Security inspection system and security inspection method
The security inspection system addresses inefficiencies in luggage screening by implementing automated monitoring and transport systems, enhancing efficiency and reducing labor costs through the use of computed tomography and biometric identification.
Patent Information
- Application Number
- JP2024527748
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2021-11-12
- Filing Date
- 2022-11-11
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2042-11-11
AI Technical Summary
Existing security screening systems for luggage and passengers in airports lack efficiency and automation, leading to increased labor costs and inefficiencies due to the need for manual intervention and limited capabilities of traditional X-ray machines.
A security inspection system and method that includes a baggage deposit area with monitoring devices to ensure correct loading, a baggage inspection station using computed tomography, and a transport system for load carriers, along with monitoring at pick-up stations to automate the process and reduce personnel requirements.
Enhances efficiency by reducing labor costs and improving the accuracy of luggage loading and unloading, allowing for automated processes and increased throughput with minimal human intervention.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a security inspection system and method for inspecting a person's luggage. [Background technology]
[0002] Security screening of people, specifically passengers and passenger baggage, is an essential part of every flight. Whether on an intra-European or international flight, the procedures and appearance of the associated equipment have not undergone any substantial further development in recent decades, due in particular to official requirements specifying the equipment to be used and the procedures to be followed. However, in recent years, technological innovations have been considered and the use of more modern techniques, such as the use of computed tomography to generate images for baggage screening, has increasingly been approved.
[0003] The increase in air passenger numbers has led to increased interest by airport operators in increasing the efficiency of security screening and reducing labor costs through process automation and monitoring.
[0004] EP 2684166(B1) proposes an automated passenger screening system for this purpose, in which passengers deposit their luggage on a load carrier in a baggage drop area, and their personal identifier is detected and linked to the load carrier. The passenger undergoes personal screening while their luggage undergoes imaging baggage screening. The passenger then proceeds to the baggage claim area, where a load carrier linked to the passenger's personal identifier becomes available for emptying.
[0005] WO 2020 / 249192 A1 also discloses an automated security inspection system that provides an inspection device after the baggage receiving area that is designed to determine the loading status and degree of soiling of the load carriers. Summary of the Invention
[0006] The present invention is based on the object of further increasing the efficiency of security checks.
[0007] According to the invention, this object is achieved by the features of claims 1 and 14.
[0008] The security inspection system according to the present invention essentially comprises: a baggage deposit area having one or more deposit stations for depositing people's baggage onto at least one load carrier; - a baggage inspection station for image inspection of baggage; a baggage claim area having one or more pick-up stations; a transport system for transporting loaded load carriers from the baggage drop area, through the baggage inspection station, to the baggage claim area, and returning empty load carriers to the baggage drop area; At least one first monitoring device for detecting the load status of the load carrier is provided at each of the provided deposit stations, and / or at least one second monitoring device for detecting the load status of the load carrier is provided at each of the provided retrieval stations.
[0009] The security inspection method according to the present invention comprises the following steps: - a person in a baggage drop-off area having one or more drop-off stations depositing his / her baggage in at least one load carrier provided at the drop-off station; - subjecting the baggage to an image inspection at a baggage inspection station; - a person collecting their package at a package collection area having one or more collection stations; - the loaded load carrier is transported from the baggage drop area, through a baggage inspection station, to the baggage claim area, and the empty load carrier is transported back to the baggage drop area.
[0010] Additionally, at each of the provided deposit stations, the loading status of the load carrier is monitored by at least one first monitoring device, and / or at each of the provided retrieval stations, the loading status of the load carrier is monitored by at least one second monitoring device.
[0011] While traditional X-ray machines are often still used to image baggage at baggage inspection stations, they are increasingly being replaced by much more effective computed tomography devices. In both cases, the devices have limited entrance openings, so the exact loading status of the load carriers (transport boxes) must be observed to ensure smooth transport of the loaded load carriers through the baggage inspection station. Therefore, according to the present invention, the loading status is already monitored at each deposit station so that the person currently depositing their baggage can be made aware of incorrect loading in time and prompted to load their baggage correctly.
