Real-time asset inventory and measurement method and system for asset storage platform, medium, and processor
By combining RFID tags and sensors, asset and goods information can be acquired and analyzed in real time, solving the problem of the inability to update inventory information in real time in traditional asset management. This enables real-time inventory updates and improves the accuracy and efficiency of management.
Patent Information
- Application Number
- PCT/CN2024/124075
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-08-07
- Filing Date
- 2024-10-11
- Publication Date
- 2026-02-12
AI Technical Summary
Traditional asset management methods rely on periodic manual inventory checks, which results in inventory information not being updated in real time, and managers not being able to understand the inventory status in a timely manner.
By combining RFID tags and sensors, the system can obtain real-time inventory levels and detailed information of assets and goods. Through analysis and processing, it can determine the entry and exit criteria, automatically update inventory information, and generate signals when anomalies are detected.
It enables real-time updates of inventory information, improves the accuracy and efficiency of asset management, reduces manual operations, ensures the safe storage of goods, and prevents damage or loss.
Smart Images

Figure CN2024124075_12022026_PF_FP_ABST
Abstract
Description
Real-time inventory measurement asset method, system, medium and processor of asset storage platform TECHNICAL FIELD
[0001] The present application relates to the technical field of asset storage management, in particular to a real-time inventory measurement asset method, system, medium and processor of an asset storage platform. BACKGROUND
[0002] With the continuous development of information technology and the change of enterprise management needs, intelligent asset management has become an inevitable trend. Through intelligent management means, enterprises can realize real-time, accurate and comprehensive information collection, analysis and management of assets, and improve the utilization efficiency and economic benefits of assets.
[0003] Traditional asset management methods mainly rely on manual recording, paper documents or electronic spreadsheets. These methods are inefficient and prone to errors when facing large-scale and complex asset management. Most importantly, due to the reliance on periodic manual inventory, inventory information cannot be updated in real time, which makes it difficult for managers to understand the inventory status in a timely manner.
[0004] SUMMARY
[0005] In view of the problem that the asset storage platform in the prior art relies on periodic manual inventory and inventory information cannot be updated in real time, the present application provides a real-time inventory measurement asset method, system, medium and processor of an asset storage platform, which can update inventory information in real time and help managers understand the inventory status in a timely manner. The specific technical solutions are as follows:
[0006] A real-time inventory measurement asset method of an asset storage platform comprises:
[0007] Obtaining the inventory quantity and asset detailed information of the current asset goods in the asset goods storage area;
[0008] Obtaining the goods detailed information of the RFID tag on the to-be-warehoused asset goods identified and read by the tag reading terminal;
[0009] Analyzing and processing the goods detailed information and the asset detailed information, and determining whether the to-be-warehoused asset goods meet the preset warehousing standard according to the analysis result;
[0010] If yes, the inventory quantity of the current asset goods is increased or decreased accordingly, and if not, the inventory quantity of the current asset goods remains unchanged;
[0011] The asset details include the identification, model, standard weight value and environmental suitability standard of various asset goods; the sum of the standard weight values of the various asset goods is a total standard weight value; the environmental suitability standard includes a temperature interval and a humidity interval suitable for storing the asset goods; and the goods details include the identification, model, standard weight value, temperature value and humidity value of the location of the goods.
[0012] Preferably, the analysis and processing of the goods details and the asset details, and the judgment of whether the asset goods to be stored or taken out meet the preset storage or taking-out standard according to the analysis result include:
[0013] comparing the standard weight value of the goods details with the change value of the total standard weight value in the asset details to determine whether to generate a goods placement abnormal signal;
[0014] comparing the temperature value and humidity value of the location of the goods details with the temperature interval and humidity interval set in the asset details to determine whether to generate a location placement abnormal signal;
[0015] If neither the goods placement abnormal signal nor the location placement abnormal signal is generated, the storage or taking-out standard is met, otherwise the storage or taking-out standard is not met.
