A smart logistics and distribution dispatch system

The intelligent logistics and distribution scheduling system solves the problems of low order processing efficiency and unreasonable route planning in traditional logistics scheduling. It realizes intelligent order allocation and real-time route optimization, improves delivery efficiency and customer satisfaction, and extends the service life of GPS locators.

CN122134222APending Publication Date: 2026-06-02SUZHOU WEIWO NETWORK TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SUZHOU WEIWO NETWORK TECHNOLOGY CO LTD
Filing Date
2026-03-02
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Traditional logistics and distribution scheduling methods rely on human experience, making it difficult to quickly process massive amounts of order information. This leads to unreasonable delivery routes, increased transportation mileage and time, and an inability to adjust delivery plans in real time, affecting efficiency and quality. Furthermore, vehicle GPS trackers are prone to failure due to vibration.

Method used

The system employs an intelligent logistics and distribution dispatch system, which includes modules for order receiving, data analysis, intelligent dispatching, route planning, vehicle monitoring, and user interaction. It combines GPS positioning devices, sensors, and wireless communication technology to achieve intelligent order allocation, real-time route optimization, and vehicle status monitoring, while providing a user-friendly interface.

Benefits of technology

It improves order processing efficiency and accuracy, reduces transportation mileage and costs, ensures the smooth completion of delivery tasks, enhances customer satisfaction and logistics management efficiency, extends the lifespan of GPS trackers, and ensures the accuracy of location data.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application pertains to the field of logistics and distribution, specifically an intelligent logistics and distribution dispatch system. The system includes a terminal server comprising an order receiving module, a data analysis module, an intelligent dispatch module, a vehicle monitoring module, a route planning module, a communication module, and a user exchange module. The order receiving module receives logistics and distribution order information from e-commerce platforms, customer terminals, and other channels, including order number, shipping address, delivery address, cargo weight, volume, and delivery time requirements. After formatting the order information, it transmits it to the data analysis module, which analyzes and processes the received order information. This application features a reasonable design, achieving intelligent order processing and efficient vehicle dispatch through multi-module collaboration. Combined with an optimized design incorporating GPS positioning devices, it improves delivery efficiency, reduces costs, ensures stable equipment operation, and enhances customer and logistics management satisfaction.
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Description

Technical Field

[0001] This application relates to the field of logistics and distribution technology, and in particular to an intelligent logistics and distribution scheduling system. Background Technology

[0002] With the rapid development of e-commerce, the logistics and delivery industry has experienced explosive growth, with a sharp increase in order volume, which has placed higher demands on the efficiency and accuracy of logistics and delivery.

[0003] Traditional logistics and distribution scheduling methods largely rely on manual experience, which presents numerous problems. On the one hand, manual scheduling struggles to quickly process massive amounts of order information, easily leading to unreasonable delivery route planning, resulting in increased transportation mileage and longer delivery times. This not only raises logistics costs but also reduces customer satisfaction.

[0004] On the other hand, manual dispatching cannot obtain real-time dynamic information such as traffic conditions and vehicle status, and cannot adjust the delivery plan in time when encountering emergencies, which further affects delivery efficiency and service quality. Finally, the vehicle GPS locator is prone to malfunction due to vibration, affecting its use. Therefore, we propose an intelligent logistics delivery dispatching system to solve the above problems.

[0005] Application content

[0006] The purpose of this application is to propose an intelligent logistics distribution scheduling system to address the shortcomings of existing technologies.

[0007] To achieve the above objectives, this application adopts the following technical solution:

[0008] A logistics delivery intelligent dispatching system includes a terminal server, which comprises an order receiving module, a data analysis module, an intelligent dispatching module, a vehicle monitoring module, a route planning module, a communication module, and a user exchange module. The order receiving module receives logistics delivery order information from e-commerce platforms, customer terminals, and other channels, including order number, shipping address, delivery address, cargo weight, volume, delivery time requirements, etc., and transmits the formatted order information to the data analysis module.

[0009] The data analysis module is used to analyze and process the received order information and divide the orders into regions based on the shipping address and delivery address;

[0010] The intelligent scheduling module includes an information acquisition module, a model building module, a solution analysis module, an instruction generation module, and a sending module. The intelligent scheduling module is used to allocate orders based on order grouping information and predicted data provided by the data analysis module, combined with vehicle status information fed back by the vehicle monitoring module. It comprehensively considers factors such as delivery time requirements and the rationality of vehicle routes to ensure timely and efficient delivery. The route planning module includes an order information module, a traffic information module, a route calculation module, a route evaluation module, and a selection module. The route planning module is used to plan the optimal delivery route for each vehicle based on the order information allocated by the intelligent scheduling module and the vehicle location information provided by the vehicle monitoring module, combined with real-time traffic data, using a route planning algorithm.

