Internet of Things warehouse management monitoring system
By using an IoT-based warehouse monitoring system, combined with visual components and data terminals, the problems of low efficiency and data errors caused by manual operation in traditional warehousing systems have been solved, enabling intelligent and precise warehouse management and improving operational efficiency and security.
Patent Information
- Application Number
- CN202423082113.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-13
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-12-13
AI Technical Summary
Traditional warehouse management systems rely on manual operation, which is inefficient and prone to data errors, leading to mismatches in cargo information, affecting the stable operation and management efficiency of the warehouse system, and lacking effective monitoring and traceability mechanisms.
An IoT-based warehouse monitoring system is adopted, which combines vision components and data terminals. It acquires cargo information through scanners and cameras and uploads it to a cloud database to achieve intelligent management and precise location tracking. The system uses transmission mechanisms and sensor gratings to ensure data accuracy and reduce manual intervention.
It enables intelligent, efficient, and precise warehouse management, reduces errors in goods receiving, improves operational efficiency and security, and supports remote monitoring and data traceability.
Smart Images

Figure CN223751653U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of internet of things equipment, especially relates to an internet of things warehouse management monitoring system. BACKGROUND
[0002] The traditional warehouse management system relies on manual operation and simple data recording, is low in efficiency, and is prone to data errors, leading to mismatch between actual goods and goods information recorded in data, seriously affecting the stable operation of the warehouse management system, and a large amount of manpower and material resources need to be wasted for data correction in the later period. Moreover, there is a lack of monitoring or the monitoring is not in place in the traditional warehouse management system, so that it is impossible to trace when data errors occur, leading to production and logistics management accidents and affecting normal production and sales. UTILITY MODEL CONTENT
[0003] The utility model aims at providing an internet of things warehouse management monitoring system, realizing intelligentization, high efficiency and precision of warehouse management, and covering functions such as accurate positioning and tracking of goods, comprehensively improving the efficiency and safety of warehouse operation, and uploading warehouse and logistics information to a cloud database in time, facilitating subsequent tracing.
[0004] To achieve this purpose, the utility model adopts the following technical scheme:
[0005] An internet of things warehouse management monitoring system is provided, which comprises a warehouse cabinet, a visual assembly and a data terminal, the warehouse cabinet comprises a plurality of goods shelves for placing goods, one side of the warehouse cabinet is provided with a feeding table, and a scanner for scanning goods material information is arranged on the feeding table;
[0006] The visual assembly comprises a first camera and a second camera, the first camera is arranged towards the feeding table to obtain image information of the goods located on the feeding table, and the second camera is arranged towards the goods shelves to obtain image information of the goods placed on the goods shelves;
[0007] The data terminal is arranged on one side of the warehouse cabinet, and the data terminal is signal connected with the scanner, the visual assembly and a cloud database respectively.
[0008] In one of the embodiments, a conveying mechanism is arranged on the goods shelves, the conveying mechanism comprises a conveying belt arranged at the bottom of the goods shelves and a driving assembly for driving the conveying belt to reciprocate, and the driving assembly is signal connected with the data terminal.
[0009] In one of the embodiments, the goods shelves are provided with a storage groove for placing a partition plate at the goods inlet end, a partition plate is arranged between two adjacent goods placed on the goods shelves, and the storage groove is provided with a baffle at the end away from the goods shelves, and the baffle is arranged at an angle with the horizontal plane.
[0010] In one of the embodiments, the goods-in end of the shelf is further provided with an induction grating for inducting the goods, and the induction grating is signal connected with the data terminal.
[0011] In one of the embodiments, the feeding table comprises a feeding platform for placing the goods, and a guard plate is arranged around the feeding platform, one side of the guard plate is provided with a feeding opening, and one side of the feeding platform is further provided with a support frame, and the scanner and the second camera are arranged on the support frame.
[0012] In one of the embodiments, a plurality of rollers are arranged side by side on the feeding platform, and the arrangement direction of the plurality of rollers is arranged towards the feeding opening.
[0013] In one of the embodiments, the Internet of Things warehouse management monitoring system further comprises an auxiliary feeding mechanism, the auxiliary feeding mechanism comprises a rack, and a feeding belt is arranged on the rack, the feeding belt comprises an inlet end and an outlet end, and the outlet end is connected with the feeding table, or the feeding table is arranged on the outlet end.
