CN114308690B - Civil aviation passenger baggage sorting method - Google Patents

Civil aviation passenger baggage sorting method Download PDF

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Publication number
CN114308690B
CN114308690B CN202111677090.4A CN202111677090A CN114308690B CN 114308690 B CN114308690 B CN 114308690B CN 202111677090 A CN202111677090 A CN 202111677090A CN 114308690 B CN114308690 B CN 114308690B
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baggage
information
luggage
passenger
display
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CN114308690A (en
Inventor
阮毓超
肖文金
许世清
郑广域
吕福宝
张锦林
王法创
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Xiamen Civil Aviation Kaiya Co ltd
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Xiamen Civil Aviation Kaiya Co ltd
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Abstract

The invention discloses a civil aviation passenger baggage sorting method, which comprises the steps of printing bingo paper, reading baggage information of an RFID tag when the baggage passes through an RFID reading control device, sending the information to a display, checking the baggage information through the display by a worker, pulling the baggage from a conveyor belt, sending the baggage to a temporary loading container, tearing off a passenger bar code sticker, and pasting the passenger bar code sticker on the bingo paper; the camera shoots the bingo paper and transmits the picture to the integrated machine, and the integrated machine automatically recognizes the bar code of the picture and marks the recognition information on the picture; the integrated machine uploads the successfully identified photo to the cloud server, and the cloud server compares the identification information of the received photo with the passenger luggage information to obtain a checking result; if the pieces are consistent, the checking is finished, if the pieces are inconsistent, the wrong luggage is positioned on the integrated machine, and the staff find out the correct passenger luggage and correct bingo paper and luggage. The scheme realizes sorting electronization, reduces the working strength, and improves the sorting efficiency and the accuracy.

