the first intermediate transfer bill are cold chain items is one of the rules for determining the waybills to be sampled according to actual conditions or needs. This implementation method can help screen out the second intermediate transfer bill and improve the efficiency of sampling inspection by determining whether all the items transported by the first intermediate transfer bill are cold chain items.

[0104] The second intermediate transfer order is a transfer order for all items transported in the first intermediate transfer order, which are cold chain items.

[0105] Step 314: determine that the first intermediate transfer order is the second intermediate transfer order, and determine whether the delivery method of the second intermediate transfer order is bulk delivery or full plate delivery.

[0106] If the receiving mode of the second intermediate transfer order is bulk receiving or full pallet receiving, the second intermediate transfer order is determined to be the third intermediate transfer order, and step 315 is executed; otherwise, step 317 is executed.

[0107] Specifically, determining whether the delivery method of the second intermediate transfer bill is bulk delivery or full pallet delivery is one of the rules for determining the waybill to be sampled and inspected, which is set according to actual conditions or needs. This implementation method can help determine the third intermediate transfer bill by determining whether the delivery method of the second intermediate transfer bill is bulk delivery or full pallet delivery, and further can help determine the waybill to be sampled and inspected.

[0108] The third intermediate transfer order is the transfer order in the second intermediate transfer order where the receiving method is bulk cargo or full pallet.

[0109] Step 315: Determine whether there are any items in the third intermediate transfer order that have not been sampled in the last three sampling tasks.

[0110] If the third intermediate transfer order contains items that have not been sampled in the last three sampling tasks, execute step 316; otherwise, execute step 317.

[0111] Specifically, determining whether there are items in the third intermediate transfer bill that have not been sampled in the last three sampling tasks is one of the rules for determining the waybill to be sampled according to actual conditions or needs. This implementation method helps determine the waybill to be sampled by determining the third intermediate transfer bill, thereby improving the efficiency of determining the waybill to be sampled, and further improving the accuracy and efficiency of the sampling inspection.

[0112] Step 316: Determine that the third intermediate transfer order is the transfer order to be inspected.

[0113] Step 317: Determine that there is no need to perform random inspection on the current transfer order.

[0114] Specifically, when it is determined that the current transfer order does not meet any of the conditions in the above steps 312, 313, 314, and 315, that is, it can be determined that the current transfer order does not meet the sampling inspection conditions, that is, it is determined that there is no need to perform sampling inspection on the current transfer order.

[0115] Step 318: Determine the corresponding items to be inspected in the transfer order to be inspected.

[0116] Specifically, after determining the waybill to be inspected, it is necessary to determine the items to be inspected. The items corresponding to the waybill to be inspected and the item information of the items can be determined in the logistics system. The item information may include the inspection record. The items to be inspected can then be determined by confirming whether there are items in the waybill to be inspected that have not been inspected in the last three inspection tasks.

[0117] This implementation method helps determine the items to be inspected by determining whether there are items in the waybill to be inspected that have not been inspected in the last three inspection tasks, thereby determining the items to be inspected based on the waybill to be inspected.

[0118] Step 319: After determining the items to be sampled, obtain the current attribute information and standard attribute information of the items to be sampled.

[0119] Specifically, after determining the items to be inspected, the inspection personnel can obtain the current attribute information of the items to be inspected after on-site testing. For example, the inspection personnel can obtain the current weight and current volume of the items to be inspected after on-site testing. Then, the current attribute information of the items to be inspected can be uploaded to the logistics system to facilitate subsequent matching. After uploading the current attribute information of the items to be inspected in the logistics system, the standard attribute information of the items to be inspected entered at the inspection site can be called in the logistics system. For example, the input weight and input volume of the items to be inspected entered at the inspection site can be called in the logistics system.

[0120] Step 320: Match the standard attribute information of the object to be sampled with the current attribute information and determine the matching result.

[0121] Specifically, after obtaining the standard attribute information and current attribute information of the sampled items, the current attribute information and the standard attribute information of the sampled items can be matched to obtain the corresponding matching results, that is, the current weight of the sampled items can be matched to the input weight to obtain the weight matching result, and the current volume of the sampled items can be matched to the input volume to obtain the volume matching result. Finally, the sampling results of the sampled items can be obtained according to the matching results.

[0122] Step 321: Determine whether the sampling result of the item to be sampled is qualified according to the matching result.

[0123] If the inspection result of the item to be inspected is qualified, execute step 322; otherwise, execute step 323.