[0016] Preferably, the comparison of the standard weight value of the goods details with the weight increase or decrease value of the asset details to determine whether to generate a goods placement abnormal signal includes:
[0017] obtaining a preset weight compensation factor;
[0018] obtaining a weight judgment interval according to the preset weight compensation factor and the standard weight value;
[0019] If the change value of the total standard weight value is located in the weight judgment interval, no goods placement abnormal signal is generated, and if the change value of the total standard weight value is not located in the weight judgment interval, a goods placement abnormal signal is generated.
[0020] Preferably, the comparison of the temperature value and humidity value of the location of the goods details with the temperature interval and humidity interval set in the asset details to determine whether to generate a location placement abnormal signal includes:
[0021] obtaining the location information of the asset goods to be stored or taken out in the goods details, and obtaining the temperature value and humidity value collected by the temperature sensor and humidity sensor set in the location according to the location information;
[0022] extracting the temperature interval and humidity interval of the location from the environmental suitability standard in the asset details according to the location information.
[0023] If the temperature value and the humidity value are both located in the corresponding temperature interval and humidity interval, no location placement abnormal signal is generated, otherwise, the location placement abnormal signal is generated.
[0024] Preferably, the tag reading terminal identifies the product detailed information of the RFID tag read on the asset product to be put in or out of the warehouse.
[0025] The tag reading terminal scans and reads the identification code of the RFID tag on the asset product to be put in or out of the warehouse, and acquires the corresponding product detailed information of the asset product to be put in or out of the warehouse according to the corresponding asset product identification of the identification code.
[0026] Preferably, the location information of the asset product to be put in or out of the warehouse in the product detailed information includes:
[0027] The tag reading terminal sets a plurality of RFID readers at fixed positions in the asset product storage area to receive and send signals to the RFID tag of the asset product to be put in or out of the warehouse, and calculates the position of the RFID tag according to the strength of the signal and the known position of the RFID reader, and combines the KWNN algorithm to acquire the location information of the asset product to be put in or out of the warehouse.
[0028] A real-time inventory and measurement asset system of an asset storage platform, applied to the real-time inventory and measurement asset method of the asset storage platform, comprising:
[0029] The storage asset information acquisition unit is configured to acquire the inventory quantity and asset detailed information of the current asset product in the asset product storage area. The asset detailed information includes the identification, model, standard weight value, and environmental suitability standard of various asset products. The sum of the standard weight values of various asset products is the total standard weight value. The environmental suitability standard includes the temperature interval and humidity interval suitable for storing the asset product.
[0030] The to-be-put-in-or-out-of-warehouse product information acquisition unit is configured to acquire the product detailed information of the RFID tag on the asset product to be put in or out of the warehouse identified and read by the tag reading terminal. The product detailed information includes the identification, model, standard weight value, temperature value, and humidity value of the location.
[0031] The analysis and judgment unit is configured to analyze and process the product detailed information and the asset detailed information, and to judge whether the asset product to be put in or out of the warehouse meets the preset warehouse-in or warehouse-out standard according to the analysis result.
[0032] The asset inventory updating unit is configured to increase or decrease the inventory quantity of the current asset product when the asset product to be put in or out of the warehouse meets the warehouse-in or warehouse-out standard, and to keep the inventory quantity of the current asset product unchanged when the asset product to be put in or out of the warehouse does not meet the warehouse-in or warehouse-out standard.
[0033] A computer readable storage medium comprising a stored program, wherein the computer readable storage medium is caused to perform the real-time inventorying asset method of the asset storage platform when the program is run.
[0034] A processor for running a program, wherein the real-time inventorying asset method of the asset storage platform is performed when the program is run.
