CN112418770A - Logistics management system - Google Patents
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- 238000004806 packaging method and process Methods 0.000 claims abstract description 18
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- 238000007726 management method Methods 0.000 description 14
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- G06Q10/08—Logistics, e.g. warehousing, loading or distribution; Inventory or stock management
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- G06Q10/00—Administration; Management
- G06Q10/08—Logistics, e.g. warehousing, loading or distribution; Inventory or stock management
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Abstract
The invention discloses a logistics management system, relates to the technical field of logistics management, and aims to solve the problems that the existing logistics management system has less information fed back to a user and usually performs data updating display only when arriving at a transit place or destination. The output end of the warehousing management center is connected with the input end of the logistics warehouse through the warehousing conveying belt, the output end of the logistics warehouse is connected with the input end of the scheduling module, the output end of the scheduling module is connected with the input end of the packaging module, the output end of the packaging module is connected with the input end of the ex-warehouse module, the input end of the goods initial information acquisition terminal is electrically connected with the output end of the warehousing management center, the input end of the goods warehousing information acquisition terminal is electrically connected with the output end of the warehousing conveying belt, and the input end of the goods ex-warehouse information acquisition terminal is electrically connected with the output end of the ex-warehouse module.
Description
Technical Field
The invention relates to the technical field of logistics management, in particular to a logistics management system.
Background
The logistics management means that in the social reproduction process, according to the law of material data entity flow, the basic principle and scientific method of management are applied to plan, organize, command, coordinate, control and supervise logistics activities, so that each logistics activity is optimally coordinated and matched, the logistics cost is reduced, and the logistics efficiency and economic benefit are improved. The logistics system is an organic aggregate which is composed of two or more logistics functional units and aims at achieving logistics service. The "input" of the logistics system refers to the process of providing the elements such as labor, equipment, materials, resources and the like required by the logistics links such as purchasing, transportation, storage, circulation processing, loading, unloading, carrying, packaging, selling, logistics information processing and the like to the system from the external environment. The logistics system is an organic whole with specific functions, which is composed of materials to be conveyed and a plurality of dynamic elements which are mutually restricted and comprise related equipment, conveying tools, storage equipment, personnel, communication connection and the like in a certain time and space.
However, the information fed back to the user by the existing logistics management system is less, and data updating display is usually performed only when the user arrives at a transit place or a destination; therefore, the existing demand is not satisfied, and a logistics management system is provided for the demand.
Disclosure of Invention
The present invention provides a logistics management system to solve the problem that the prior logistics management system proposed in the above background art has less information fed back to the user and usually performs data update display only when arriving at a transit location or destination.
In order to achieve the purpose, the invention provides the following technical scheme: a logistics management system comprises a warehousing management center, a logistics warehouse, a scheduling module, a packaging module, a delivery module, a goods initial information acquisition terminal, a goods warehousing information acquisition terminal, a goods delivery information acquisition terminal and a central database, wherein the output end of the warehousing management center is connected with the input end of the logistics warehouse through a warehousing conveyor belt, the output end of the logistics warehouse is connected with the input end of the scheduling module, the output end of the scheduling module is connected with the input end of the packaging module, the output end of the packaging module is connected with the input end of the delivery module, the input end of the goods initial information acquisition terminal is electrically connected with the output end of the warehousing management center, the input end of the goods warehousing information acquisition terminal is electrically connected with the output end of the warehousing conveyor belt, and the input end of the goods delivery information acquisition terminal is electrically connected with the output end of the delivery module, the output ends of the goods initial information acquisition terminal, the goods warehousing information acquisition terminal and the goods ex-warehouse information acquisition terminal are electrically connected with the input end of the central database.
Preferably, the warehousing management center comprises a security inspection module, a scanning module, a printing module, a labeling module and an alarm module, wherein the output end of the security inspection module is connected with the input end of the scanning module.
Preferably, the output end of the scanning module is connected with the input ends of the alarm module and the printing module.
Preferably, the output end of the printing module is connected with the input end of the labeling module.
Preferably, the output end of the warehouse-out module is connected with the input end of a distribution vehicle, and the distribution vehicle is provided with a GPS positioning and tracking module.
Preferably, the output end of the GPS positioning and tracking module is wirelessly connected with the input end of the central database.
Preferably, a batch timing module is arranged on an output end of the central database, and an output end of the central database is connected with the recipient terminal through the batch timing module.
Preferably, the central database is in bidirectional connection with the logistics cloud.
