WAREHOUSE MANAGEMENT SYSTEM, PICKING AND STORAGE SYSTEM AND PICKING PROCESS WITH EYE-CATCHERS WHOSE COLORS CAN BE AUTOMATICALLY SWITCHED
Patent Information
- Application Number
- DE502020011127
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-02-15
- Filing Date
- 2020-02-13
- Publication Date
- 2025-06-18
- Estimated Expiration
- 2040-02-13
AI Technical Summary
Existing warehouse management systems lack efficient methods to guide pickers intuitively and reduce fatigue during order picking, particularly in large warehouses with multiple storage units and picking trolleys.
The implementation of a warehouse management system that utilizes eye-catching indicators with remotely switchable colors on picking trolleys and access stations, synchronizing their colors to easily identify matching picking trolleys and access stations, thereby streamlining the picking process.
This solution enhances picker efficiency by providing intuitive color-coded guidance, reducing fatigue, and improving the overall speed and accuracy of order picking operations.
Description
[0001] The invention relates to a warehouse management system for controlling order picking, in particular paperless order picking, by means of at least one order picking trolley for depositing articles from a set of order picking orders and by means of at least one storage unit with storage locations for storing the articles and at least one access station for accessing the articles by a picker. The invention also relates to an order picking and storage system which is configured with at least one warehouse management system of the aforementioned type. Furthermore, the invention relates to an order picking method in which a set of order picking orders comprising a plurality of articles is assigned to a order picking trolley. Finally, the invention also relates to a computer program product or a computer-readable storage medium.
[0002] In the following, picking is understood to mean the placement of items from a picking trolley into a storage unit and / or the retrieval of items from a storage unit into a picking trolley, particularly by a picker. To make picking efficient, it can be helpful to guide the picker, at least partially, during their activity so that they can quickly and easily locate a storage unit and / or picking trolley intended for access. Guidance through the warehouse management system should be intuitive and as fatigue-free as possible for the picker.
[0003] US 2016 / 229631 A1 discloses a picking system for a warehouse. The warehouse includes a picking area and an area in which robots can lift and move individual shelves. For picking, the robots can move shelves to a boundary between the two areas, allowing an operator in the picking area to remove items from the shelves. A warehouse control system can cause screens on picking carts to indicate that an item is ready for pickup on a shelf at the area boundary. US 2016 / 229631 specifically discloses a warehouse management system according to the preamble of claim 1.
[0004] JP H0455201A deals with the sorting of warehouse items. A control unit automatically detects the destination of an incoming warehouse item. The control unit illuminates a sorting lamp at a temporary storage location for the warehouse item. At the warehouse item's destination, a sorting completion switch illuminates in the same color as the illuminated sorting lamp to indicate which storage area the warehouse item should be placed in. After the item is placed, the illuminated sorting completion switch is pressed to enter this information into the control unit.
[0005] US 20040083144 A1 relates to an inventory management system and a method for replenishment of manufacturing kits. A cart-like, mobile picking station communicates with both a storage rack system and a data server via a communication interface. Specification data of the manufacturing kit is provided via the data server and is used to display a map of the manufacturing kit on a touchscreen display of the mobile picking station. The map shows the type, quantity, and placement of the parts in the manufacturing kit. System components are tracked using a barcode system.
[0006] It is therefore the object of the invention to provide a warehouse management system, a picking and storage system, a picking method and a computer program product, each of the type mentioned above, with which such management is possible.
[0007] For the above-mentioned warehouse management system, the object according to the invention is achieved in that the picking trolley and the access station are each provided with an eye-catcher and at least one of the eye-catchers has a display area with a remotely switchable color, wherein the warehouse management system is designed to automatically detect whether at least one article of the assembly is positioned in the access station ready for access by the order picker and the color of the at least one remotely switchable eye-catcher automatically switches to the color of the other eye-catcher when it has been detected that the article is positioned ready for access within a predetermined time, wherein the warehouse management system is further designed toDepending on the order picker's assignment to a picking trolley, the same colour is automatically set on a display area with a remotely switchable colour of an information transmitter worn on the order picker's body and on a display area of an eye-catching transmitter on a picking trolley.
[0008] For the picking and storage system mentioned above, the object of the invention is achieved in that the picking and storage system comprises the above-mentioned warehouse management system according to the invention, and wherein the picking and storage system comprises at least one picking trolley equipped with an eye-catching sensor with a colored display area, and wherein the picking and storage system comprises at least one storage unit equipped with another eye-catching sensor with a colored display area. At least one of the display areas has a color that can be switched remotely by the warehouse management system.
[0009] For the picking method mentioned at the outset, the object according to the invention is achieved in that, in the method, a compilation of picking orders comprising a plurality of articles is assigned to a picking trolley, and also in that, in the method, it is automatically determined that at least one article of the compilation is ready for access by a picker at at least one access station of at least one storage unit, wherein the picking trolley and the access station each have an eye-catcher with a colored display area and the color of at least one display area is switchable by remote control, wherein the color of the at least one remotely switchable display area is automatically switched to the color of the other display area after the readiness for access has been determined,and wherein, depending on the assignment of the order picker to a picking trolley, the same colour is automatically set on a display area with a remotely switchable colour of an information transmitter worn on the body of the order picker and on a display area of an eye-catching transmitter of a picking trolley.
[0010] For the computer program product or the computer-readable storage medium mentioned at the outset, the object according to the invention is achieved in that the computer program product or the computer-readable storage medium comprises instructions, in particular a computer program with instructions which, when the program or the instructions are executed by a computer, leave the computer to carry out the method according to the invention or the steps of this method.
[0011] The inventive solution makes it possible to match the colors of the two eye-catching indicators. In other words, the eye-catching indicator of the picking trolley displays the same color as the eye-catching indicator of the access station. This makes it easy for a picker to correlate an access station where an item from a collection is to be picked up or stored with the picking trolley designated for this collection or a picking order from the collection, and to carry out the access accordingly.
[0012] Access is understood to mean feeding an article from the picking trolley to the access station of the storage unit or removing it from the storage unit at the access station and feeding it to the picking trolley. Because the warehouse management system is designed to remotely switch the color of at least one of the two eye-catchers, it is possible to react flexibly to a given situation, in particular to changes. The predetermined time within which an article is positioned ready for access is understood to be a maximum time within which an article is ready for access. If an article is on its way to an access station, the imminent arrival of the article at the access station can be signaled by switching the color of an eye-catcher.If, however, a time of 0 seconds is selected as the predetermined time, the color change can only occur at the moment the item is actually positioned and ready for access. It is advisable to select a time between 5 and 10 seconds as the predetermined time.
[0013] The solution according to the invention can be further improved by various embodiments, each advantageous in itself and combinable with one another as desired. These embodiments and their associated advantages are discussed below.
[0014] The color can, for example, be switched at a time when a previous item that was ready for access has already been stored or retrieved. Alternatively, the color can also be switched as soon as an item intended for access is moved to the access station. The warehouse management system can, for example, calculate the remaining time required for an item to arrive at the access station based on the known item position, known speeds, and / or known distances within a storage unit. Falling below a predetermined remaining time threshold can be used as a trigger for switching the color.