[0035] Compared with the prior art, the present application has the following beneficial effects:
[0036] The real-time inventorying asset method of the asset storage platform of the present application acquires the inventory quantity and asset detailed information of the current asset goods in the asset goods storage area, acquires the goods detailed information of the RFID tag read by the tag reading terminal, analyzes and processes the goods detailed information and the asset detailed information, judges whether the to-be-warehoused asset goods meet the preset warehousing standard according to the analysis result, if yes, the inventory quantity of the current asset goods is increased or decreased correspondingly, and if not, the inventory quantity of the current asset goods remains unchanged. The present application can update the inventory information in real time, helps the management personnel to know the inventory condition in time. Meanwhile, the to-be-warehoused asset goods are analyzed and processed, and the warehousing is not performed when the abnormal condition is detected, which improves the accuracy of the asset storage platform management. BRIEF DESCRIPTION OF DRAWINGS
[0037] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the specific embodiments or the prior art description will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, each element or part is not necessarily drawn according to the actual proportion.
[0038] Fig. 1 is a flow chart of the real-time inventorying asset method of the asset storage platform of the present application.
[0039] Fig. 2 is a flow chart of one embodiment of the real-time inventorying asset method of the asset storage platform of the present application.
[0040] Fig. 3 is a flow chart of another embodiment of the real-time inventorying asset method of the asset storage platform of the present application.
[0041] Fig. 4 is a schematic diagram of the real-time inventorying asset system of the asset storage platform of the present application. DETAILED DESCRIPTION
[0042] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are a part rather than all of the embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by a person of ordinary skill in the art without creative effort should fall within the scope of the present application.
[0043] It should be understood that the terms "comprising" and "including" as used in the specification and the appended claims indicate the presence of the described features, integers, steps, operations, elements, and / or components but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof.
[0044] It should also be understood that the terms used in the present application specification are only for the purpose of describing particular embodiments and are not intended to limit the present application. As used in the present application specification and the appended claims, the singular forms "a", "an" and "the" are intended to include the plural forms unless the context clearly indicates otherwise.
[0045] It should be further understood that the term "and / or" as used in the present application specification and the appended claims means any combination of one or more of the associated listed items and all possible combinations, and includes these combinations.
[0046] Referring to FIG. 1, the embodiment of the present application provides a real-time inventory measurement asset method of an asset storage platform, comprising:
[0047] Step S1, obtaining the inventory quantity and asset detailed information of the current asset goods in the asset goods storage area;
[0048] The asset goods storage area is used for storing various asset goods, and the asset detailed information includes the identification, model, standard weight value and environmental suitability standard of various asset goods. The sum of the standard weight values of various asset goods is the total standard weight value. The environmental suitability standard includes the temperature interval and humidity interval suitable for storing the asset goods.
[0049] Step S2, obtaining the goods detailed information of the RFID tag on the to-be-warehoused asset goods identified and read by the label reading terminal;
[0050] Specifically, the obtaining of the goods detailed information of the RFID tag on the to-be-warehoused asset goods identified and read by the label reading terminal comprises:
[0051] The label reading terminal scans and reads the identification code of the RFID tag on the to-be-warehoused asset goods, and obtains the goods detailed information corresponding to the to-be-warehoused asset goods according to the asset goods identification corresponding to the identification code.
[0052] RFID tags are used to be deployed on each asset commodity, and each RFID tag contains a unique identification code, and the RFID tag deployed on the corresponding asset commodity is taken as the unique asset commodity identification. The commodity detailed information includes the identification, model, standard weight value, temperature value and humidity value of the commodity at the location.
[0053] Step S3, analysis processing of the commodity detailed information and the asset detailed information, and judging whether the to-be-warehoused asset commodity meets the preset warehousing standard according to the analysis result;
[0054] Specifically, the analysis processing of the commodity detailed information and the asset detailed information, and judging whether the to-be-warehoused asset commodity meets the preset warehousing standard according to the analysis result includes:
[0055] comparing the standard weight value of the commodity detailed information with the change value of the total standard weight value in the asset detailed information, and judging whether a commodity placement abnormal signal is generated;
[0056] comparing the temperature value and humidity value of the location in the commodity detailed information with the temperature interval and humidity interval set in the corresponding location in the asset detailed information, and judging whether a location placement abnormal signal is generated;
[0057] If neither the commodity placement abnormal signal nor the location placement abnormal signal is generated, the warehousing standard is met, otherwise the warehousing standard is not met.
