Logistics order collecting state query method and device, equipment and storage medium
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-01
- Publication Date
- 2026-08-11
AI Technical Summary
[0002]现有技术中,物流订单的揽收状态根据快递员的揽收行为更改,若快递员进行了包裹的揽收,则揽收状态会更改至已揽件,若快递员未进行包裹的揽收,则物流信息保持为已发货;物流信息的更新速度会影响消费者对商家的感官,然而包裹的揽件状态由快递员的揽件速度决定,若快递员不能及时对订单货物进行揽收,则会降低消费者对商家的评价,从而对发货商家的揽收率、商家评分等评价信息造成严重的影响
[0022]In the technical solution of this invention, when a collection point receives logistics order data, it configures the logistics order data according to its collection point information and generates a package number for transportation based on the logistics order, thereby achieving seamless collection of packages ordered by merchants and avoiding the collection time of the collection point affecting the merchant's collection rate, rating, and other evaluation information; by acquiring actual collection data, the collection nodes of couriers are recorded, and second collection information is generated based on the courier's collection nodes and first collection information, thus obtaining the actual collection data of the ordered packages. The collection point can then use the first collection information and the second collection information... This system analyzes courier pickup efficiency to improve logistics companies' control over the timeliness, security, and quality of express delivery services. Furthermore, by tagging the first and second pickup information separately, the accuracy of information push is improved. The first tagged data is accurately pushed to the platform, external network, and pickup points for display purposes, allowing consumers, merchants, and logistics managers to check the package pickup status. Based on the first tagged data, i.e., the seamless pickup order data, the pickup status is pushed to consumers, eliminating the impact of courier pickup efficiency on merchants' pickup rates and achieving seamless pickup of packages ordered by merchants.
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Figure CN116089743B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of logistics technology, and in particular to a method, apparatus, equipment, and storage medium for querying the status of logistics order pickup. Background Technology
[0002] In existing technologies, the pickup status of logistics orders changes based on the courier's pickup behavior. If the courier picks up the package, the pickup status changes to "picked up"; if the courier does not pick up the package, the logistics information remains "shipped". The speed at which logistics information is updated affects consumers' perception of the merchant. However, the pickup status of the package is determined by the courier's pickup speed. If the courier cannot pick up the order goods in a timely manner, it will lower consumers' evaluation of the merchant, thus seriously affecting the merchant's pickup rate, merchant rating, and other evaluation information.
[0003] It is evident that existing technologies still need improvement and enhancement. Summary of the Invention
[0004] In order to overcome the shortcomings of the prior art, the present invention aims to provide a method, device, equipment and storage medium for querying the status of logistics order pickup, which can provide consumers with feedback on the pickup status of packages sent by merchants based on the seamless pickup data of express delivery outlets, thereby improving consumers' evaluation of merchants.
[0005] The first aspect of this invention provides a method for querying the pickup status of logistics orders, comprising: acquiring logistics order data and configuring seamless pickup orders based on the logistics order data; acquiring data information of seamless pickup orders and generating first pickup information; the first pickup information includes the order placement node, package number, and pickup point information; tagging the first pickup information and generating first tagging data; acquiring actual pickup data and generating second pickup information based on the actual pickup data and the first pickup information; wherein the actual pickup data is the logistics orders actually picked up by the courier. The second collection information includes the order placement node, collection node, package number, collection point information, and courier information; the second collection information is tagged and second tagged data is generated; the first tagged data and the second tagged data are obtained, and the first tagged data and the second tagged data are judged. If the first preset condition is met, it is judged as the first tagged data and the first tagged data is pushed to the platform, the external network and the collection point. If the second preset condition is met, it is judged as the second tagged data and the second tagged data is pushed to the collection point.
[0006] Optionally, in a first implementation of the first aspect of the present invention, the step of acquiring logistics order data and configuring seamless pickup orders based on the logistics order data includes: acquiring logistics order data from each merchant and extracting pickup address information from the logistics order data; pushing each logistics order data to the pickup outlet in the corresponding jurisdiction based on the pickup address information; and configuring and generating seamless pickup orders based on the logistics order data and the outlet information of the pickup outlet in the corresponding jurisdiction.
[0007] Optionally, in a second implementation of the first aspect of the present invention, the step of marking the first pickup information and generating the first marked data includes: extracting character features from the first pickup information, obtaining corresponding internal code data based on the character features, and generating first character data; converting the first character data into binary and generating first data to be marked; marking the first data to be marked by adding a first mark character to the first data to be marked according to a preset bit position; and generating the first marked data based on the processed first data to be marked.
[0008] Optionally, in a third implementation of the first aspect of the present invention, the step of obtaining actual pickup data and generating second pickup information based on the actual pickup data and the first pickup information includes: extracting pickup point information from the first pickup information and sending logistics order data to the corresponding courier based on the pickup point information; obtaining the pickup node of the courier picking up the logistics order; and generating second pickup information based on the pickup node and the first pickup information.