[0014] In one of the embodiments, the auxiliary feeding mechanism further comprises a retreat stop assembly, the retreat stop assembly comprises a mounting seat and a retreat stop piece hinged to the mounting seat, one side of the mounting seat away from the inlet end is provided with a retreat stop plate, and one side of the retreat stop piece towards the inlet end is provided with an inclined surface.
[0015] In one of the embodiments, the visual assembly further comprises a third camera, and the third camera is arranged towards the data terminal to obtain the information of the operator operating the data terminal.
[0016] In one of the embodiments, the Internet of Things warehouse management monitoring system further comprises a remote terminal, and the remote terminal is signal connected with the data terminal and the cloud database respectively.
[0017] The utility model discloses the beneficial effect:
[0018] The utility model discloses a kind of internet of things warehouse management monitoring systems, scanner is equipped on feeding table, to carry out information scanning record to the goods of warehousing, corresponding material information is obtained, and material information is transmitted to data terminal, ensure with the material information of actual need warehousing recorded in data terminal is consistent.And still be equipped with the first camera head being set to feeding table, obtain the goods image information on feeding table by first camera head, to further determine that goods and the goods information scanned are consistent, avoid the case that goods information error appears due to wrong label pasting.Further, still be equipped with the second camera head being set to the goods shelf, avoid the case that goods is not correctly placed on goods shelf after scanning information on feeding table, by the mutual cooperation of second camera head, scanner and first camera head, reduce the error of goods warehousing.Information collection of scanner, first camera head and second camera head is carried out by data terminal, and corresponding information is uploaded to cloud database, to carry out data traceability subsequently.By this system, effectively realize that warehouse management is intelligent, efficient, accurate, and can cover goods accurate positioning tracking etc. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is the structure schematic view of internet of things warehouse management monitoring system in one embodiment;
[0020] Figure 2 It is the structure schematic view of goods shelf in one embodiment;
[0021] Figure 3 It is the internal structure schematic view of goods shelf in one embodiment;
[0022] Figure 4 It is the structure schematic view of feeding table in one embodiment;
[0023] Figure 5 It is the structure schematic view of auxiliary feeding mechanism in one embodiment;
[0024] Figure 6 It is the structure schematic view of stop piece in one embodiment;
[0025] Figure 7 It is the connection schematic view of data terminal, remote terminal and cloud database in one embodiment.
[0026] In the drawing:
[0027] 1, goods; 100, storage cabinet; 110, shelf; 111, placing cavity; 120, conveying mechanism; 121, conveying belt; 122, driving wheel; 130, storage groove; 131, baffle; 140, induction grating; 200, loading table; 210, scanner; 220, loading platform; 230, protective plate; 240, loading port; 250, support frame; 251, support rod; 260, roller; 300, data terminal; 410, first camera; 420, second camera; 430, third camera; 500, cloud database; 600, partition; 700, auxiliary loading mechanism; 710, rack; 720, loading belt; 721, feeding end; 722, discharging end; 730, retreat stopping assembly; 731, mounting seat; 732, retreat stopping block; 7321, inclined surface; 733, retreat stopping plate; 740, guardrail; 750, connecting frame; 800, remote terminal. DETAILED DESCRIPTION
[0028] The utility model will be described in further detail below in combination with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the utility model, and not limited to the utility model. In addition, it should be noted that, in order to facilitate the description, only the part related to the utility model is shown in the drawings, not all structures.
[0029] In the description of the utility model, unless otherwise explicitly specified and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated, it can be mechanically connected, or it can be electrically connected, it can be directly connected, or it can be indirectly connected through an intermediate medium, it can be the internal communication of two elements or the interaction relationship of two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0030] In the utility model, unless otherwise explicitly specified and limited, the first feature "on" or "below" the second feature can include that the first and second features are in direct contact, or the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "above" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0031] In the description of the present embodiment, the terms "upper", "lower", "right", and the like orientation or positional relationship are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first" and "second" are only used to distinguish in the description, and have no special meaning.
