Air Transport Management System

JP7754497B2Active Publication Date: 2025-10-15ZIYU ZICAI CO LTD
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Patent Information

Application Number
JP2022029919
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-11-18
Filing Date
2022-02-28
Publication Date
2025-10-15
Estimated Expiration
2042-02-28

AI Technical Summary

Technical Problem

Air transport logistics faces challenges with high costs and limited capacity due to fixed cargo load limits, leading to inefficiencies and barriers to widespread adoption.

Method used

An air transport management system that utilizes the extra space in passenger baggage to load additional luggage by calculating total allowances and offering kickbacks to passengers, allowing airlines to collect air freight charges.

Benefits of technology

Increases the volume of air transportable luggage, provides passengers with discounts, and reduces air freight rates, benefiting both passengers and airlines, thereby promoting air logistics and regional development.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide an air transportation management system and method for solving various air transportation problems in a way to benefit airline companies, considering that there is actually a difference between passenger baggage and its upper limit in a passenger airplane.SOLUTION: A method includes calculating a total margin, which is the sum of differences between each passenger's baggage allowance and its upper baggage limit or differences between the total baggage allowance of each passenger and a total upper baggage limit that can be carried on an airplane in question, comparing the amount of multiple air cargoes requested by non-passengers with the total margin, extracting the desired air cargo that can be loaded on the passenger airplane from the desired cargo, and calculating the amount of kickback for each passenger on the basis of the attribute data of the desired air cargo.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present invention relates to an air transport management system for managing air transport by passenger aircraft. [Background technology]

[0002] Recently, the volume of logistics has increased significantly due to the diversification of products and the development of e-commerce, and the importance of logistics has become extremely great, as can be seen in the promotion of logistics MaaS. As a result, there has been constant development of routes and improvements to delivery systems, and the improvement in logistics speed and volume on land routes in recent years has been particularly remarkable. However, there is still room for improvement when it comes to air transport (air freight).

[0003] The advantages of air transport are its speed and convenience for remote islands, but its disadvantages are its high price and limited transport capacity. For example, currently, the cargo load capacity of each aircraft is set, and if the load capacity is exceeded, requests to transport luggage on that flight cannot be made. In addition, the price is determined by the weight, volume, number of pieces, etc. of the luggage, and it is difficult to simply lower the price because it would result in a disadvantage for the airline company.

[0004] Although it is undeniable that these drawbacks are hindering the development of air transport, if these drawbacks can be overcome to some extent and air transport becomes more widespread, the advantages of air transport mentioned above could be further utilized and benefits could also be gained for land transport.

[0005] For example, transporting long distances by truck instead of by air requires the effort of loading and unloading the cargo at both the departure and destination points, and it may be necessary to wait for a transport request at the destination to avoid a return flight. However, by transporting by air, even if only between airports, trucks only need to deliver cargo that has been collected at the airport, or collect cargo at the airport, which saves effort and makes it easier to predict deliveries. However, the above-mentioned problems are common not only to passenger aircraft but also to passenger transport vehicles such as trains and buses that transport large numbers of passengers with baggage. [Prior art documents] [Patent documents]

[0006] [Patent Document 1] Patent Publication No. 2021-6985 Summary of the Invention [Problem to be solved by the invention]

[0007] The present invention was made in consideration of the above-mentioned problems, and focuses on the fact that there is an actual difference between the amount of carry-on baggage carried by passengers on passenger aircraft and the maximum amount of carry-on baggage, and is a groundbreaking invention that aims to solve various problems, including the cost of air transport of goods, in a way that also benefits airlines and the like. [Means for solving the problem]