[0009] Optionally, in a fourth implementation of the first aspect of the present invention, the step of marking the second pickup information and generating second marking data includes:
[0010] Extract character features from the second pickup information, obtain the corresponding internal code data based on the character features, and generate second character data; convert the second character data into binary and generate second data to be marked; perform marking processing on the second data to be marked, adding a second marking character to the second data to be marked according to preset bits; generate second marked data based on the processed second data to be marked.
[0011] Optionally, in a fifth implementation of the first aspect of the present invention, the step of acquiring the first marking data and the second marking data, and performing judgment processing on the first marking data and the second marking data, wherein if a first preset condition is met, the data is judged to be the first marking data and pushed to the platform, the external network, and the collection point; and if a second preset condition is met, the data is judged to be the second marking data and pushed to the collection point, includes: extracting the verification characters corresponding to the first marking data and the second marking data according to preset bits; comparing the verification characters with the first marking character and the second marking character respectively; if the verification character is consistent with the first marking character, pushing the first marking data to the platform, the external network, and the collection point, and generating collection status information based on the first marking data; and if the verification character is consistent with the second marking character, pushing the second marking data to the collection point, and generating actual collection status information based on the second marking data.
[0012] Optionally, in the sixth implementation of the first aspect of the present invention, the step of pushing the second marking data to the collection point if the verification character matches the second marking character, and generating actual collection status information based on the second marking data, further includes: when the collection point receives the second marking data, extracting the order node and collection node from the second marking data; generating collection time data based on the order node and collection node; and outputting a collection efficiency table based on the collection time data and courier information.
[0013] A second aspect of the present invention provides a logistics order pickup status query device, comprising: a configuration module for acquiring logistics order data and configuring a seamless pickup order based on the logistics order data; a first acquisition module for acquiring data information of the seamless pickup order and generating first pickup information; the first pickup information includes the order placement node, package number, and pickup point information; a first tagging module for tagging the first pickup information and generating first tagging data; and a second acquisition module for acquiring actual pickup data and generating second pickup information based on the actual pickup data and the first pickup information; wherein the actual pickup data is... The second pickup information includes the actual pickup node of the logistics order collected by the courier; the second pickup information includes the order placement node, pickup node, package number, pickup point information and courier information; the second tagging module is used to tag the second pickup information and generate second tagging data; the judgment module obtains the first tagging data and the second tagging data, and judges the first tagging data and the second tagging data. If the first preset condition is met, it is judged as the first tagging data and pushed to the platform, the external network and the pickup point. If the second preset condition is met, it is judged as the second tagging data and pushed to the pickup point.
[0014] Optionally, in a first implementation of the second aspect of the present invention, the configuration module includes: an extraction unit, used to acquire logistics order data of each merchant and extract pickup address information from the logistics order data; an allocation unit, used to push each logistics order data to the pickup outlet in the corresponding jurisdiction according to the pickup address information; and a first generation unit, used to configure and generate a seamless pickup order according to the logistics order data and the outlet information of the pickup outlet in the corresponding jurisdiction.
[0015] Optionally, in a second implementation of the second aspect of the present invention, the first marking module includes: a first character unit, used to extract character features from the first pickup information, obtain corresponding internal code data based on the character features, and generate first character data; a first conversion unit, used to perform binary conversion on the first character data and generate first data to be marked; a first marking unit, used to perform marking processing on the first data to be marked, wherein the first data to be marked is added with a first marking character according to a preset bit position; and a first output unit, used to generate first marked data based on the processed first data to be marked.
[0016] Optionally, in a third implementation of the second aspect of the present invention, the second acquisition module includes: a sending unit, configured to extract the collection point information from the first collection information and send the logistics order data to the corresponding courier based on the collection point information; an acquisition unit, configured to acquire the collection node of the courier who collected the logistics order; and a second generation unit, configured to generate second collection information based on the collection node and the first collection information.
[0017] Optionally, in a fourth implementation of the second aspect of the present invention, the second marking module includes: a second character unit, used to extract character features from the second pickup information, obtain corresponding internal code data based on the character features, and generate second character data; a second conversion unit, used to perform binary conversion on the second character data and generate second data to be marked; a second marking unit, used to perform marking processing on the second data to be marked, wherein the second data to be marked is added with a second marking character according to a preset bit position; and a second output unit, used to generate second marked data based on the processed second data to be marked.
[0018] Optionally, in a fifth implementation of the second aspect of the present invention, the judgment module includes: a verification unit, configured to extract verification characters corresponding to the first and second tagged data based on preset bit positions; a comparison unit, configured to compare the verification characters with the first and second marker characters respectively; a first push unit, configured to push the first tagged data to the platform, the external network, and the collection point if the first verification character matches the first marker character, and generate collection status information based on the first tagged data; and a second push unit, configured to push the second tagged data to the collection point if the verification character matches the second marker character, and generate actual collection status information based on the second tagged data.
