INTELLIGENT PARACHUTE RESCUE SYSTEM FOR MANNED AND UNMANNED AERIAL VEHICLES
20180050805 ยท 2018-02-22
Inventors
Cpc classification
B64D45/00
PERFORMING OPERATIONS; TRANSPORTING
B64D17/80
PERFORMING OPERATIONS; TRANSPORTING
B64D2045/0085
PERFORMING OPERATIONS; TRANSPORTING
B64U2101/55
PERFORMING OPERATIONS; TRANSPORTING
B64U2101/69
PERFORMING OPERATIONS; TRANSPORTING
B64U70/83
PERFORMING OPERATIONS; TRANSPORTING
B64D17/72
PERFORMING OPERATIONS; TRANSPORTING
International classification
B64D17/72
PERFORMING OPERATIONS; TRANSPORTING
B64D45/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a method and a device for an intelligent parachute rescue system for manned and unmanned aerial vehicles (14), wherein no pyrotechnic propellants are used, but compressed air (4a) extracted from a pressure bottle (4).
Claims
1.-6. (canceled)
7. A method for an intelligent parachute rescue system for manned and unmanned aerial vehicles, comprising: sensing flight and engine data of the aerial vehicle; evaluating the flight and engine data with a data logger; and causing activation of a parachute container based on the evaluated flight and engine data by controlling a flow of compressed air from a pressure cylinder into the parachute container, thereby deploying an emergency parachute disposed within the parachute container in a controlled manner.
8. The method according to claim 7, wherein the activation of the parachute container is triggered by a wireless remote transmission.
9. An intelligent parachute rescue system for manned and unmanned aerial vehicles, comprising a parachute container comprising a rescue capsule having an emergency parachute and an auxiliary parachute, the rescue capsule being provided in a compressed air container of the parachute container; a pressure cylinder filled with compressed air, the pressure cylinder being connected to the parachute container; and a control valve arranged between the pressure cylinder and the compressed air container of the parachute container.
10. The system according to claim 9, wherein the system is activated by opening the control valve, causing compressed air to flow from the pressure cylinder into the parachute container.
11. The system according to claim 9, wherein the rescue capsule is a multi-part, non-tightly closed capsule, with a plurality of sliding rings, and wherein the parachute container is adapted to deploy the rescue capsule by compressed air.
12. The system according to claim 9, wherein the emergency parachute is integrated into the parachute container by an adjoining flexible, slidable packaging system which comprises predetermined break points.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] An exemplary embodiment is described in the following with reference to the figures.
[0025] The figures show:
[0026]
[0027]
[0028]
[0029]
[0030]
DETAILED DESCRIPTION
[0031] A method for operating an intelligent parachute rescue system is based on the use of compressed air to deploy an emergency parachute 3 for an aerial vehicle 14.
[0032] A possible, additional data logger (
[0033] In the case of danger, the system (
[0034] The control valve 5a can therefore advantageously also be referred to in the embodiment as an electronic control valve, which is directly connected electrically to the manual release 16 or the switching outputs of the data logger 15. The compacted compressed air in the pressure cylinder (
[0035] A container hood 1, which is not fixedly connected to the parachute container 77, advantageously made of light plastic material, closes the parachute container 77 with an internal rescue capsule 20.
[0036] When the system is activated, (
[0037] The parachute container 77, which houses the emergency parachute 3, can be designed in several variants: [0038] Multi-capsule system (
[0040] A safe and compact transport away from the damaged aerial vehicle is provided in both cases. This precludes jamming when deploying the rescue capsules.
[0041] The central cord 2a, which is fastened to the emergency parachute 3 and the wire ropes of the aerial vehicle, is freely positioned on the system under the container section (
REFERENCE NUMBERS
[0042] 1 Container hood [0043] 1a Compressed air container [0044] 2a Central cord [0045] 2b Auxiliary parachute [0046] 3 Emergency parachute [0047] 4 Pressure cylinder [0048] 4a Compressed air [0049] 5 Compressed air bottle outlet opening [0050] 5a Control valve [0051] 6 Offset sliding rings [0052] 7c Multi-capsule system [0053] 8 Pulling force [0054] 9 Air streaming in [0055] 11 Container section [0056] 13 Predetermined break point [0057] 14 Aerial vehicle [0058] 15 Data logger [0059] 16 Manual release [0060] 20 Rescue capsule [0061] 70 Packing system [0062] 77 Parachute container [0063] a) Resting state [0064] b) Activating the system [0065] c) Opening emergency parachute [0066] d) Flight direction [0067] e) Inflow