[0008] That is, the air transportation management system according to the present invention is as follows: a total allowance calculation unit that receives baggage amount data indicating the amount of baggage of passengers boarding a passenger aircraft, and calculates a total allowance that is the sum of the differences between the baggage amounts indicated by the baggage amount data for each passenger and the upper limit amount, or the difference between the sum of the baggage amounts indicated by the baggage amount data for each passenger and the total upper limit amount of baggage that can be carried on the passenger aircraft; a matching unit that receives attribute data of a plurality of pieces of baggage desired for air transport that are requested by persons other than passengers, compares the baggage volume indicated by the attribute data with the total surplus volume, and extracts baggage desired for air transport that can be loaded onto the passenger aircraft from the baggage desired for air transport; The system is characterized by comprising a kickback amount calculation unit that calculates the amount of kickback for each passenger based on the attribute data of the baggage desired to be transported by air extracted by the matching unit. [Effects of the Invention]

[0009] According to the above configuration, the extra luggage space of the passengers' carry-on luggage can be used to load other luggage that the passengers wish to transport by air, thereby increasing the amount of luggage that can be transported by air reasonably.

[0010] Furthermore, passengers can receive significant benefits, such as discounts and other kickbacks, depending on the attributes of the luggage they wish to have transported by air (for example, the air freight charges paid by those wishing to have their luggage transported by air).

[0011] From the perspective of the airline, they can collect air freight charges from those who wish to use air freight, and the number of passengers is expected to increase due to the above-mentioned discounts, etc., so it is unlikely that there will be any cost disadvantages, and on the contrary, they are expected to have a cost advantage.

[0012] This cost advantage will make it possible to lower air freight rates than usual, mitigating the high cost that has traditionally been a drawback of air transport, which will contribute to the flourishing of air logistics and ultimately to the development of the logistics industry as a whole. For example, it will enable the rapid transport of specialty products to urban areas that were previously impossible or expensive to transport by land or sea, and it may even promote regional development and industrial revitalization. [Brief explanation of the drawings]

[0013] [Figure 1] 1 is an overall bird's-eye view showing the configuration of the entire network including an air transport management system in one embodiment of the present invention. [Figure 2] FIG. 2 is a functional block diagram of an air transport management system according to the embodiment. [Figure 3] 10 is a flowchart showing the operation of the air transportation management system in the embodiment. [Figure 4] FIG. 2 is an explanatory diagram illustrating in an easy-to-understand manner the outline and effects of the air transport management system according to the embodiment. [Figure 5] FIG. 2 is an explanatory diagram illustrating in an easy-to-understand manner the outline and effects of the air transport management system according to the embodiment. [Figure 6] FIG. 2 is an explanatory diagram illustrating in an easy-to-understand manner the outline and effects of the air transport management system according to the embodiment. [Figure 7] FIG. 2 is an explanatory diagram illustrating in an easy-to-understand manner the outline and effects of the air transport management system according to the embodiment. [Figure 8] FIG. 2 is an explanatory diagram illustrating in an easy-to-understand manner the outline and effects of the air transport management system according to the embodiment. [Figure 9] FIG. 2 is an explanatory diagram illustrating in an easy-to-understand manner the outline and effects of the air transport management system according to the embodiment. DETAILED DESCRIPTION OF THE INVENTION

[0014] Hereinafter, an embodiment of the present invention will be described with reference to the drawings.

[0015] The air transport management system 100 of this embodiment is used to transport luggage by air, utilizing the free space in passenger baggage that passengers can basically load onto passenger aircraft free of charge, and is physically composed of one or more computers equipped with a CPU, memory, communication ports, etc.

[0016] As shown in Figure 1, this air transport management system 100 is connected to a computer 200 used by an airline and a computer 300 used by a logistics company via a communication network such as the Internet, and the CPU and its peripheral devices work together in accordance with programs pre-stored in the memory to perform functions such as a total surplus amount calculation unit, a matching unit, a kickback amount calculation unit, an air transport fee determination unit, and a baggage amount data generation unit, as shown in Figure 2.

[0017] Each part will be explained. The total allowance calculation unit receives baggage quantity data indicating the amount of baggage carried by passengers on board an aircraft, and calculates a total allowance which is the sum of the differences between the baggage quantities indicated by the baggage quantity data for each passenger and the upper limit, or the difference between the sum of the baggage quantities indicated by the baggage quantity data for each passenger and the total upper limit for baggage that can be carried on the aircraft.