[0019] Optionally, in a sixth implementation of the second aspect of the present invention, the second push unit further includes: an extraction unit, used to extract the order placement node and collection node from the second marking data after the collection point receives the second marking data; a generation unit, used to generate collection time data based on the order placement node and collection node; and an output unit, used to output a collection efficiency table based on the collection time data and courier information.
[0020] A third aspect of the present invention provides a logistics order pickup status query device, the logistics order pickup status query device comprising: a memory and at least one processor, the memory storing instructions; at least one processor calling the instructions in the memory to cause the logistics order pickup status query device to execute each step of the logistics order pickup status query method described above.
[0021] A fourth aspect of the present invention provides a computer-readable storage medium storing instructions that, when executed by a processor, implement the steps of the logistics order pickup status query method described in any of the preceding claims.
[0022] In the technical solution of this invention, when a collection point receives logistics order data, it configures the logistics order data according to its collection point information and generates a package number for transportation based on the logistics order, thereby achieving seamless collection of packages ordered by merchants and avoiding the collection time of the collection point affecting the merchant's collection rate, rating, and other evaluation information; by acquiring actual collection data, the collection nodes of couriers are recorded, and second collection information is generated based on the courier's collection nodes and first collection information, thus obtaining the actual collection data of the ordered packages. The collection point can then use the first collection information and the second collection information... This system analyzes courier pickup efficiency to improve logistics companies' control over the timeliness, security, and quality of express delivery services. Furthermore, by tagging the first and second pickup information separately, the accuracy of information push is improved. The first tagged data is accurately pushed to the platform, external network, and pickup points for display purposes, allowing consumers, merchants, and logistics managers to check the package pickup status. Based on the first tagged data, i.e., the seamless pickup order data, the pickup status is pushed to consumers, eliminating the impact of courier pickup efficiency on merchants' pickup rates and achieving seamless pickup of packages ordered by merchants. Attached Figure Description
[0023] Figure 1 This is a first flowchart of the logistics order pickup status query method provided in an embodiment of the present invention;
[0024] Figure 2 This is a second flowchart of the logistics order pickup status query method provided in an embodiment of the present invention;
[0025] Figure 3 This is a third flowchart of the logistics order pickup status query method provided in this embodiment of the invention;
[0026] Figure 4 The fourth flowchart of the logistics order pickup status query method provided in this embodiment of the invention
[0027] Figure 5 A schematic diagram of a logistics order pickup status query device provided in an embodiment of the present invention;
[0028] Figure 6 This is another structural schematic diagram of the logistics order pickup status query device provided in an embodiment of the present invention;
[0029] Figure 7 A schematic diagram of the structure of the logistics order pickup status query device provided in an embodiment of the present invention. Detailed Implementation
[0030] This invention provides a method, apparatus, device, and storage medium for querying the pickup status of logistics orders. When a pickup point receives logistics order data, it configures the order data according to its own information and generates a package number for transportation based on the order, thereby achieving seamless pickup of packages ordered by merchants and avoiding the impact of pickup point pickup time on merchants' pickup rates, ratings, and other evaluation information. By acquiring actual pickup data, the invention records the pickup nodes of couriers and generates second pickup information based on the courier's pickup nodes and first pickup information, thus obtaining the actual pickup data of the ordered packages. The pickup point can then... Analyzing the first and second pickup information improves courier pickup efficiency and enhances logistics companies' control over the timeliness, security, and quality of express delivery services. Furthermore, by tagging the first and second pickup information separately, the accuracy of information push is improved. The first tagged data is accurately pushed to the platform, external network, and pickup points for display purposes, allowing consumers, merchants, and logistics managers to check the package pickup status. Based on the first tagged data—i.e., seamless pickup order data—the pickup status is pushed to consumers, eliminating the impact of courier pickup efficiency on merchants' pickup rates and achieving seamless pickup of packages ordered by merchants.
[0031] The terms “first,” “second,” “third,” “fourth,” etc. (if present) in the specification, claims, and accompanying drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms “comprising” or “having,” and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0032] For ease of understanding, the specific process of the embodiments of the present invention is described below. Please refer to [link / reference]. Figure 1 One embodiment of the logistics order pickup status query method in this invention includes:
[0033] 101. Obtain logistics order data and configure seamless pickup orders based on the logistics order data;
[0034] 102. Obtain the data information of the seamless pickup order and generate the first pickup information; the first pickup information includes the order placement node, package number and pickup point information;
[0035] In this embodiment, "seamless pickup" means that the package is automatically picked up upon leaving the warehouse. To facilitate understanding, the following example is used for illustration: When a merchant places an order from the platform or external website, thereby generating logistics order data, the logistics order data is allocated to the management system of Cainiao Station, i.e., the pickup point, and is in the pickup status by default. When the pickup point receives the logistics order data, it configures the logistics order data according to its pickup point information (such as pickup point code, pickup point name, etc.) and generates a package number for transportation based on the logistics order, thereby realizing seamless pickup of the merchant's ordered package and avoiding the pickup time of the pickup point affecting the merchant's pickup rate, rating and other evaluation information.