[0124] Specifically, whether the sampling inspection result is qualified can be determined by confirming whether the standard attribute information and current attribute information of the items to be sampled are within the error range. Specifically, the volume range and weight range of the items to be sampled can be determined according to the input volume and input weight of the items to be sampled. If the current weight is not within the weight range, and / or the current volume and weight are not within the volume range, the sampling inspection result of the items to be sampled is determined to be unqualified; otherwise, the sampling inspection result of the items to be sampled is determined to be qualified. Among them, the volume range and weight range can be an acceptable error range set according to actual conditions or needs, and the embodiments of the present invention are not limited to this.

[0125] This implementation method determines the inspection result by confirming whether the standard attribute information and current attribute information of the items to be inspected are within the error range, and then confirms whether the standard attribute information entered into the originating transfer station is incorrect based on the inspection result. If there is an error, the inspection personnel can be reminded to make timely modifications, thereby improving transportation efficiency and thus improving user experience.

[0126] Step 322, end the random inspection.

[0127] Step 323: Obtain image information of the object to be inspected, and update the object image and inspection times of the object to be inspected based on the image information of the object to be inspected.

[0128] Specifically, if the sampling inspection result is unqualified, the logistics system needs to be maintained and the actual information of the items needs to be modified in time to avoid disputes with customers. Therefore, the item image of the item to be sampled can be obtained, and the item image includes at least a size image and a weight image. The size image includes the display of the length, width and height of the item, and the weight image includes the weight display of the item. The obtained item image information is entered into the logistics system to update the item image of the item to be sampled and update the number of sampling inspections at the same time.

[0129] In this implementation method, for items that are found to be unqualified in random inspections, the inspection personnel can update the original information in the logistics system by uploading the image of the item. This eliminates the need to return to the inspection start page to re-enter the inspection information after submitting the inspection data. This allows for timely modification of the item information maintained in the system and avoids repeated entry of the same item information by on-site personnel, thereby improving work efficiency.

[0130] The method for implementing random inspection of articles provided by the embodiment of the present invention is as follows: first, the site to be inspected and the inspection site are determined according to the received random inspection task; then, the initial transfer order is determined according to the inspection site; thereafter, any initial transfer order is determined as the current transfer order, and it is determined whether the previous transfer site of the current transfer order is the originating transfer site. If the previous transfer site of the current transfer order is the originating transfer site, the current transfer order is determined to be the first intermediate transfer order; then, it is determined whether the articles on the first intermediate transfer order are all cold chain products. If the articles transported by the first intermediate transfer order are cold chain products, If there are chain items, the first intermediate transfer order is determined to be the second intermediate transfer order; then determine whether the delivery method of the second intermediate transfer order is bulk delivery or full pallet delivery. If the delivery method of the second intermediate transfer order is bulk delivery or full pallet delivery, the second intermediate transfer order is determined to be the third intermediate transfer order; finally, determine whether there are items in the third intermediate transfer order that have not been sampled in the last three sampling tasks. If there are items in the third intermediate transfer order that have not been sampled in the last three sampling tasks, the third intermediate transfer order is determined to be the transfer order to be sampled. The above preset rules can be used to obtain the shipping order to be sampled, thereby improving the efficiency of sampling. Then, the items to be inspected are determined by determining whether there are items in the waybill to be inspected that have not been inspected in the last three inspection tasks; then the current attribute information of the inspected items is obtained, and the current attribute information of the inspected items is uploaded to the logistics system to provide a data basis for subsequent matching; the standard attribute information of the inspected items is called again; the standard attribute information of the inspected items and the current attribute information are matched to obtain a matching result, and the inspection result of the inspected items can be obtained based on the matching result; if the inspection result is qualified, the inspection task is terminated; if the inspection result is unqualified, the image information of the items to be inspected is obtained, and the item image and the number of inspections of the items to be inspected are updated based on the image information of the items to be inspected, that is, the original information of the logistics system is modified in a timely manner, thereby improving transportation efficiency and thus improving user experience.

[0131] Figure 4 This is a schematic diagram of the structure of an article sampling inspection device provided in an embodiment of the present invention. The device and the article sampling inspection methods of the above embodiments belong to the same inventive concept. For details not described in detail in the embodiments of the article sampling inspection device, reference can be made to the embodiments of the above article sampling inspection methods.

[0132] The specific structure of the article sampling inspection device is as follows: Figure 4 As shown, including:

[0133] The first determination module 410 is used to determine the site to be inspected and the inspection site according to the received inspection task, and then determine the waybill to be inspected according to the site to be inspected, the inspection site and the preset inspection rules, wherein the site to be inspected is the previous site of the inspection site, and the inspection site is used as the current site to conduct inspection on the site to be inspected;

[0134] The second determination module 420 is used to determine the items to be sampled according to the waybill to be sampled;

[0135] The execution module 430 is used to match the current attribute information of the object to be inspected with the standard attribute information, and determine the inspection result of the object to be inspected according to the matching result.

