This disclosure relates to a picking information acquisition method. More specifically, the disclosure relates to a picking information acquisition and display method applicable to logistics warehouses with automatic transport devices.
In modern logistics warehouses, in order to reduce the number of on-site manpower and free the hands of on-site workers, many logistics warehouses have started introducing automatic transport devices to assist in the handling of goods.
However, how to automatically acquire picking information intelligently between an automatic transport device and a remote server and display the picking information to on-site workers in time has always been a problem that modern logistics warehouses desire to solve.
For this reason, an intelligent method for acquiring and displaying picking information is urgently needed to be applied to logistics warehouses with automatic transport devices, thereby opening up the links of information circulation and maximizing the efficiency of goods handling in smart warehouses.
The object of the disclosure is to provide an automatic transport device and picking information acquisition and display method thereof, and a picking information acquisition method applicable to a logistics warehouse with an automatic transport device.
According to a first aspect of the disclosure, an automatic transport device is provided, wherein the automatic transport device at least comprises: a distance sensor, which is arranged in the vicinity of the automatic transport device for measuring a distance between a surrounding object and the automatic transport device; a movable chassis provided with a plurality of power wheels for driving the automatic transport device; a bearing part arranged above or inside the movable chassis and provided with a space for bearing a container; a container sensor for sensing whether the container is associated with the automatic transport device; a wireless communication module for transmitting a serial number of the container to a remote server after it is determined that the container is associated with the automatic transport device, and receiving picking information fed back by the remote server; and a display screen for displaying the serial number of the container and the picking information after reception of the picking information from the remote server by the wireless communication module.
According to a second aspect of the disclosure, a picking information acquisition method of an automatic transport device is provided, the method at least comprising the following steps: associating a container with the automatic transport device by using a container sensor; transmitting a serial number of the container to a remote server and receiving picking information fed back by the remote server by using a wireless communication module; associating the three of (1) the serial number of the container, (2) the picking information, and (3) a vehicle number of the automatic transport device with one another; and displaying the associated serial number of the container, the picking information, and the vehicle number on a display screen.
According to a third aspect of the disclosure, a picking information acquisition method is provided, which is applicable to a logistics warehouse with an automatic transport device, the method at least comprising the following steps: associating an empty container with the automatic transport device in such a manner that a serial number of the container is associated with a vehicle number of the automatic transport device; displaying the associated serial number of the container and the vehicle number on a display screen of the automatic transport device; the automatic transport device transmitting the vehicle number and the serial number of the container to a remote server, and receiving picking information fed back by the remote server; associating the picking information with the serial number of the container number and with the vehicle number; and displaying the associated serial number of the container, the picking information and the vehicle number on the display screen of the automatic transport device.
The picking information acquisition and display method according to the present disclosure achieves quick combination and release of picking, container and vehicle information between the automatic transport device and the remote server, and is capable of displaying various pieces of information to on-site workers in time, which can thereby open up the links of information circulation in smart logistics warehouses and maximize the efficiency of goods handling in smart logistics scenarios.
The principles, features and advantages of the disclosure can be better understood through the following detailed description of the disclosure with reference to the attached drawings, including:
For a clearer understanding of the technical problem to be solved, the technical solutions and the advantageous technical effects of the disclosure, the disclosure will be further explained in greater detail with reference to the attached drawings and several exemplary embodiments. It should be understood that the specific embodiments described herein are only for the purpose of interpreting, rather than limiting the scope of protection of the disclosure. “Associate/association”, as mentioned below, refers to the interconnection of particular data (which may be performed by using particular data structures such as linked lists, etc.) in a computer program, and the associated data can be displayed all together on a screen. In this way, the operating user can have an easier understanding of the relations between the data.
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Step S01: The automatic transport device 100 moves autonomously and reaches a locating point A. The locating point A is located near the conveyor belt 600, and the automatic transport device 100 by this time does not carry any container 200.
Step S02: The automatic transport device 100 obtains an empty container 200 from the conveyor belt 600, and the way of obtaining may be manual handling, or mechanical equipment handling (for example, by a conveyor belt or mechanical arm). After the automatic transport device 100 obtains the empty container, the on-site worker triggers the first button 111 on the display screen 110, and uses the container sensor 120 to associate the container 200 with the automatic transport device 100. To be more specific, after sensing an identification mark of the container 200 with the container sensor 120, the automatic transport device 100 or the remote server 500 associates the serial number 410 of the container with the vehicle number 420, and the display screen 110 of the automatic transport device 100 simultaneously displays the serial number 410 of the container and the vehicle number 420.
Step S03: The automatic transport device 100 uses a wireless communication module to transmit the serial number 410 of the container 200 to the remote server 500. In one embodiment, the vehicle number 420 is also transmitted to the remote server 500 at the same time. The remote server 500, depending on a capacity corresponding to the serial number 410 of the container, allocates a suitable order corresponding to the serial number 410 of the container, and feeds back picking information 430 containing the order information to the automatic transport device 100.
Step S04: The automatic transport device 100 receives the picking information 430 fed back by the remote server 500.
Step S05: The automatic transport device 100 associates the three of (1) the serial number 410 of the container, (2) the picking information 430, and (3) the vehicle number 420 of the automatic transport device with one another.
Step S06: The automatic transport device 100 displays the associated serial number 410 of the container, the picking information 430, and the vehicle number 420 on the display screen 110 of the automatic transport device 100.
Step S07: The automatic transport device 100 moves autonomously to goods storage areas to pick goods. Upon arrival of the automatic transport device 100 at a target goods storage area, the on-site worker or mechanical arm places the relevant goods into the corresponding container 200 according to the picking information 430 displayed on the display screen 110. At this point, the on-site worker can quickly understand the connecting relations between the three of the serial number 410 of the container, the vehicle number 420, and the picking information 430 through the display screen 110.
Step S08: The automatic transport device 100 finishes the picking of goods, and moves autonomously to a locating point B. The locating point B is located near the conveyor belt 600 but, different from the locating point A, is closer to an upstream position of the conveyor belt than the locating point A, the upstream position referring to the vicinity of a starting point where the transport of the conveyor belt starts, and the automatic transport device 100 by this time carries the container 200 loaded with goods.
Step S09: The on-site worker or mechanical arm uses the container sensor 120 to release the association between the container 200 and the automatic transport device 100. To be more specific, in the case that the container sensor 120 is a radio frequency identification device, when the container sensor 120 senses a radio frequency identification tag of the container 200 being away from the automatic transport device 100, the processor of the automatic transport device 100 releases the association between the serial number 410 of the container and the vehicle number 420, and meanwhile releases the association between the picking information 430 and the vehicle number 420; after releasing, the display screen 110 no longer displays the serial number 410 of the container and the picking information 430 (e.g., back to the picture of the display screen 110 in the upper left of
The picking information acquisition and display method of the disclosure achieves quick combination and release of picking, container and vehicle information between the automatic transport device and the remote server, and is capable of displaying various pieces of information to on-site workers in time, which can thereby open up the links of information circulation in smart warehouses and maximize the efficiency of goods handling in smart logistics scenarios.
It should be particularly pointed out that all the above exemplarily described contents and illustrations thereof are applicable to various scenarios provided with an automatic transport device, for example, to a self-driven shopping cart in a supermarket, or a self-driven driverless express vehicle in the city; therefore, the above exemplary description is not limited to logistics warehouse scenarios, and all the contents of the specific embodiments are only as exemplification rather than limitation.
Number | Date | Country | Kind |
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201910546608.7 | Jun 2019 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2020/097401 | 6/22/2020 | WO |