[0015] The composition or its picking orders can be predetermined. In other words, a fixed list of items to be picked may exist, for example, based on a customer's order. Alternatively, the warehouse management system can also dynamically change a picking order. The composition of picking orders can also be predetermined, particularly by the warehouse management system. Preferably, a composition is assigned to exactly one picking trolley.
[0016] The picking trolley represents an item collection area for items. Such a picking trolley is often also referred to as a "pick cart."
[0017] The storage unit can be a static rack, an automatic storage system with a conveyor system, for example a storage lift, a storage rack with aisle conveyor or a paternoster.
[0018] Other means of storing and / or providing items may also constitute a storage unit.
[0019] The at least one eye-catching sensor of the access station is preferably attached to the storage unit and arranged so that it is visible from outside the storage unit. The at least one access station is preferably provided with a remotely switchable eye-catching sensor. A storage unit can have multiple spatially separated access stations. Preferably, each access station is assigned a remotely switchable eye-catching sensor. For example, a remotely switchable eye-catching sensor can be arranged at each access station. An access station can, for example, be a storage and / or retrieval station.
[0020] As an alternative to a storage unit with one or more access stations, the entire storage unit can also be an access station, for example in the case of a shelf.
[0021] A storage unit can be ready for access when the at least one article is available at an access station of the storage unit. Alternatively or additionally, the storage unit can be ready for access when the at least one article arrives at the access station within a predetermined transport time and / or is a predetermined transport distance away from the access station. This can be the case, in particular, for a storage unit with a conveyor system designed to transport articles between the storage locations and at least one access station.
[0022] The warehouse management system can include a representation, in particular a virtual or digital representation, of the items and their position within the assortment stored or to be stored in a storage unit. The warehouse management system can be configured to determine the readiness for access based on such a representation of the position of the items. In other words, the warehouse management system can be configured to track the items.
[0023] The warehouse management system may comprise hardware, for example, a computer with at least one CPU (Central Processing Unit) or several interconnected computers. Alternatively, the warehouse management system may also comprise software, in particular a computer program product. Likewise, the warehouse management system may comprise a combination of hardware and software.
[0024] The display area of an eye-catching device can, for example, have at least one color-changing light source. Alternatively or additionally, the display area can also be formed by a suitable display device, such as a display, which can display different colors. Examples include LCD, TFT, and OLED displays. Likewise, multi-colored light-emitting diodes (LEDs) or RGB LEDs can be used, which can be controlled to illuminate in different colors.
[0025] The display area can be configured to display additional information. For example, the display area of an eye-catching indicator on the picking trolley can display an identification representing the picking trolley, such as a number. The eye-catching indicator, at least the one on the picking trolley, is preferably formed by an eye-catching light, which is mounted on the picking trolley so that it is visible from a distance, if possible. When reference is made to the color of the eye-catching indicator in the following text, this refers to the color of the display area of the respective eye-catching indicator, or the color displayed by the display area.
[0026] The compilation of picking orders comprises at least one picking order. Particularly in cases where individual picking orders involve only a small number of items or only small items, a compilation preferably contains multiple picking orders. A compilation preferably contains enough picking orders to accommodate the items belonging to the picking orders in one picking trolley.
[0027] To accommodate items, a picking trolley preferably has a plurality of storage containers, so-called "handling units." Such a handling unit can, for example, be formed by a compartment in a picking trolley. During picking, each handling unit is assigned to a picking order, preferably to exactly one picking order. If the number of items in a picking order exceeds the capacity of a handling unit, a picking order can also comprise multiple handling units.
[0028] The access station is equipped with an eye-catching sensor. This means that the eye-catching sensor is visually assigned to the access station, for example, it is located closer to this access station than to another access station. The eye-catching sensor does not necessarily have to be attached to or in the access station. It is preferably attached to the storage unit, for example, to a housing of the storage unit, near the access station. The eye-catching sensor is preferably attached to a storage unit so that it is visible from a distance.
[0029] As already described above, the warehouse management system according to the invention can be used to color-code a picking trolley and an access station ready for access, making it immediately recognizable for the picker. Furthermore, the warehouse management system can also be configured to create a color-coded link between a handling unit of the picking trolley and the picking trolley and / or the access station. For example, at least one handling unit of a picking trolley can also be provided with a display device with a remotely switchable color.
[0030] Based on the matching color on the indicators of the access station and the picking trolley, a picker can initially assign a picking trolley to an access station. A corresponding indicator on a handling unit can then be used to further assign the handling unit to the access station. Assigning an item to a color-coded handling unit is referred to as pick-by-color when removing items from a storage unit and put-by-color when placing items into a storage unit.
[0031] The term "color" within the meaning of the teachings of this invention can also encompass a white, black, colorless, or off (i.e., non-luminous) display area. Colors can also be understood as various temporally and / or spatially changing color patterns.
[0032] The warehouse management system can be further improved by being configured to automatically switch the display areas of the eye-catcher sensors of those access stations identified as ready for access to items in a picking trolley's assembly to the color of the display area of the eye-catcher sensor of that picking trolley. In this way, all access stations ready for access can be color-coded, allowing the picker to approach and access them with their picking trolley.
[0033] If the eye-catching indicators of several access stations display the same color, the picker can decide which of these access stations to approach first when processing their order or picking order. This choice increases the picker's sense of personal responsibility. This can make picking less tiring for the picker. In other words, fatigue can be reduced. In the long term, this can increase picking efficiency, even if a picker will not always choose the shortest route to process their order or picking order.To assist the picker in his selection, at least one access station can be provided with a remaining time display that indicates how long it will take until access is ready, for example how long it will take until articles arrive at the access station.
[0034] The warehouse management system can be configured to automatically switch the display areas of the eye-catchers of those access stations determined to be ready to access the assembly of a picking trolley to the color of the display area of that picking trolley, for a plurality of picking trolleys, each of which has an eye-catcher with a display area of a different color, and for a plurality of access stations, each of which is equipped with a remotely switchable eye-catcher. This makes it possible to use multiple picking trolleys together with multiple access stations.The access stations available for access to a picking trolley and the picking trolley can be marked with one color, while the access stations available for the at least one other picking trolley and the at least one other picking trolley can be marked with a different color. Since the access stations and picking trolleys are intuitively easy to distinguish based on their different colors, the risk of confusion is low, allowing a large number of picking trolleys and / or access stations to be used simultaneously to process a large number of batches or picking orders.
[0035] To easily indicate that all items intended for access have been removed from an access station, the warehouse management system can be configured to automatically change the color of the eye-catcher of that access station after all items in a set that are ready for access have been accessed from that access station. To this end, it is advantageous if the warehouse management system is configured to automatically record access, i.e., the removal or placement of stored goods, to all items in the set that are ready for access. The removal of all items can be detected, for example, by an order picker's acknowledgement or automatically by monitoring the access station, for example, using a camera.The color of the access station's eye-catcher can then, for example, be set to a neutral value or to a color of the display area of an eye-catcher of another picking trolley whose items will next be made available in the access station.
