Nova Patents
CA2856901C

Lenticular airship

Abstract

An airship comprising: one or more frame members defining a support structure, wherein the support structure forms a support for a hull; a hull comprising at least one envelope configured to retain a volume of a lighter-than-air gas, wherein the envelope is operably coupled to the support structure, and, upon receipt of lighter-than-air gas, defines a substantially oblate spheroid shape; and at least five propulsion assemblies, wherein: a first of the at least five propulsion assemblies is operably coupled to a support structure associated with the airship and located at a fore position on a periphery associated with the airship; a second of the at least five propulsion assemblies is operably coupled to the support structure and located along the periphery at approximately 120 degrees with respect to the first propulsion assembly; a third of the at least five propulsion assemblies is operably coupled to the support structure and located along the periphery at approximately negative 120 degrees with respect to the first propulsion assembly; a fourth propulsion assembly configured to direct a thrust along an axis substantially parallel to a roll axis of the airship and substantially co-located with the second of the at least five propulsion assemblies; and a fifth propulsion assembly configured to direct a thrust along an axis substantially parallel to the roll axis of the airship and substantially co-located with the third of the at least five propulsion assemblies.

CA2856901C, drawing sheet 1
Sheet 1 of 18

Term

Projected expiry 15 October 2027.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Projected expiry