[0058] Step S4, if the warehousing standard is met, the inventory of the current asset commodity is correspondingly increased or decreased, and if the warehousing standard is not met, the inventory of the current asset commodity remains unchanged;
[0059] In the embodiment, the asset storage platform includes an asset commodity storage area, a data storage area and various sensors; the asset commodity storage area is used to store various asset commodities, and the data storage area is used to store the asset detailed information corresponding to various asset commodities. The various sensors are used to monitor the physical state of the asset commodity and obtain corresponding monitoring data, such as a temperature sensor used to collect temperature values and a humidity sensor used to collect humidity values.
[0060] This invention discloses a real-time inventory and measurement method for an asset storage platform. It obtains the current inventory level and detailed information of assets in the asset storage area; acquires detailed information of RFID tags on assets to be entered or exited from the warehouse, as identified by a tag reader terminal; analyzes and processes the detailed information of the assets and the goods, and determines whether the assets to be entered or exited meet preset entry and exit standards based on the analysis results; if they meet the standards, the current inventory level of the assets is adjusted accordingly; otherwise, the inventory level remains unchanged. This invention can update inventory information in real time, helping managers to understand the inventory status promptly. Simultaneously, through automated data collection and processing, it reduces manual operations and improves the efficiency of asset management; it also ensures the safe storage of goods and prevents damage or loss through strict judgment of goods entering and exiting the warehouse and monitoring of environmental conditions; furthermore, it can analyze and process assets to be entered or exited, and prevent entry and exit under abnormal conditions, thus improving the accuracy of asset storage platform management.
[0061] Specifically, please refer to Figure 2. In a preferred embodiment of this application, comparing the standard weight value of the goods details with the weight increase / decrease value of the asset details to determine whether to generate a goods placement anomaly signal includes:
[0062] Step S31: Obtain the preset weight compensation factor;
[0063] The weight compensation factor can be set by experienced personnel.
[0064] Step S32: Obtain the weight judgment range based on the preset weight compensation factor and the standard weight value;
[0065] First, the standard weight value and the weight compensation factor are combined to form a weight judgment range, which is represented as [standard weight value - weight compensation factor, standard weight value + weight compensation factor].
[0066] Step S33: If the change in the total standard weight value is within the weight judgment interval, no abnormal goods placement signal is generated; if the change in the total standard weight value is not within the weight judgment interval, an abnormal goods placement signal is generated. Specifically, this includes the following situations:
[0067] First, compare the change in the total standard weight value with the weight judgment range:
[0068] If the weight increase parameter of the total standard weight value is in the corresponding weight judgment interval, no goods placement abnormal signal is generated, indicating that the goods placed in the asset goods storage area are complete products of asset goods; if the weight increase parameter of the total standard weight value is not in the corresponding weight judgment interval, a goods placement abnormal signal is generated, indicating that the goods placed in the asset goods storage area are not asset goods or are not complete products of asset goods.
[0069] If the weight decrease parameter of the total standard weight value is in the corresponding weight judgment interval, no goods placement abnormal signal is generated, indicating that the goods placed in the asset goods storage area are complete products of asset goods; if the weight decrease parameter of the total standard weight value is not in the corresponding weight judgment interval, a goods placement abnormal signal is generated, indicating that the goods placed in the asset goods storage area are not asset goods or are not complete products of asset goods.
[0070] The weight increase parameter is a weight value obtained by subtracting the weight parameter of the sensor before the placement of the asset goods to be stored or taken out from the weight parameter of the sensor after the placement of the asset goods to be stored or taken out; and the weight decrease parameter is a weight value obtained by subtracting the weight parameter of the sensor after the removal of the asset goods to be stored or taken out from the weight parameter of the sensor before the removal of the asset goods to be stored or taken out.
