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US20230023907A1 - System and method for distributed flight control system for an electric vehicle - Google Patents

System and method for distributed flight control system for an electric vehicle
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Publication number
US20230023907A1
US20230023907A1US17/855,619US202217855619AUS2023023907A1US 20230023907 A1US20230023907 A1US 20230023907A1US 202217855619 AUS202217855619 AUS 202217855619AUS 2023023907 A1US2023023907 A1US 2023023907A1
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flight
datum
controller
control
aircraft
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US17/855,619
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Herman Wiegman
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Beta Air LLC
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Beta Air LLC
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Assigned to BETA AIR LLCreassignmentBETA AIR LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: WIEGMAN, HERMAN
Publication of US20230023907A1publicationCriticalpatent/US20230023907A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A system and method for distributed flight control configured for use in an electric vehicle wherein the system includes a flight control assembly which further includes at least a sensor electronically connected to the flight control assembly. The sensor is configured to capture at least an input datum, and at least a performance datum. The system further includes a plurality of modular flight controllers communicatively coupled to at least an actuator of a plurality of actuators, wherein each modular flight controller of the plurality of modular flight controllers is configured to the multitude of data from at least a sensor, generate an attitude control datum, determine at least an actuator instruction datum, and perform a control allocation configured for the at least a actuator from the plurality of actuators to follow as a function of the flight control assembly.

Description

Claims (19)

What is claimed:
1. A system for distributed flight control configured for use in an electric vehicle, the system comprising:
a flight control assembly, the flight control assembly comprising:
at least a sensor electronically connected to the flight control assembly, the at least a sensor configured to capture at least an input datum and at least a performance datum;
a plurality of flight controllers communicatively coupled to a plurality of actuators of an electric vehicle, wherein the plurality of flight controllers are configured to receive the at least an input datum, the at least a performance datum, and at least an optimal flight plan datum, and wherein the plurality of flight controllers comprises:
a first flight controller configured to generate an attitude control datum as a function of the at least an input datum, the at least an optimal flight plan datum, and the at least a performance datum;
a second flight controller configured to determine at least an actuator instruction datum as a function of the attitude control datum; and
a third flight controller configured to perform a control allocation configured for the at least an actuator of the plurality of actuators to follow as a function of the flight control assembly.
2. The system ofclaim 1, wherein the flight assembly further comprise a central flight controller, the central flight controller configured to:
receive a plurality of actuator instruction datum from at least a modular flight controller; and
determine a priority command datum as a function of a pilot input.
3. The system ofclaim 1, wherein the central flight controller is further configured to:
perform a control allocation for at least an actuator to follow as a function of the priority command datum.
4. The system ofclaim 1, wherein each actuator of the plurality of actuators is electronically connected to at least a sensor.
5. The system ofclaim 1, wherein the flight control assembly further comprises an outer loop flight controller.
6. The system ofclaim 4, wherein the outer loop controller is configured generate a rate setpoint.
7. The system ofclaim 1, wherein the flight control assembly further comprises an inner loop controller.
8. The system ofclaim 5, wherein the inner loop controller comprises an attitude controller and an attitude estimator configured to determine the actuator instruction datum of an electric vehicle.
9. The system ofclaim 1, wherein the control allocation is performed automatically.
10. The system ofclaim 1, wherein the flight control assembly is further configured to display a plurality of health statuses of a plurality of actuators.
11. A method for distributed flight control configured for use in an electric vehicle, the method comprising:
capturing, by at least a sensor, at least an input datum and at least a performance datum;
receiving, by a plurality of flight controllers from a flight control assembly, at least an input datum, at least an optimal flight plan datum, and at least a performance datum from the at least a sensor;
generating, by a first flight controller of the plurality of flight controllers, an attitude control datum as a function of the at least an input datum, the at least an optimal flight plan datum, and the at least a performance datum;
determining, by a second flight controller of the plurality of flight controllers, at least an actuator instruction datum as a function of the attitude control datum; and
performing, by a third flight controller of the plurality of flight controllers, a control allocation configured for the at least an actuator from the plurality of actuators to follow as a function of the flight control assembly.
12. The method ofclaim 11, wherein the method further comprises:
receiving, by a central flight controller, a plurality of actuator instruction datum from at least a modular flight controller;
determining, by the central flight controller a priority command datum as a function of a pilot input; and
performing, by the central flight controller, a control allocation as a function of the priority command datum.
13. The method ofclaim 12, wherein performing the control allocation comprises the at least a central flight controller to perform the control allocations automatically.
14. The method ofclaim 11, wherein receiving the at least a performance parameter comprises detecting at least an electric vehicle angle and at least an electric vehicle angle rate.
15. The method ofclaim 11, wherein generating the attitude control datum comprises estimating an attitude of an electric vehicle and determine an attitude difference between the estimation and a desired attitude parameter of the electric vehicle.
16. The method ofclaim 15, wherein generating the attitude control datum further comprises determining a set of commands to change the attitude of an electric vehicle to match the desired attitude parameter.
17. The method ofclaim 11, further comprising displaying a plurality of health statuses of a plurality of actuators.
18. The method ofclaim 11, wherein determining the actuator instruction datum comprises generating individual actuator instruction sets corresponding to each actuator of a plurality of actuators or set of actuators.
19. The method ofclaim 11, wherein performing the control allocation further comprises transmitting the actuator instructor datum to a corresponding set of actuators for the actuators to follow.
US17/855,6192021-07-232022-06-30System and method for distributed flight control system for an electric vehicleAbandonedUS20230023907A1 (en)

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US17/855,619US20230023907A1 (en)2021-07-232022-06-30System and method for distributed flight control system for an electric vehicle

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US17/383,629US11435761B1 (en)2021-07-232021-07-23System and method for distributed flight control system for an electric vehicle
US17/855,619US20230023907A1 (en)2021-07-232022-06-30System and method for distributed flight control system for an electric vehicle

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US17/383,629ContinuationUS11435761B1 (en)2021-07-232021-07-23System and method for distributed flight control system for an electric vehicle

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US17/855,619AbandonedUS20230023907A1 (en)2021-07-232022-06-30System and method for distributed flight control system for an electric vehicle

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