[0036] 103. Mark the first pickup information and generate the first marking data;
[0037] In this embodiment, after the first pickup information is generated, it needs to be tagged to mark the first pickup information as logistics order data after seamless pickup, so that the first pickup information is attached with a tag bit for identification, which facilitates subsequent judgment and classification of seamless pickup data and achieves the effect of accurate push.
[0038] 104. Obtain actual pickup data, and generate second pickup information based on the actual pickup data and the first pickup information; the actual pickup data refers to the pickup nodes of the logistics orders actually picked up by the courier; the second pickup information includes the order placement node, pickup node, package number, pickup point information and courier information;
[0039] In this embodiment, once a seamless pickup order is generated, the courier at the designated pickup point is automatically notified to pick up the ordered package. When the courier enters the logistics order data during pickup, actual pickup data is generated. By acquiring this actual pickup data, the courier's pickup nodes are recorded, and second pickup information is generated based on the courier's pickup nodes and the first pickup information. This yields the actual pickup data for the ordered package. The pickup point can analyze the courier's pickup efficiency based on the first and second pickup information, thereby improving the logistics company's control over the timeliness, security, and quality of express delivery services.
[0040] 105. Mark the second collection information and generate second marking data;
[0041] In this embodiment, after the second pickup information is generated, it needs to be tagged to mark the second pickup information as logistics order data after the courier's actual pickup. This gives the second pickup information a tag for identification, and the tag is different from the tag of the first pickup information, so as to distinguish the two types of information and facilitate subsequent judgment and classification of the actual pickup data to achieve the effect of accurate push.
[0042] It's important to note that data annotation, or data labeling, is the process of processing unprocessed data such as speech, images, text, and video, converting it into machine-readable information. Raw data is typically obtained through data collection; subsequent data annotation is equivalent to processing the data before it's fed into artificial intelligence algorithms and models for use. Currently, the mainstream machine learning approach is supervised deep learning, which heavily relies on labeled data. Unlabeled raw data is often unstructured and cannot be recognized or learned by machines. Only labeled, structured data can be used for algorithm training. Natural language understanding includes OCR transcription, part-of-speech tagging, named entity tagging, sentence generalization, sentiment analysis, sentence writing, slot extraction, intent matching, text judgment, text matching, text information extraction, text cleaning, and machine translation.
[0043] 106. Obtain the first marking data and the second marking data, and perform judgment processing on the first marking data and the second marking data. If the first preset condition is met, it is judged as the first marking data, and the first marking data is pushed to the platform, the external network and the collection point. If the second preset condition is met, it is judged as the second marking data, and the second marking data is pushed to the collection point.
[0044] In this embodiment, during the judgment process, the two types of data are classified by judging the marks (i.e., the marker bits) of the first and second tagged data to achieve the purpose of accurate information push. The first and second tagged data are compared according to the first and second preset conditions. If the first preset condition is met, the first tagged data is output and accurately pushed to the platform, external network, and collection points for display purposes, so that consumers, merchants, logistics managers, etc. can check the collection status of the package. Based on the first tagged data, i.e., the seamless collection order data, the information is pushed to... Consumers push the pickup status, eliminating the impact of courier pickup efficiency on merchants' pickup rates, achieving seamless pickup of merchant-ordered packages, and preventing pickup time at pickup points from affecting merchants' pickup rates, ratings, and other evaluation information. If the second preset condition is met, the second tag data is output and accurately pushed to the pickup point for display purposes. The pickup point can then analyze the courier's pickup timeliness based on the second tag data (actual pickup order data) and the first tag data (seamless pickup order data), improving the overall management efficiency of the pickup point.
[0045] In this embodiment of the invention, when a collection point receives logistics order data, it configures the logistics order data according to its collection point information and generates a package number for transportation based on the logistics order, thereby achieving seamless collection of packages ordered by merchants and avoiding the collection time of the collection point affecting the merchant's collection rate, rating, and other evaluation information; by acquiring actual collection data, the collection nodes of couriers are recorded, and second collection information is generated based on the courier's collection nodes and first collection information, thus obtaining the actual collection data of the ordered packages. The collection point can then use the first and second collection information... Analyzing courier pickup efficiency improves logistics companies' control over the timeliness, security, and quality of express delivery services. Furthermore, by tagging the first and second pickup information separately, the accuracy of information push is improved. The first tagged data is accurately pushed to the platform, external network, and pickup points for display purposes, allowing consumers, merchants, and logistics managers to check the package pickup status. Based on the first tagged data, i.e., the seamless pickup order data, the pickup status is pushed to consumers, eliminating the impact of courier pickup efficiency on merchants' pickup rates and achieving seamless pickup of packages ordered by merchants.