[0012] In a corresponding manner, a second monitoring device is also provided at each pick-up station to make a person standing at the pick-up station aware that, for example, not all objects have yet been removed from the load carrier. If the load carrier is detected as empty by the second monitoring device, removal of the load carrier can also be started automatically, so that passengers do not have to manually complete the pick-up process after removing their items.
[0013] Further embodiments of the invention are the subject of the dependent claims.
[0014] The first monitoring device in the deposit station is preferably used to detect compliance with a specific load level of the load carrier, but can also be used to record the contents of the load carrier. For example, it can verify that the luggage does not extend beyond the dimensions of the load carrier. However, markings identifying the maximum load limit can also be provided in the load carrier, and the first monitoring device verifies that the maximum load limit is not exceeded. However, the first monitoring device can also be designed to recognize deposited items, so that during deposit, it can ask about typical items such as a cell phone, keys, or belt if they are not already in the load carrier.
[0015] It is also conceivable that the first monitoring device will recognize the load and provide advice on how to arrange individual items to allow for the most efficient loading possible. Additionally, the first monitoring device may be designed to recognize contraband items such as liquids or weapons and draw attention to them or initiate notification to security personnel. Additionally, animals or infants may be identified and reported.
[0016] The second monitoring device is specifically used to monitor the removal process in order to indicate in time that an object is still present in the load carrier, which can be indicated, for example, audibly or visually in an appropriate manner.
[0017] Any suitable detection device, in particular a camera, may be considered for the first and second monitoring devices.
[0018] According to a preferred embodiment of the present invention, the first and / or second monitoring device comprises an information device for visually and / or audibly displaying an indication regarding the load status of the load carrier. In this way, attention can be drawn to undesirable load statuses at the deposit station, in particular to parcels protruding beyond a predetermined marking. Visual indications can be provided, for example, using colored lights. For example, the load carrier at the deposit station is initially illuminated green, and as soon as an undesirable load status is reached, the illumination changes to red. Additionally or alternatively, suitable indications or flashing icons on the display can also be communicated.
[0019] At the unloading station, attention can be specifically drawn to load carriers that have not yet been completely emptied. Here too, a visual indication by colored lights is conceivable, with the load carriers at the unloading station initially illuminating red and changing to green as soon as the last object has been removed. However, suitable indications or flashing icons on the display are also conceivable in addition or as an alternative.
[0020] Additionally, the first monitoring device may be coupled to the transport system and / or the serving system to block removal of the load carrier during baggage deposit and / or in the event of an undesirable load condition of the load carrier.
[0021] A blockable exit for persons can optionally be provided in the baggage drop-off area or at each drop-off station, which exit can be blocked if an undesirable load condition is detected, for example a baggage that protrudes beyond the dimensions of the load carrier. In this way, persons can again correctly load the load carrier themselves, otherwise the load carrier will not be removed and therefore the pick-up station will not be available for the next person.
[0022] The load carrier is preferably box-shaped and has at least one opening, the dimensions of the load carrier being conveniently adapted to the entrance opening of the baggage inspection station or computer tomography device so that the load carrier is made as large as possible on the one hand and can be transported through the computer tomography device without difficulty on the other hand. Furthermore, the load carrier can optionally be provided with a cover that can be closed either automatically or by the person who loaded the baggage into the load carrier.
[0023] In baggage inspection stations, computerized tomography scanners are preferably used. These scanners feature significantly larger entrance openings than conventional X-ray machines, allowing for larger load carriers and carrying more luggage, meaning that one load carrier per person is usually sufficient. Additionally, the visual representation for inspecting luggage is significantly improved. In the case of computerized tomography scanners certified according to the C3 standard, larger electronic devices such as laptops, tablets, or cameras, as well as liquids, can remain in the baggage during baggage inspection, making it easier and faster to store the luggage in the carrier.
[0024] According to a preferred embodiment of the present invention, a first identification device for detecting a person's personal identifier, in particular a biometric characteristic, is provided at each deposit station, which first identification device cooperates with a data processing device for linking the person's personal identifier with a load carrier on which the person's luggage is located. Thus, at each deposit station, the person's personal identifier can be detected by the first identification device and the person's personal identifier is linked by the data processing device to a load carrier on which the person's luggage is located.
