IP Library › Granted Patent US 11,255,643
Granted Patent B2
US 11,255,643 · App. 16/967,142 · Granted Feb 22, 2022

System for countering an unmanned aerial vehicle (UAV)

Inventors: Wen Jun Edwin Ang (Singapore, SG); Yong Peng Tan (Singapore, SG); Juan Kiat Quek (Singapore, SG); Ce Yu Poo (Singapore, SG); Yuen Hoong Benedict Woo (Singapore, SG); Cheng Hok Aw (Singapore, SG)
F41H11/02F41H13/0006F42B12/58
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Quick Facts
Patent No.
US 11,255,643
App. No.
16/967,142
Granted
Feb 22, 2022
Kind
B2
Abstract

The present invention describes an air-burst projectile ( 100 ) and a system ( 200 ) for deploying the airburst projectile to counter an unmanned aerial vehicle (UAV) 10 . Each airburst projectile includes one or more spinners ( 140, 140 a - 140 d ); each spinner has a sleeve or a tube ( 146 ), a number of radial partition plates ( 148, 148 a - 148 d ) extending from the sleeve/tube and an annular rear plate ( 144 ) connected to the sleeve. Adjacent partition plates thus form a compartment ( 150 ). Disposed in each compartment is a streamer or streamers ( 170,170 a, 170 b ), which are formed in a coiled-up state. When the airburst projectile is deployed into a flight path of a target UAV, the spinners ( 140, 140 a - 140 d ) are ejected and the streamers ( 170,170 a, 170 b ) are dispersed in the flight path to create a streamer cloud, so that a streamer may entangle with propellers of the UAV and bring down the UAV, or as a warning or fence marking shot.

Claims (23)

1. An airburst projectile for countering an unmanned aerial vehicle (UAV) comprising:

an ogive connected to a fuze assembly, which fuze assembly is then connected to a shell;

wherein the ogive houses:

a spinner, wherein the spinner comprises a rear annular plate being connected along an inner annular edge to a sleeve, and a plurality of partition plates extend radially from the sleeve and being in contact with a face of the rear annular plate, so that a space between adjacent radial partition plates form each compartment and a streamer, in a coiled-up state, is disposed in each compartment; and

the fuze assembly comprises a programmable fuze and an electric detonator;

so that the spinner and the fuze assembly are located forward of the electric detonator, and when an UAV is determined to be a threat or undesirable, an airburst projectile is fired into a flight path of the UAV, such that when the ogive is burst open by activating the electric detonator, the spinner is ejected, causing the streamers to disperse and the streamers to open up from the coiled-up state, thus creating a streamer cloud in the flight path of the UAV.

2. The airburst projectile according to claim 1 , wherein a plurality of the spinners is stacked one on another along an axis that is substantially coaxial with a longitudinal axis of the airburst projectile.

3. The airburst projectile according to claim 2 , further comprising a guide tube, along which the plurality of spinners is stacked one on another.

4. The airburst projectile according to claim 1 , further comprising a front annular plate, with an inner edge of the front annular plate being connected to a front end of the sleeve.

5. The airburst projectile according to claim 1 , wherein the sleeve has apertures, with each aperture in fluid communication with an associated compartment.

6. The airburst projectile according to claim 1 , further comprising a decelerator connected to an outer edge of each of the radial partition plate.

7. The airburst projectile according to claim 1 , wherein the sleeve is elongate and forms a tube.

8. The airburst projectile according to claim 7 , wherein the tube comprises a plurality of apertures, so that a row of apertures along the tube is in fluid communication with an associated compartment.

9. The airburst projectile according to claim 7 , wherein a plurality of streamers is packed in each compartment.

10. The airburst projectile according to claim 1 , wherein each streamer has a blob formed at an intermediate location between two free ends.

11. The airburst projectile according to claim 10 , wherein the blob is a bead.

12. The airburst projectile according to claim 10 , wherein the blob is knot of the web material.

13. A method for countering an unmanned aerial vehicle (UAV) comprising:

operating a laser range finder to determine a distance, speed and direction of the UAV;

establishing or estimating a user distance to a territorial or air-exclusion boundary;

entering a user distance to the territorial or air-exclusion boundary into a programming unit (PU) on an associated grenade launcher;

computing ballistic parameters for an airburst projectile to reach a flight path of the UAV; and

after determining that the UAV is a threat or undesirable, firing the grenade launcher to propel the airburst projectile to the desired destination, and detonating the airburst projectile to disperse streamers to create a streamer cloud as a warning shot or detonating a series of the airburst projectiles for fence marking along a relevant part of a territorial or air-exclusion boundary.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 12, 2020
From: ANG, WEN JUN, EDWIN; TAN, YONG PENG; QUEK, JUAN KIAT; POO, CE YU; WOO, YUEN HOONG, BENEDICT; AW, CHENG HOK
To: ADVANCED MATERIAL ENGINEERING PTE LTD
Reel/Frame 054045/0706 →
Priority Claims (1)
SG 10201800999Q · Feb 5, 2018 · national
Continuity (1)
Related Publication 20200363165A1 · Nov 19, 2020
Cited By (2)
US 12,352,536 US 12,623,781