[0046] Please see Figure 2 The second embodiment of the logistics order pickup status query method in this invention includes:
[0047] 201. Obtain logistics order data from each merchant and extract the pickup address information from the logistics order data;
[0048] 202. Based on the pickup address information, push the data of each logistics order to the corresponding pickup point in its jurisdiction;
[0049] In this embodiment, the logistics order data refers to the order placed by the merchant for the shipped goods. The merchant places a pickup order with the logistics company through the platform or website. After the order is placed, the pickup address information, i.e., the merchant's outbound address, is extracted from the logistics order data, and the pickup point to which it belongs is determined based on the pickup address information. It should be noted that each pickup point (i.e., Cainiao Station, courier outlet, etc.) has a corresponding service area. Once the pickup point is determined, the logistics order data is sent to the corresponding pickup point so that the pickup point can quickly arrange the relevant courier to pick up the goods.
[0050] 203. Generate a seamless pickup order based on the logistics order data and the corresponding pickup point information for the jurisdiction;
[0051] In this embodiment, when a collection point receives logistics order data, it configures the logistics order data according to its collection point information and generates a package number for transportation based on the logistics order, thereby achieving seamless collection of packages ordered by merchants and eliminating the impact of the collection point's collection time on merchants' collection rate, ratings, and other evaluation information.
[0052] 204. Extract the collection point information from the first collection information, and send the logistics order data to the corresponding courier based on the collection point information;
[0053] 205. Obtain the pickup point of the courier for this logistics order;
[0054] 206. Generate second collection information based on the collection node and the first collection information;
[0055] In this embodiment, information on all couriers at the collection point is obtained based on the collection point information in the first collection information. Orders are then dispatched according to the courier's capacity to improve collection efficiency and avoid significant delays between actual and seamless collection times. Furthermore, once a courier completes collection, the collection node for that order is automatically obtained, and second collection information is generated based on this node and its corresponding first collection information. The second collection information represents the actual collection data for the ordered package. The collection point can analyze the courier's collection efficiency based on both the first and second collection information, thereby improving the logistics company's control over the timeliness, security, and quality of express delivery services.
[0056] Please see Figure 3 The third embodiment of the logistics order pickup status query method in this invention includes:
[0057] 301. Extract character features from the first pickup information, obtain the corresponding internal code data based on the character features, and generate the first character data;
[0058] 302. Convert the first character data into binary and generate the first data to be marked;
[0059] In this embodiment, the character features of the first pickup information are obtained, and the corresponding ASCII encoding value is found according to each byte of the character features. Then, the first pickup information after transcoding is converted into an int type representation to obtain the first character data. Finally, the first character data is converted into binary format first data to be marked so that it can be marked in subsequent processing.
[0060] 303. The first data to be marked is marked by adding a first mark character to the first data according to a preset bit position;
[0061] 304. Generate the first marking data based on the processed first data to be marked;
[0062] In this embodiment, the first data to be labeled is tagged by adding a first marker character, such as 0, 00, 000, etc., based on a preset bit position. By combining specific bit positions and specific marker characters, it is easier to distinguish between non-intrusive order data and actual order data, thereby improving the accuracy of push notifications. It should be noted that the preset bit position can be set at the beginning or end of the binary data of the first data to be labeled, which can reduce the difficulty of data processing.
[0063] 305. Extract character features from the second pickup information, obtain the corresponding internal code data based on the character features, and generate the second character data;
[0064] 306. Convert the second character data into binary and generate the second data to be marked;
[0065] In this embodiment, the character features of the second pickup information are obtained, and the corresponding ASCII encoding value is found according to each byte of the character features. Then, the second pickup information after transcoding is converted into an int type representation to obtain the second character data. Finally, the second character data is converted into binary format second data to be marked so that it can be marked in subsequent processing.
[0066] 307. The second data to be marked is marked by adding a second mark character to the second data according to the preset bit positions;
[0067] 308. Generate second marking data based on the processed second data to be marked;
[0068] In this embodiment, the second data to be tagged is tagged by adding a second tag character based on a preset bit position, such as 1, 11, 111, etc. It should be noted that the second tag character is different from the first tag character, so as to distinguish the first tagged data and the second tagged data. By combining specific bit positions and specific tag characters, it is easier to distinguish between actual collection data and seamless collection order data, thereby improving the accuracy of push notifications.
[0069] 309. Extract the verification characters corresponding to the first and second tagged data according to the preset bit positions;
[0070] 310. Compare the check character with the first marker character and the second marker character respectively;
[0071] In this embodiment, when the platform, external network, or collection point receives the tagged data, it needs to extract the verification character from the tagged data according to the preset bit position, and compare the verification character with the first mark character and the second mark character one by one, so as to distinguish the tagged data and achieve the purpose of accurate push.