Compared with the prior art, the invention has the beneficial effects that:
1. according to the invention, the warehousing management center, the warehousing conveyer belt and the ex-warehouse module are respectively connected with the cargo initial information acquisition terminal, the cargo warehousing information acquisition terminal and the cargo ex-warehouse information acquisition terminal, the cargo information, the warehousing information and the ex-warehouse information of the logistics can be respectively transmitted to the central database by the warehousing management center, the warehousing information and the cargo ex-warehouse information acquisition terminal, the central database further transmits the information to the logistics cloud, so that a receiver can call the cloud data through the mobile terminal, the logistics information condition can be mastered clearly at any time, as long as the display of a certain link is interrupted, the logistics company can be timely contacted to inquire whether the article dropping condition occurs, the condition that the article is difficult to find is avoided, and compared with the traditional logistics management system, the information display is more complete and comprehensive.
2. Through installing GPS localization tracking module on the delivery vehicle, GPS localization tracking module can master the positional information of vehicle in real time through satellite signal to with its sending to central database, further send information to the high in the clouds via central database, supply the addressee to transfer, conveniently master the freight transportation situation in real time, compare with traditional commodity circulation management system, need not wait for just to update positional information when freight train reachs the transfer place or destination, the inquiry commodity circulation progress is convenient more directly perceived.
3. By arranging the batch timing module at the output end of the central database, when goods arrive at a destination and the arrival information is fed back to the central database, the batch of goods can be equally divided into three groups by the batch timing module in the database, and the arrival information is sent to the receiver terminal in a mode that each group is separated by one hour to remind the receiver terminal to get the goods as soon as possible, so that the condition that the number of people who get the goods at a goods taking point is too many, the goods need to be queued to get the goods, and the goods are blocked is avoided.
4. Through set up security check module and alarm module in warehouse entry management center, the security check module is the X ray detector, can send into the X ray inspection passageway with the help of the conveyer belt with the goods of being examined and detect, have stronger penetrating power and high resolution, can effectively discern contraband in the goods, after finishing detecting, the cooperation scanning module is two-dimensional code on the quick discernment goods, in order to obtain addressor information and delivery address, when detecting out the contraband, scanning module can drive alarm module and implement the warning, and provide goods delivery place and addressor information, make things convenient for police's investigation of collecting evidence, in order to improve this set of logistics management system's security.
Drawings
FIG. 1 is a schematic diagram of the principles of the present invention;
FIG. 2 is a schematic diagram of the warehousing management center structure of the present invention;
in the figure: 1. a warehousing management center; 2. warehousing a conveying belt; 3. a logistics warehouse; 4. a scheduling module; 5. a packaging module; 6. a warehouse-out module; 7. a delivery vehicle; 8. a cargo initial information acquisition terminal; 9. a cargo warehousing information acquisition terminal; 10. a cargo ex-warehouse information acquisition terminal; 11. a GPS positioning and tracking module; 12. a central database; 13. a batch timing module; 14. a security check module; 15. a scanning module; 16. a printing module; 17. labeling the module; 18. and an alarm module.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1-2, an embodiment of the present invention is shown: a logistics management system comprises a warehousing management center 1, a logistics warehouse 3, a scheduling module 4, a packaging module 5, an ex-warehouse module 6, a goods initial information acquisition terminal 8, a goods warehousing information acquisition terminal 9, a goods ex-warehouse information acquisition terminal 10 and a central database 12, wherein the output end of the warehousing management center 1 is connected with the input end of the logistics warehouse 3 through a warehousing conveyor belt 2, the logistics warehouse 3 is used for temporarily storing and transferring goods, the output end of the logistics warehouse 3 is connected with the input end of the scheduling module 4, the scheduling module 4 can allocate and distribute vehicles 7 according to the goods order information and generate corresponding delivery order numbers, the output end of the scheduling module 4 is connected with the input end of the packaging module 5, the packaging module 5 is mainly responsible for carrying out secondary protective packaging on products by a logistics company and attaching the order numbers to the outer packaging surface, the output end of the packaging module 5 is connected with the input end of the ex-warehouse module 6, the ex-warehouse module 6 can load the dispatched goods, the input end of the goods initial information acquisition terminal 8 is electrically connected with the output end of the in-warehouse management center 1, the goods initial information acquisition terminal 8 can acquire the addresser information and the delivery address of the goods, the input end of the goods in-warehouse information acquisition terminal 9 is electrically connected with the output end of the in-warehouse conveying belt 2, the input end of the goods out-warehouse information acquisition terminal 10 is electrically connected with the output end of the out-warehouse module 6, the output ends of the goods initial information acquisition terminal 8, the goods in-warehouse information acquisition terminal 9 and the goods out-warehouse information acquisition terminal 10 are electrically connected with the input end of the central database 12, and the central database 12 is used for integrating and storing the logistics data and sending the logistics data to the mobile phone terminal of a receiver.