[0018] The matching unit receives attribute data of multiple pieces of luggage requested for air transport by people other than passengers, compares the luggage volume indicated by the attribute data with the total surplus volume, and extracts from the luggage requested for air transport those pieces of luggage that can be loaded onto the passenger aircraft.

[0019] The kickback amount calculation unit calculates the kickback amount for each passenger based on the attribute data of the baggage desired to be transported by air extracted by the matching unit. The air freight charge determination unit determines the air freight charge for the baggage desired to be transported by air based on the baggage weight data. Next, the operation of this air transportation management system will be described in detail with reference to FIG.

[0020] First, passenger baggage is divided into checked baggage and carry-on baggage and loaded onto the passenger aircraft. At this time, the amount of the baggage, i.e., the weight and / or volume of the baggage, is measured at the check-in counter and / or security checkpoint, and baggage amount data indicating the amount is generated and linked to the passenger ID (step S1).

[0021] Specifically, the weight and / or volume of checked baggage is measured at the check-in counter, and although this is not currently done, the weight and volume of carry-on baggage is measured at baggage gates installed at security checkpoints, and the baggage data is generated from these measurement results, for example, by an airline's computer (corresponding to the baggage data generation unit in the claims).

[0022] On the other hand, for example, baggage brought to a logistics company for air transport is placed in one of several predetermined standard boxes and transported to a storage warehouse at or near an airport. When this baggage for air transport is brought to the logistics company, attribute data for the baggage for air transport is generated by an operator entering the data into the logistics company's computer (step S2). The contents of the attribute data include, for example, the amount of baggage for air transport (weight, volume, number of pieces), the transport destination, the desired arrival date and time, the desired flight number, etc. Of these, the volume indicates the type of standard box. The baggage data and attribute data of the baggage desired to be transported by air thus generated are transmitted to the air transportation management system and accepted (step S3).

[0023] On the other hand, the air transport management system also receives passenger aircraft data sent from the airline's computer, including the flight number, arrival airport, departure and arrival times, number of passengers allowed, and total baggage capacity (step S3).

[0024] Then, the total allowance calculation unit calculates the total allowance, which is the sum of the differences between the baggage amount indicated by the baggage amount data for each passenger and the upper limit (a predetermined upper limit on the amount of baggage that a passenger can carry on), or the difference between the sum of the baggage amounts indicated by the baggage amount data for each passenger and the total upper limit on the amount of baggage that can be carried on the passenger aircraft (step S4). This total allowance is expressed as a two-dimensional value of volume and weight.

[0025] Next, the matching unit compares the desired flight number, transportation destination, and desired arrival date and time indicated in the attribute data of each piece of luggage desired to be transported by air with the flight number, arrival airport, and arrival time of the passenger aircraft, and narrows down the desired luggage that can be loaded onto the passenger aircraft under these conditions.

[0026] Furthermore, the matching unit refers to the attribute data of the baggage desired to be transported by air that has been narrowed down based on the above conditions, and extracts baggage desired to be transported by air that can fit within the total surplus volume calculated by the total surplus volume calculation unit as baggage to be transported by the passenger aircraft (step S5). As mentioned above, the total surplus volume is expressed as a two-dimensional value of volume and weight, and baggage desired to be transported by air that exceeds either of these upper limits is determined to be ineligible for loading.

[0027] At this time, if there are competing air freight requests (such as when there are multiple air freight requests that can be loaded no matter which one is selected, or when there are multiple combinations of air freight requests that can be loaded), which air freight request is given priority is determined based on the attribute data of the air freight requests and information about other passenger aircraft. For example, this can be determined by methods such as giving priority to air freight requests with an earlier desired arrival date and time, or lowering the priority of air freight requests that can be transported by other passenger aircraft.

[0028] Once the desired baggage to be transported by the passenger aircraft has been determined in this way, the kickback amount calculation unit calculates the kickback amount for each passenger based on the attribute data of the baggage, etc. (Step S6). The kickback is some kind of economic reward for the passenger, such as a discount on the fare, miles, or points.