[0071] In the embodiment, the accurate sensor monitoring and data processing reduce the misjudgment and error operation caused by human factors. Moreover, a signal can be generated immediately when an abnormal condition is detected, reminding the management personnel to handle it, so as to avoid the expansion of the problem.
[0072] Specifically, referring to FIG. 3, in a preferred embodiment of the present application, the comparison of the temperature value and the humidity value of the position in the goods detailed information with the temperature interval and the humidity interval set in the corresponding position in the asset detailed information to determine whether to generate a position placement abnormal signal includes:
[0073] In step S301, the position information of the asset goods to be stored or taken out in the goods detailed information is acquired, and the temperature value and the humidity value collected by the temperature sensor and the humidity sensor arranged at the position are acquired according to the position information;
[0074] The position information of the RFID tag is acquired by the tag reading terminal; then, the temperature value and the humidity value of the position are acquired according to the position information of the RFID tag and the temperature sensor and the humidity sensor arranged at the position.
[0075] Specifically, the acquisition of the position information of the asset goods to be stored or taken out in the goods detailed information includes:
[0076] The tag reading terminal sets a plurality of RFID read-write devices at fixed positions of the asset commodity storage area to receive and send signals to and from the RFID tag of the asset commodity to be stored or taken out, and calculates the position of the RFID tag according to the strength of the signals and the known positions of the RFID read-write devices, and obtains the position information of the asset commodity to be stored or taken out by using a KWNN (K-Weighted Nearest Neighbors algorithm) algorithm.
[0077] In step S302, the temperature interval and the humidity interval of the position are extracted from the environment suitable standard in the asset detailed information according to the position information.
[0078] In step S303, if the temperature value and the humidity value are both in the corresponding temperature interval and humidity interval, no position placement abnormal signal is generated, otherwise, the position placement abnormal signal is generated.
[0079] The temperature value and the humidity value are matched with the temperature interval and the humidity interval respectively, and whether to generate the position placement abnormal signal is determined according to the matching result.
[0080] If the temperature value is in the temperature interval and the humidity value is in the humidity interval, no position placement abnormal signal is generated, otherwise, the position placement abnormal signal is generated. When neither the commodity abnormal signal nor the position abnormal signal is generated.
[0081] In the embodiment, the storage condition is adjusted according to the environment suitable standard of the asset commodity to ensure that the asset commodity is stored in the best state. When an abnormal condition is detected, a signal is generated immediately to remind the manager to handle it, so that the problem is avoided from being enlarged.
[0082] In the embodiment, the use of the RFID tag makes each commodity have a unique identification, which is convenient for tracking, inquiring and managing.
[0083] In another embodiment, the specific process of storing and taking out the actual asset commodity is as follows:
[0084] The judgment method of the asset commodity is as follows:
[0085] Firstly, when the manager places the asset commodity to be stored in the asset commodity storage area, the tag reading terminal obtains the commodity identification of the RFID tag on the asset commodity, and then obtains the corresponding commodity detailed information according to the asset commodity identification to be stored;
[0086] Secondly, the weight information of the asset commodity in the asset commodity storage area is obtained by the weight sensor arranged in the asset commodity storage area, and the weight increase parameter is calculated.
[0087] The weight information includes a weight parameter obtained by the weight sensor at the asset goods storage area after the asset goods are placed, and a weight parameter obtained by the weight sensor at the asset goods storage area before the asset goods are placed.
[0088] In the third step, the standard weight value in the goods detailed information and the weight increase parameter are analyzed, and whether a goods placement abnormal signal is generated is determined according to the analysis result.
[0089] In the fourth step, the position information of the RFID tag is obtained according to the label reading terminal.
[0090] In the fifth step, the temperature value and the humidity value of the position are obtained according to the temperature sensor and the humidity sensor arranged at the position according to the position information of the RFID tag, and the corresponding temperature interval and humidity interval are extracted from the environment suitability standard corresponding to the asset goods. Then, the temperature value and the humidity value are matched with the temperature interval and the humidity interval respectively, and whether a position placement abnormal signal is generated is determined according to the matching result.