[0025] In this way, the load carrier loaded with luggage is unambiguously assigned to the person to whom the luggage belongs. The first identification device can be designed to detect the person's personal identifier for the first time, or can be used to identify the person if the personal identifier is already stored in the system. For example, the person's personal identifier can be detected when entering an airport building or when checking in a large bag. It is also conceivable that the person could generate their own personal identifier prior to traveling, for example, using a smartphone, and upload it to the airline. In addition to the person's biometric characteristics, other personal identifiers, such as a code on a boarding pass, are also conceivable. However, biometric characteristics have the advantage that they can be easily captured with a camera, eliminating the need for the person to scan their boarding pass or some other token.
[0026] If a person has loaded their luggage into the provided load carrier, the following options for ending the process are specifically possible:
[0027] The person can use the input unit to confirm that the luggage has been placed in the load carrier, after which the load carrier is removed. However, it is also conceivable that the person signals the completion of the luggage deposit by closing the cover of the load carrier, after which the load carrier is removed. Finally, it is also conceivable that the first monitoring device detects the luggage in the load carrier, and a sensor unit formed, for example, by the first identification unit determines that there is no one left at the deposit station for a predetermined period of time, after which the load carrier is removed.
[0028] Furthermore, at least one buffer for a plurality of loaded load carriers may be provided in the baggage receiving area, a plurality of pick-up stations may be assigned to each buffer, and a delivery system may be provided for transferring the loaded load carriers from the buffer to one of the pick-up stations. Thus, people are not required to go to a specific pick-up station but can freely choose the next available pick-up station. However, depending on the number of available pick-up stations, people may be directed to a particular zone in the baggage receiving area, with each zone being assigned several pick-up stations.
[0029] To ensure that the correct load carrier is dispensed, each dispense station preferably includes a second identification unit for detecting the personal identifier of the person standing in front of the dispense station, which is linked to the dispense system for transferring the load carrier linked to the person's personal identifier to this dispense station. Additionally, input and / or output units, specifically monitors and loudspeakers, are provided at dispensed dispense stations, designed to provide information to the person and / or confirm the process of emptying the load carrier by the person. Through the input and / or output units, the person can specifically recognize that there is still a set of luggage / objects in the load carrier. Using appropriate recognition software, the person can be specifically warned about the forgotten item, e.g., by receiving a "please take your cell phone" warning. After complete retrieval, for example, the passenger can be wished a good flight and / or the departure gate can be displayed if this information is available. Another option is to display advertisements, which provide an additional source of revenue.
[0030] In an advantageous embodiment, a sensor unit may be provided at the provided pick-up station, which may be formed, for example, by a second identification unit, designed to determine the presence of a person located in front of the pick-up station, and linked to the second monitoring unit and the provision system, such that if the sensor unit does not detect a person in front of the pick-up station and the load carrier is empty, the emptying process is completed by removing the emptied load carrier. In this way, the pick-up station can be made available to the next person as quickly as possible.
[0031] Of course, it is also conceivable that after emptying the load carrier at the unloading station, a person can complete the emptying process by making an entry at the input unit or by closing a lid or cover, and then remove the load carrier.
[0032] In the context of the present invention, the baggage receiving area may also have a follow-up inspection area for baggage that is subject to inspection within the baggage inspection station, and preferably at least one of the above-described removal stations is provided within the follow-up inspection area, although it may be possible to dispense with re-identification at the follow-up inspection station.
[0033] Additionally, the transport system may be designed to eject load carriers that are not completely emptied and / or soiled, preventing them from reaching one of the drop-off stations. Such load carriers are then transported to a service station or lost-and-found station. Because the load carriers are linked to the personal identifier of the associated person, that person may be specifically paged and asked to go to the lost-and-found station.
[0034] However, in the context of the present invention, it is also conceivable that soiled and / or not completely emptied load carriers are transported to an available follow-up inspection station where they can be cleaned by an employee or where a passenger can collect the forgotten items. Here, it is also possible that not completely emptied load carriers remain in a buffer system in the follow-up inspection area and then become available when the correct passenger turns up.
