IL263301A

Air vehicle and method of operation of air vehicle

Abstract

This record has no abstract on file.

IL263301A, drawing sheet 1
Sheet 1 of 1

Term

No projected expiry on record.

  1. Priority and filed
  2. Published
  3. Today

50 claims: 5 independent, 45 dependent

  1. 1
    CLAIMS:1. An air vehicle configured for being operated in vectored flight mode and in powered aerodynamic flight mode, the air vehicle having a longitudinal axis and center of gravity, and comprising: an airframe comprising aerodynamic lift-generating wings for enabling operation of said air vehicle in said powered aerodynamic flight mode;a propulsion system, configured for providing propulsion to said air vehicle in said powered aerodynamic flight mode and said vectored flight mode, and for providing stability and control to said air vehicle in said vectored flight mode, and comprising a first set of first propulsion units and a second set of second propulsion units, wherein: said first set of first propulsion units comprising at least three said first propulsion units, said first propulsion units being arranged in polygonal arrangement with respect to the airframe, said polygonal arrangement enclosing the center of gravity when the air vehicle is viewed in plan view;said first propulsion units being non-pivotably attached with respect to said airframe to provide a fixed vertical thrust vector with respect thereto, said first set of first propulsion units configured to provide an aggregate vertical thrust sufficient for providing said vectored flight mode;said second set of second propulsion units comprising at least three said second propulsion units, each said second propulsion unit being arranged in spaced relationship with respect to the center of gravity when viewed in plan view, said second set of second propulsion units being further configured to provide vectored control moments to the air vehicle in three rotational degrees of freedom;said second propulsion units each being pivotably attached with respect to said airframe to enable angular displacement of a respective thrust vector at least between a respective vertical position and a respective horizontal position with respect thereto, 02614998\39-01 said second set of second propulsion units configured to provide at least an aggregate horizontal thrust sufficient for providing said powered aerodynamic flight mode.
  2. 3
    The air vehicle according to any one of claims 1 to 2, wherein said first set of first propulsion units are operable to provide propulsion and an absence of stability and control to said air vehicle in said vectored flight mode.
  3. 4
    The air vehicle according to any one of claims 1 to 3, wherein said first set of first propulsion units comprises two said first propulsion units forward of said wings.
  4. 5
    The air vehicle according to any one of claims 1 to 4, wherein said first set of first propulsion units comprises four said first propulsion units.
  5. 7
    The air vehicle according to any one of claims 1 to 6, wherein said second set of second propulsion units are operable to exclusively provide for said propulsion system said stability and control to said air vehicle in said vectored flight mode.
  6. 8
    The air vehicle according to any one of claims 1 to 7, wherein said second set of second propulsion units are operable to provide propulsion to said air vehicle in said powered aerodynamic flight mode.
  7. 9
    The air vehicle according to any one of claims 1 to 8, wherein said second set of second propulsion units comprises two aft said second propulsion units spaced aft of said wings.
  8. 10
    The air vehicle according to any one of claims 1 to 9, wherein said second set of second propulsion units comprises four said second propulsion units, and wherein said 02614998\39-01 second set of second propulsion units comprises two aft said second propulsion units spaced aft of said center of gravity, one said aft second propulsion unit on a starboard side of said center of gravity and another said aft second propulsion units on a port side of said center of gravity.
  9. 11
    The air vehicle according to any one of claims 1 to 10, wherein said second set of second propulsion units comprises two aft said second propulsion units pivotably mounted to said empennage.
  10. 12
    The air vehicle according to any one of claims 2 to 11, wherein said empennage is in the form of a V-tail configuration, including a port stabilizer and starboard stabilizer, wherein one said aft said second propulsion unit is pivotably mounted to said port stabilizer and wherein another said aft said second propulsion unit is pivotably mounted to starboard stabilizer.
  11. 13
    The air vehicle according to any one of claims 9 to 12, wherein said two aft second propulsion units are operable to exclusively provide said stability and control in pitch for said propulsion system in said vectored flight mode.
  12. 14
    The air vehicle according to any one of claims 9 to 13, wherein said two aft second propulsion units are operable to provide said stability and control in at least one of yaw and roll for said propulsion system in said vectored flight mode.
  13. 15