Description

Civil aviation passenger baggage sorting method
Technical Field
The invention belongs to the technical field of aviation luggage sorting, and particularly relates to a civil aviation passenger luggage sorting method.
Background
At present, the civil aviation passenger baggage consignment is carried out sequentially through the steps of passenger baggage transportation, sorting, loading, unified transportation, boarding and the like. The traditional sorting mode is that a worker can sort the luggage case from the conveying belt by visually checking the label information on the luggage plate on the luggage case of the passenger delivery according to the corresponding flight information (including flight number, destination and the like), then the luggage case is sent to the temporary loading container, and finally the luggage case is uniformly loaded. However, such sorting methods have the following disadvantages:
1. the quantity of baggage is large and the stacking is large at the time of flight peak, sorting staff needs to frequently bend down to turn over and check baggage to confirm tag information, the working intensity is high, repeated actions are large, the light of a sorting hall is usually insufficient, the sorting is affected by the light, and the burden is brought to the turning-over work;
2. after the corresponding baggage is manually matched, the step of checking the baggage is lacking, and human errors such as omission, matching errors and the like are easy to cause due to fatigue of personnel, so that flight delay and extra economic compensation are caused, and the travel experience of passengers is influenced;
3. if errors occur, workers need to find the luggage labels from the temporary loading container, so that the workload is high and the efficiency is low;
4. at least two workers are required to work cooperatively, so that communication is frequent and communication problems are easy to generate;
many negative impacts are given to airlines, airports and passengers against the above-mentioned shortcomings, so that an improved current baggage sorting scheme is the main direction of research.
Disclosure of Invention
The invention aims to provide a sorting method for civil aviation passenger baggage, which realizes sorting electronization, does not need staff to turn over baggage, reduces working strength, and can improve sorting efficiency and accuracy.
To achieve the above object, the solution of the present invention is: a method for sorting luggage of civil aviation passengers, comprising the following steps:
s1, a worker moves to a sorting system, wherein the sorting system comprises a luggage turntable, an RFID reading control device, a checking device and a display; the luggage turntable is annular and is used for placing passenger luggage, each passenger luggage is provided with a corresponding RFID tag and a corresponding bar code sticker, the RFID reading control device and the checking device are arranged at the outlet end of the luggage turntable, the RFID reading control device is connected with the display, and the display is arranged in the middle of the luggage turntable; the checking device comprises a frame, an integrated machine, a camera, a photoelectric switch, a cloud server and a printer, wherein the frame is provided with an identification area for the placement of bingo paper, the identification area is provided with the camera and the photoelectric switch, and the printer, the camera, the photoelectric switch and the cloud server are connected with the integrated machine; the cloud server is used for storing the passenger luggage information of the bar code sticker; firstly, passenger luggage information required to be checked by the loaded flight number is acquired on a cloud server in real time, a worker inputs the flight number through an integrated machine and is connected with a printer, and the printer prints bingo paper with the flight number;
s2, after the passenger baggage is delivered, the baggage enters a baggage turntable, when the baggage passes through an RFID reading control device, the RFID reading control device automatically senses and reads the baggage information of an RFID tag, and sends the information to a display, the display displays the baggage information, and the display is played in a rolling way along with the baggage, a worker checks the baggage information through the display, sorts the baggage which is respectively responsible for flights, pulls the baggage from a conveying belt, sends the baggage to a temporary loading container allocated to the corresponding flights, and then tears off a bar code sticker and pastes the barcode sticker on bingo paper;
s3, after the luggage loading is finished, putting the bingo paper into an identification area of the checking device, detecting whether the identification area is put into the bingo paper by a photoelectric switch, if so, carrying out the next step, otherwise, readjusting the position of the bingo paper in the identification area;
s4, starting a camera, photographing bingo paper by the camera, transmitting the photographed picture to the integrated machine, automatically identifying all passenger baggage bar codes on the picture after the integrated machine obtains the picture, and marking identification information of each bar code on the picture;
s5, after the staff confirms that the identification is finished, clicking and checking, the integrated machine uploads the photo after the identification is successful to the cloud server, the cloud server compares the identification information of the received photo with the stored passenger luggage information to obtain a checking result, and the cloud server sends the checking result to the integrated machine; if the checking results are all consistent, the checking is finished, if the checking results are inconsistent, the all-in-one machine positions the wrong bar code on the bingo paper photo, the staff returns to the display and the luggage turntable, the correct passenger luggage bar code sticker is found, the bingo paper is corrected, the correct luggage is replaced to the temporary loading container, and the checking is finished.
Preferably, in step S2, the display supports setting the flight of interest in segments, and when the baggage of the flight of interest passes through the display, the baggage information on the display corresponding to the flight of interest changes color.