[0032] As Figures 1 to 7 shown, the Internet of Things warehouse management monitoring system of the present embodiment comprises a warehouse cabinet 100, a visual assembly and a data terminal 300. The warehouse cabinet 100 comprises a plurality of shelves 110 for placing goods 1. One side of the warehouse cabinet 100 is provided with a feeding table 200. The feeding table 200 is provided with a scanner 210 for scanning the material information of the goods 1. The visual assembly comprises a first camera 410 and a second camera 420. The first camera 410 is arranged towards the feeding table 200 to obtain image information of the goods 1 on the feeding table 200. The second camera 420 is arranged towards the shelf 110 to obtain image information of the goods 1 placed on the shelf 110. The data terminal 300 is arranged on one side of the warehouse cabinet 100. The data terminal 300 is signal connected with the scanner 210, the visual assembly and the cloud database 500.
[0033] In the present embodiment, the scanner 210 is arranged on the feeding table 200 to scan and record the information of the goods 1 entering the warehouse, obtain the corresponding material information, and transmit the material information to the data terminal, so as to ensure that the material information is consistent with the actual material information recorded in the data terminal. In addition, the first camera 410 is arranged towards the feeding table 200. The first camera 410 obtains the image information of the goods 1 on the feeding table 200, so as to further determine that the goods 1 are consistent with the scanned goods 1 information, and avoid the situation that the goods 1 information is wrong due to wrong label. Further, the second camera 420 is arranged towards the shelf 110. Specifically, the shelf 110 is provided with a placing cavity 111 for storing the goods 1. The second camera 420 is arranged at the top of the placing cavity 111 away from the goods inlet side, so as to obtain the image information of all the goods 1 in the placing cavity 111. The second camera 420 obtains the image information of the goods 1 in the shelf 110, so as to avoid the situation that the goods 1 are not correctly placed on the shelf 110 after scanning the information on the feeding table 200. Through the cooperation of the second camera 420, the scanner 210 and the first camera 410, the error of the goods 1 entering the warehouse is reduced.
[0034] In the embodiment, the information of the scanner 210, the first camera 410 and the second camera 420 is collected by the data terminal 300, and the corresponding information is uploaded to the cloud database 500 for subsequent data tracing. Through the system, intelligent, efficient and precise warehouse management is effectively realized, and functions such as precise positioning and tracking of goods 1 can be covered, thereby comprehensively improving the efficiency and safety of warehouse operation.
[0035] Further, the visual assembly further comprises a third camera 430, which is arranged towards the data terminal 300 to obtain the information of the operator operating the data terminal 300, so as to accurately track the actual operator during warehouse accident tracing, avoid the error of responsibility determination due to the private shift of the operator, and facilitate the personnel supervision and management, thereby improving the precision and efficiency of warehouse operation.
[0036] In one embodiment, the shelf 110 is provided with a conveying mechanism 120, which comprises a conveying belt 121 arranged at the bottom of the shelf 110 and a driving assembly for driving the conveying belt 121 to reciprocate, and the driving assembly is signal connected with the data terminal 300. By inputting the corresponding feeding or discharging command on the data terminal 300, the driving assembly drives the conveying belt 121 to move away from the feeding end to convey the goods 1 placed by the operator at the feeding end into the inside of the shelf 110, or the conveying belt 121 moves towards the feeding end to convey the goods 1 to the feeding end for the operator to discharge.
[0037] Specifically, the driving assembly comprises a driving wheel 122, which is in transmission connection with the conveying belt 121 to drive the conveying belt 121 to reciprocate, thereby driving the goods 1 placed on the conveying belt 121 to reciprocate, realizing the feeding or discharging operation of the goods 1, which is beneficial to reduce the labor intensity of the operator and improve the efficiency of feeding and discharging.
[0038] In one embodiment, as shown in FIG. 6, the conveying mechanism 120 further comprises a first guide rail 123 and a second guide rail 124 arranged on the conveying belt 121, and the first guide rail 123 and the second guide rail 124 are arranged on the conveying belt 121 in a staggered manner. Figure 2 and Figure 3As shown, the goods-in end of the shelf 110 is provided with a storage groove 130 for placing the partition plate 600, and the partition plate 600 is placed between two adjacent goods 1 placed on the shelf 110, so as to prevent the goods 1 from being damaged due to collision or mutual extrusion between the two adjacent goods 1, and to facilitate the integrity of the goods 1. Wherein, the end of the storage groove 130 away from the shelf 110 is provided with a baffle 131, the baffle 131 is arranged at an angle with the horizontal plane, so as to prevent the partition plate 600 from falling off the shelf 110, and also to facilitate the operator to take the partition plate 600. In addition, the storage groove 130 is arranged adjacent to the conveying belt 121, so that when the conveying belt 121 conveys the goods 1 to the goods-in end, the partition plate 600 is separated from the conveying belt 121 and directly falls into the storage groove 130, reducing the step of the operator manually taking down the partition plate 600, and improving the efficiency of the goods 1 discharging.
