Diamond quadcopter
10870486 ยท 2020-12-22
Inventors
Cpc classification
Y02T50/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B64C2001/0045
PERFORMING OPERATIONS; TRANSPORTING
B64C29/0033
PERFORMING OPERATIONS; TRANSPORTING
B64U50/19
PERFORMING OPERATIONS; TRANSPORTING
B64C1/1415
PERFORMING OPERATIONS; TRANSPORTING
B64U50/30
PERFORMING OPERATIONS; TRANSPORTING
International classification
B64C29/00
PERFORMING OPERATIONS; TRANSPORTING
B64C1/14
PERFORMING OPERATIONS; TRANSPORTING
B64C1/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A diamond quadcopter is described with tilting propulsion modules attached to a diamond faceted fuselage providing vertical thrust for Vertical Takeoff and Landing (VTOL) and transitioning to horizontal thrust for flight. The diamond faceted fuselage generates lift as a low aspect ratio lifting body. The diamond-like facet geometry enables propulsor placement to minimize interaction between the slipstream and fuselage in all modes of operation. A retractable landing gear with powered wheels allows Vertical/Short Takeoff and Landing (V/STOL) including emergency landings, and maneuverability on the ground. Landed and with gear retracted the bottom fuselage facet is close to ground level allowing an aft facet ramp for walk-on or roll-on access of passengers and payload. With the landing gear extended the vehicle can maneuver over cargo using the wheeled hub motors and then retract for insertion of cargo through a fuselage bottom door.
Claims
1. A diamond quadcopter comprising: a diamond faceted fuselage, with tilting propulsion modules mounted on the inboard side of support foils, with retractable landing struts mounted in said foils with motorized wheels, with a ramp access and bottom door for loading and unloading, whereby said tilting propulsion modules provide thrust for lift and flight for vertical/short takeoff and landing as a quadcopter with minimal slipstream interaction with said fuselage, whereby said ramp provides walk-on or roll-on capabilities for people and cargo, whereby said motorized wheels allow maneuvering over and then insertion of cargo through said bottom door by extension and retraction of said landing struts.
Description
DESCRIPTION OF DRAWINGS
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REFERENCE NUMERALS
(8) 10 diamond quadcopter 20 diamond faceted fuselage 30 propulsion module 40 rotary actuator 50 forward propulsion module support foil 60 aft propulsion module support foil 70 cross structure 80 energy storage internal module 90 landing struts 100 caster nose wheel 110 main landing wheel 120 hub motor 130 ramp 140 hinge 150 bottom door 160 forward cross foil 170 aft cross foil
DETAILED DESCRIPTIONFIRST EMBODIMENT
(9) A novel diamond quadcopter 10 is described that provides improvements in flight performance and payload utility. Said diamond quadcopter 10, illustrated in
(10) Inherent to a quadcopter, said propulsive modules 30 are controlled by computers to provide flight attitude control and VTOL operation. As illustrated in
(11) As illustrated in
(12) Said forward propulsion module support foils 50 and said aft propulsion module support foils 60 may have, in an embodiment, internally mounted landing struts 90 illustrated in
(13) Said landing struts 90 have a caster nose wheel 100 mounted on one pair and have main landing wheels 110 mounted on a second pair. In an embodiment, said main landing wheel 110 may incorporate hub motors 120 for ground maneuvering. Collective or differential powering of said hub motor 120 in combination with said caster nose wheel 100 allows maneuverability on the ground without the use of said propulsion modules 30. Said hub motor 120 may also assist with power during short takeoff and with regenerative braking during a rolling landing.
OPERATIONFIRST EMBODIMENT
(14) Said propulsive modules 30 are tilted by said rotary actuators 40 to transition from vertical thrust for take-off and landing mode to a more horizontal thrust during flight mode, as illustrated in
DETAILED DESCRIPTIONSECOND EMBODIMENT
(15) In a second embodiment illustrated in
OPERATIONSECOND EMBODIMENT
(16) With said landing struts 90 fully retracted the thin, flat shape of said cross structure 70 allows said hinge 140 to be in close proximity to the ground. The low height of said hinge 140 allows a very shallow angle for said ramp 130 for easy walk-on or roll-on of payload, for example passengers using wheelchairs or gurneys, and without the inconvenience of having to climb into a fuselage.
DETAILED DESCRIPTIONTHIRD EMBODIMENT
(17) In a third embodiment illustrated in
OPERATIONTHIRD EMBODIMENT
(18) Utilizing said hub motor 120 or said propulsion module 30, said diamond quadcopter 10 maneuvers over and lowers onto a cargo package through said bottom door 150 using the extension and retraction of said landing struts 90. With no cargo package loaded, or with it released and jettisoned during flight, said bottom door 150 opening may be utilized in manned flights as an emergency egress exit.
DETAILED DESCRIPTIONFOURTH EMBODIMENT
(19) In a fourth embodiment illustrated in
OPERATIONFOURTH EMBODIMENT
(20) Said rotary actuators 40 control movement of said power modules 30 and said forward cross foil 160 and said aft cross foil 170. Solid spans are illustrated in
(21) Summary
(22) This patent describes a diamond quadcopter with a diamond faceted fuselage that generates forward flight lift while providing open corner regions for foil supported propulsion modules that minimize propulsion module slipstream interaction with the fuselage in the different modes of operation. The geometry is scaleable in various embodiments from small size vehicles carrying instruments to mid-sized vehicles carrying packages to large size vehicles carrying cargo and/or people.
(23) Internal to the propulsion module support foils are vertically extendable landing struts with mounted wheels that allow rolling and non-rolling take-offs and landings and provide for maneuverability and control of the height and attitude of the diamond quadcopter while on the ground.
(24) The diamond faceted fuselage has a flat bottom facet allowing the vehicle in one embodiment to settle close to the ground thereby allowing access to the interior via a shallow angled ramp swung open from the lower edge of the aft facet.
(25) The flat bottom facet also allows an embodiment to provides access to the fuselage interior through a bottom door; thereby, allowing the quadcopter to maneuver over and settle onto cargo utilizing height adjustment of the landing struts.
(26) The modes of operation include vertical take-off and landing, conventional short take-off and landing and emergency landings, tilting propulsion during flight, and ground loading and unloading of payload via bottom insertion or via ramp.