Preferably, in step S4, if all the passenger baggage bar codes on the successful photo are identified by the integrated machine, the next step is entered, and if there is an identification failure, the staff selects the failed identification information one by one, and the passenger baggage bar codes are scanned manually or the baggage numbers are entered into the integrated machine to perfect the identification information.
Preferably, in step S4, the identification information includes success information and failure information, each bar code corresponds to one of the success information and the failure information,
the success information includes a success ROI area and a baggage number located within the success ROI area,
the failure information includes a failure ROI area and an ERROR identification located within the failure ROI area,
the success information and the failure information are displayed on the photo, and the success ROI area and the failure ROI area are respectively framed outside the corresponding bar codes.
Preferably, in step S5, the cloud server sends the verification result to the all-in-one machine, and simultaneously, places the photo uploaded by the all-in-one machine and the identified photo into an algorithm training library of the cloud server for deep learning.
The invention greatly improves the original aviation passenger baggage sorting mode, and has the following gain effects:
1. the automatic identification and information display are carried out on the baggage turntable through the RFID identification technology, the machine error rate is low, so that the sorting accuracy is relatively high, workers do not need to frequently bend down to turn over the baggage, the labor intensity of the workers is reduced, the workers can directly check the baggage information from a display, fatigue is not easy to occur, more baggage can be sorted, and the sorting efficiency is also improved;
2. the device is used for realizing sorting verification of the baggage through combination of manual work and science and technology, has the capabilities of quick identification, quick calculation and autonomous learning, helps staff to improve current searching, positioning and checking work through a camera and AI deep learning technology, realizes automatic searching, positioning and checking work of a system, saves intermediate work such as airport personnel handing over, improves the working efficiency of airport personnel, reduces the working intensity (single operation), improves the accuracy of baggage sorting, avoids flight delay and extra economic compensation, and ensures that passengers keep good traveling experience.
Drawings
Fig. 1 is a schematic view of the overall structure of the sorting system of the present invention;
fig. 2 is a schematic perspective view of the collation apparatus of the present invention;
FIG. 3 is a schematic diagram showing the connection of the components of the verification device of the present invention;
FIG. 4 is a block diagram of the workflow of the present invention;
FIG. 5 is a schematic plan view of a bingo paper of the present invention;
FIG. 6 is a schematic diagram of the all-in-one machine of the present invention recognizing a photo of bingo paper and marking the recognition information.
Description of the reference numerals:
1. a luggage carousel; 2. an RFID read control device; 3. a collation device; 31. a frame; 311. a cavity; 312. a placement groove; 32. an integrated machine; 33. a camera; 34. an optoelectronic switch; 35. a scanning gun; 36. a printer; 37. a cloud server; 38. a keyboard; 4. a display; 5. bingo paper; 6. the container is temporarily loaded.
Detailed Description
The invention will be described in detail with reference to the accompanying drawings and specific embodiments.
Example 1:
the invention provides a sorting method for civil aviation passenger baggage, which relates to a sorting system for civil aviation passenger baggage, as shown in figure 1, and comprises a baggage turntable 1, an RFID reading control device 2, a checking device 3 and a display 4.
The luggage carousel 1 is annular, has long side and short side, places the passenger's luggage on the conveyer belt of luggage carousel 1, has RFID label and the bar code sticker that corresponds respectively on every passenger's luggage, and the exit end of luggage carousel 1 sets up RFID reads controlling means 2, and when passenger's luggage got into luggage carousel 1 and passed through RFID reading controlling means 2, RFID read controlling means 2 auto-induction read RFID label's luggage information.
The RFID reading control device 2 is connected with the display 4, the display 4 is arranged in the middle of the luggage turntable 1 along the length direction of the luggage turntable 1, luggage information is displayed on the display 4, and the display is played along with the rolling of the luggage.
The exit end of the luggage carousel 1 is further provided with a checking device 3, as shown in fig. 2 and 3, the checking device 3 includes a rack 31, an integrated machine 32, a camera 33, a photoelectric switch 34, a scanning gun 35, a printer 36 and a cloud server 37.
The rack 31 is a movable cabinet structure, the upper part of the rack 31 is provided with an integrated machine 32, the integrated machine 32 is a machine integrating a host machine and a display screen, the integrated machine 32 is adopted to simplify and compact the whole structure, and the integrated machine 32 is respectively connected with the camera 33, the photoelectric switch 34, the scanning gun 35, the printer 36 and the cloud server 37.
The frame 31 is provided with a recognition area for placing the bingo paper 5, the recognition area is provided with the camera 33 and the photoelectric switch 34, in an embodiment, the recognition area is a concave cavity 311 formed in the middle of the frame 31, the concave cavity 311 is used for placing the bingo paper 5, as shown in fig. 5, the bingo paper 5 is a paper with multiple palace lattices designed on the paper, and each luggage board of the luggage has a bar code sticker, so that each palace lattice of the bingo paper 5 can be correspondingly stuck with a bar code sticker, the camera 33 and the photoelectric switch 34 are arranged in the concave cavity 311, the camera 33 is used for shooting the bingo paper 5, and the photoelectric switch 34 is used for sensing whether the bingo paper 5 is placed in the concave cavity 311.
The bingo paper 5 may be derived from a printer 36, a placement groove 312 is formed in the bottom of the frame 31, the printer 36 is placed in the placement groove 312, and the printer 36 is convenient for a worker to print the bingo paper 5 by himself.