[0029] The kickback amount calculation unit increases the kickback amount if the total transportation fee for the air freight shipment is large. The amount of kickback may be uniform for all passengers, or may be increased for passengers with less baggage.

[0030] The kickback amount calculation unit then transmits the kickback amount thus determined to the airline's computer, allowing the kickback to be paid to the passenger through the airline.

[0031] On the other hand, the air freight charge determination unit calculates the air freight charge for the desired baggage to be shipped by air based on the baggage weight data (step S7). Specifically, for example, if the total baggage weight is large, the air freight charge per unit of baggage is higher than the standard amount because the baggage weight is free, and if the total baggage weight is small, the air freight charge per unit of baggage is lower than the standard amount. However, this standard amount is set lower than the normal air freight charge.

[0032] The air freight fee determination unit then transmits the air freight fee thus determined to the computer of the logistics company so that it can be presented to those who wish to have the item shipped by air.

[0033] According to the above-mentioned configuration, the extra luggage space of the passengers can be used to load other luggage that they wish to transport by air, so the amount of luggage that can be transported by air can be increased reasonably. Furthermore, passengers can receive kickbacks such as discounts depending on the attributes of the luggage they wish to have transported by air (for example, the air freight charges paid by those wishing to have their luggage transported by air), so passengers can enjoy great benefits.

[0034] From the airlines' perspective, they can collect air freight charges from those who wish to use air freight, and the above-mentioned discounts and other benefits are expected to increase passenger numbers, so it is unlikely that there will be any cost disadvantages; on the contrary, they are expected to see cost benefits. This cost advantage will make it possible to lower air freight rates than usual, mitigating the high cost that is a drawback of traditional air freight.

[0035] Furthermore, even if there are few passengers, particularly in the above embodiment, the lower the total baggage volume on a flight, i.e., the fewer passengers on a flight, the cheaper the air freight fare. Therefore, passengers seeking air freight will choose that flight as long as their destination and desired arrival date and time match. As a result, the total amount of air freight and, therefore, the total air freight fare will increase, so the shortfall in boarding fees can be made up by the increase in air freight fare and this also contributes to reducing flight cancellations due to a lack of passengers. This will also avoid the unexpected situation of baggage being unable to be transported due to flight cancellations.

[0036] In this way, this embodiment can contribute to the flourishing of air logistics, and ultimately to the development of the logistics industry as a whole. For example, it will become possible to quickly transport local specialties and other products to urban areas that were previously impossible or expensive to transport by land or sea, and it will even be possible to promote regional development and industrial revitalization. 4 to 9 are explanatory diagrams for clearly explaining the configuration and effects of the present embodiment described above.

[0037] The present invention is not limited to the above-described embodiment. For example, if the total kickback amount for a given passenger aircraft is determined based on the total transportation fee and that total kickback amount is distributed to passengers, the greater the number of passengers, the smaller the kickback amount for each individual. This would encourage passengers to try to board flights with fewer reservations, which would promote the equalization of passenger numbers and prevent flight cancellations due to a lack of passengers. Furthermore, in the above embodiment, the amount of baggage is the sum of the amount of checked baggage and the amount of carry-on baggage of the passenger, but it may be the amount of checked baggage only.

[0038] For example, the kickback amount may be set to be larger for passengers who make reservations earlier, or for passengers who check in earlier. This can also contribute to alleviating congestion during boarding procedures.

[0039] Instead of matching one passenger aircraft, multiple passenger aircraft may be matched together. This allows for greater flexibility in matching and can reduce the number of unmatched cargoes wishing to be transported by air, thereby facilitating transportation.