Further, the warehousing management center 1 comprises a security inspection module 14, a scanning module 15, a printing module 16, a labeling module 17 and an alarm module 18, wherein the output end of the security inspection module 14 is connected with the input end of the scanning module 15, the security inspection module 14 is an MD-5030G type X-ray inspection instrument, goods to be inspected can be sent into an X-ray inspection channel for detection by means of a conveying belt, the X-ray inspection channel has strong penetrating power and high resolution, so that contraband in the goods can be effectively identified, the scanning module 15 is a code scanner, and a two-dimensional code on the goods can be rapidly identified, so that sender information and a delivery address can be obtained.
Further, the output end of the scanning module 15 is connected to the input ends of the alarm module 18 and the printing module 16, when the security inspection module 14 detects contraband, the scanning module 15 can drive the alarm module 18 to alarm, and provide information of a delivery location and a sender of goods, so that police can conveniently take evidence and investigate, if the security inspection module detects that the goods are safe goods, the security inspection module is transported to the printing module 16, and the sender, the information of goods and a delivery address identified by the scanning module 15 are printed by the printing module 16.
Further, the output end of the printing module 16 is connected with the input end of the labeling module 17, and the labeling module 17 can attach the printing sheet to the goods by means of a labeling machine.
Further, the output end of the warehouse-out module 6 is connected with the input end of the delivery vehicle 7, the GPS positioning and tracking module 11 is installed on the delivery vehicle 7, the warehouse-out module 6 can load the dispatched goods, the GPS positioning and tracking module 11 is installed on the delivery vehicle 7, the model number of the GPS positioning and tracking module is SKG12Q, and the position information of the vehicle can be known in real time through satellite signals.
Further, the output end of the GPS positioning and tracking module 11 is wirelessly connected with the input end of the central database 12, and the GPS positioning and tracking module 11 can send the position information of the truck to the central database 12, and further send the information to the cloud end via the central database 12 for the consignee to take, so as to achieve the purpose of mastering the freight status in real time.
Further, a batch timing module 13 is arranged on an output end of the central database 12, an output end of the central database 12 is connected with a receiver terminal through the batch timing module 13, after the central database 12 receives a signal that the goods reach a destination, the batch timing module 13 equally divides the goods of the batch into three groups, and the arrival information is sent to the receiver terminal at intervals of one hour in each group to remind the receiver terminal of getting the goods as soon as possible, so that the situation that too many people are required to queue for getting the goods at a goods getting point and congestion is caused due to the fact that the same batch sends information at the same time is avoided.
Further, the central database 12 is connected with the logistics cloud in a bidirectional mode, and due to the fact that the central database 12 is connected with the logistics cloud, information collected by the cargo initial information collection terminal 8, the cargo warehousing information collection terminal 9 and the cargo ex-warehousing information collection terminal 10 can be sent to the cloud end, a receiver can call cloud data through the mobile terminal, logistics information can be mastered clearly at any time, and when a certain link is displayed and interrupted, the receiver can also be in contact with a logistics company to inquire whether a piece dropping condition occurs or not.