The cloud server 37 is used to store passenger baggage information corresponding to the bar codes.
The scanning gun 35 is arranged outside the frame 31, and the scanning gun 35 is used for scanning the bar code.
Referring to fig. 4, a method for sorting luggage of civil aviation passengers comprises the following steps:
s1, firstly, a worker moves to a baggage turntable 1 to wait for sorting baggage, passenger baggage information required to be checked by a loaded flight number is acquired in real time on a cloud server 37, the worker inputs the flight number through an integrated machine 32 and is connected with a printer 36, and the printer 36 prints bingo paper 5 with the flight number;
s2, after the passenger baggage is delivered, the baggage enters the baggage turntable 1, when the baggage passes through the RFID reading control device 2, the RFID reading control device 2 automatically senses and reads the baggage information of the RFID tag, and sends the baggage information to the display 4, the display 4 displays the baggage information, and the baggage is played and displayed in a rolling way, so that a worker can quickly and accurately check the baggage information through the display 4, sort the baggage which is responsible for flights respectively, need not to turn down to check the baggage, greatly reduce the working intensity, optimize the operation, enable the display 4 to support the subsection setting and pay attention to the flights, and remind the worker through the color change of the baggage information when the baggage which is concerned with the flights passes through the display area, so that the baggage to be sorted can be distinguished obviously; the baggage is pulled down from the conveyor belt, a worker can scan the baggage label of the baggage which is currently sorted and extracted by using equipment such as an intelligent handheld terminal, record baggage loading information, send the baggage to a temporary loading container 6 allocated by a corresponding flight, tear off a bar code sticker and paste the bar code sticker on the bingo paper 5;
s3, after the baggage loading is finished, putting the bingo paper 5 into a concave cavity 311 of the checking device 3, detecting whether the bingo paper 5 is put into the concave cavity 311 by using a photoelectric switch 34, if so, carrying out the next step, otherwise, readjusting the position of the bingo paper 5 in the concave cavity 311;
s4, starting a camera 33, photographing bingo paper 5 by the camera 33, transmitting the photographed photo to a machine 32, automatically identifying all passenger baggage bar codes on the photo after the machine 32 obtains the photo, and marking identification information of each bar code on the photo, as shown in FIG. 6, wherein the identification information comprises success information and failure information, each bar code corresponds to one piece of success information or failure information, the success information comprises a success ROI area and baggage numbers (such as 000001-000025) in the success ROI area (box), the failure information comprises a failure ROI area and ERROR marks in the failure ROI area (box), the success information and the failure information are displayed on the photo, the success ROI area and the failure ROI area are respectively and respectively arranged outside the corresponding bar codes, and the successfully ROI area and the failure ROI area can be clearly indicated to staff through the bar codes identified in this way; in order to facilitate the work of staff, the successful ROI area and the failed ROI area are distinguished by different colors; if all the identification is successful, the next step is carried out, if the identification is failed, the staff selects the failed identification information one by one, and the bar code is scanned by the scanning gun 35 and is input into the all-in-one machine 32 to perfect the identification information; the same as the scanning gun 35, a keyboard 38 is arranged beside the integrated machine 32 to support manual entry of luggage numbers, flight numbers and the like;
s5, after the staff confirms that all the identification is finished, clicking and checking, uploading the photos after the identification to a cloud server 37 by the all-in-one machine 32, comparing the identification information of the received photos with stored passenger luggage information by the cloud server 37 to obtain a checking result, sending the checking result to the all-in-one machine 32, and simultaneously, putting the photos uploaded by the all-in-one machine 32 and the photos after the identification into an algorithm training library for deep learning, and performing self-learning to perfect an all-in-one machine identification algorithm; if the check results are all consistent, the check is completed, and if there is a mismatch in the check results, the all-in-one machine 32 locates the wrong bar code (i.e., the coordinates of the baggage on the temporary loading container 6) on the bingo photo, the staff member returns to the display 4 and the baggage carousel 1, finds the correct passenger baggage bar code sticker, corrects the bingo paper 5, and replaces the correct baggage with the temporary loading container 6, and the check is completed.
Example 2:
the difference between this embodiment and embodiment 1 is that two sorting systems are arranged on a row Li Zhuaipan 1, specifically, the number of the RFID reading control devices 2, the checking devices 3 and the displays 4 is two, one of the RFID reading control devices 2 and the checking devices 3 is arranged at the outlet end of the luggage turntable 1 on the short side, the other RFID reading control device 2 and the checking device 3 are arranged at the other end of the luggage turntable 1 opposite to the outlet end, and the two RFID reading control devices 2 are symmetrically arranged; the two RFID reading control devices 2 are respectively connected with a display 4, and the two displays 4 are arranged at the middle part, namely the long side, of the luggage turntable 1 in a back-to-back way; the design can fully utilize the front and back space of the luggage turntable 1, and the sorting efficiency and the accuracy are quickened.
The above embodiments are only preferred embodiments of the present invention, and are not limited to the present invention, and all equivalent changes made according to the design key of the present invention fall within the protection scope of the present invention.