[0072] 311. If the verification character matches the first marking character, the first marking data is pushed to the platform, the external network and the collection point, and the collection status information is generated based on the first marking data;
[0073] 312. If the verification character matches the second marking character, the second marking data is pushed to the collection point, and the actual collection status information is generated based on the second marking data.
[0074] In this embodiment, when the tagged data is identified as the first tagged data based on the verification character, it is pushed to the platform, the external network, and the collection point for display, allowing consumers, merchants, logistics managers, etc., to check the package collection status. The collection status is pushed to consumers based on the first tagged data, i.e., the seamless collection order data, eliminating the impact of the courier's collection efficiency on the merchant's collection rate, realizing seamless collection of packages ordered by merchants, and avoiding the collection time of the collection point affecting the merchant's collection rate, rating, and other evaluation information. When the tagged data is identified as the second tagged data based on the verification character, the second tagged data is accurately pushed to the collection point for display. The collection point can then analyze the courier's collection timeliness based on the second tagged data, i.e., the actual collection order data, and the first tagged data, i.e., the seamless collection order data, improving the overall management efficiency of the collection point.
[0075] Please see Figure 4 The third embodiment of the logistics order pickup status query method in this invention includes:
[0076] 401. After the collection point receives the second marking data, the order placement node and collection node are extracted from the second marking data;
[0077] 402. Generate pickup time data based on the order placement node and pickup node;
[0078] 403. Output a pickup efficiency table based on pickup time data and courier information;
[0079] In this embodiment, the pickup time data of couriers is obtained based on the order placement node and pickup node, and a pickup efficiency table is generated based on the pickup time data. This allows for a more intuitive analysis of the work efficiency of each courier, which facilitates the pickup network to analyze the performance of couriers, improves the overall management efficiency of the pickup network, and enables the pickup network to provide better services to merchants.
[0080] The above describes the method for querying the logistics order pickup status in the embodiments of the present invention. The following describes the device for querying the logistics order pickup status in the embodiments of the present invention. Please refer to [link / reference]. Figure 5 One embodiment of the logistics order pickup status query device in this invention includes:
[0081] Configuration module 501 is used to acquire logistics order data and configure seamless pickup orders based on the logistics order data;
[0082] The first acquisition module 502 is used to acquire data information of the contactless pickup order and generate the first pickup information; the first pickup information includes the order node, package number and pickup point information;
[0083] The first marking module 503 is used to mark the first collection information and generate the first marking data;
[0084] The second acquisition module 504 is used to acquire actual pickup data and generate second pickup information based on the actual pickup data and the first pickup information; the actual pickup data is the pickup node of the courier's actual pickup of logistics orders; the second pickup information includes the order placement node, pickup node, package number, pickup point information and courier information;
[0085] The second marking module 505 is used to mark the second collection information and generate the second marking data;
[0086] The judgment module 506 acquires the first marking data and the second marking data, and performs judgment processing on the first marking data and the second marking data. If the first preset condition is met, it is judged as the first marking data, and the first marking data is pushed to the platform, the external network and the collection point. If the second preset condition is met, it is judged as the second marking data, and the second marking data is pushed to the collection point.
[0087] In this embodiment, when a pickup point receives logistics order data, it configures the logistics order data according to its pickup point information and generates a package number for transportation based on the logistics order. This achieves seamless pickup of packages ordered by merchants, avoiding the impact of pickup point pickup time on merchants' pickup rate, ratings, and other evaluation information. The pickup points record the courier's pickup nodes by acquiring actual pickup data, and generate second pickup information based on the courier's pickup nodes and first pickup information. This yields the actual pickup data for the ordered packages. The pickup point can then analyze the first and second pickup information. This method analyzes the pickup efficiency of couriers, improving logistics companies' control over the timeliness, security, and quality of express delivery services. Furthermore, by tagging the first and second pickup information separately, the accuracy of information push is improved. The first tagged data is accurately pushed to the platform, external network, and pickup points for display purposes, allowing consumers, merchants, and logistics managers to check the pickup status of packages. Based on the first tagged data, i.e., the seamless pickup order data, the pickup status is pushed to consumers, eliminating the impact of courier pickup efficiency on merchants' pickup rates and achieving seamless pickup of packages ordered by merchants.