[0040] Furthermore, in matching, for example, it is not necessary to select the airport closest to the destination of the desired air transported luggage, and passenger aircraft arriving at other airports that are somewhat farther away may also be matched. In this case, it is more preferable to take into account land route information. For example, if it is known that land transport will result in faster arrival, it is possible to avoid selecting a flight to the nearest airport and instead prioritize matching with flights to that other airport. Furthermore, the present invention may be applied not only to passenger aircraft but also to passenger transport vehicles such as trains, buses, ships, and the like that transport a large number of passengers with baggage. Furthermore, the present invention is not limited to the above-described embodiment, and various modifications are possible without departing from the spirit of the present invention. [Explanation of symbols]

[0041] 100···Air Transport Management System

Claims

1. a total allowance calculation unit that receives baggage amount data indicating the amount of baggage of passengers boarding one or more passenger aircraft, and calculates a total allowance that is the sum of the differences between the baggage amounts indicated by the baggage amount data for each passenger and the upper limit amount, or the difference between the sum of the baggage amounts indicated by the baggage amount data for each passenger and the total upper limit amount of baggage that can be carried on the one or more passenger aircraft; a matching unit that receives attribute data of a plurality of pieces of baggage desired for air transport that are requested by persons other than passengers, compares the baggage volume indicated by the attribute data with the total surplus volume, and extracts baggage desired for air transport that can be loaded onto the one or more passenger aircraft from the baggage desired for air transport; An air transport management system characterized by comprising: a kickback amount calculation unit that calculates the kickback amount for each passenger based on the attribute data of the baggage desired to be transported by air extracted by the matching unit.

2. The air transportation management system according to claim 1 , wherein the kickback amount calculation unit calculates the kickback amount for each passenger according to the surplus amount.

3. 3. The air transportation management system according to claim 1, further comprising an air transportation fee determination unit that determines an air transportation fee for baggage desired to be transported by air based on said baggage weight data.

4. 2. The air transportation management system according to claim 1, further comprising a baggage weight data generating unit that measures the amount of baggage of each passenger and generates said baggage weight data from the measurement results.

5. 3. The air transportation management system according to claim 1, wherein the baggage weight data is determined based on the amount of checked baggage of a passenger.

6. 4. The air transportation management system according to claim 3, wherein said baggage weight data is determined by adding the amount of carry-on baggage of each passenger.

7. 5. The air transportation management system according to claim 1, wherein the baggage desired for air transportation is handled as carry-on baggage on a passenger aircraft.

8. a total allowance calculation unit that receives baggage amount data indicating the amount of baggage of passengers boarding one or more passenger aircraft, and calculates a total allowance that is the sum of the differences between the baggage amounts indicated by the baggage amount data for each passenger and the upper limit amount, or the difference between the sum of the baggage amounts indicated by the baggage amount data for each passenger and the total upper limit amount of baggage that can be carried on the one or more passenger aircraft; a matching unit that receives attribute data of a plurality of pieces of baggage desired for air transport that are requested by persons other than passengers, compares the baggage volume indicated by the attribute data with the total surplus volume, and extracts baggage desired for air transport that can be loaded onto the one or more passenger aircraft from the baggage desired for air transport; A program for an air transport management system that causes a computer to function as a kickback amount calculation unit that calculates the kickback amount for each passenger based on the attribute data of the luggage desired to be transported by air extracted by the matching unit.

9. a total allowance calculation unit that receives baggage weight data indicating the amount of baggage carried by passengers aboard one or more passenger transport aircraft, and calculates a total allowance that is the sum of the differences between the baggage amounts indicated by the baggage weight data for each passenger and the upper limit amount, or the difference between the sum of the baggage amounts indicated by the baggage weight data for each passenger and the total upper limit amount of baggage that can be carried on the one or more passenger transport aircraft; a matching unit that receives attribute data of a plurality of pieces of luggage desired for transport that are requested by persons other than passengers, compares the amount of luggage indicated by the attribute data with the total surplus amount, and extracts from the pieces of luggage desired for transport that can be loaded onto the one or more passenger transport aircraft; A transportation management system characterized by comprising: a kickback amount calculation unit that calculates the kickback amount for each passenger based on the attribute data of the luggage desired to be transported extracted by the matching unit.

Citation Information

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