[0039] In one embodiment, the goods-in end of the shelf 110 is also provided with an induction grating 140 signal connected with the data terminal 300, for sensing the goods 1, so as to judge the situation of the goods 1 entering or leaving the shelf 110. Specifically, in actual operation, the operator first operates the feeding or discharging on the data terminal 300, and inputs the quantity of the goods 1, when the induction grating 140 senses that the actual feeding or discharging quantity of the goods 1 is inconsistent with the input information, the induction grating 140 sends an alarm, so as to avoid the error of the quantity of the goods 1 feeding or discharging, and to ensure the data accuracy of the warehouse management.
[0040] Of course, in other embodiments, other sensing devices such as position sensors can be used instead of the induction grating 140, as long as they can be used to identify the situation of the goods 1 entering or leaving the shelf 110, which are all within the protection scope of the present application.
[0041] In one embodiment, as shown in the drawings, Figure 4 The feeding platform 200 includes a feeding platform 220 for placing the goods 1, and a protective plate 230 is arranged around the feeding platform 220 to prevent the goods 1 from falling off. One side of the protective plate 230 is provided with a feeding port 240, so that the operator can put the goods 1 into the feeding platform 220 from the feeding port 240. One side of the feeding platform 220 is also provided with a support frame 250, and the scanner 210 and the second camera 420 are arranged on the support frame 250 to scan and obtain image information of the goods 1 placed on the feeding platform 220. Specifically, as shown in the drawings, in this embodiment, the scanner 210 and the second camera 420 are integrated in one device housing, which reduces the installation steps of the device and also reduces the space occupied by the device, and is simple and convenient to operate.
[0042] Further, the support frame 250 is connected with the feeding platform 220 through a support rod 251, the support rod 251 is arranged as an extension rod, so that the support frame 250 can realize the lifting movement of approaching or moving away from the feeding platform 220, so as to adapt to the feeding of goods 1 of different height sizes.
[0043] In one of the embodiments, a plurality of rollers 260 are arranged side by side on the feeding platform 220, the arrangement direction of the plurality of rollers 260 is arranged towards the feeding port 240, which facilitates the putting and taking of the goods 1, and is beneficial to reduce the labor intensity of the operator and improve the work efficiency.
[0044] In one of the embodiments, as shown in the figure, the Internet of Things warehouse management monitoring system further comprises an auxiliary feeding mechanism 700, the auxiliary feeding mechanism 700 comprises a rack 710, the rack 710 is provided with a feeding belt 720, the feeding belt 720 comprises a feeding end 721 and a discharging end 722, the discharging end 722 is connected with the feeding table 200. Through the auxiliary feeding mechanism 700, the goods 1 can be directly conveyed to the feeding table 200, reducing the operation of carrying the goods 1, which is beneficial to reduce the labor intensity of the operator and improve the work efficiency. In addition, as shown in the figure, in other embodiments, the feeding table 200 can also be directly arranged on the discharging end 722 of the feeding belt 720, when the goods 1 moves to the discharging end 722 on the feeding belt 720, the goods 1 is directly scanned and other operations are performed, and the operator directly takes the goods 1 from the discharging end 722 and places it on the goods shelf 110, reducing the operation steps of the goods 1 from the feeding belt 720 to the feeding table 200, and improving the work efficiency.
[0045] In one of the embodiments, as shown in the figure, the auxiliary feeding mechanism 700 further comprises a retreat stop assembly 730, the retreat stop assembly 730 comprises a mounting seat 731 and a retreat stop block 732 hinged on the mounting seat 731, the side of the mounting seat 731 away from the feeding end 721 is provided with a retreat stop plate 733, so that the retreat stop block 732 can be rotated towards the side of the discharging end 722 without affecting the conveying of the goods 1, and the retreat stop block 732 is prevented from rotating towards the side of the feeding end 721 by the retreat stop plate 733 to avoid the goods 1 from falling out of the feeding end 721, achieving the effect of stopping the retreat of the goods 1. Further, the side of the retreat stop block 732 towards the feeding end 721 is provided with an inclined surface 7321 to reduce the damage of the goods 1 by the retreat stop block 732.