    The air vehicle according to any one of claims 9 to 14, wherein said two aft second propulsion units are separately operable to selectively control at least one of:- a level of thrust generated by the respective said aft second propulsion unit;and - a pivot angle the respective said aft second propulsion unit;to thereby generate control moments in any one of pitch, roll and yaw to provide said stability and control.
  14. 17
    The air vehicle according to any one of claims 1 to 16, wherein said second propulsion units are pivotable at least between a vertical position and a horizontal position, wherein in said horizontal position at least some of said second propulsion units can be 02614998\39-01 operated to provide thrust for propulsion in said powered aerodynamic flight mode, and wherein in said vertical position at least some of said second propulsion units can be operated to provide thrust for propulsion in said vectored flight mode.
  15. 18
    The air vehicle according to any one of claims 1 to 17, wherein one said forward said second propulsion unit is pivotably mounted to said port wing and wherein another said forward said second propulsion unit is pivotably mounted to starboard wing, and wherein said two forward second propulsion units are operable to exclusively provide said stability and control in at least roll for said propulsion system in transition from said vectored flight mode to said aerodynamic flight mode.
  16. 20
    The air vehicle according to any one of claims 18 to 19, wherein said two forward second propulsion units are separately operable to selectively control at least one of:- a level of thrust generated by the respective said forward second propulsion unit;and - a pivot angle the respective said forward second propulsion unit;to thereby generate control moments in any one of pitch, roll and yaw to provide said stability and control.
  17. 22
    The air vehicle according to any one of claims 1 to 21, wherein said first propulsion units and said second propulsion units are electric first propulsion units and electric second propulsion units, respectively.
  18. 26
    The air vehicle according to any one of claims 2 to 25, comprising a port boom affixed to said port wing and a starboard boom affixed to said starboard wing, and wherein said empennage is in the form of a V-tail configuration, including a port stabilizer and starboard stabilizer, wherein said V-tail is connected to the fuselage via a tail, wherein said port boom extends aft of the port wing and is fixedly connected to said port stabilizer, and wherein said starboard boom extends aft of the starboard wing and is fixedly connected to said starboard stabilizer.
  19. 30
    The air vehicle according to any one of claims 23 to 29, wherein said first rotors have a first diameter, and said first rotors have a second diameter, wherein said first diameter is significantly greater than said second diameter.
  20. 31
    The air vehicle according to any one of claims 1 to 30, wherein two said second propulsion units are pivotably mounted to said wings about respective pivot axes, wherein said pivot axes are aft to the center of gravity. 02614998\39-01
  21. 32
    A method for operating an air vehicle, the air vehicle being as defined in any one of claims 1 to 31, and comprising operating the air vehicle for VTOL take off.
  22. 35
    The method according to any one of claims 33 to 34, wherein step (b) comprises:- a first transition stage, in which the stability and control of the air vehicle is transferred from the second propulsion units to aerodynamic control surfaces of the air vehicle, and - a second transition stage in which the lift functions are transferred from the first propulsion units and optionally the propulsion units to the wings of the air vehicle. 02614998\39-01
  23. 37
    The method according to any one of claims 33 to 36, wherein step (b), at least some of the second propulsion units are pivoted to provide a horizontal thrust component for propulsion.
  24. 38
    The method according to any one of claims 33 to 37, wherein in step (c) the aerodynamic control surfaces exclusively provide stability and control to the air vehicle, and wherein in step (c) the first set of first propulsion units is not operational.
  25. 39
    A method for operating an air vehicle, the air vehicle being as defined in any one of claims 1 to 31, and comprising operating the air vehicle for VTOL landing.
  26. 43
    A method for operating an air vehicle, the air vehicle being as defined in any one of claims 1 to 31, and comprising operating the air vehicle for STOL take off.
  27. 46
    The method according to any one of claims 44 to 45, wherein step (b) comprises:- fully transferring the stability and control of the air vehicle from the second propulsion units to aerodynamic control surfaces of the air vehicle, and - transferring the lift function from the first propulsion units to the wings of the air vehicle.
  28. 47
    The method according to any one of claims 44 to 46, wherein in step (c) the aerodynamic control surfaces exclusively provide stability and control to the air vehicle, and, wherein in step (c) the first set of first propulsion units are not operational.
  29. 48
    A method for operating an air vehicle, the air vehicle being as defined in any one of claims 1 to 31, and comprising operating the air vehicle for STOL landing.
Independent claims29