[0088] Please see Figure 6 Another embodiment of the logistics order pickup status query device in this invention includes:
[0089] Configuration module 501 is used to acquire logistics order data and configure seamless pickup orders based on the logistics order data;
[0090] The first acquisition module 502 is used to acquire data information of the contactless pickup order and generate the first pickup information; the first pickup information includes the order node, package number and pickup point information;
[0091] The first marking module 503 is used to mark the first collection information and generate the first marking data;
[0092] The second acquisition module 504 is used to acquire actual pickup data and generate second pickup information based on the actual pickup data and the first pickup information; the actual pickup data is the pickup node of the courier's actual pickup of logistics orders; the second pickup information includes the order placement node, pickup node, package number, pickup point information and courier information;
[0093] The second marking module 505 is used to mark the second collection information and generate the second marking data;
[0094] The judgment module 506 acquires the first marking data and the second marking data, and performs judgment processing on the first marking data and the second marking data. If the first preset condition is met, it is judged as the first marking data, and the first marking data is pushed to the platform, the external network and the collection point. If the second preset condition is met, it is judged as the second marking data, and the second marking data is pushed to the collection point.
[0095] In this embodiment, the configuration module 501 includes: an extraction unit 5011, used to obtain logistics order data from each merchant and extract pickup address information from the logistics order data; an allocation unit 5012, used to push each logistics order data to the pickup outlet in the corresponding jurisdiction according to the pickup address information; and a first generation unit 5013, used to configure and generate a seamless pickup order according to the logistics order data and the outlet information of the pickup outlet in the corresponding jurisdiction.
[0096] In this embodiment, the first marking module 503 includes: a first character unit 5031, used to extract character features from the first pickup information, obtain corresponding internal code data based on the character features, and generate first character data; a first conversion unit 5032, used to perform binary conversion on the first character data and generate first data to be marked; a first marking unit 5033, used to perform marking processing on the first data to be marked, and add a first marking character to the first data to be marked according to a preset bit position; and a first output unit 5034, used to generate first marked data based on the processed first data to be marked.
[0097] In this embodiment, the second acquisition module 504 includes: a sending unit 5041, used to extract the collection point information from the first collection information and send the logistics order data to the corresponding courier according to the collection point information; an acquisition unit 5042, used to acquire the collection node of the courier picking up the logistics order; and a second generation unit 5043, used to generate second collection information according to the collection node and the first collection information.
[0098] In this embodiment, the second marking module 505 includes: a second character unit 5051, used to extract character features from the second pickup information, obtain corresponding internal code data based on the character features, and generate second character data; a second conversion unit 5052, used to perform binary conversion on the second character data and generate second data to be marked; a second marking unit 5053, used to perform marking processing on the second data to be marked, and add a second marking character to the second data to be marked according to a preset bit position; and a second output unit 5054, used to generate second marked data based on the processed second data to be marked.
[0099] In this embodiment, the judgment module 506 includes: a verification unit 5061, used to extract the verification characters corresponding to the first and second tagged data according to preset bits; a comparison unit 5062, used to compare the verification characters with the first and second marked characters respectively; a first push unit 5063, used to push the first tagged data to the platform, the external network and the collection point if the first verification character is consistent with the first marked character, and generate collection status information based on the first tagged data; and a second push unit 5064, used to push the second tagged data to the collection point if the verification character is consistent with the second marked character, and generate actual collection status information based on the second tagged data.
[0100] In this embodiment, the second push unit 5064 further includes: an extraction unit 50641, used to extract the order placement node and pickup node from the second marking data after the pickup point receives the second marking data; a generation unit 50642, used to generate pickup time data based on the order placement node and pickup node; and an output unit 50643, used to output a pickup efficiency table based on the pickup time data and courier information.
[0101] above Figure 5 and Figure 6 The logistics order pickup status query device in this embodiment of the invention is described in detail from the perspective of modular functional entities. The logistics order pickup status query device in this embodiment of the invention is described in detail from the perspective of hardware processing.
[0102] Figure 7 This is a schematic diagram of the structure of a logistics order pickup status query device 600 provided in an embodiment of the present invention. The logistics order pickup status query device 600 can vary significantly due to different configurations or performance. It may include one or more central processing units (CPUs) 610 (e.g., one or more processors) and a memory 620, and one or more storage media 630 (e.g., one or more mass storage devices) for storing application programs 633 or data 632. The memory 620 and storage media 630 can be temporary or persistent storage. The program stored in the storage media 630 may include one or more modules (not shown in the diagram), each module may include a series of instruction operations on the logistics order pickup status query device 600. Furthermore, the processor 610 may be configured to communicate with the storage media 630 and execute the series of instruction operations in the storage media 630 on the logistics order pickup status query device 600 to implement the steps of the logistics order pickup status query method provided in the above-described method embodiments.
[0103] The logistics order pickup status query device 600 may also include one or more power supplies 640, one or more wired or wireless network interfaces 650, one or more input / output interfaces 660, and / or one or more operating systems 631, such as Windows Server, Mac OS X, Unix, Linux, FreeBSD, etc. Those skilled in the art will understand that... Figure 7 The illustrated structure of the logistics order pickup status query device does not constitute a limitation on the logistics order pickup status query device, and may include more or fewer components than illustrated, or combine certain components, or have different component arrangements.