[0136] In one embodiment, the site to be inspected is the originating transfer site.

[0137] In one embodiment, the preset sampling rules at least include: the delivery method of the waybill to be sampled is bulk delivery or full pallet delivery, and the waybill to be sampled includes at least one item that has not been sampled in a preset number of adjacent sampling tasks.

[0138] Based on the above embodiment, the first determining module 410 is specifically configured to:

[0139] The waybill whose previous station is the station to be sampled and whose current station is the inspection station is determined as the target waybill;

[0140] A target waybill that has a receiving mode of bulk receiving or full pallet receiving and includes at least one item that has not been sampled in a preset number of adjacent sampling tasks is determined as the waybill to be sampled.

[0141] Based on the above embodiment, the second determining module 420 is specifically configured to:

[0142] Determine the items corresponding to the waybill to be sampled and the sampling status of each item;

[0143] Items corresponding to the waybills to be sampled and not sampled in the preset number of adjacent sampled sampled tasks are determined as the items to be sampled.

[0144] Based on the above embodiment, the device further includes:

[0145] The third determination module is used to determine the current attribute information of the items to be inspected according to the information input by the inspection personnel before matching the current attribute information and the standard attribute information of the items to be inspected, wherein the current attribute information includes at least the current size and the current weight; and determine the standard attribute information of the items to be inspected in the logistics system, wherein the standard attribute information includes at least the standard size and the standard weight.

[0146] Based on the above embodiment, the execution module 430 is specifically used for:

[0147] Determine the size range and weight range of the items to be inspected based on the standard size and standard weight of the items to be inspected;

[0148] If it is determined that the current size of the item to be inspected is within the size range and the current weight is within the weight range, the inspection result of the item to be inspected is determined to be qualified; otherwise, the inspection result of the item to be inspected is determined to be unqualified.

[0149] Based on the above embodiment, the device further includes:

[0150] An updating module, configured to obtain an image of the item to be inspected after determining that the inspection result of the item to be inspected is unqualified, wherein the image of the item to be inspected includes at least a size image and a weight image;

[0151] Update the item image and inspection times of the items to be inspected.

[0152] The article sampling inspection device provided in the embodiment of the present invention can execute the article sampling inspection method provided in any embodiment of the present invention, and has the corresponding functional modules and beneficial effects for executing the article sampling inspection method.

[0153] It is worth noting that in the embodiment of the above-mentioned object sampling inspection device, the various units and modules included are only divided according to functional logic, but are not limited to the above-mentioned division, as long as the corresponding functions can be achieved; in addition, the specific names of the functional units are only for the convenience of distinguishing each other, and are not used to limit the scope of protection of the present invention.

[0154] Figure 5 A schematic diagram of the structure of a computer device provided in an embodiment of the present invention. Figure 5 A block diagram of an exemplary computer device 5 suitable for use in implementing embodiments of the present invention is shown. Figure 5 The computer device 5 shown is only an example and should not bring any limitation to the functions and scope of use of the embodiments of the present invention.

[0155] like Figure 5As shown, the computer device 5 is in the form of a general-purpose computing electronic device. The components of the computer device 5 may include, but are not limited to: one or more processors or processing units 16, a system memory 28, and a bus 18 connecting different system components (including the system memory 28 and the processing unit 16).

[0156] Bus 18 represents one or more of several types of bus structures, including a memory bus or memory controller, a peripheral bus, an accelerated graphics port, a processor or a local bus using any of a variety of bus architectures. By way of example, these architectures include, but are not limited to, an Industry Standard Architecture (ISA) bus, a Micro Channel Architecture (MAC) bus, an Enhanced ISA bus, a Video Electronics Standards Association (VESA) local bus, and a Peripheral Component Interconnect (PCI) bus.

[0157] The computer device 5 typically includes a variety of computer system readable media. These media can be any available media that can be accessed by the computer device 5, including volatile and non-volatile media, removable and non-removable media.

[0158] The system memory 28 may include computer system readable media in the form of volatile memory, such as random access memory (RAM) 30 and / or cache memory 32. The computer device 5 may further include other removable / non-removable, volatile / non-volatile computer system storage media. By way of example only, the storage system 34 may be used to read and write non-removable, non-volatile magnetic media ( Figure 5 not shown, usually called a "hard drive"). Although Figure 5 Not shown in the figure, a disk drive for reading and writing to a removable non-volatile disk (e.g., a "floppy disk"), and an optical disk drive for reading and writing to a removable non-volatile optical disk (e.g., a CD-ROM, a DVD-ROM, or other optical media) may be provided. In these cases, each drive may be connected to the bus 18 via one or more data medium interfaces. The system memory 28 may include at least one program product having a set (e.g., at least one) of program modules that are configured to perform the functions of the various embodiments of the present invention.