[0035] In conventional deposit and retrieval stations, baggage is deposited and retrieved in the presence of security personnel. In the system / method described above, security personnel no longer need to be present at each deposit or retrieval station. In many cases, it is sufficient for security personnel to be responsible for multiple deposit or retrieval stations, respectively. Therefore, the system / method according to the present invention is also characterized by significant personnel savings, since the deposit and retrieval stations require little or no personnel. Although it is conceivable that one inspector could operate two follow-up inspection stations, even in the case of manual follow-up inspection, each follow-up inspection station requires only one inspector. [Brief explanation of the drawings]
[0036] Further embodiments and advantages of the present invention will be explained in more detail with reference to the following description and drawings. [Figure 1] FIG. 1 is a block diagram of a security inspection system. [Figure 2] 1 is a schematic diagram of a detail of a baggage drop-off area with drop-off stations. [Figure 3] 1 is a schematic diagram of a detail of a package receiving area with a pick-up station. DETAILED DESCRIPTION OF THE INVENTION
[0037] 1 shows an exemplary embodiment of a security inspection system according to the present invention, shown as a block diagram. It provides a baggage deposit area 1 having one or more deposit stations 1a, 1b, 1c for depositing baggage on a load carrier 2. The loaded load carrier 2 is delivered to a baggage inspection station 3 for imaging examination of the baggage, in which a computed tomography device is preferably used.
[0038] During baggage inspection, the person goes to a person inspection station 4. For example, metal detectors and body scanning devices as well as other devices may be used here.
[0039] The person inspection station 4 preferably has a queuing and routing system that allows the synchronization between the baggage status and the person inspection to be controlled in a targeted manner. Thus, after the personal inspection is completed, the person receives information on the information device 5 about whether he should go to the baggage receiving area 6 with one or more removal stations 6a, 6b, 6c to receive and empty the load carrier assigned to him, or to the follow-up inspection area 7 for a manual follow-up inspection of his baggage. The person's route is illustrated by solid arrows.
[0040] The dashed arrows indicate a transport system 8 for transporting load carriers 2 from the baggage drop area 1 through baggage inspection station 3 to the baggage claim area 6 or follow-up inspection area 7, and for returning empty load carriers to the baggage drop area 1. After baggage inspection station 3, a switch 9 is provided to divert baggage that was targeted at baggage inspection station 3 to the follow-up inspection area 7. Before reaching the switch, the operator of the baggage inspection station (CT device) must decide whether follow-up inspection is necessary or not. If no decision is made in time, the load carrier 2 is automatically sent to the follow-up inspection area 7, so that some targeted baggage and non-targeted baggage do not get mixed on the way to the baggage claim area 6.
[0041] In the area of the return transport path, a device 18 is provided for discharging load carriers 2' that are not completely emptied and / or soiled. Soiled load carriers are sent to a service station (not shown in detail), while load carriers that are not completely emptied are sent to a lost and found station. Since the load carriers are linked to the personal identifier of the person to whom they belong, that person can be specifically paged and asked to go to the lost and found station.
[0042] With reference to Figure 2, the baggage drop-off area 1 will be explained in more detail below using the example of a drop-off station 1a. Drop-off station 1a thereby comprises a first identification device 10 for detecting a personal identifier (in particular a biometric feature) of a person, which is preferably designed as a camera. The personal identifier of the person is linked to a load carrier 2 provided at drop-off station 1a by a data processing device 11, and an identifier attached to the load carrier is read by a reading device (not shown in detail) and linked to the person's personal identifier. The identifier on the load carrier can be formed, for example, by an RFID, a QR code or similar marking.
[0043] As soon as the person's personal identifier is detected, cover 12 opens, releasing the load carrier for loading. In the illustrated embodiment, the load carrier is box-shaped and opens at the top. The person can then load their luggage onto the load carrier, and visual and / or audible instructions can be given to the person, in particular via first information device 13, which comprises a monitor and a speaker. In particular, in this way, it can be indicated that a specified maximum load limit must not be exceeded. For this purpose, the load carrier can have corresponding markings. However, it is also conceivable that load carrier 2 can be loaded in such a way that luggage 14 does not protrude beyond the dimensions of load carrier 2.
