IP Library › Granted Patent US 10,281,232
Granted Patent B2
US 10,281,232 · App. 15/881,494 · Granted May 7, 2019

Virtual reality archery training system

Inventor: Matthew Allen-Tesch Pell (Plainfield, IL)
Assignee: AccuBow LLC
F41B5/1476A63B21/00069A63B21/028A63B21/0414A63B21/157A63B21/4043A63B23/03508A63B23/1209A63B69/00A63B71/0622A63F13/211A63F13/79A63F13/792A63F13/837A63F13/85F41B5/1426F41B5/1492A63B2071/0625A63B2220/12A63B2220/803A63B2220/808A63B2225/50A63B2244/04
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Quick Facts
Patent No.
US 10,281,232
App. No.
15/881,494
Granted
May 7, 2019
Kind
B2
Abstract

An adjustable archery training bow assembly includes a single resistance element and an adjustment mechanism that can be actuated by a user to vary the tension level in the resistance element for training purposes. The training bow also includes a mount for receiving a mobile device, which allows the user to practice various augmented reality-archery training scenarios. The adjustable archery training bow is used to enhance the user's skills, such as his/her strength, stability, and accuracy to help deliver on-target an arrow fired from a real, non-training bow.

Claims (43)

1. A virtual reality archery training system, comprising:

archery training bow, wherein the archery training bow includes:

a main body having a handle;

a resistance member, said resistance member is attached to an adjustable tension mechanism that permits a user to vary the tension of the resistance member;

a vibration damper coupled to the main body;

a mobile device mount disposed between the handle and a first end of the main body; and

a mobile device releasably coupled to the mobile device mount and having a display, a microphone, and an archery application installed thereon,

wherein: (i) the microphone is configured to record sounds produced from contact between the resistance member and an end of the vibration damper and (ii) the archery application is configured to render graphics on the display that simulate real life archery scenarios.

2. The virtual reality archery training system of claim 1 , wherein the mobile device includes a magnetometer, MEMS gyroscope, and a display;

said magnetometer is configured to provide an initial reference point for the archery application;

said MEMS gyroscope is configured to inform the archery application how far the mobile device has moved from the initial reference point; and

wherein the graphics rendered on the display are altered based on the movement of the mobile device from the initial reference point.

3. The virtual reality archery training system of claim 1 , wherein a simulated arrow is fired within the archery application if the sound produced from contact between the resistance member and the end of the vibration damper is greater than a predetermined value.

4. The virtual reality archery training system of claim 3 , wherein a flight path of the simulated arrow is shown on the display.

5. The virtual reality archery training system of claim 4 , wherein the flight path of the simulated arrow is affected by a simulated gravitational force.

6. The virtual reality archery training system of claim 5 , wherein different point values are awarded based on whether the simulated arrow hits a simulated target.

7. The virtual reality archery training system of claim 1 , wherein the simulated real life archery scenarios is one of the following: i) hunting, ii) Olympic target shooting, iii) strength building, iv) augmented reality archery training scenario, v) virtual reality archery challenge, or vi) augmented reality archery challenge.

8. The virtual reality archery training system of claim 1 , wherein the archery application allows a user to input personal specifications, said personal specifications include one of the following: height, arrow speed, or number of sight pins.

9. A method of using an archery training bow assembly without releasing an arrow, comprising:

providing an archery training bow assembly, the archery training bow assembly including a main body, a damper coupled to the main body, a resistance member operably connected to the main body, and a mobile device releasably coupled to the main body and having both an integrated microphone and an archery application installed thereon;

drawing the resistance member from an initial position to a drawn position;

holding the resistance member in the drawn position while aiming the archery training bow at a simulated target generated by the archery application on a display integrated into the mobile device;

releasing the resistance member after a predefined amount of time;

using the microphone to record the sound caused by contact between the resistance member and the damper; and

rendering graphics on the display that simulate a real life archery scenario.

10. The method of claim 9 , further comprising a step of using a magnetometer and a MEMS gyroscope, both of which are integrated into the mobile device, to determine a direction and angle of the bow and in response generating graphical representation of what is located at the determined direction and angle in the archery application.

11. The method of claim 9 , wherein the real life archery scenario simulated by the graphics rendered on the display is a simulated arrow fired when the recorded sound is above a predefined value.

12. The method of claim 11 , further comprising a step of displaying a flight path of the-simulated arrow.

13. The method of claim 12 , further comprising a step of displaying a contact location on the simulated target where the simulated arrow made contact.

14. The method of claim 13 , further comprising a step of displaying points that were awarded based on the location of where the simulated arrow contacted the simulated target.

15. The method of claim 9 , wherein the simulated target is an animal or an Olympic target.

16. The method of claim 9 , further comprising the step of inputting a user's personal specification, said personal specifications include one of the following:

height, arrow speed, or number of sight pins.

17. A virtual reality archery training system, comprising:

archery training bow, wherein the archery training bow includes:

a main body,

a resistance member that is operably coupled to the main body,

a vibration damper coupled to the main body,

a mobile device mount coupled to the main body, and

a mobile device releasably coupled to the mobile device mount, the mobile device having: (i) a display, (ii) a sensor, and (iii) an archery application installed thereon;

wherein the sensor is configured to wirelessly determine when the resistance member makes sufficient contact with the end of the vibration damper, which causes the archery application to render a flight path of the simulated arrow on the display.

18. The virtual reality archery training system of claim 17 , wherein the sensor is any one of the following: (i) microphone, (ii) front facing camera, (iii) LiDAR sensor, or (iv) barometer.

19. The virtual reality archery training system of claim 17 , wherein archery application includes an online community section.

Continuity (4)
Continuation In Part 15215289 · Jul 20, 2016
Provisional Application 62556650 · Sep 11, 2017
Provisional Application 62231889 · Jul 20, 2015
Related Publication 20180149444A1 · May 31, 2018
Cited By (2)
US 1,103,235 US 12,429,301