[0159] A program / utility 40 having a set (at least one) of program modules 42 may be stored, for example, in system memory 28, such program modules 42 including, but not limited to, an operating system, one or more application programs, other program modules, and program data, each of which or some combination may include an implementation of a network environment. Program modules 42 generally perform the functions and / or methods of the embodiments described herein.

[0160] The computer device 5 may also communicate with one or more external devices 14 (e.g., keyboard, pointing device, display 24, etc.), one or more devices that enable a user to interact with the computer device 5, and / or any device that enables the computer device 5 to communicate with one or more other computing devices (e.g., network card, modem, etc.). Such communication may be performed through an input / output (I / O) interface 22. Furthermore, the computer device 5 may also communicate with one or more networks (e.g., a local area network (LAN), a wide area network (WAN), and / or a public network, such as the Internet) through a network adapter 20. Figure 5 As shown, the network adapter 20 communicates with other modules of the computer device 5 via the bus 18. It should be understood that although Figure 5 Not shown, other hardware and / or software modules may be used in conjunction with computer device 5, including but not limited to: microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data backup storage systems.

[0161] The processing unit 16 executes various functional applications and page displays by running the programs stored in the system memory 28, for example, implementing the object sampling inspection method provided in the embodiment of the present invention, which includes:

[0162] After determining the sites to be inspected and the inspection sites according to the received inspection tasks, determine the waybill to be inspected according to the sites to be inspected, the inspection sites and the preset inspection rules, wherein the site to be inspected is the previous site of the inspection site, and the inspection site is used as the current site to conduct inspection on the site to be inspected;

[0163] Determine the items to be sampled based on the waybill to be sampled;

[0164] The current attribute information of the items to be inspected is matched with the standard attribute information, and the inspection result of the items to be inspected is determined according to the matching result.

[0165] Of course, those skilled in the art can understand that the processor can also implement the technical solution of the object sampling method provided by any embodiment of the present invention.

[0166] An embodiment of the present invention provides a computer-readable storage medium on which a computer program is stored. When the program is executed by a processor, for example, the method for sampling items provided by an embodiment of the present invention is implemented. The method includes:

[0167] After determining the sites to be inspected and the inspection sites according to the received inspection tasks, determine the waybill to be inspected according to the sites to be inspected, the inspection sites and the preset inspection rules, wherein the site to be inspected is the previous site of the inspection site, and the inspection site is used as the current site to conduct inspection on the site to be inspected;

[0168] Determine the items to be sampled based on the waybill to be sampled;

[0169] The current attribute information of the items to be inspected is matched with the standard attribute information, and the inspection result of the items to be inspected is determined according to the matching result.

[0170] The computer storage medium of the embodiment of the present invention can adopt any combination of one or more computer-readable media. The computer-readable medium can be a computer-readable signal medium or a computer-readable storage medium. The computer-readable storage medium can be, for example, but not limited to: an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or device, or any combination of the above. More specific examples (non-exhaustive list) of computer-readable storage media include: an electrical connection with one or more wires, a portable computer disk, 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 disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above. In this document, a computer-readable storage medium can be any tangible medium containing or storing a program, which can be used by an instruction execution system, device or device or used in combination with it.

[0171] Computer-readable signal media may include data signals propagated in baseband or as part of a carrier wave, which carry computer-readable program code. Such propagated data signals may take a variety of forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination of the above. Computer-readable signal media may also be any computer-readable medium other than a computer-readable storage medium, which may send, propagate, or transmit a program for use by or in conjunction with an instruction execution system, apparatus, or device.

[0172] The program code embodied on the computer readable medium may be transmitted using any appropriate medium, including but not limited to wireless, wireline, optical fiber cable, RF, etc., or any suitable combination of the foregoing.

[0173] Computer program code for performing the operations of the present invention may be written in one or more programming languages ​​or a combination thereof, including object-oriented programming languages ​​such as Java, Smalltalk, C++, and conventional procedural programming languages ​​such as "C" or similar programming languages. The program code may be executed entirely on the user's computer, partially on the user's computer, as a separate software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In the case of a remote computer, the remote computer may 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 may be connected to an external computer (e.g., via the Internet using an Internet service provider).