[0044] A first monitoring device 15, for example formed by a camera, detects the loading state of the load carrier 2 and in the event of an undesirable loading state, corresponding instructions are given via the first information device 13. In the example shown, the luggage 14 protrudes beyond the dimensions of the load carrier 2, so the person can be asked to store the luggage correctly or to request a second load carrier. There is also the option of requesting assistance from an employee if the person is dealing with a problem.
[0045] If the luggage is properly loaded onto the load carrier 2, the luggage deposit process can be completed automatically, specifically after a specified time, by a check indicating that there are no more people at the deposit station 1a, so that automatic removal of the load carrier 2 can begin. However, it can also be provided that a person closes the load carrier with a cover or lid, and any such cover on the load carrier can also be automatically lifted and put into place. Alternatively, closing can be completed by pressing a button or in a similar manner. If a person leaves the receiving station without confirmation, they may be prompted to provide confirmation via the first information device 13. If a person nevertheless attempts to leave, this can possibly be prevented by a blockable exit, and automatic removal can begin after a specified time has elapsed.
[0046] For unloading, first the cover 12 is closed and / or the gate 17 is opened to allow the load carrier 2 to be unloaded. The transport of the load carrier 2 is carried out via the transport system 8 and / or the offering system 16 connected to the transport system 8, and the first monitoring device 15 is coupled to the offering system 16 and / or the transport system 8 such that if an undesirable loading state of the load carrier 2 is detected, the unloading of the load carrier 2 from the deposit station 1 a is blocked (the gate 17 remains closed). The loaded load carrier 2 is then fed to the baggage inspection station 3, while the people go to the people inspection station 4.
[0047] The deposit station 1 a is assigned a buffer area 19 for the returned empty load carriers 2 , while the deposit station 1 c provides the next empty load carrier via the transport system 8 or the delivery system 16 .
[0048] In the following, the parcel receiving area 6 will be explained in more detail with reference to FIG. 3 using the example of a pick-up station 6a.
[0049] The pick-up station 6a can be basically configured similarly or identically to the deposit station 1a. Thereby, the pick-up station 6a has a second identification device 20 for detecting the personal identifier of a person standing in front of the pick-up station, and the second identification unit 20 is linked to a second dispensing system 21 for transferring a load carrier 2 linked to the person's personal identifier to this pick-up station 6a. For this purpose, the baggage receiving area 6 has at least one buffer 22 for a plurality of loaded load carriers 2, and a plurality of removal stations, for example, removal stations 6a, 6b, and 6c, are assigned to the buffer 22. The second dispensing system 21 is designed to transfer the loaded load carrier 2 from the buffer 22 to one of the removal stations 6a, 6b, and 6c, and the buffer 22 can transfer the load carrier 2 to each of the associated receiving stations in any order, regardless of the order in which the load carriers 2 were introduced into the buffer 22. Thus, a person wishing to collect a parcel can go to any currently free pick-up station 6a, 6b, 6c, where he or she will be identified by the second identification device 20 and the load carrier 2, which is consequently linked to his or her personal identifier, will be transferred from the buffer 22 to this pick-up station.
[0050] As soon as the associated load carrier 2 is provided in the unloading station, the cover 23 opens, making the load carrier 2 accessible for unloading. Information can be provided to a person via the input and / or output unit 24. A second monitoring device 25, for example formed by a camera, detects the loading status of the load carrier 2. Via the input and / or output unit 24, the person can in particular see that there are still some luggage / objects in the load carrier 2. After complete unloading, for example, the passenger can be wished a good flight and / or the departure gate can be displayed.
[0051] In an advantageous embodiment, a sensor unit can be provided at an existing pick-up station, this unit being formed, for example, by a second identification unit 20, which is designed to determine the presence of a person located in front of the pick-up station and which is linked to the second monitoring unit 25 and the second provision system 21, such that if the sensor unit does not detect a person in front of the pick-up station 6a and the load carrier 2 is empty, the emptying process is completed by removing the emptied load carrier 2. In this way, the pick-up station can be made available to the next person as quickly as possible.