The working principle is as follows: when in use, goods firstly enter the warehousing management center 1, the security inspection module 14 in the management center detects the goods through an X-ray inspection instrument, whether contraband exists in the goods is checked, after the detection is finished, the scanning module 15 identifies two-dimensional codes on the goods to obtain addresser information and a shipping address, when the contraband is detected, the scanning module 15 can drive the alarm module 18 to alarm, the shipping place and the addresser information of the goods are provided, the evidence obtaining investigation of police is facilitated, if the goods are detected to be safe goods, the goods are conveyed to the printing module 16, the addresser, the goods information and the shipping address identified by the scanning module 15 are printed out by the printing module 16, the goods are conveyed to the labeling module 17, the printing bill is attached to the goods by the labeling machine, the goods are conveyed to the logistics warehouse 3 by the warehousing conveyer belt 2 to be stored, the goods entering the warehouse pass through the scheduling module 4 according to the bill information, allocating a delivery vehicle 7, generating a corresponding delivery order number, further sending the delivery order number to a packaging module 5, carrying out secondary protection packaging on a product, attaching the order number to the surface of an outer package, enabling the packaged goods to come to a delivery module 6 for loading, sending the goods to a destination by the delivery vehicle 7, enabling a goods initial information acquisition terminal 8, a goods warehousing information acquisition terminal 9 and a goods delivery information acquisition terminal 10 to respectively acquire basic information of the goods and warehousing and delivery information and send the basic information to a central database 12 in the process, further sending the information to a logistics cloud end by the central database 12, enabling a receiver to call cloud end data through a mobile terminal, clearly mastering logistics information constantly, timely contacting a logistics company to inquire whether a piece dropping condition occurs when a certain link displays interruption, and avoiding the occurrence of piece searching difficulty, the logistics distribution vehicle 7 is provided with a GPS positioning tracking module 11, the positioning module is of an SKG12Q model, position information of a truck can be sent to the central database 12 in real time, the information is further sent to the cloud end through the central database 12, a receiver can master freight transportation conditions in real time, after the distribution vehicle 7 arrives at a destination, a freight arrival signal is sent to the central database 12, at the moment, the central database 12 equally divides the batch of cargos into three groups through the batch timing module 13, arrival information is sent to a receiver terminal in a mode that each group is separated by one hour, and the receiver is reminded to pick the cargos as soon as possible, so that the situation that the number of people who pick the cargos at a same time is too many, the cargos need to be queued to be picked up, and the situation is congested is avoided.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Claims (8)
1. The utility model provides a logistics management system, includes warehouse entry management center (1), logistics warehouse (3), scheduling module (4), packaging module (5), ex-warehouse module (6), goods initial information acquisition terminal (8), goods warehouse entry information acquisition terminal (9), goods ex-warehouse information acquisition terminal (10) and central database (12), its characterized in that: the warehouse management system is characterized in that the output end of the warehouse management center (1) is connected with the input end of a logistics warehouse (3) through a warehouse conveying belt (2), the output end of the logistics warehouse (3) is connected with the input end of a scheduling module (4), the output end of the scheduling module (4) is connected with the input end of a packaging module (5), the output end of the packaging module (5) is connected with the input end of a warehouse-out module (6), the input end of a goods initial information acquisition terminal (8) is electrically connected with the output end of the warehouse management center (1), the input end of a goods warehouse-in information acquisition terminal (9) is electrically connected with the output end of the warehouse conveying belt (2), the input end of a goods warehouse-out information acquisition terminal (10) is electrically connected with the output end of the warehouse-out module (6), and the output ends of the goods initial information acquisition terminal (8), the goods warehouse information acquisition terminal (9) and the goods warehouse-out information acquisition terminal (10 (12) The input terminals are electrically connected.
2. The physical distribution management system according to claim 1, wherein: the warehouse entry management center (1) comprises a security inspection module (14), a scanning module (15), a printing module (16), a labeling module (17) and an alarm module (18), wherein the output end of the security inspection module (14) is connected with the input end of the scanning module (15).
3. The physical distribution management system according to claim 2, wherein: the output end of the scanning module (15) is connected with the input ends of the alarm module (18) and the printing module (16).
4. The physical distribution management system according to claim 2, wherein: the output end of the printing module (16) is connected with the input end of the labeling module (17).
5. The physical distribution management system according to claim 1, wherein: the output end of the warehouse-out module (6) is connected with the input end of a distribution vehicle (7), and a GPS positioning tracking module (11) is installed on the distribution vehicle (7).
6. The physical distribution management system according to claim 5, wherein: the output end of the GPS positioning and tracking module (11) is wirelessly connected with the input end of the central database (12).
7. The physical distribution management system according to claim 1, wherein: the system is characterized in that a batch timing module (13) is arranged on the output end of the central database (12), and the output end of the central database (12) is connected with a receiver terminal through the batch timing module (13).
8. The physical distribution management system according to claim 7, wherein: the central database (12) is in bidirectional connection with the logistics cloud.
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CN113743868A (en) * | 2021-09-06 | 2021-12-03 | 广西职业技术学院 | Logistics cargo management device |
CN115186854A (en) * | 2022-09-07 | 2022-10-14 | 艾斯特国际安全技术(深圳)有限公司 | Certificate acquisition control method, device and system and storage medium |
CN115186854B (en) * | 2022-09-07 | 2022-12-16 | 艾斯特国际安全技术(深圳)有限公司 | Certificate acquisition control method, device and system and storage medium |
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