Claims (5)

1. A civil aviation passenger baggage sorting method is characterized in that: the method comprises the following steps:
s1, a worker moves to a sorting system, wherein the sorting system comprises a luggage turntable, an RFID reading control device, a checking device and a display; the luggage turntable is annular and is used for placing passenger luggage, each passenger luggage is provided with a corresponding RFID tag and a corresponding bar code sticker, the RFID reading control device and the checking device are arranged at the outlet end of the luggage turntable, the RFID reading control device is connected with the display, and the display is arranged in the middle of the luggage turntable; the checking device comprises a frame, an integrated machine, a camera, a photoelectric switch, a cloud server and a printer, wherein the frame is provided with an identification area for the placement of bingo paper, the identification area is provided with the camera and the photoelectric switch, and the printer, the camera, the photoelectric switch and the cloud server are connected with the integrated machine; the cloud server is used for storing the passenger luggage information of the bar code sticker; firstly, passenger luggage information required to be checked by the loaded flight number is acquired on a cloud server in real time, a worker inputs the flight number through an integrated machine and is connected with a printer, and the printer prints bingo paper with the flight number;
s2, after the passenger baggage is delivered, the baggage enters a baggage turntable, when the baggage passes through an RFID reading control device, the RFID reading control device automatically senses and reads the baggage information of an RFID tag, and sends the information to a display, the display displays the baggage information, and the display is played in a rolling way along with the baggage, a worker checks the baggage information through the display, sorts the baggage which is respectively responsible for flights, pulls the baggage from a conveying belt, sends the baggage to a temporary loading container allocated to the corresponding flights, and then tears off a bar code sticker and pastes the barcode sticker on bingo paper;
s3, putting the bingo paper into an identification area of the checking device, detecting whether the identification area is put into the bingo paper by a photoelectric switch, if so, carrying out the next step, otherwise, readjusting the position of the bingo paper in the identification area;
s4, starting a camera, photographing bingo paper by the camera, transmitting the photographed picture to the integrated machine, automatically identifying all passenger baggage bar codes on the picture after the integrated machine obtains the picture, and marking identification information of each bar code on the picture;
s5, after the staff confirms that the identification is finished, clicking and checking, the integrated machine uploads the photo after the identification is successful to the cloud server, the cloud server compares the identification information of the received photo with the stored passenger luggage information to obtain a checking result, and the cloud server sends the checking result to the integrated machine; if the checking results are all consistent, the checking is finished, if the checking results are inconsistent, the wrong luggage position is positioned on the all-in-one machine, the staff returns to the display and the luggage turntable, the correct passenger luggage bar code sticker is found, the bingo paper is corrected, the correct luggage is replaced to the temporary loading container, and the checking is finished.
2. A method of sorting civil aviation passenger baggage as recited in claim 1, wherein: in step S2, the display supports setting the flight of interest in segments, and when the baggage of the flight of interest passes through the display, the baggage information on the display corresponding to the flight of interest changes color.
3. A method of sorting civil aviation passenger baggage as recited in claim 1, wherein: in step S4, if all the passenger baggage bar codes on the successful photo are completely identified by the all-in-one machine, the next step is entered, if the identification fails, the staff selects the failed identification information one by one, and the passenger baggage bar codes are manually scanned or the baggage numbers are entered into the all-in-one machine to perfect the identification information.
4. A method of sorting civil aviation passenger baggage as recited in claim 3, wherein: in step S4, the identification information includes success information and failure information, each bar code corresponds to one of the success information and the failure information,
the success information includes a success ROI area and a baggage number located within the success ROI area,
the failure information includes a failure ROI area and an ERROR identification located within the failure ROI area,
the success information and the failure information are displayed on the photo, and the success ROI area and the failure ROI area are respectively framed outside the corresponding bar codes.
5. A method of sorting civil aviation passenger baggage as recited in claim 1, wherein: in step S5, the cloud server sends the verification result to the all-in-one machine, and simultaneously, places the photo uploaded by the all-in-one machine and the identified photo into an algorithm training library of the cloud server for deep learning.
CN202111677090.4A 2021-12-31 2021-12-31 Civil aviation passenger baggage sorting method Active CN114308690B (en)

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CN115222341B (en) * 2022-09-20 2022-12-20 珠海翔翼航空技术有限公司 Flight baggage processing method, system and equipment

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