[0052] Once the removal process is complete, the cover 23 closes and / or the gate 26 opens to allow the load carrier 2 to be removed. The transport of the load carrier 2 takes place via the second offering system 21 and / or the transport system 8, to which the second monitoring device 25 is coupled such that removal of the load carrier 2 from the removal station 1 a is blocked (the gate 26 remains closed) if there are still objects in the load carrier 2. If the load carrier 2 is empty, return transport to the baggage deposit area 1 is initiated. The next removal process can then be initiated by detection by the second identification device 20 of the next person standing in front of the removal station.
[0053] According to a preferred embodiment of the present invention, the second monitoring device 25 in the pick-up station 6a, 6b, 6c can also detect soiling of the load carrier 2, for example by leaking liquid. The soiled load carrier can then be emptied by the device 18 (FIG. 1). Ejection can also occur in the case of a non-empty or not completely emptied load carrier, if a person is supposed to leave the pick-up station 6a, 6b, 6c before the emptying is complete.
Claims
1. 1. A security inspection system, comprising: a baggage deposit area (1) having one or more deposit stations (1a, 1b, 1c) for depositing baggage belonging to persons onto at least one load carrier (2); a baggage inspection station (3) for image inspection of said baggage; a parcel receiving area (6) with one or more pick-up stations (6a, 6b, 6c); a transport system (8) for transporting the loaded load carriers (2) from the baggage deposit area (1) via the baggage inspection station (3) to the baggage claim area (6) and for returning empty load carriers (2) to the baggage deposit area (1), 1. A security inspection system, characterized in that at least one first monitoring device (15) is provided at each of the provided deposit stations (1a, 1b, 1c) for detecting compliance with a specific loading level as the loading state of the load carrier (2), and / or at least one second monitoring device (25) is provided at each of the provided removal stations (6a, 6b, 6c) for detecting the load carrier (2) being not completely empty as the loading state.
2. When the security inspection system has the at least one first monitoring device (15), the first monitoring device (15) has at least one detection device and / or at least one camera, 2. The security inspection system of claim 1, wherein when the security inspection system comprises the at least one second monitoring device (15), the second monitoring device (25) comprises at least one detection device and / or at least one camera.
3. If the security inspection system comprises the at least one first monitoring device (15), the first monitoring device (15, 25) comprises an information device (13) and / or an output unit (24) designed to visually and / or audibly reproduce an indication in the event of an undesirable loading state of the load carrier (2) at the deposit station (1a, 1b, 1c) and / or in the event that the load carrier (2) at the removal station (6a, 6b, 6c) is not completely emptied, 2. The security inspection system according to claim 1, characterized in that, if the security inspection system comprises the at least one second monitoring device (15), the second monitoring device (25) comprises an information device (13) and / or an output unit (24) designed to visually and / or audibly reproduce an indication in the event of an undesirable loading state of the load carrier (2) at the deposit station (1a, 1b, 1c) and / or in the event that the load carrier (2) at the removal station (6a, 6b, 6c) is not completely emptied.
4. A security inspection system as described in claim 1, characterized in that when the security inspection system has the at least one first monitoring device (15), the first monitoring device (15) is coupled to the conveying system (8) and / or a serving system (16) connected to the conveying system (8) and is designed to block the removal of the load carrier (2) during the deposit of the baggage and / or in the event of an undesirable loading state of the load carrier (2).
5. 2. A security inspection system according to claim 1, characterized in that at each deposit station (1a, 1b, 1c) a first identification device (10) is provided for detecting a personal identifier of said person, which interacts with a data processing device (11) for linking said personal identifier of said person to said load carrier (2) on which said person's baggage is located.
6. 2. The security inspection system according to claim 1, characterized in that the baggage receiving area (6) has at least one buffer (22) for a plurality of load carriers (2) loaded with baggage, each buffer (22) being assigned a plurality of the removal stations (6a, 6b, 6c), and a delivery system (21) is provided for transporting the loaded load carriers (2) from the buffer (22) to one of the removal stations (6a, 6b, 6c).