[0011] Preferably, the vehicle monitoring module includes devices such as GPS positioning devices and sensors installed on the vehicle to collect information in real time, such as the vehicle's location, speed, fuel consumption, and vehicle malfunctions, and transmits this information to the intelligent dispatch module via a communication module. Simultaneously, this module can also receive instructions from the intelligent dispatch module, such as changing the driving route or adjusting delivery tasks, and convey these instructions to the driver.

[0012] Preferably, the GPS positioning device includes a mounting base, a rubber sleeve, a fixed housing, and a GPS locator. The mounting base is installed on the vehicle via a detachable structure. A rubber sleeve is installed at the bottom of the mounting base, and a fixed housing is installed at the bottom of the rubber sleeve. A buffer mechanism is provided between the fixed housing and the mounting base, and the GPS locator is installed inside the fixed housing.

[0013] Preferably, the buffer mechanism includes a damper and buffer springs. The top of the damper is mounted on the bottom of the mounting base, and the bottom end of the damper is fixedly mounted on the fixed shell. Multiple buffer springs are fixedly mounted between the mounting base and the fixed shell, and the buffer springs are movably sleeved on the damper.

[0014] Preferably, the disassembly and assembly mechanism includes a fixing plate, threaded holes, and fixing bolts. The fixing plate is fixedly installed on both sides of the mounting base, the threaded holes are opened on the fixing plate, and the fixing bolts are installed in the threads of the threaded holes.

[0015] Preferably, heat-absorbing sheets that are in contact with the GPS locator are fixedly installed on the inner walls of both sides of the fixed shell, and multiple heat-dissipating sheets are fixedly installed at equal intervals on one side of the heat-absorbing sheets, and the multiple heat-dissipating sheets are arranged at equal intervals.

[0016] Preferably, the communication module adopts wireless communication technology to realize data transmission between the order receiving module, data analysis module, intelligent scheduling module, vehicle monitoring module, route planning module and user interaction module, and also supports data interaction between the system and external devices, such as e-commerce platforms, customer terminals, traffic management departments, etc.

[0017] Preferably, the user interaction module provides an interface for customers and logistics managers. Customers can use this module to check order delivery progress, estimated arrival time, and other information; logistics managers can use this module to view vehicle operating status, order execution status, and manually adjust and intervene in scheduling plans.

[0018] The beneficial effects of this application are:

[0019] 1. Through the collaborative work of the order receiving module, data analysis module, and intelligent scheduling module, massive amounts of order information can be processed efficiently, and intelligent order allocation can be achieved, thereby improving the efficiency and accuracy of order processing.

[0020] 2. The route planning module combines real-time traffic data and uses advanced route planning algorithms to plan the optimal delivery route for vehicles, effectively reducing transportation mileage and delivery time, and lowering logistics costs.

[0021] 3. The vehicle monitoring module collects vehicle status information in real time and feeds it back to the intelligent dispatch module, enabling the system to keep abreast of the vehicle's operation and quickly adjust the delivery plan in case of emergencies, thus ensuring the smooth completion of delivery tasks.

[0022] 4. The user interaction module provides a convenient operating interface for customers and logistics managers, improving customer satisfaction and logistics management efficiency.

[0023] 5. The combination of the fixing plate and fixing bolts facilitates the installation of the GPS locator on the vehicle. The damper and buffer spring provide buffer protection for the GPS locator. Finally, the heat-absorbing plate and heat sink provide heat dissipation for the GPS locator. Attached Figure Description

[0024] Figure 1 This is a block diagram of an intelligent logistics and distribution scheduling system proposed in this application;

[0025] Figure 2 This is a block diagram of the intelligent scheduling module of a logistics distribution intelligent scheduling system proposed in this application;

[0026] Figure 3 This is a block diagram of the path planning module of an intelligent logistics distribution scheduling system proposed in this application;

[0027] Figure 4 A three-dimensional structural diagram of the GPS locator installation for the intelligent logistics distribution scheduling system proposed in this application;

[0028] Figure 5 for Figure 4A partial cross-sectional three-dimensional structural diagram.

[0029] In the diagram: 101, mounting base; 102, rubber sleeve; 103, fixing shell; 104, GPS locator; 201, fixing plate; 202, threaded hole; 203, fixing bolt; 301, damper; 302, buffer spring; 401, heat absorption plate; 402, heat sink. Detailed Implementation

[0030] The following is in conjunction with the appendix Figure 1-5 This application will be described in further detail.

[0031] This application discloses an intelligent logistics and distribution scheduling system.

[0032] Reference Figure 1-5 A logistics delivery intelligent dispatching system includes a terminal server, which comprises an order receiving module, a data analysis module, an intelligent dispatching module, a vehicle monitoring module, a route planning module, a communication module, and a user exchange module. The order receiving module receives logistics delivery order information from e-commerce platforms, customer terminals, and other channels, including order number, shipping address, delivery address, cargo weight, volume, delivery time requirements, etc., and transmits the formatted order information to the data analysis module. The data analysis module analyzes and processes the received order information and divides the orders into regions based on the shipping address and delivery address.