[0174] It should be understood by those skilled in the art that the modules or steps of the present invention described above can be implemented by a general-purpose computing device, they can be concentrated on a single computing device, or distributed on a network composed of multiple computing devices, optionally, they can be implemented by a program code executable by a computer device, so that they can be stored in a storage device and executed by the computing device, or they can be made into individual integrated circuit modules, or multiple modules or steps therein can be made into a single integrated circuit module for implementation. Thus, the present invention is not limited to any specific combination of hardware and software.

[0175] Note that the above are only preferred embodiments of the present invention and the technical principles used. Those skilled in the art will understand that the present invention is not limited to the specific embodiments herein, and that various obvious changes, readjustments and substitutions can be made by those skilled in the art without departing from the scope of protection of the present invention. Therefore, although the present invention has been described in more detail through the above embodiments, the present invention is not limited to the above embodiments, and may include more other equivalent embodiments without departing from the concept of the present invention, and the scope of the present invention is determined by the scope of the appended claims.

Claims

1. A method for sampling items, characterized in that: include: After determining the site to be inspected and the inspection site according to the received inspection task, determine the waybill to be inspected according to the site to be inspected, the inspection site and the preset inspection rules, wherein the site to be inspected is the previous site of the inspection site, and the inspection site is used to perform inspection on the site to be inspected as the current site; Determine the items to be sampled according to the waybill to be sampled; The current attribute information of the object to be inspected is matched with the standard attribute information, and the inspection result of the object to be inspected is determined according to the matching result.

2. The article sampling method according to claim 1, characterized in that: The site to be inspected is the originating transfer site.

3. The article sampling inspection method according to claim 1, characterized in that: The preset sampling rules at least include: the delivery method of the waybill to be sampled is bulk delivery or full pallet delivery, and the waybill to be sampled includes at least one item that has not been sampled in a preset number of adjacent sampling tasks.

4. The method for sampling articles according to claim 3, characterized in that: Determining the waybill to be inspected according to the site to be inspected, the inspection site and the preset inspection rules includes: Determine the waybill whose previous station is the station to be inspected and whose current station is the inspection station as the target waybill; The target waybill, which has a receiving mode of bulk receiving or full pallet receiving and includes at least one item that has not been sampled in a preset number of adjacent sampling tasks, is determined as the waybill to be sampled.

5. The article sampling inspection method according to claim 3, characterized in that: Determine the items to be sampled based on the waybill to be sampled, including: Determine the items corresponding to the waybill to be sampled and the sampling status of each of the items; The items corresponding to the waybill to be inspected but not inspected in a preset number of adjacent inspection tasks are determined as the items to be inspected.

6. The article sampling inspection method according to claim 1, characterized in that: Before matching the current attribute information of the object to be sampled with the standard attribute information, the method further includes: Determine the current attribute information of the item to be inspected according to the information input by the inspection personnel, wherein the current attribute information at least includes the current size and the current weight; The standard attribute information of the items to be sampled is determined in the logistics system, wherein the standard attribute information at least includes a standard size and a standard weight.

7. The article sampling inspection method according to claim 6, characterized in that: Before determining the sampling results of the items to be sampled according to the matching results, the method further includes: Determine the size range and weight range of the objects to be inspected according to the standard size and the standard weight of the objects to be inspected; Accordingly, determining the inspection result of the item to be inspected according to the matching result includes: When it is determined that the current size of the item to be inspected is within the size range and the current weight is within the weight range, the inspection result of the item to be inspected is determined to be qualified; otherwise, the inspection result of the item to be inspected is determined to be unqualified.

8. The article sampling inspection method according to claim 7, characterized in that: After determining that the sampling result of the item to be sampled is unqualified, the method further includes: Acquire an image of the object to be inspected, wherein the image of the object at least includes a size image and a weight image; Update the item image and the number of inspections of the item to be inspected.

9. An article sampling device, characterized in that: include: A first determination module is used to determine the site to be inspected and the inspection site according to the received inspection task, and then determine the waybill to be inspected according to the site to be inspected, the inspection site and the preset inspection rules, wherein the site to be inspected is the previous site of the inspection site, and the inspection site is used to perform inspection on the site to be inspected as the current site; A second determination module is used to determine the items to be sampled according to the waybill to be sampled; The execution module is used to match the current attribute information of the object to be inspected with the standard attribute information, and determine the inspection result of the object to be inspected according to the matching result.

10. A computer device, characterized in that: The computer device comprises: one or more processors; a storage device for storing one or more programs, When the one or more programs are executed by the one or more processors, the one or more processors implement the object sampling inspection method as described in any one of claims 1-8.

11. A storage medium containing computer executable instructions, characterized in that: The computer executable instructions are used to execute the object sampling inspection method as described in any one of claims 1 to 8 when executed by a computer processor.

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