[0036] The picking of items can be made more efficient by designing the warehouse system to automatically control one or more storage units so that individual items from a collection are made available at more than one access station simultaneously. A picker can then approach and access the multiple access stations simultaneously or sequentially.
[0037] Switching the color of the eye-catching indicator of a picking trolley to the color of an access station provided for access can be facilitated by the warehouse management system being configured to determine the position of the at least one picking trolley and / or the eye-catching indicator of the at least one picking trolley. Position detection means, such as known tracking systems, can be used for this purpose.
[0038] The warehouse management system is preferably configured to control one or more storage units in a predetermined zone around a determined position of a picking trolley such that individual items from the assembly of this picking trolley are simultaneously provided in more than one access station of the zone. Such a configuration can be used to provide items for a picking trolley when this picking trolley approaches the access stations. According to a further improvement, the warehouse management system can be configured to control the storage units of this zone so that individual items from each of the assembly of these picking trolleys are simultaneously provided in different access stations.
[0039] The warehouse management system can be configured to switch the color of a display area of an eye-catching device based on location. This can refer to an eye-catching device on a picking cart and / or an access station. Furthermore, the color of an information device carried by a picker can also be switched based on location.
[0040] According to a further improvement of the warehouse management system, it can be configured to automatically switch the display areas of the eye-catching devices of a plurality of picking trolleys to different colors. The warehouse management system can in particular be configured to automatically switch the display areas of the eye-catching devices of a plurality of such picking trolleys to different colors that are located within a predetermined, preferably dynamically configurable, picking zone. In this way, collisions can be avoided. In other words, it can be prevented that the same colors are accidentally used for different combinations. Such collision prevention can take place in particular in a predetermined picking zone. Within a picking zone, the number of assigned colors is kept as low as possible.When there are a small number of colors, it may be easier to select colors that are as easy to distinguish as possible.
[0041] The warehouse management system is preferably designed to define the at least one picking zone using geofencing. Geofencing allows virtual areas to be defined and separated from one another.
[0042] Several picking zones arranged one behind the other can form a picking route. Such a picking route can be determined by the chronological sequence of those picking zones in which the items of the assembly are made available for access simultaneously. A picking zone can be a spatial area comprising several access stations that allow simultaneous access to items of a assembly. Thus, a picker can process several picking zones one after the other by pushing the picking trolley into the individual picking zones. Each picking zone preferably comprises at least one storage unit or at least a plurality of storage units.
[0043] The storage units containing the items in the assembly can be arranged along the picking route. The size of the picking zone can be determined according to ergonomic aspects. For example, the display areas of the eye-catching devices must be visible and / or the storage units must be accessible with a collection trolley. The size of a picking zone can also be determined by how many picking trolleys are to be arranged in it at the same time. A picking zone is preferably less than 50 meters long, particularly preferably less than 25 meters long. Successive picking zones along a picking route can overlap. However, two successive picking zones preferably do not overlap.
[0044] According to the invention, the warehouse management system is designed to automatically set the same color on a display area with a remotely switchable color of an information transmitter worn on the picker's body and on a display area of an eye-catching transmitter on a picking trolley, depending on the order picker's assignment to a picking trolley. This allows a picker to easily locate the picking trolley assigned to them. A set of picking orders is usually assigned to the order picker. Since a set of picking orders is assigned to a picking trolley, a picking trolley is automatically assigned to a order picker. In order to set the same color on the display area of the information transmitter and on the display area of the eye-catching transmitter on the picking trolley, at least one of the two display areas is color-changing.To ensure high flexibility of the warehouse management system, both display areas are preferably color-changing.
[0045] According to a further advantageous embodiment, the warehouse management system can be configured to automatically set the same color on the picker's information transmitter and on a display area of a picker's eye-catcher transmitter, depending on the assignment of a picker to a particular picker's trolley, for a plurality of pickers, each with an information transmitter, and a plurality of picking trolleys, each with an eye-catcher transmitter. This allows each picker to easily locate the picking trolley assigned to them. Confusion can thus be avoided.
[0046] To further improve the warehouse management system, it can be configured to automatically determine the position of an information transmitter worn on the body of a picker, in particular relative to an access station and / or a picking trolley, and to change the color of the information transmitter's display area depending on the position. Depending on the picker's position, a specific picking order can thus be assigned to the picker.
[0047] The information provider preferably has at least one position sensor so that the warehouse management system can detect the position of the information provider and thus the position of the picker. Alternatively, the position sensor can also be formed separately from the information provider. For example, it can be a separate portable device or integrated into such a device. As a further alternative or additional possibility for determining the position of the picker, at least one optical system can also be used. The position can be determined, for example, by at least one camera system with automatic detection of the picker.
[0048] The warehouse management system is preferably configured to automatically adapt the color of the display area of an information transmitter to the color of an eye-catching transmitter of an access station when the information transmitter is located in a predetermined position relative to the access station. This configuration may make it possible to assign a picking order to a picker as they approach an access station. This may be particularly advantageous in the case where a picker who is already assigned to a picking order and accesses an access station needs assistance.
[0049] Such a case can arise, for example, when a particularly large number of items, bulky items, or heavy items have to be moved. In such a situation, a backlog of order pickers and / or order picking trolleys can occur. Then at least one additional order picker can come to the aid of the first-named order picker. In particular, at least one subsequent order picker can come to the aid of the first-named order picker. The at least one additional order picker can originally be assigned to a different assembly or order picking task. If the at least one additional order picker then approaches the access station of the first order picker, the assembly or order picking task of the order picker can also be assigned, at least temporarily, to the at least one additional order picker.During this time, the same color is displayed on the display areas of their information devices for at least two pickers. The two or more pickers can then jointly process at least part of the first picker's assembly or picking order. If no further assistance is required, the other or more pickers can leave the access station, and the color of their information device's display area can return to the color of their original assembly or picking order. In this way, a backlog can be quickly resolved.
[0050] To facilitate the previously described position-dependent switching of the color of the display area of a picker's information device, the warehouse management system is preferably configured to determine an access zone in front of an access station using geofencing and to automatically set the color of the display area of an information device located within the access zone to the color of the display area of the eye-catching device of the access station of this access zone. In other words, the color of the display area of the information device is switched to the color of the eye-catching device of the access station as soon as the picker enters the access zone. A picking zone as described above can contain multiple access zones.
[0051] An access zone can also be defined in front of multiple access stations through geofencing. Alternatively, exactly one access zone can be defined in front of each access station.
[0052] The warehouse management system can be designed to reset the color of the display area of the information transmitter, which has been set to the color of the eye-catcher of the access station, to a previously set color when all articles of the assembly of the picking trolley have been removed from the access station whose display area has the same color as the display area of the information transmitter before the switchback.
[0053] In other words, a picker who has temporarily processed a different combination can return to his original combination after switching back the color of the display area of his information provider and continue processing it.