[0091] In the sixth step, when neither the goods abnormal signal nor the position abnormal signal is generated, the inventory of the asset goods to be stored is increased by one.
[0092] The asset goods storage judgment method is as follows:
[0093] In the first step, when the management personnel takes out the asset goods from the asset goods storage area, the label reading terminal obtains the corresponding goods detailed information by reading the goods identification of the RFID tag corresponding to the asset goods.
[0094] In the second step, the weight information of the current asset goods in the asset goods storage area is obtained according to the weight sensor arranged at the asset goods storage area, and a weight reduction parameter is calculated.
[0095] In the third step, the standard weight value in the goods detailed information and the weight reduction parameter are analyzed, and whether a goods placement abnormal signal is generated is determined according to the analysis result.
[0096] In the fourth step, when the goods take-out abnormal signal is not generated, the inventory of the asset goods to be taken out is reduced by one.
[0097] Referring to FIG. 4, the application embodiment provides a real-time inventory asset system of an asset storage platform, which is applied to the real-time inventory asset method of the asset storage platform and includes:
[0098] The storage asset information acquisition unit is configured to acquire the inventory quantity of the current asset goods in the asset goods storage area and asset detailed information; the asset detailed information includes the identification, model, standard weight value and environmental suitability standard of each type of asset goods; the sum of the standard weight values of each type of asset goods is a total standard weight value; and the environmental suitability standard includes a temperature interval and a humidity interval suitable for storing the asset goods.
[0099] The to-be-warehoused or to-be-delivered goods information acquisition unit is configured to acquire goods detailed information of an RFID tag on a to-be-warehoused or to-be-delivered asset good identified and read by the tag reading terminal; the goods detailed information includes the identification, model, standard weight value, temperature value and humidity value of the goods at the location.
[0100] The RFID tag is arranged on each asset good, and each RFID tag contains a unique identification code, and the RFID tag arranged on the corresponding asset good is taken as a unique asset good identification. The goods detailed information includes the identification, model, standard weight value, temperature value and humidity value of the goods at the location.
[0101] The analysis and judgment unit is configured to analyze and process the goods detailed information and the asset detailed information, and judge whether the to-be-warehoused or to-be-delivered asset good meets the preset warehousing or delivery standard according to the analysis result.
[0102] Specifically, the standard weight value of the goods detailed information is compared with the change value of the total standard weight value in the asset detailed information to judge whether a goods placement abnormal signal is generated; and the temperature value and humidity value of the goods at the location in the goods detailed information are compared with the temperature interval and humidity interval set at the corresponding location in the asset detailed information to judge whether a location placement abnormal signal is generated.
[0103] If neither the goods placement abnormal signal nor the location placement abnormal signal is generated, the warehousing or delivery standard is met, otherwise the warehousing or delivery standard is not met.
[0104] The asset inventory updating unit is configured to, when the to-be-warehoused or to-be-delivered asset good meets the warehousing or delivery standard, increase or decrease the inventory quantity of the current asset good accordingly, and when the to-be-warehoused or to-be-delivered asset good does not meet the warehousing or delivery standard, the inventory quantity of the current asset good remains unchanged.
[0105] In the embodiment, the real-time inventory metering asset system of the asset storage platform further includes a display unit configured to
[0106] The application discloses a real-time inventory measurement asset system of an asset storage platform. The system can update inventory information in real time, help managers to know the inventory condition in time, and through automatic data collection and processing, the system reduces the manual operation link and improves the asset management efficiency; through strict judgment on the goods storage and the environment condition monitoring, the system ensures the safe storage of goods and prevents damage or loss; the system can analyze and process the to-be-stored goods, detect abnormal conditions and prevent the goods from being stored, and improve the accuracy of asset storage platform management.