75 claims: 37 independent, 38 dependent

  1. 1
    CA 02856901 2015-10-05 CLAIMS 1. An airship comprising:one or more frame members defining a support structure, wherein the support structure forms a support for a hull;a hull comprising at least one envelope configured to retain a volume of a lighter-than-air gas, wherein the envelope is operably coupled to the support structure, and, upon receipt of lighter-than-air gas, defines a substantially oblate spheroid shape;and at least five propulsion assemblies, wherein: a first ofthe at least five propulsion assemblies is operably coupled to a support structure associated with the airship and located at a fore position on a periphery associated with the airship;a second ofthe at least five propulsion assemblies is operably coupled to the support structure and located along the periphery at approximately 120 degrees with respect to the first propulsion assembly relative to a yaw axis of the airship;a third ofthe at least five propulsion assemblies is operably coupled to the support structure and located along the periphery at approximately negative 120 degrees with respect to the first propulsion assembly relative to the yaw of the airship;a fourth propulsion assembly configured to direct a thrust along an axis substantially parallel to a roll axis of the airship and substantially co-located with the second ofthe at least five propulsion assemblies;and a fifth propulsion assembly configured to direct a thrust along an axis substantially parallel to the roll axis ofthe airship and substantially co-located with the third of the at least five propulsion assemblies.
  2. 4
    The airship of any one of claims 1 to 3, wherein one or more of the first, second, and third propulsion assemblies comprises directing assemblies for directing a thrust associated with the one or more propulsion assemblies.
  3. 6
    The airship of any one of claims 1 to 5, further comprising:at least one horizontal stabilizing member operably coupled to a lower surface of the airship;a vertical stabilizing member operably coupled to the airship and oriented below an upper surface of the airship;and a gondola assembly operably coupled to a lower side of the support structure and configured to support a person, wherein the gondola assembly includes one or more control devices.
  4. 7
    The airship of any one of claims 1 to 6, wherein the one or more frame members comprises a substantially carbon-based material.
  5. 8
    The airship of any one of claims 1 to 7, wherein an equatorial diameter associated with the oblate spheroid ranges from about 2.5 to about 3.5 times a polar diameter associated with the oblate spheroid.
  6. 9
    The airship of any one of claims 6 to 8, wherein the at least one horizontal stabilizing member defines an anhedral configuration. -40 CA 02856901 2015-10-05
  7. 11
    The airship of any one of claims 6 to 10, wherein the vertical stabilizing member is configured to pivot to a position below the lower surface and between at least two of the horizontal stabilizing members.
  8. 12
    The airship of any one of claims 9 to 11, wherein the at least one horizontal stabilizing member comprises one or more landing gear assemblies.
  9. 14
    The airship of any one of claims 6 to 13, wherein the at least one horizontal stabilizing member comprises at least one control surface.
  10. 15
    The airship of any one of claims 6 to 14, wherein the vertical stabilizing member comprises at least one control surface.
  11. 16
    The airship of any one of claims 6 to 15, wherein the gondola comprises a plurality of members interconnected to form a frame.
  12. 17
    The airship of any one of claims 6 to 16, wherein the one or more control devices includes at least one of a flight stick, a navigation instrument, a pedal, and a throttle.
  13. 18
    The airship of any one of claims 6 to 17, wherein the gondola assembly further comprises at least one forward landing gear assembly. -41 CA 02856901 2015-10-05
  14. 19
    The airship of any one of claims 6 to 18, wherein the one or more control devices are operably coupled to one or more of the at least five propulsion assemblies.
  15. 22
    The airship of any one of claims 6 to 21, further comprising one or more assemblies configured to support at least one crew person.
  16. 23
    The airship of any one of claims 6 to 22, further comprising a cabin assembly operably coupled to the support structure and configured to carry a load.
  17. 24
    The airship of any one of claims 1 to 23, wherein the airship is configured to perform at least one function associated with lifting objects, elevating a platform, transporting items, displaying items, and transporting humans.
  18. 26
    An arrangement for propulsion assemblies associated with an airship, comprising:-42 CA 02856901 2015-10-05 five propulsion assemblies, wherein: a first of the five propulsion assemblies is operably coupled to a support structure associated with the airship and located at a first location along a periphery associated with the airship;a second of the five propulsion assemblies is operably coupled to the support structure and located along the periphery at approximately 120 degrees with respect to the first propulsion assembly relative to a yaw axis of the airship;a third of the five propulsion assemblies is operably coupled to the support structure and located along the periphery at approximately negative 120 degrees with respect to the first propulsion assembly relative to the yaw axis of the airship;a fourth propulsion assembly configured to direct a thrust along an axis substantially parallel to a roll axis of the airship and substantially co-located with the second of the five propulsion assemblies;and a fifth propulsion assembly configured to direct a thrust along an axis substantially parallel to the roll axis of the airship and substantially co-located with the third of the five propulsion assemblies.
  19. 29
    The arrangement of any one of claims 26 to 28, wherein at least three of the five propulsion assemblies are configured for constant-speed operation.
  20. 30
    The arrangement of any one of claims 26 to 29, wherein at least three of the five propulsion assemblies are configured to provide variable thrust. -43 CA 02856901 2015-10-05
  21. 31
    The arrangement of any one of claims 26 to 28, wherein at least three of the five propulsion assemblies are configured to provide variable speed and variable thrust.
  22. 32
    The arrangement of any one of claims 26 to 28, wherein the five propulsion assemblies include variable pitch propellers.
  23. 34
    The arrangement of any one of claims 26 to 33, wherein one or more of the first, second, and third propulsion assemblies further comprises directing assemblies for enabling vectoring of a thrust associated with the propulsion assembly.
  24. 37
    The arrangement of any one of claims 34 to 36, wherein the directing assembly is rotatable about at least one axis associated with the propulsion assembly.
  25. 39