[0054] The warehouse management system is preferably configured to receive a removal acknowledgment signal representative of the removal of all items in a set from an access station. The access station and / or the information provider can have an acknowledgment device for this purpose. The acknowledgment device can be mechanical, for example, a switch or a touch-sensitive element, such as a touchscreen. Actuation of the acknowledgment device can automatically generate the removal acknowledgment signal.
[0055] The warehouse management system can also be configured to receive a deposit confirmation signal representative of the deposit of the items retrieved from an access station onto a picking trolley. For this purpose, the picking trolley and / or the information transmitter can have a confirmation transmitter, the actuation of which automatically generates the deposit confirmation signal. According to an advantageous embodiment, the confirmation transmitter for the removal confirmation signal and the confirmation transmitter for the deposit confirmation signal can be identical. In other words, the confirmation transmitter for the removal confirmation signal automatically becomes the confirmation transmitter for the deposit confirmation signal when the removal is confirmed, and vice versa when the deposit is confirmed.
[0056] According to a further advantageous embodiment, the warehouse management system can be configured to output an optical signal on a wearable device worn by a picker, wherein the signal is representative of a position of a handling unit on the picking trolley, in particular one assigned to a picking order, into which an article removed from an access station is to be deposited, and / or of a number and / or type of articles to be deposited in the handling unit of the picking trolley. In other words, the handling unit can indicate to the picker in which handling unit of the picking trolley articles are to be deposited. Furthermore, the number and / or type of articles can be displayed.
[0057] The signal can be represented by a color or by the display of at least one symbol, for example at least one arrow. The information provider can be integrated into the wearable. Alternatively, the wearable can be a separate element. As an example, the information provider can be worn on the wrist and the wearable can be shaped like glasses, whereby the picker can then see the signal while wearing the glasses. Such glasses can, for example, be augmented reality glasses. The wearable can optically identify the handling unit for a picking order. Of course, the wearable can also be a device worn on another part of the body. For example, on the wrist, upper arm, forearm, or in the hand. The same applies to the information provider.
[0058] The picking and storage system according to the invention can be further improved by comprising a plurality of picking trolleys, each with an eye-catcher, in particular each with a color-switchable display area.
[0059] The picking and storage system according to the invention preferably comprises a plurality of storage units, each with a visual indicator, in particular with one visual indicator per access station. Each visual indicator is preferably provided with a display area with a color that can be remotely switched by the warehouse management system.
[0060] The picking and storage system can comprise at least one information transmitter configured as a wearable, which has an area with a remotely switchable color and is connected via the warehouse management system to the eye-catcher transmitters of the at least one picking trolley and the at least one storage unit in a data-transmitting manner.
[0061] Preferably, the picking and storage system comprises a plurality of eye-catching indicators for picking trolleys, wherein the eye-catching indicators are designed to be repeatedly attached to different picking trolleys without the need for tools. This allows a picking trolley to be quickly and easily equipped with an eye-catching light and equipped for the picking and storage system.
[0062] The picking and storage system preferably comprises an access zone, determined by the warehouse management system using geofencing, arranged in front of the access station for a picker to access the access station of a storage unit, and a position sensor, which can be worn by the picker, for determining the position of the picker relative to the access zone. This allows the position of the picker to be determined and, in particular, their presence in an access zone to be determined. In particular, the position sensor and thus the picker can also be identified. The position sensor can be part of a wearable or the information transmitter. However, it can also be formed by a separate means.
[0063] In the simplest case, the term "relative to the access zone" can mean a distinction between a position inside and a position outside the access zone. Alternatively or additionally, however, the exact position relative to the access zone can also be recorded. An exact position is understood to be a sufficiently precise position. This can, for example, be accurate to one meter, half a meter, or even more.
[0064] Position determination can be performed, for example, by triangulation. The picking and storage system preferably has at least one position detection system based on electromagnetic waves and / or ultrasound for geofencing. The position detection system can comprise at least one position sensor that can be worn by the picker, in particular configured as a wearable device.
[0065] The invention is explained in more detail below by way of example using advantageous embodiments with reference to the drawings. The combination of features illustrated by way of example in the embodiment can be supplemented by further features for a specific application in accordance with the above explanations. Individual features can also be omitted from the described embodiments if the effect of this feature is not important in a particular application.
[0066] In the drawings, the same reference symbols are always used for elements with the same function and / or structure.
[0067] They show: Fig. 1 shows an advantageous embodiment of a warehouse with a picking and storage system according to the invention; Fig. 2 shows a picker with a portable information transmitter; Fig. 3 shows a storage unit with an access station; Fig. 4 shows a picking trolley; and Fig. 5 shows the steps of a method according to the invention.
[0068] In the following, an advantageous embodiment of an order picking and storage system 1 according to the invention is described with reference to the Fig. 1 explained in more detail.
[0069] The picking and storage system 1 can be used in particular for a warehouse 3, which comprises at least one storage unit 5. The picking and storage system 1 preferably comprises at least one warehouse management system 6, which is designed to monitor and / or control at least part of the picking and storage system 1. The warehouse management system 6 is preferably connected to the components to be monitored and / or controlled, in particular connected for data transmission. The warehouse management system can in particular comprise one or more computers and / or software, in particular networked with one another.
[0070] The warehouse management system 6 is preferably provided with a computer program product 77 which contains commands by which the warehouse management system 6 can be at least partially controlled.
[0071] The storage units 5 can, for example, be storage systems such as storage lifts, racks, paternoster storage, carousel storage, or other units. An access point of a transport track or transport route can also be considered a storage unit 5. The only requirement is that an operator 7, i.e., a picker 7, can remove items 9 from or transfer them to a storage unit 5. In the field of warehouse logistics, this is often referred to as loading and / or retrieving stored goods. An operator 7 is often referred to as a "picker" 7. Items 9 are often referred to as "stock goods." The loading and / or retrieval of items 9 into or out of a storage unit 5 is referred to below as "access."
[0072] A picking order 43 can be assigned to a picker 7. A picking order typically contains a list of items 9. These items 9 are to be removed from one or more storage units 5, i.e., "picked," and collected in a collection container, a so-called picking trolley 11. Conversely, it is also possible for a picking order 43 to contain a list of items 9 that are to be transferred, in particular, from a picking trolley 11 to one or more storage units 5.
[0073] A picking order 43 usually contains, in addition to information about the article type, information about the number of articles 9 to be stored and / or retrieved. One or more picking orders 43 can be combined into a compilation 45.
[0074] A picker 7 can process a compilation 45 or a picking order 43 by visiting one or more storage units 5 and accessing the access stations 29 of these storage units 5. If the picker 7 has to visit several storage units 5, the movement of the picker 7 within the warehouse 3 can result in a picking route 13.
[0075] To facilitate picking, a picker 7 can be guided by technical aids when processing a compilation 45 or a picking order 43. The picking and storage system 1 uses color coding to visually guide the picker 7. Color coding is advantageous because it can be understood more intuitively than text or numbers.