[0033] In this embodiment, the intelligent scheduling module includes an information acquisition module, a model building module, a solution analysis module, an instruction generation module, and a sending module. The intelligent scheduling module uses order grouping information and predicted data provided by the data analysis module, combined with vehicle status information fed back by the vehicle monitoring module, to comprehensively consider factors such as delivery time requirements and the rationality of vehicle routes when allocating orders, ensuring that orders can be delivered on time and efficiently. Through multi-source data fusion and intelligent algorithm optimization, the empty-run rate of vehicles is effectively reduced, maximizing the utilization of logistics resources and significantly improving the overall operational efficiency of logistics distribution.

[0034] In this embodiment, the route planning module includes an order information module, a traffic information module, a route calculation module, a route evaluation module, and a selection module. The route planning module is used to plan the optimal delivery route for each vehicle based on the order information allocated by the intelligent scheduling module and the vehicle location information provided by the vehicle monitoring module, combined with real-time traffic data and a route planning algorithm. With the help of dynamic real-time traffic updates and intelligent route optimization, congested road sections can be effectively avoided, vehicle travel time can be shortened, and fuel consumption and operating costs can be reduced.

[0035] In this embodiment, the vehicle monitoring module includes devices such as GPS positioning devices and sensors installed on the vehicle to collect real-time information on the vehicle's location, speed, fuel consumption, and vehicle malfunctions. This information is then transmitted to the intelligent dispatch module via a communication module. Simultaneously, this module can also receive instructions from the intelligent dispatch module, such as changing routes or adjusting delivery tasks, and relay these instructions to the driver. This enables comprehensive real-time monitoring of the vehicle's operating status, allowing management personnel to promptly grasp vehicle dynamics, quickly respond to emergencies, and ensure the smooth completion of delivery tasks.

[0036] In this embodiment, the GPS positioning device includes a mounting base 101, a rubber sleeve 102, a fixing shell 103, and a GPS locator 104. The mounting base 101 is installed on a vehicle via a detachable structure. The rubber sleeve 102 is installed at the bottom of the mounting base 101, and the fixing shell 103 is installed at the bottom of the rubber sleeve 102. A buffer mechanism is provided between the fixing shell 103 and the mounting base 101. The GPS locator 104 is installed inside the fixing shell 103. This structural design effectively improves the convenience and stability of GPS positioning device installation. The buffer mechanism reduces the impact of vehicle vibration on the device, ensuring the accuracy and reliability of positioning data.

[0037] In this embodiment, the buffer mechanism includes a damper 301 and buffer springs 302. The top of the damper 301 is mounted on the bottom of the mounting base 101, and the bottom end of the damper 301 is fixedly mounted on the fixed housing 103. Multiple buffer springs 302 are fixedly mounted between the mounting base 101 and the fixed housing 103, and the buffer springs 302 are movably sleeved on the damper 301. Through the synergistic effect of the damper 301 and the buffer springs 302, the vibration and impact generated during vehicle operation can be significantly reduced, extending the service life of the GPS locator 104 and reducing equipment maintenance costs.

[0038] In this embodiment, the disassembly and assembly mechanism includes a fixing plate 201, threaded holes 202, and fixing bolts 203. The fixing plate 201 is fixedly installed on both sides of the mounting base 101. The threaded holes 202 are formed on the fixing plate 201, and the fixing bolts 203 are installed in the internal threads of the threaded holes 202. The simple and reliable threaded connection method makes the installation and disassembly of the GPS positioning device easier and faster, facilitates the later maintenance and replacement of the equipment, and improves work efficiency.

[0039] Preferably, heat-absorbing plates 401 that contact the GPS locator 104 are fixedly installed on the inner walls of both sides of the fixed housing 103. Multiple heat sinks 402 are fixedly installed at equal intervals on one side of the heat-absorbing plates 401. This combination of heat-absorbing plates 401 and heat sinks 402 allows for rapid dissipation of heat generated by the GPS locator 104, preventing performance degradation due to overheating and ensuring stable long-term operation of the positioning device.

[0040] In this embodiment, the communication module adopts wireless communication technology to realize data transmission between the order receiving module, data analysis module, intelligent scheduling module, vehicle monitoring module, route planning module and user interaction module. At the same time, it supports data interaction between the system and external devices, such as e-commerce platforms, customer terminals, traffic management departments, etc.

[0041] In this embodiment, the user interaction module provides an interface for customers and logistics managers. Customers can use this module to check order delivery progress, estimated arrival time, and other information; logistics managers can use this module to view vehicle operating status, order execution status, and manually adjust and intervene in scheduling plans.