[0046] Further, guardrails 740 are arranged on both sides along the conveying direction of the feeding belt 720, the guardrails 740 are connected and fixed with the rack 710 through connecting frames 750, and the guardrails 740 on both sides prevent the goods 1 from falling out of the feeding belt 720 during the conveying process on the feeding belt 720.
[0047] In one of the embodiments, as shown in the figure, the Internet of Things warehouse management monitoring system further comprises a remote terminal 800, the remote terminal 800 is respectively connected with the data terminal 300 and the cloud database 500 in signal, so that the manager can remotely monitor and manage in real time through the remote terminal 800, and can directly remotely trace data, without going to the warehouse site, convenient operation, realize the intelligent operation of warehouse management, thereby effectively improving the efficiency of management and monitoring.
[0048] Obviously, the above embodiments of the utility model are only examples for clearly illustrating the utility model, and are not the limitation of the embodiments of the utility model. For ordinary skilled in the art, various obvious changes, re-adjustment and replacement can be carried out without departing from the protection scope of the utility model. Here, all the embodiments need not and cannot be exhausted. Any modification, equivalent replacement and improvement within the spirit and principle of the utility model should be included in the protection scope of the utility model claim.
Claims
1. An Internet of Things warehouse management monitoring system, characterized by, The warehouse cabinet (100) comprises a plurality of shelves (110) for placing goods (1), one side of the warehouse cabinet (100) is provided with a feeding table (200), and the feeding table (200) is provided with a scanner (210) for scanning material information of the goods (1). A visual assembly comprises a first camera (410) and a second camera (420), the first camera (410) is arranged towards the feeding table (200) to obtain image information of the goods (1) on the feeding table (200), and the second camera (420) is arranged towards the shelf (110) to obtain image information of the goods (1) placed on the shelf (110). A data terminal (300) is arranged on one side of the warehouse cabinet (100), and the data terminal (300) is signal connected with the scanner (210), the visual assembly and a cloud database (500) respectively. The goods (1) are placed between the adjacent two goods (1) on the shelf (110), and the goods (1) are placed between the adjacent two goods (1) on the shelf (110). The shelf (110) is provided with a conveying mechanism (120), the conveying mechanism (120) comprises a conveying belt (121) arranged at the bottom of the shelf (110) and a driving assembly for driving the conveying belt (121) to reciprocate, and the driving assembly is signal connected with the data terminal (300).
2. The IoT warehouse monitoring system of claim 1, wherein, The goods (1) are placed between the adjacent two goods (1) on the shelf (110), and the goods (1) are placed between the adjacent two goods (1) on the shelf (110).
3. The IoT bin monitoring system of claim 1 or 2, wherein, The feeding table (200) comprises a feeding platform (220) for placing the goods (1), the feeding platform (220) is surrounded by a protective plate (230), one side of the protective plate (230) is provided with a feeding port (240), and one side of the feeding platform (220) is further provided with a support frame (250).
4. The IoT warehouse monitoring system of claim 1 or 2, wherein, The feeding platform (220) is provided with a plurality of rollers (260) arranged side by side, and the arrangement direction of the plurality of rollers (260) is arranged towards the feeding port (240).
5. The IoT bin monitoring system of claim 4, wherein, The auxiliary feeding mechanism (700) comprises a rack (710), the rack (710) is provided with a feeding belt (720), the feeding belt (720) comprises an inlet end (721) and an outlet end (722), and the outlet end (722) is connected with the feeding table (200) or the feeding table (200) is arranged on the outlet end (722).
6. The IoT bin monitoring system of claim 1 or 2, wherein, 7. The IoT bin monitoring system of claim 6, wherein, The auxiliary feeding mechanism (700) further comprises a retreat-stop assembly (730), which comprises a mounting seat (731) and a retreat-stop piece hinged to the mounting seat (731), and the side of the mounting seat (731) away from the feeding end (721) is provided with a retreat-stop plate (733), and the side of the retreat-stop piece towards the feeding end (721) is provided with an inclined surface (7321).
8. The IoT bin monitoring system of claim 1 or 2, wherein, The visual assembly further comprises a third camera (430) arranged towards the data terminal (300) to acquire information of an operator operating the data terminal (300).
9. The IoT bin monitoring system of claim 1 or 2, wherein, Further comprising a remote terminal (800) in signal connection with the data terminal (300) and the cloud database (500) respectively.