[0076] For example, each compilation 45 can be assigned a color. Alternatively, a color can also be assigned to a picking order 43. However, colors should preferably be assigned to compilations 45. Different colors can therefore identify different compilations 45. The color that identifies a compilation 45 can be displayed at different locations in warehouse 3 to assist a picker 7 during picking.
[0077] The color belonging to a combination 45 can be displayed in particular on eye-catching devices 35, 51. An eye-catching device 35, 51 is preferably a light source visible from afar, wherein the light source is preferably self-luminous. Alternatively, an eye-catching device can also be a passive light source, i.e., a light source excited to glow by an active light source. However, the color belonging to a combination 45 can also be displayed by other devices, such as displays.
[0078] A storage unit 5, a picking trolley 11 and a picker 7 with a portable information transmitter 15 are in the Figures 2 to 4 shown schematically. These are briefly discussed below.
[0079] The order picker 7 is equipped with at least one portable information transmitter 15. The portable information transmitter 15 has at least one display area 17 whose color can be switched remotely.
[0080] The information transmitter 15 is preferably integrated into a wearable 19, which is Fig. 2is shown merely by way of example as a device that can be worn on the arm. Preferably, the wearable 19 is also designed to output an optical signal 21 for the order picker 7. The optical signal 21 is shown merely by way of example as part of the display area 17 of the information transmitter 15. In this case, the display area 17 can display the signal 21. Alternatively, the optical signal 21 can also be displayed on another device, in particular a display device on the information transmitter 15. A further alternative consists in providing a separate wearable 19 that can be worn separately from the information transmitter 15 and that is designed to output the optical signal 21. For example, the separate wearable (not shown) can have the shape of glasses.
[0081] The information transmitter 15 preferably also has at least one acknowledgment transmitter 23, at which the removal and / or placement of an article can be acknowledged. The acknowledgment transmitter 23 can be a mechanical switch, a touch-sensitive switch, for example, as part of a touch display, or a barcode reader or other input device. It may also be possible to design the display area 17 of the information transmitter 15 to be touch-sensitive, so that it can simultaneously serve as the acknowledgment transmitter 23. The acknowledgment transmitter 23 can also be configured on a separate device, in particular a wearable device.
[0082] The order picker 7 preferably carries at least one position sensor 25. The position sensor 25 can be part of the information sensor 15. Alternatively, it can also be formed separately from the information sensor 15. The position sensor 25 can preferably be worn on the body of the order picker 7.
[0083] The information transmitter 15, the acknowledgement transmitter 23 and / or the position transmitter 25 can be connected to the warehouse management system 6 in a data-transmitting manner, in particular in a wireless data-transmitting manner.
[0084] An example of a storage unit 5 is shown schematically in Fig. 3 The storage unit 5 can have a plurality of storage locations 27, which are arranged in Fig. 3 are only indicated by dashed lines. Articles 9 from the storage locations 27 can be moved to an access station 29, or from the access station 29 to the storage locations 27. The access station 29 can, in particular, be a loading and / or unloading station 31.
[0085] The storage unit 5, in particular a control device 33 of the storage unit 5, is preferably connected to the warehouse management system 6 for data transmission.
[0086] The access station 29 is provided with an eye-catching sensor 35. The eye-catching sensor 35 is arranged near the access station 29 so that it can be visually assigned to the access station 29.
[0087] The eye-catcher 35 has a display area 37 whose color can be remotely switched by the warehouse management system 6. For this purpose, the eye-catcher 35 can be connected directly to the warehouse management system 6 or indirectly via the control device 33 of the storage unit 5 for data transmission.
[0088] The display area 37 can be a color-changeable luminous means or a display, in particular a display, which is designed to display different colors.
[0089] The storage unit 5 can be provided with a position detection system 39, which is designed to detect the positions of position sensors 25, 49. The position detection system 39 is shown only as an example on a storage unit 5. The position detection system 39 can be part of the picking and storage system 1, independent of the storage units 5, and can be arranged within the warehouse 3.
[0090] The position detection system 39 can consist of a plurality of transmitting and / or receiving devices suitable for detecting at least one position sensor 25, 49 and determining its position. For example, the position detection system 39 can use triangulation for this purpose. The position detection system 39 can be used to define zones within the picking and storage system 1 or the warehouse 3 using geofencing. In particular, picking zones and access zones can be determined. This will be discussed later.
[0091] In Fig. 4 A picking trolley 11 is shown schematically. The picking trolley 11 is used to collect and transport articles 9. For this purpose, the picking trolley 11 has storage containers, so-called handling units 41. Only as an example, Fig. 4 the handling units 41 are shown as compartments in the picking trolley 11.
[0092] Preferably, a handling unit 41 is assigned to exactly one picking order 43. The picking order 43 is merely schematically represented as a compilation of articles 9 in Fig. 4 Alternatively, a picking order 43 can also extend over several handling units 41 if the capacity of one handling unit 41 is not sufficient for a picking order 43.
[0093] Several different picking orders 43 can be combined to form a collection 45 of picking orders 43. A picking trolley 11 is preferably assigned to exactly one collection 45. The two different picking orders 43 are in Fig. 4indicated by the different articles 9 contained therein. Each of the handling units 41 can be provided with a display device 47, which can indicate to the order picker 7 in which handling unit 41 articles 9 are to be placed, or from which handling unit 41 articles 9 are to be removed. The display devices 47 can preferably represent a color and / or symbols.
[0094] The picking trolley 11 is preferably provided with a position sensor 49, by means of which the position of the picking trolley 11 within the warehouse 3 can be determined. Using the position sensor 49, an identification of the picking trolley 11 can preferably also be communicated to the warehouse management system 6. The position sensor 49 can preferably be detected by the position detection system 39.
[0095] The picking trolley 11 is provided with an eye-catcher 51, which is formed, in particular, by an eye-catcher light 53 that can be repeatedly attached without tools. The eye-catcher 51 has a display area 55 whose color can be switched remotely. In particular, the color can be switched remotely by the warehouse management system 6. For this purpose, the eye-catcher 51 is connected to the warehouse management system 6 for data transmission. This can be done, in particular, wirelessly.
[0096] The eye-catching device 51, in particular its display area 55, is preferably visible from every side of the picking trolley 11. This allows the picker 7 to quickly locate or recognize a picking trolley 11 assigned to him.
[0097] The eye-catching sensor 51 preferably has a reader for an identification means of the picking trolley 11. The eye-catching sensor 51 can thus read an identifier of the picking trolley 11 to which the eye-catching sensor 51 is attached and forward it to the warehouse management system 6. This allows the picking trolley 11 and the eye-catching sensor 51 to form a single unit for the warehouse management system 6. The reader can be, for example, a barcode reader or a reader for reading RFID tags. Accordingly, the identification means on the picking trolley 11 can be a barcode, an RFID tag, or another suitable means.