[0107] The application further provides a computer readable storage medium, which comprises a stored program, wherein the program controls a device where the computer readable storage medium is located to execute the asset storage platform real-time inventory measurement asset method when the program is run.
[0108] The technical effect of the embodiment is the same as that of the asset storage platform real-time inventory measurement asset method of the embodiment, and thus is not repeated here.
[0109] The application can be used in a plurality of general or special computer system environments or configurations, for example, a personal computer, a server computer, a handheld device or a portable device, a tablet device, a multi-processor system, a microprocessor-based system, a set-top box, a programmable consumer electronic device, a network PC, a minicomputer, a mainframe computer, a distributed computing environment comprising any of the above systems or devices, and the like.
[0110] The application further provides a processor, which is used for running a program, wherein the program executes the asset storage platform real-time inventory measurement asset method when the program is run.
[0111] The technical effect of the embodiment is the same as that of the asset storage platform real-time inventory measurement asset method of the embodiment, and thus is not repeated here.
[0112] The processor in the embodiments can be a central processing unit (CPU), a controller, a microcontroller, or other data processing chip.
[0113] Those skilled in the art can understand that the units of the examples described in combination with the embodiments disclosed in the present application can be realized in electronic hardware, computer software or a combination of both. In order to clearly illustrate the interchangeability of hardware and software, the components of the examples have been described in general terms in the above description. Whether the functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of the present application.
[0114] In the embodiments provided by the present application, it should be understood that the division of units is only a logical functional division, and actual implementation can have another division manner, for example, multiple units can be combined into one unit, one unit can be split into multiple units, or some features can be ignored, etc.
[0115] In addition, each functional unit in each embodiment of the present application can be integrated in one processing unit, or each unit can exist physically independently, or two or more units can be integrated in one unit. The integrated unit can be realized in the form of hardware or in the form of a software functional unit.
[0116] When the integrated unit is realized in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the present application essentially or the part that makes a contribution to the prior art or the whole or part of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes a number of instructions for causing a computer device (which can be a personal computer, a server or a network device, etc.) to execute all or part of the steps of the methods described in the embodiments of the present application. The aforementioned storage medium includes a variety of media that can store program codes, such as a U disk, a read-only memory (ROM), a random access memory (RAM), a mobile hard disk, a magnetic disk or an optical disk, etc.
[0117] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and are not intended to limit the present application; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some or all of the technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application, and they should be covered in the scope of the claims and the description of the present application.
Claims
1. A method for real-time inventory and measurement of assets on an asset storage platform, characterized in that, include: Retrieve the current inventory and detailed information of the assets in the asset storage area; Obtain detailed information about the goods from the RFID tags on the assets to be entered or exited, as identified and read by the tag reading terminal; The detailed information of the goods and the detailed information of the assets are analyzed and processed, and the results are used to determine whether the assets to be put into or out of the warehouse meet the preset inbound and outbound standards. If the conditions are met, the current inventory level of the asset will be increased or decreased accordingly; otherwise, the current inventory level of the asset will remain unchanged. The detailed asset information includes the identification, model, standard weight value, and environmental suitability standards of various asset items; the sum of the standard weight values of various asset items is the total standard weight value; the environmental suitability standards include the suitable temperature and humidity ranges for storing asset items; the detailed item information includes the item's identification, model, standard weight value, and the temperature and humidity values of its location.
2. The method for real-time inventory and measurement of assets in an asset storage platform according to claim 1, characterized in that, The analysis and processing of the detailed information of the goods and the detailed information of the assets, and the determination of whether the assets to be entered or left in the warehouse meet the preset entry and exit standards based on the analysis results, include: The standard weight value in the detailed information of the goods is compared with the change value of the total standard weight value in the detailed information of the assets to determine whether to generate an abnormal placement signal for the goods. The temperature and humidity values of the location in the detailed information of the goods are compared with the temperature and humidity ranges set for the corresponding location in the detailed information of the assets to determine whether an abnormal location signal is generated. If neither the abnormal goods placement signal nor the abnormal location placement signal is generated, then the inbound / outbound criteria are met; otherwise, the inbound / outbound criteria are not met.