[0104] The present invention also provides a computer-readable storage medium, which can be a non-volatile computer-readable storage medium or a volatile computer-readable storage medium, wherein the computer-readable storage medium stores instructions that, when executed on a computer, cause the computer to perform the steps of the logistics order pickup status query method.
[0105] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working process of the system, device, or unit described above can be referred to the corresponding process in the foregoing method embodiments, and will not be repeated here.
[0106] If the integrated unit is implemented as a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.
[0107] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A method for querying the pickup status of a logistics order, characterized in that, include: Acquire logistics order data and configure seamless pickup orders based on the logistics order data; Obtain data information of the seamless pickup order and generate the first pickup information; the first pickup information includes the order placement node, package number and pickup point information; The first pickup information is tagged and first tagged data is generated, including: extracting character features from the first pickup information, obtaining the corresponding internal code data based on the character features, and generating first character data; converting the first character data into binary and generating first data to be tagged; tagged the first data to be tagged by adding a first tag character to the first or last position of the binary data of the first data to be tagged; and generating first tagged data based on the processed first data to be tagged. The process involves acquiring actual pickup data and generating second pickup information based on this data and first pickup information. This includes: extracting pickup point information from the first pickup information and sending logistics order data to the corresponding courier based on this information; obtaining the pickup node where the courier picked up the logistics order; and generating second pickup information based on the pickup node and the first pickup information. The actual pickup data refers to the pickup node where the courier actually picked up the logistics order. The second pickup information includes the order placement node, pickup node, package number, pickup point information, and courier information. The second collection information is tagged, and second tagging data is generated; The first and second marking data are acquired, and the first and second marking data are judged and processed, including: extracting the verification characters corresponding to the first and second marking data according to preset bits; comparing the verification characters with the first and second marking characters respectively; if the verification character matches the first marking character, the first marking data is pushed to the platform, the external network and the collection point, and collection status information is generated based on the first marking data; if the verification character matches the second marking character, the second marking data is pushed to the collection point, and collection status information is generated based on the second marking data.
2. The method for querying the pickup status of logistics orders according to claim 1, characterized in that, The process of acquiring logistics order data and configuring seamless pickup orders based on the logistics order data includes: Obtain logistics order data from each merchant and extract the pickup address information from the logistics order data; Based on the pickup address information, push the data of each logistics order to the corresponding pickup point in the relevant jurisdiction; Based on logistics order data and the network information of the corresponding pickup points in the jurisdiction, a seamless pickup order is generated.
3. The method for querying the pickup status of logistics orders according to claim 1, characterized in that, The step of tagging the second collection information and generating second tagging data includes: Extract character features from the second pickup information, obtain the corresponding internal code data based on the character features, and generate the second character data; The second character data is converted to binary and a second data to be labeled is generated; The second data to be labeled is marked by adding a second label character to the second data according to a preset bit position; The second labeling data is generated based on the processed second data to be labeled.
4. The method for querying the pickup status of logistics orders according to claim 1, characterized in that, If the verification character matches the second marking character, the second marking data is pushed to the collection point, and collection status information is generated based on the second marking data. This also includes: Once the collection point receives the second marking data, it extracts the order placement node and collection node from the second marking data. Generate pickup time data based on the order placement node and pickup node; Output a pickup efficiency table based on pickup time data and courier information.
5. An apparatus for implementing the logistics order pickup status query method as described in any one of claims 1-4, characterized in that, include: The configuration module is used to acquire logistics order data and configure seamless pickup orders based on the logistics order data; The first acquisition module is used to acquire data information of the seamless pickup order and generate the first pickup information; the first pickup information includes the order node, package number and pickup point information; The first marking module is used to mark the first collection information and generate the first marking data; The second acquisition module is used to acquire actual pickup data and generate second pickup information based on the actual pickup data and the first pickup information; the actual pickup data is the pickup node of the courier's actual pickup of logistics orders; the second pickup information includes the order placement node, pickup node, package number, pickup point information and courier information; The second marking module is used to mark the second collection information and generate the second marking data; The judgment module acquires the first marking data and the second marking data, and performs judgment processing on the first marking data and the second marking data. If the first preset condition is met, it is judged as the first marking data, and the first marking data is pushed to the platform, the external network and the collection point. If the second preset condition is met, it is judged as the second marking data, and the second marking data is pushed to the collection point.
6. A logistics order pickup status query device, characterized in that, The logistics order pickup status query device includes: a memory and at least one processor, wherein the memory stores instructions; At least one of the processors invokes the instructions in the memory to cause the logistics order pickup status query device to perform the steps of the logistics order pickup status query method as described in any one of claims 1-4.
7. A computer-readable storage medium storing instructions thereon, characterized in that, When the instruction is executed by the processor, it implements each step of the logistics order pickup status query method as described in any one of claims 1-4.
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