[0098] The picking trolley 11, in particular the eye-catcher 51 of the picking trolley 11, can be provided with at least one projection device (not shown) designed to generate a light image suitable for indicating a direction. For example, an arrow can be generated. The projection device can project downwards, i.e., onto a floor. Thus, depending on communication with the warehouse management system 6, the direction to the next access station 29 ready for access can be displayed. This can be particularly useful in large warehouses where, under certain circumstances, great distances must be covered and an eye-catcher 35 of the access station 29 is not easily recognizable from a distance.The picking zone 57 can then be divided into different sections, which are distributed over the area of the warehouse and are connected to each other by the picking line 13.
[0099] In the following, the use of a warehouse management system 6 according to the invention and a picking and storage system 1 according to the invention is described with reference to the Fig. 1 bearing 3 shown, with reference to the Figures 2 to 4 described components of the picking and storage system 1 are used.
[0100] The picking line 13 already mentioned at the beginning can be determined by a temporal sequence of so-called picking zones 57, in which articles 9 of a set 45 are made available for access at the same time. Such a picking zone 57 is indicated by the dotted line in Fig. 1 indicated.
[0101] Each access station 29 is assigned an access zone 59. Preferably, an access zone 59 is arranged in front of the access station 29, so that a picker 7 located in the access zone 59 has access to the access station 29.
[0102] For the sake of clarity, Fig. 1 Storage units 5 are shown, each of which has exactly one access station 29. For example, the storage units 5 can be Fig. 1 similar to that relating to the Fig. 3 described storage unit 5. However, a storage unit 5 can also have several access stations 29 and / or access zones 59.
[0103] The access zones 59 can be virtual zones. In other words, they can be determined, for example, via geofencing. For example, one or more position detection systems 39 can determine the access zones 59, in particular by connecting to the warehouse management system 6.
[0104] Since each order picker 7 is preferably provided with a position sensor 25, it can be detected whether an order picker 7 is located inside or outside a specific access zone 59. This allows the position 61 of an order picker to be determined. Furthermore, it is also possible to determine the position 61 of an order picker 7 absolutely, i.e., without relation to a specific access station 59. Position detection systems 39, in particular those that use triangulation, can be configured for this purpose.
[0105] Since each picking trolley 11 is preferably also provided with a position sensor 49, the position 63 of a picking trolley 11 can also preferably be determined. Here, too, it may be possible in the simplest case to merely detect the presence or absence of a picking trolley 11 within an access zone 59. Furthermore, however, it may also be possible to determine the position 63 within the warehouse 3.
[0106] According to the invention, at least one of the eye-catching indicators 35 or 51, i.e., at the access station 29 or at the order-picking trolley 11, has a display area 37 or 55 with a switchable color. For the sake of simplicity, this is explained below using two different colors, A and B. Of course, other colors can also be used, or, particularly in the case of multiple order pickers 7, more than two colors.
[0107] The color A is in Fig. 1indicated by simple hatching and the color B by crossed hatching. It is advantageous if the two colors A and B are clearly distinguishable from one another. For example, color pairs red and green or yellow and blue can be used for this purpose. It can also be advantageous if, when only two colors A and B are used, these two colors are complementary to one another. For example, the complementary colors blue and yellow, red and cyan, or green and magenta can be used as the colors A and B. This allows a picker 7 to distinguish between the two colors A and B very quickly and clearly.
[0108] Preferably, both eye-catching devices 35 and 51 each have a display area 37 and 55 with automatically switchable colors A, B. In addition, the order picker 7 also carries an information device 15 with a display area 17, the color of which can be switched remotely by the warehouse management system 6.
[0109] In the picking and storage system 1 of the Fig. 1 As preferred embodiments, the eye-catchers 35, the eye-catchers 51 and the information transmitters 15 are each provided with display areas whose color can be switched automatically.
[0110] The eye-catchers 35 and 51 as well as the information dispenser 15 are in Fig. 1 merely indicated and filled with the hatching representing the respective color. For the sake of clarity, the access zones 59 are also filled with the hatching that corresponds to the color of the eye-catcher 35 of the corresponding access station 29.
[0111] At the start of a picking operation, i.e. when a picker 7 is to process a compilation 45 or a picking order 43, or at the start of a working day, a picking trolley 11 is assigned to a picker 7.
[0112] In Fig. 1 For this purpose, a picker 7 with a picking trolley 11 is shown at the top left, both of which show the color A. A picker 7 with its associated picking trolley 11 is shown at the bottom right, with the information transmitter 15 and the eye-catching transmitter 51 both showing the color B.
[0113] Thus, a picker 7 can quickly and easily identify the picking trolley 11 assigned to him by visually comparing his information transmitter 15, or its display area 17, with the display area 55 of the eye-catching transmitter 51 on his picking trolley 11. Using the picking trolley 11, he can then navigate to access stations 29 of the storage units 5 in order to access them. Various scenarios are conceivable.
[0114] In a simple scenario, an article 9 is provided for a compilation 45 or for a picking order 43 in an access station 29 of a storage unit 5.
[0115] The eye-catcher 35 of the corresponding access station can then display A or B by a color representing the compilation 45 or a picking order 43. The picker 7 can compare the displayed color A or B on the eye-catcher 35 with the colors of his information transmitter 15 and / or the eye-catcher 51 of his picking trolley 11.
[0116] If the colors match, as in the top left of the image for color A, the picker 7 can access the access station 29 and remove article 9 from it and place it in a handling unit 41 of his picking trolley 11. Likewise, the picker 7 can remove article 9 from a handling unit 41 of his picking trolley 11 and place it in the access station 29.
[0117] As already described above, each handling unit 41 can also be provided with a display device 47 for this purpose. Once the access is complete, the picker 7 can acknowledge this, for example, via an acknowledgment device 23. He can then proceed to an access station 29 and continue processing his assembly 45 or his picking order 43.
[0118] As an alternative to the process described above, it is also possible to detect the position 61 of the order picker 7 and / or the position 63 of the order picking trolley 11. For example, a virtual zone 65 can be determined around the order picking trolley 11.
[0119] If zone 65 overlaps with an access zone 59 or if one of the access stations 29 is located within zone 65 around the picking trolley 11, this can cause the corresponding access station 29 to provide article 9 for the assembly 45 assigned to the picking trolley 11.
[0120] As soon as the article(s) 9 are provided, the color of the eye-catcher 35 is switched to the color of the eye-catcher 51, or vice versa. In other words, in this case, the storage units 5 react to the presence of the picking trolley 11 and provide the corresponding articles 9 for this picking trolley 11, or for its picking orders 43 or its assembly 45.
[0121] The invention offers further advantages. For example, the assignment of a picker 7 and / or a picking trolley 11 to a specific assembly 45 or to a specific picking order 43 can be changed, at least temporarily. This can be indicated by a change in the color of the eye-catcher 51 and / or the information transmitter 15.
[0122] To illustrate this, Fig. 1 the following situation is indicated:
[0123] The bottom right in Fig. 1 The illustrated order picker 7, to which a compilation 45 or a picking order 43 is assigned, accesses an access station 29. The information transmitter 15, the eye-catcher transmitter 51, and the eye-catcher transmitter 35 all display the color B.