3. The method for real-time inventory and measurement of assets in an asset storage platform according to claim 2, characterized in that, The step of comparing the standard weight value of the goods details with the weight increase / decrease value of the asset details to determine whether to generate a goods placement anomaly signal includes: Obtain the preset weight compensation factor; The weight judgment range is obtained based on the preset weight compensation factor and the standard weight value; If the change in the total standard weight value is within the weight judgment range, no abnormal goods placement signal is generated; if the change in the total standard weight value is not within the weight judgment range, an abnormal goods placement signal is generated.
4. The method for real-time inventory and measurement of assets in an asset storage platform according to claim 2, characterized in that, The step of comparing the temperature and humidity values of the location in the detailed information of the goods with the temperature and humidity ranges set for the corresponding location in the detailed information of the assets to determine whether to generate an abnormal location signal includes: Obtain the location information of the assets to be entered or exited from the detailed information of the goods, and obtain the temperature and humidity values collected in real time by the temperature sensor and humidity sensor set at the location based on the location information; Based on the location information, extract the temperature and humidity ranges for that location from the environmental suitability standards specified in the asset details; If both the temperature and humidity values are within the corresponding temperature and humidity ranges, no location placement anomaly signal will be generated; otherwise, a location placement anomaly signal will be generated.
5. The method for real-time inventory and measurement of assets in an asset storage platform according to claim 1, characterized in that, The detailed information of the goods identified and read by the tag reading terminal from the RFID tags on the assets to be entered or exited includes: The tag reading terminal scans and reads the identification code of the RFID tag on the asset to be entered or left the warehouse, and obtains the detailed information of the asset to be entered or left the warehouse based on the asset identification corresponding to the identification code.
6. The method for real-time inventory and measurement of assets in an asset storage platform according to claim 4, characterized in that, The location information of the assets to be entered or exited in the detailed information of the goods obtained includes: The tag reading terminal uses multiple RFID readers located at fixed positions in the asset storage area to receive and send signals to the RFID tags of the assets to be entered or exited. Based on the signal strength and the known location of the RFID readers, the location of the RFID tags is calculated using the KWNN algorithm, thus obtaining the location information of the assets to be entered or exited.
7. A real-time inventory and measurement asset system for an asset storage platform, characterized in that, A real-time inventory and measurement method for assets applied to the asset storage platform according to any one of claims 1 to 6, comprising: The asset information acquisition unit is used to acquire the current inventory and detailed information of the assets in the asset storage area. The detailed information includes the identification, model, standard weight value, and environmental suitability standards of various assets. The sum of the standard weight values of various assets is the total standard weight value. The environmental suitability standards include the suitable temperature range and humidity range for storing the assets. The goods information acquisition unit is used to acquire detailed information about the goods from the RFID tags on the assets to be acquired or removed from the warehouse, as identified and read by the tag reading terminal. The detailed information about the goods includes the goods' identification, model, standard weight, temperature and humidity values of its location. The analysis and judgment unit is used to analyze and process the detailed information of the goods and the detailed information of the assets, and to determine whether the assets to be put into or out of the warehouse meet the preset entry and exit standards based on the analysis results. The asset inventory update unit is used to increase or decrease the current inventory level of assets when the assets to be shipped meet the shipping / receiving criteria, and to keep the current inventory level unchanged when the assets to be shipped do not meet the shipping / receiving criteria.
8. A computer-readable storage medium, characterized in that, The computer-readable storage medium includes a stored program, wherein, When the program is running, it controls the device containing the computer-readable storage medium to perform the real-time inventory and measurement method of the asset storage platform according to any one of claims 1 to 6.
9. A processor, characterized in that, The processor is used to run a program, wherein the program executes the real-time inventory and measurement method of the asset storage platform according to any one of claims 1 to 6.
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