    The arrangement of any one of claims 26 to 38, wherein the propulsion assemblies are powered by at least one of electricity and a fuel.
  26. 40
    The arrangement of any one of claims 26 to 39, wherein the propulsion assemblies are communicatively connected to at least one of a flight stick, a navigation instrument, a pedal, and a throttle.
  27. 41
    The arrangement of any one of claims 26 to 40, wherein the propulsion assemblies are communicatively connected to a processor configured to send signals indicative of a desired operation to the one or more propulsion assemblies.
  28. 42
    The arrangement of any one of claims 26 to 41, wherein the airship is configured to perform at least one function associated with lifting objects, elevating a platform, transporting items, displaying items, and transporting humans.
  29. 50
    The arrangement of any one of claims 26 to 49, wherein the first propulsion assembly is configured to cause a pitching motion and a yawing motion associated with the airship depending on a control signal and a thrust vector associated with the first propulsion assembly.
  30. 51
    A flight control system for an airship, the system comprising:one or more operator controls configured to receive operator input;a horizontal control surface associated with a horizontal stabilizing member;a vertical control surface associated with a vertical stabilizing member;five propulsion assemblies, wherein: a first of the five propulsion assemblies is operably coupled to a support structure associated with the airship and located at a first location along a periphery associated with the airship;a second of the five propulsion assemblies is operably coupled to the support structure and located along the periphery at approximately 120 degrees with respect to the first propulsion assembly relative to the yaw axis of the airship;a third of the five propulsion assemblies is operably coupled to the support structure and located along the periphery at approximately negative 120 degrees with respect to the first propulsion assembly relative to the yaw axis of the airship;-46CA 02856901 2015-10-05 a fourth propulsion assembly configured to direct a thrust along an axis substantially parallel to a roll axis ofthe airship and substantially co-located with the second ofthe five propulsion assemblies;and a fifth propulsion assembly configured to direct a thrust along an axis substantially parallel to the roll axis ofthe airship and substantially co-located with the third ofthe five propulsion assemblies;and a processor configured to receive an input signal from the operator controls and generate a signal according to the input signal.
  31. 54
    The flight control system of any one of claims 51 to 53, further comprising one or more propulsion servo motors operably coupled to any of the five propulsion assemblies.
  32. 58
    The flight control system of any one of claims 51 to 57, wherein the processor is configured to generate signals configured to:navigate the airship within close proximity to a surface ofthe earth;direct a thrust associated with at least one propulsion assembly in a direction configured to impart a downward force to the airship;and limit motion ofthe airship until a securing of the airship to a ground fixture has been substantially completed.
  33. 61
    The flight control system of any one of claims 51 to 60, wherein the processor is configured to:receive an input indicative of a take-off type;provide, based on the take-off type, a signal configured to modify operating parameters associated with one or more ofthe five propulsion assemblies to achieve a desired thrust direction;-48 CA 02856901 2015-10-05 determine, based on the take-off type, a lift force associated with a lighterthan-air gas provided within a hull of the airship, and aerodynamic forces associated with the hull, a power setting for the five propulsion assemblies;and provide one or more signals to at least one control surface associated with the airship according to the take-off type.
  34. 64
    The flight control system of any one of claims 51 to 63, wherein the processor is configured to:determine a horizontal velocity and a pitch associated with the airship;calculate a delta between a predetermined critical speed value and the horizontal velocity associated with the airship;transmit a signal based on the delta and the pitch associated with the airship to at least one of the first propulsion assembly, the second propulsion assembly, the third propulsion assembly, the fourth propulsion assembly, and the fifth propulsion assembly.
  35. 68
    The flight control system of any one of claims 51 to 67, wherein the processor is configured to:receive a signal indicative of a desired pitch associated with the airship;determine at least one of a power setting and a propeller pitch associated with the first propulsion assembly based on the signal indicative of a desired pitch determine a horizontal control surface setting based on at least one of the power setting, the propeller pitch, and the signal indicative of a desired pitch;transmit a first control signal indicative of the power setting and the propeller pitch;and transmit a second control signal indicative of the horizontal control surface setting configured to cause the horizontal control surface to respond according to the horizontal control surface setting.
  36. 71
    The flight control system of any one of claims 51 to 70, wherein the processor is configured to:-50CA 02856901 2015-10-05 receive a signal indicative of a desired yaw associated with the airship;determine at least one of a power setting and a propeller pitch associated with the fourth propulsion assembly and the fifth propulsion assembly based on the signal indicative of a desired yaw;determine a vertical control surface setting based on at least one of the power setting, the propeller pitch, and the signal indicative of a desired yaw;transmit a first control signal indicative of the power setting and the propeller pitch;and transmit a second control signal indicative of the vertical control surface setting configured to cause the vertical control surface to respond according to the vertical control surface setting.
  37. 73
    The flight control system of any one of claims 51 to 72, wherein the processor is configured to:receive a signal indicative of a desired roll associated with the airship;determine at least one of a power setting and a propeller pitch associated with the second propulsion assembly and the third propulsion assembly based on the signal indicative of a desired roll;determine a horizontal control surface setting based on at least one of the power setting, the propeller pitch, and the signal indicative of a desired roll;transmit a first control signal indicative of the power setting and the propeller pitch;and transmit a second control signal indicative of the horizontal control surface setting configured to cause the horizontal control surface to respond according to the horizontal control surface setting. -51 CA 02856901 2015-10-05
Independent claims37