[0124] The order picker 7 accesses the access station of the storage unit 5. At the same time, the Fig. 1 The storage unit 5 shown above the previously mentioned storage unit 5 is ready for access by this order picker 7. Consequently, the eye-catcher 35 of this storage unit 5 also displays the color B.
[0125] Due to the size of the assembly 45 or the picking order 43, the weight of the items 9 or the urgency of the assembly 45 or the picking order 43, the picker 7 needs assistance.
[0126] He can now take the second in Fig. 1ask the picker 7 shown for help. Alternatively, the second picker 7, to whom color A is assigned, can also recognize that the picker 7, to whom color B is assigned, needs help. Of course, it is also possible that this is recognized by the warehouse management system 6 and communicated to the picker 7, to whom color A is assigned.
[0127] The order picker 7, to whom the color A is assigned, can then, at least temporarily, go to the access zone 59, whose access station 29 is also marked with the color B by the eye-catcher 35, but which is not accessed. This change of the order picker 7 from one access zone 59 to another access zone 59 is indicated by the arrow 67 in Fig. 1 indicated.
[0128] At the moment the order picker 7, who was previously assigned the color A, enters the other access zone 59, this is detected by the warehouse management system 6, in particular via at least one position detection system 39, and the color in the display area 17 of its information transmitter 15 is switched from A to B. This is in Fig. 1 at storage unit 5, shown at the top right by the dotted line. Picker 7 is then, at least temporarily, also assigned to assembly 45 or picking order 43 of the picker initially assigned color B.
[0129] Thus, both order pickers 7 can process the assembly 45 marked with the color B or the picking order 43. Both order pickers 7 can also use the picking trolley 11 marked with the color B.
[0130] Once the assembly 45 marked with color B or the picking order 43 has been processed completely or sufficiently, the picker 7, whose color was switched, can return to the access station 29 he originally served, whereby the color of his information transmitter 15 is switched back to color A as soon as he enters the access zone 59 to the access station 29 marked with color A. Now both pickers 7 can again process their respective assembly 45 or picking orders 43.
[0131] By means of the warehouse management system 6 according to the invention, order pickers 7, order picking trolleys 11 and access stations 29 can be flexibly assigned to specific combinations 45 or order picking orders 43 and / or to one another.
[0132] The information transmitter 15 and / or the wearable 19 can be configured to generate an acoustic signal. The acoustic signal can be triggered, in particular, by the warehouse management system 6. Instead of an acoustic signal or in addition to it, a tactile signal, for example a vibration alarm, can also be generated. Such a signal can be triggered by the warehouse management system 6, for example, when a color change occurs in the display area 17 of the information transmitter 15.
[0133] This can be useful, for example, in the case described above, in which a picker 7 enters a different access zone 59 and thereby triggers a change in the color of the display area 17 of his information transmitter 15. A corresponding signal can also be generated if a picking trolley 11 assigned to the picker 7 experiences a color change, or if the color of the display area 55 of the eye-catching transmitter 51 of this picking trolley 11 is switched. This allows the picker 7 to be intuitively informed that he should now process a different assembly 45 or a different picking order 43.
[0134] Some optional improvements to the warehouse management system 6 and / or the picking and storage system 1 are described below. The warehouse management system 6 can, in particular, be designed to prevent color collisions. In other words, it can be ensured that colors are not assigned twice, unless, as described above, an assignment is to be temporarily changed so that multiple order pickers 7 or picking trolleys 11 are used in addition to processing a compilation 45 or a picking order 43 that is already in progress. Preventing color collisions is particularly advantageous within a picking zone 57. For example, if there are multiple picking zones 57 in a warehouse, the same colors can be used in different picking zones 57.
[0135] The eye-catching indicators 51 of the picking trolleys 11 are preferably designed so that the color can be recognized as soon as the picking trolley 11 is visible. The orientation of the picking trolley 11 should preferably not play a role here. This differs from the optional display devices 47 of the handling units 41, which can generally only be visually detected if, on the one hand, the picker 7 is positioned near the handling units 41 and, on the other hand, the handling units 41 are aligned with their display devices 47 toward the picker 7.
[0136] The warehouse management system 6 is preferably connected, at least for data transmission, in particular wirelessly, to all eye-catcher sensors 35, 51 and information sensors 15. Furthermore, it is preferably also connected directly or indirectly to the position sensors 25 and 49 and / or to one or more position detection systems 39. Finally, the warehouse management system 6 is preferably also connected for data transmission to the acknowledgment sensors 23 and the control devices 33 of the storage units 5.
[0137] In the following, a picking method according to the invention is described with reference to the block diagram in Fig. 5 described.
[0138] In a first method step 69, a compilation 45 of picking orders 43 with a plurality of articles 9 is assigned to a picking trolley 11.
[0139] In a further method step 71, the warehouse management system 6 determines whether at least one article 9 of the compilation 45 is ready for access at an access station 29.
[0140] If this is the case, method step 73 is executed, wherein the color A, B of at least one display area 37 and / or 55 is switched. This ensures that the eye-catcher 35 of the control device 33 and the eye-catcher 51 of the order-picking trolley 11 display the same color A, B.
[0141] Subsequently, at least one optional method step 75 can be carried out, wherein the color of at least one further display area 17, 37 and / or 55 is switched depending on the location.
[0142] The different situations in which this can happen, for example, are described above with reference to the Fig. 1 Likewise, the above-mentioned Figures 1 to 4described uses of the warehouse management system 6 and / or the picking and storage system 1 are to be regarded as optional procedural steps. Reference symbol
[0143] 1Picking and storage system 3Warehouse 5Storage unit 6Warehouse management system 7Picking operator 9Item 11Picking trolley 13Picking route 15Information transmitter 17Display area 19Wearable 21Optical signal 23Acknowledgement transmitter 25Position transmitter 27Storage locations 29Access station 31Loading and / or retrieval station 33Control device 35Eye-catching transmitter 37Display area 39Position detection system 41Handling unit 43Picking order 45Compilation of picking orders 47Display device 49Position transmitter 51Eye-catching transmitter 53Eye-catching light 55Display area 57Picking zone 59Access zone 61Position of a picker 63Position of a picking trolley 65Zone 67Arrow 69-75Procedure steps 77Computer program product
Claims
1. Warehouse management system (6) for controlling order picking by means of at least one order picking trolley (11) for depositing articles (9) of a set (45) of order picking instructions (43), and by means of at least one storage unit (5) which has storage locations (27) for storing the articles (9), and at least one access station (29) for access to the articles (9) by an order picker (7), the order picking trolley (11) and the access station (29) each being provided with an eye-catching transmitter (35, 51) and at least one of the eye-catching transmitters (35, 51) having a display region (37, 55) which has a remotely switchable color (A, B), the warehouse management system (6) being designed to automatically detect whether at least one article (9) of the set (45) is positioned in the access station (29) so as to be ready to be accessed by the order picker (7), characterized in that the warehouse management system (6) is designed to automatically switch the color (A, B) of the at least one remotely switchable eye-catching transmitter (35, 51) to the color (A, B) of the other eye-catching transmitter (35, 51) when it detects that the article (9) is positioned so as to be ready to be accessed within a predetermined time, and in that the warehouse management system (6) is designed to automatically set the same color (A, B) on a display region (17), which has a remotely switchable color (A, B), of an information transmitter (15) which can be worn on the body of the order picker (7), and on a display region (55) of an eye-catching transmitter (51) of an order picking trolley (11), depending on an assignment of the order picker (7) to an order picking trolley (11).
