System and method for dynamic display of aircraft emissions data

US2025348336A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2025348336-A1
Application numberUS-202519275377-A
CountryUS
Kind codeA1
Filing dateJul 21, 2025
Priority dateJul 18, 2022
Publication dateNov 13, 2025
Grant date

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Abstract

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Systems and methods are provided for dynamically modeling and depicting overall emissions of the aviation industry and changes thereto when taking into account, for example, traffic growth and introduction of sustainability strategies, such as new and/or improved technologies, an increase in operational efficiency, and carbon offsets. Using the dynamic tool described herein, users can define scenarios on how to reduce emissions through the introduction of different sustainability strategies, both statically and over time, analyze the impact of those strategies on emissions, and understand the dependencies between select strategies.

First claim

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1 . A method performed by a computing system of one or more computing devices, the method comprising: executing a computer program by one or more processors of the computing system; receiving aviation emissions information for a plurality of flights of aircraft for an initial period of time; outputting a graphical user interface (GUI) of the computer program executed by the one or more processors, wherein the GUI includes: a graphical representation of a change in predicted aviation traffic over a period of time in the future beyond the initial period of time, a graphical representation of a change in predicted aviation emissions over the period of time that is based, at least in part, on the aviation emissions information, the predicted aviation traffic, and a strategy-specific parameter of each sustainability strategy of a set of two or more sustainability strategies, for each sustainability strategy of the set of sustainability strategies, a graphical representation of a contribution of the sustainability strategy to the change in aviation emissions over the period of time, and for each sustainability strategy of the set of sustainability strategies, a graphical selector tool operable to adjust the strategy-specific parameter of the sustainability strategy; and by the computer program executed by the one or more processors, dynamically updating the GUI to obtain an updated GUI responsive to a user input adjusting the strategy-specific parameter of a select sustainability strategy of the set of sustainability strategies to an adjusted value via the graphical selector tool of the select sustainability strategy; and outputting the updated GUI, wherein the updated GUI includes: an updated graphical representation of the change in the predicted aviation emissions over the period of time based, at least in part, on the adjusted value, and an updated graphical representation of the contribution of the select strategy to the change in aviation emissions based, at least in part, on the adjusted value. 2 . The method of claim 1 , wherein the updated GUI further includes: for each sustainability strategy of the set of sustainability strategies, an updated representation of the contribution of the sustainability strategy to the change in aviation emissions over the period of time. 3 . The method of claim 1 , further comprising: receiving a target aviation emissions value at a future date beyond the initial period of time; and wherein the graphical representation of the change in predicted aviation emissions over the period of time is further based on the target aviation emissions value at the future date. 4 . The method of claim 3 , wherein the target aviation emissions value defines the predicted aviation emissions at the future date. 5 . The method of claim 1 , wherein the aviation emissions information includes aviation carbon emissions information; and wherein the predicted aviation emissions includes predicted aviation carbon emissions. 6 . The method of claim 1 , wherein the aviation emissions information includes measured data collected for the initial period of time. 7 . The method of claim 1 , wherein for each sustainability strategy of the set of sustainability strategies, a size of the contribution of the sustainability strategy relative to a size of the contribution of each other sustainability strategy of the set to the predicted aviation emissions is graphically represented by GUI. 8 . The method of claim 7 , wherein for each sustainability strategy of the set of sustainability strategies, the graphical representation of the contribution of the sustainability strategy is located between the graphical representation of the change in predicted aviation traffic and the graphical representation of the change in predicted aviation emissions within the GUI. 9 . The method of claim 1 , wherein the set of sustainability strategies includes two or more of the following: an aircraft replacement sustainability strategy for which the strategy-specific parameter is an aircraft replacement rate over the period of time; a new aircraft sustainability strategy for which the strategy-specific parameter is a new aircraft introduction rate over the period of time; an operational efficiency sustainability strategy for which the strategy-specific parameter is a rate of change of operational efficiency of aircraft over the period of time; an energy type sustainability strategy for which the strategy-specific parameter is a rate of change of a relative proportion of two or more energy types consumed by aircraft over the period of time; an emissions offset sustainability strategy for which the strategy-specific parameter is a rate of change of emissions offset over the period of time. 10 . A computing system, comprising: one or more computing devices, configured by execution of instructions stored thereon to: receive aviation emissions information for a plurality of flights of aircraft for an initial period of time; output a graphical user interface (GUI) that includes: a graphical representation of a change in predicted aviation traffic over a period of time in the future beyond the initial period of time, a graphical representation of a change in predicted aviation emissions over the period of time that is based, at least in part, on the aviation emissions information, the predicted aviation traffic, and a strategy-specific parameter of each sustainability strategy of a set of two or more sustainability strategies, for each sustainability strategy of the set of sustainability strategies, a graphical representation of a contribution of the sustainability strategy to the change in aviation emissions over the period of time, and for each sustainability strategy of the set of sustainability strategies, a graphical selector tool operable to adjust the strategy-specific parameter of the sustainability strategy; and dynamically update the GUI to obtain an updated GUI responsive to a user input adjusting the strategy-specific parameter of a select sustainability strategy of the set of sustainability strategies to an adjusted value via the graphical selector tool of the select sustainability strategy; and output the updated GUI, wherein the updated GUI includes: an updated graphical representation of the change in the predicted aviation emissions over the period of time based, at least in part, on the adjusted value, and an updated graphical representation of the contribution of the select strategy to the change in aviation emissions based, at least in part, on the adjusted value. 11 . The computing system of claim 10 , wherein the updated GUI further includes: for each sustainability strategy of the set of sustainability strategies, an updated representation of the contribution of the sustainability strategy to the change in aviation emissions over the period of time. 12 . The computing system of claim 10 , wherein the one or more computing devices are further configured by execution of the instructions to: receive a target aviation emissions value at a future date beyond the initial period of time; wherein the graphical representation of the change in predicted aviation emissions over the period of time is further based on the target aviation emissions value at the future date; and wherein the target aviation emissions value defines the predicted aviation emissions at the future date. 13 . The computing system of claim 10 , wherein the aviation emissions information includes aviation carbon emissions information; and wherein the predicted aviation emissions includes predicted aviation carbon emissions.

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Inventors

Classifications

  • Drawing of charts or graphs · CPC title

  • Score-carding, benchmarking or key performance indicator [KPI] analysis · CPC title

  • Strategic management or analysis, e.g. setting a goal or target of an organisation; Planning actions based on goals; Analysis or evaluation of effectiveness of goals · CPC title

  • Presentation of query results · CPC title

  • Interaction techniques to control parameter settings, e.g. interaction with sliders or dials · CPC title

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What does patent US2025348336A1 cover?
Systems and methods are provided for dynamically modeling and depicting overall emissions of the aviation industry and changes thereto when taking into account, for example, traffic growth and introduction of sustainability strategies, such as new and/or improved technologies, an increase in operational efficiency, and carbon offsets. Using the dynamic tool described herein, users can define sc…
Who is the assignee on this patent?
Boeing Co
What technology area does this patent fall under?
Primary CPC classification G06F9/451. Mapped technology areas include Physics.
When was this patent published?
Publication date Thu Nov 13 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).