7. 7. The security inspection system according to claim 6, characterized in that each pick-up station (6a, 6b, 6c) comprises a second identification unit (20) for detecting a personal identifier of the person standing in front of said pick-up station (6a, 6b, 6c), said second identification unit (20) being linked to said offering system (21) for transferring the load carrier (2) linked to said personal identifier of said person to said pick-up station (6a, 6b, 6c).
8. 2. A security inspection system according to claim 1, characterized in that the conveying system (8) is designed to eject load carriers (2) that are not completely emptied and / or are soiled.
9. A security inspection system as described in claim 1, characterized in that an output unit (24) is provided at the provided removal station (6a, 6b, 6c), the unit being designed to provide information to the person and / or to confirm the process of emptying the load carrier (2) by the person.
10. 2. The security inspection system according to claim 1, characterized in that a sensor unit is provided at the provided pick-up station (6a, 6b, 6c), the unit being designed to determine the presence of a person located in front of the pick-up station (6a, 6b, 6c), and linked to a second monitoring unit (25) and to a provision system (21) such that if the sensor unit does not detect a person in front of the pick-up station (6a, 6b, 6c) and the load carrier is empty, the emptying process is completed by removing the emptied load carrier (2).
11. A security inspection system as described in claim 1, characterized in that when the security inspection system has at least one first monitoring device (15), the baggage deposit area (1) or each deposit station (1a, 1b, 1c) provides a blockable exit for persons, and the exit can be blocked by the first monitoring device (15) upon detection of an undesirable loading condition.
12. A security inspection method, characterized in that the security inspection system according to claim 1 is used, - a person in a luggage deposit area (1) having one or more deposit stations (1a, 1b, 1c) deposits his / her luggage in at least one load carrier (2) provided at the deposit stations (1a, 1b, 1c), - the baggage is subjected to an image inspection at a baggage inspection station (3), - said person collects his / her parcel in a parcel collection area (6) having one or more collection stations (6a, 6b, 6c), - the loaded load carrier (2) is transported from the baggage drop-off area (1) via the baggage inspection station (3) to the baggage claim area (6) and the empty load carrier (2) is transported back to the baggage drop-off area (1); 1. A security inspection method, characterized in that at each of the provided deposit stations (1 a, 1 b, 1 c), compliance with a specific loading level as the loading state of the load carrier (2) is monitored by at least one first monitoring device (15), and / or at each of the provided removal stations (6 a, 6 b, 6 c), a load carrier (2) that is not completely emptied is detected as the loading state by at least one second monitoring device (25).
13. 13. A security screening method according to claim 12, characterized in that at each deposit station (1a, 1b, 1c) the personal identifier of the person is detected by a first identification device (10) and the personal identifier of the person is linked by a data processing device (11) to the load carrier (2) on which the person's baggage is located.
14. - the person confirms via an input unit that the loading of the load carrier (2) with the cargo has been completed, and then the load carrier (2) is unloaded, or - the person signals the completion of the loading of the cargo by closing the cover of the load carrier (2), after which the load carrier (2) is removed, or - If the security inspection system has the at least one first monitoring device (15), the first monitoring device (15) detects luggage in the load carrier (2), and a sensor unit (15) determines that there is no person at the deposit station (1a, 1b, 1c), and then the load carrier (2) is removed. - A security inspection method as described in claim 12, characterized in that
15. - after emptying the load carrier (2) at the unloading station (6a, 6b, 6c), the person completes the emptying process by making an entry at the input unit (24), and the load carrier (2) is then removed; and / or 13. The security inspection method according to claim 12, characterized in that, when the security inspection system comprises the at least one second monitoring device (25), the second monitoring unit (25) detects an empty load carrier (2) and a sensor unit determines that there is no person at the removal station (6a, 6b, 6c), thereby automatically terminating the emptying process of the load carrier (2) at the removal station (6a, 6b, 6c) and removing the load carrier (2).
Citation Information
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