2. Warehouse management system (6) according to claim 1, wherein, in the case of a plurality of access stations (29) which are each provided with a remotely switchable eye-catching transmitter (35), the warehouse management system (6) is designed to automatically switch the display regions (37) of the eye-catching transmitters (35) of the access stations (29) that are determined to be ready for access to articles (9) of the set (45) of an order picking trolley (11) to the color (A, B) of the display region (55) of the eye-catching transmitter (51) of this order picking trolley (11).
3. Warehouse management system (6) according to claim 1 or 2, wherein, in the case of a plurality of order picking trolleys (11) which each have an eye-catching transmitter (51) having a display region (55) of a different color (A, B), and in the case of a plurality of access stations (29) which are each provided with a remotely switchable eye-catching transmitter (35), the warehouse management system (6) is designed to automatically switch the display regions (37) of the eye-catching transmitters (35) of the access stations (29) that are determined to be ready for access to articles (9) of the set (45) of an order picking trolley (11) to the color (A, B) of the display region (55) of this order picking trolley (11).
4. Warehouse management system (6) according to any of claims 1 to 3, wherein the warehouse management system (6) is designed to automatically switch the color (A, B) of the eye-catching transmitter (35) of the access station (29) after access to all articles (9) of a set (45) provided for access from an access station (29).
5. Warehouse management system (6) according to any of claims 1 to 4, wherein the warehouse management system (6) is designed to automatically control one or more storage units (5) such that individual articles (9) of a set (45) are provided simultaneously in more than one access station (29).
6. Warehouse management system (6) according to any of claims 1 to 5, wherein the warehouse management system (6) is designed to determine the position (63) of the at least one order picking trolley (11) and / or of the eye-catching transmitter (51) of the at least one order picking trolley (11).
7. Warehouse management system (6) according to claim 5 or 6, wherein the warehouse management system (6) is designed to control one or more storage units (5) in a predetermined zone (65) around a determined position (63) of an order picking trolley (11) such that individual articles (9) of the set (45) of this order picking trolley (11) are provided simultaneously in more than one access station (29) of the zone (65).
8. Warehouse management system (6) according to claim 6 or 7, wherein the warehouse management system (6) is designed to switch the color (A, B) of a display region (37, 55) of an eye-catching transmitter (35, 51) depending on the location.
9. Warehouse management system (6) according to any of claims 1 to 8, wherein the warehouse management system (6) is designed to automatically switch the colors (A, B) of display regions (55) of the eye-catching transmitters (51) of a plurality of order picking trolleys (11) to different colors (A, B) in each case.
10. Warehouse management system (6) according to any of claims 1 to 9, wherein the warehouse management system (6) is designed to automatically determine the position (61) of an information transmitter (15) which can be worn on the body of an order picker (7) and, depending on the position (61), to change the color (A, B) of a display region (17) of the information transmitter (15).
11. Warehouse management system (6) according to claim 10, wherein the warehouse management system (6) is designed to automatically adjust the color (A, B) of the display region (17) of an information transmitter (15) to the color (A, B) of an eye-catching transmitter (35) of an access station (29) when the information transmitter (15) is in a predetermined position relative to the access station (29).
12. Warehouse management system (6) according to claim 10 or 11, wherein the warehouse management system (6) is designed to designate an access zone (59) in front of an access station (29) by means of geofencing, and to automatically set the color (A, B) of the display region (17) of an information transmitter (15) located within the access zone (59) to the color (A, B) of the display region (37) of the eye-catching transmitter (35) of the access station (29) of this access zone (59).
13. Warehouse management system (6) according to any of claims 10 to 12, wherein the warehouse management system (6) is designed to reset the color (A, B) of the display region (17) of the information transmitter (15) that is set to the color (A, B) of the eye-catching transmitter (35) of the access station (29) back to a previously set color (A, B) when all articles (9) of the set (45) of the order picking trolley (11), whose display region (55) has the same color (A, B) as the display region (17) of the information transmitter (15) before being switched back, have been removed from the access station (29).
14. Warehouse management system (6) according to any of claims 1 to 13, wherein the warehouse management system (6) is designed to output a visual signal (21) on a wearable (19) which can be worn by an order picker (7), wherein the signal (21) is representative of a position of a handling unit (41) on the order picking trolley (11) into which an article (9) removed from an access station (29) is to be deposited, and / or a number and / or type of articles (9) to be deposited in the handling unit (41) of the order picking trolley (11).
15. Order picking and storage system (1) comprising a warehouse management system (6) according to any of claims 1 to 14, at least one order picking trolley (11) which is provided with an eye-catching transmitter (51) having a colored display region (55), and at least one storage unit (5) which is provided with an additional eye-catching transmitter (35) having a colored display region (37), wherein at least one display region (35, 51) has a color (A, B) which can be switched remotely by the warehouse management system (6).
16. Order picking and storage system (1) according to claim 15, comprising an information transmitter (15) designed as a wearable (19), which has a display region (17) having a remotely switchable color (A, B) and is connected, via the warehouse management system (6), in a data-transmitting manner to the eye-catching transmitters (35, 51) of the at least one order picking trolley (11) and the at least one storage unit (5).
17. Order picking and storage system (1) according to claim 15 or 16, comprising an access zone (59) which is designated by the warehouse management system (6) by means of geofencing, is accessible to an order picker (7) for access to the access station (29) of a storage unit (5) and is arranged in front of the access station (29), and comprising a position transmitter (25) which can be worn by the order picker (7) for determining the position (61) of the order picker (7) relative to the access zone (59).
18. Order picking process, in which a set (45) of order picking instructions (43) comprising a plurality of articles (9) is assigned to an order picking trolley (11), in which it is automatically determined that at least one article (9) of the set (45) is ready to be accessed by an order picker (7) at at least one access station (29) of at least one storage unit (5), the order picking trolley (11) and the access station (29) each having an eye-catching transmitter (35, 51) which has a colored display region (37, 55) and the color (A, B) of at least one display region (37, 55) being remotely switchable, characterized in that the color (A, B) of the at least one remotely switchable display region (37, 55) is automatically switched to the color (A, B) of the other display region (37, 55) after it has been determined to be ready for access, and in that the same color (A, B) is automatically set on a display region (17), which has a remotely switchable color (A, B), of an information transmitter (15) which can be worn on the body of the order picker (7), and on a display region (55) of an eye-catching transmitter (51) of an order picking trolley (11), depending on an assignment of the order picker (7) to an order picking trolley (11).
19. Computer program product (77) or computer-readable storage medium comprising commands which, when the program is executed by a computer, cause the computer to execute the process according to claim 18.