[0042] In this application, the collaborative work of the order receiving module, data analysis module, and intelligent scheduling module enables efficient processing of massive order information, achieving intelligent order allocation and improving the efficiency and accuracy of order processing. The route planning module, combined with real-time traffic data, utilizes advanced route planning algorithms to plan the optimal delivery route for vehicles, effectively reducing transportation mileage and delivery time, and lowering logistics costs. The vehicle monitoring module collects vehicle status information in real time and feeds it back to the intelligent scheduling module, enabling the system to promptly grasp the vehicle's operating status and quickly adjust the delivery plan in case of emergencies, ensuring the smooth completion of delivery tasks. The user interaction module provides a convenient operating interface for customers and logistics management personnel, improving customer satisfaction and logistics management efficiency. The cooperation of the fixing plate 201 and fixing bolts 203 facilitates the installation of the GPS locator 104 onto the vehicle. The damper 301 and buffer spring 302 provide buffer protection for the GPS locator 104. Finally, the heat absorption plate 401 and heat sink 402 achieve the purpose of heat dissipation for the GPS locator 104, extending its service life.

[0043] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A logistics distribution intelligent dispatching system, characterized in that, It includes a terminal server, which comprises an order receiving module, a data analysis module, an intelligent scheduling module, a vehicle monitoring module, a route planning module, a communication module, and a user exchange module; The order receiving module is used to receive logistics and delivery order information from e-commerce platforms, customer terminals and other channels, and transmit the order information to the data analysis module after formatting the order information. The data analysis module is used to analyze and process the received order information and divide the orders into regions based on the shipping address and delivery address; The intelligent scheduling module includes an information acquisition module, a model building module, a scheme analysis module, an instruction generation module, and a sending module. The intelligent scheduling module is used to ensure that orders can be delivered on time and efficiently when allocating orders based on the order grouping information and prediction data provided by the data analysis module. The route planning module includes an order information module, a traffic information module, a route calculation module, a route evaluation module, and a selection module. The route planning module is used to plan the optimal delivery route for each vehicle based on the order information allocated by the intelligent scheduling module and the vehicle location information provided by the vehicle monitoring module, combined with real-time traffic data and using a route planning algorithm.

2. The intelligent logistics distribution scheduling system according to claim 1, characterized in that, The vehicle monitoring module includes devices such as GPS positioning devices and sensors installed on the vehicle to collect information such as vehicle location, driving speed, fuel consumption, and vehicle malfunctions in real time.

3. The intelligent logistics distribution scheduling system according to claim 2, characterized in that, The GPS positioning device includes a mounting base (101), a rubber sleeve (102), a fixed shell (103), and a GPS locator (104). The mounting base (101) is installed on the vehicle through a disassembly and assembly structure. The bottom of the mounting base (101) is fitted with a rubber sleeve (102), and the bottom of the rubber sleeve (102) is fitted with a fixed shell (103). A buffer mechanism is provided between the fixed shell (103) and the mounting base (101). The GPS locator (104) is installed inside the fixed shell (103).

4. The intelligent logistics distribution scheduling system according to claim 3, characterized in that, The buffer mechanism includes a damper (301) and a buffer spring (302). The top of the damper (301) is mounted on the bottom of the mounting base (101), and the bottom end of the damper (301) is fixedly mounted on the fixed shell (103). Multiple buffer springs (302) are fixedly mounted between the mounting base (101) and the fixed shell (103), and the buffer springs (302) are movably sleeved on the damper (301).

5. The intelligent logistics distribution scheduling system according to claim 3, characterized in that, The disassembly and assembly mechanism includes a fixing plate (201), a threaded hole (202), and a fixing bolt (203). The fixing plate (201) is fixedly installed on both sides of the mounting base (101). The threaded hole (202) is opened on the fixing plate (201), and the fixing bolt (203) is installed in the threaded hole (202).

6. The intelligent logistics distribution scheduling system according to claim 3, characterized in that, Heat-absorbing plates (401) that are in contact with the GPS locator (104) are fixedly installed on the inner walls of both sides of the fixed shell (103). Multiple heat sinks (402) are fixedly installed at equal intervals on one side of the heat-absorbing plate (401), and the multiple heat sinks (402) are arranged at equal intervals.

7. The intelligent logistics distribution scheduling system according to claim 1, characterized in that, The communication module uses wireless communication technology to realize data transmission between the order receiving module, data analysis module, intelligent scheduling module, vehicle monitoring module, route planning module and user interaction module.

8. The intelligent logistics distribution scheduling system according to claim 1, characterized in that, The user interaction module provides an interface for customers and logistics managers. Customers can use this module to check the delivery progress and estimated arrival time of their orders. Logistics managers can use this module to view the vehicle's operating status and the execution of orders, and can also manually adjust and intervene in the scheduling plan.