Sonotube compatible unmanned aerial vehicle and system
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
F41G-007/00
B64C-001/00
출원번호
US-0882368
(1997-06-25)
발명자
/ 주소
Woodland Richard L. K.,CAXITX V8Z 6N2
대리인 / 주소
Bullock
인용정보
피인용 횟수 :
202인용 특허 :
2
초록▼
The present invention is generally comprised of a sonotube-compatible unmanned aerial vehicle apparatus, hereinafter referred to as a UAV, and systems for launch and control of the UAV. The UAV is generally comprised of modular sections including a nose section, a payload section, a wing and fuel ta
The present invention is generally comprised of a sonotube-compatible unmanned aerial vehicle apparatus, hereinafter referred to as a UAV, and systems for launch and control of the UAV. The UAV is generally comprised of modular sections including a nose section, a payload section, a wing and fuel tank section, and a powerplant section. The modular sections are attached to adjacent sections by uniform lock sealing rings and related components. The present invention comprises an apparatus enabling very small, man portable, ballistically launched, autonomously or semi-autonomously controlled vehicle to be deployed with preprogrammed, communicated, or telemetry mission programming. A wide range of payload packages, including emergency supplies, sensors, and antenna assemblies, may be carried, used or deployed in flight. Man-portable operation is accomplished by the use of a launch canister apparatus. The launch canister comprises retractable launch stabilizing legs, turbine engine exhaust orifices, and various antennas. The launch canister apparatus alternatively comprises a modified type "A", "B", or "C" sonotube launch canister. The system of the invention also comprises a portable Command, Control, Communications, Computer, and Intelligence (C4I) control and sensing analysis console. The console is preferably ruggedized, waterproof, shockproof, and comprises necessary control and analysis computers, input/output devices, antennas, and related hardware and software for vehicle and mission control. A C4I console and/or launch canisters may be transported by means of a backpack adapted for man portability.
대표청구항▼
[ I claim:] [1.] A sonotube compatible unmanned aerial vehicle having an airframe comprising adjacent sections, said sections comprising:a) a nose section;b) a payload section attached to said nose section, said payload section housing at least one deployable payload;c) a wing and fuel tank section
[ I claim:] [1.] A sonotube compatible unmanned aerial vehicle having an airframe comprising adjacent sections, said sections comprising:a) a nose section;b) a payload section attached to said nose section, said payload section housing at least one deployable payload;c) a wing and fuel tank section attached to said payload section; andd) a powerplant section attached to said wing and fuel tank section.
연구과제 타임라인
LOADING...
LOADING...
LOADING...
LOADING...
LOADING...
이 특허에 인용된 특허 (2)
Tribe Alex E. (Thousand Oaks CA) Bottorff Marion R. (Ventura CA) Cottrell Ronald G. (Thousand Oaks CA) Ranes Richard L. (Simi Valley CA) Whistler William B. (Thousand Oaks CA), Aircraft.
Alber, Mark R.; Stille, Brandon L.; Smiley, Alfred Russell, Aerodynamic integration of a payload container with a vertical take-off and landing aircraft.
Carpenter, Jon J.; Cronick, Jeffrey J.; Green, Jennifer L.; Lindley, Brian R.; Wechsler, James K.; Smith, Thomas R., Crewed on-orbit, returnable, and reusable space vehicle.
Carpenter, Jon J.; Cronick, Jeffrey J.; Green, Jennifer L.; Lindley, Brian R.; Wechsler, James K.; Smith, Thomas R., Crewed on-orbit, returnable, and reusable space vehicle.
Fisher, Christopher Eugene; Mukherjee, Jason Sidharthadev; Lott, William Arden, Geographic survey system for vertical take-off and landing (VTOL) unmanned aerial vehicles (UAVs).
Lee, Byoung Sun; Lee, Jeong Sook; Mo, Hee Sook; Kim, Jae Hoon; Lee, Seong Pal, Low earth orbit satellite command planning device and method, and low earth orbit satellite control system including the same.
Teter, Roger D.; Dunn, Steven A.; Meyer, J. William, Method and system for providing cruciform steered, bent biconic and plasma suppression for maximum accuracy.
Teter,Roger D.; Dunn,Steven A.; Meyer,J. William, Method and system for providing cruciform steered, bent biconic and plasma suppression for maximum accuracy.
Cain, Alan B.; Jumper, Eric J.; Wittich, III, Donald J.; Kerschen, Edward J.; Cavalieri, David; Ng, T. Terry, Methods and apparatus for optical propagation improvement system.
Kaiser, Stephen G.; Hischke, Mark D.; Nelson, Shannon Mary; Collar, Stuart J.; Bourbonnais, Dana Lynn, Modular open system architecture for unattended ground sensors.
Peeters, Eric; Teller, Eric; Patrick, William Graham, Multi-part navigation process by an unmanned aerial vehicle for navigating to a medical situatiion.
Fisher, Christopher Eugene; Mukherjee, Jason Sidharthadev; Lott, William Arden; Aagaard, Eric James, Survey migration system for vertical take-off and landing (VTOL) unmanned aerial vehicles (UAVS).
Meyer,J. W., System and method for reducing plasma induced communication disruption utilizing electrophilic injectant and sharp reentry vehicle nose shaping.
Moritz, Elan; Portmann, Helmut, System for the combined handling, delivery and/or protection of multiple standardized containers and their controllable payloads.
Miralles, Carlos Thomas; Su, Guan H.; Andryukov, Oleksandr; McNeil, John, Systems and devices for remotely operated unmanned aerial vehicle report-suppressing launcher with portable RF transparent launch tube.
Miralles, Carlos Thomas; Su, Guan H; Andryukov, Alexander; McNeil, John, Systems and devices for remotely operated unmanned aerial vehicle report-suppressing launcher with portable RF transparent launch tube.
Miralles, Carlos Thomas; Su, Guan H.; Andryukov, Oleksandr; McNeil, John, Systems and devices for remotely operated unmanned aerial vehicle report-suppressing launcher with portable rf transparent launch tube.
Neal, III, David Anthony; Ehlmann, Kevin Marlan; Gressick, William Thomas; Bateman, Alec Jacob Devine; Horneman, Kenneth Richard, Systems, devices, and/or methods for managing targeted payload descent.
Neal, III, David Anthony; Ehlmann, Kevin Marlan; Gressick, William Thomas; Bateman, Alec Jacob Devine; Horneman, Kenneth Richard, Systems, devices, and/or methods for managing targeted payload descent.
Wallace, Jason J.; Nesline, Paul; Uskert, Richard C.; Padilla, Samuel, Techniques for emplacing an unmanned aerial vehicle launcher prior to launching an unmanned aerial vehicle.
Taylor, Dana J.; Tokumaru, Phillip T.; Hibbs, Bart Dean; Parks, William Martin; Ganzer, David Wayne; King, Joseph Frederick, Vertical takeoff and landing (VTOL) air vehicle.
Taylor, Dana J.; Tokumaru, Phillip T.; Hibbs, Bart Dean; Parks, William Martin; Ganzer, David Wayne; King, Joseph Frederick, Vertical takeoff and landing (VTOL) air vehicle.
Taylor, Dana J.; Tokumaru, Phillip T.; Hibbs, Bart Dean; Parks, William Martin; Ganzer, David Wayne; King, Joseph Frederick, Vertical takeoff and landing (VTOL) air vehicle.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.