IP Library Granted Patent US 9,177,486
Granted Patent B2
US 9,177,486 · App. 13/898,502 · Granted Nov 3, 2015

Shifter force detection

Inventors: Aaron M. Best (Murray, UT); J. Ken Barton (Sandy, UT); David J Havell (Salt Lake City, UT); Reginald T. Welles (Salt Lake City, UT); Darrell R. Turpin (Murray, UT); James W. Voorhees (Vancouver, WA); John Kearney (St. Pete Beach, FL); Camille B. Price (Kaysville, UT); Nathan P. Stahlman (Vancouver, WA); Aaron J. Turpin (Taylorsville, UT); Aaron M. Purvis (Vancouver, WA)
Assignee: Advanced Training System LLC
G09B19/167G09B9/05
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Quick Facts
Patent No.
US 9,177,486
App. No.
13/898,502
Granted
Nov 3, 2015
Kind
B2
Abstract

A shifter simulator for driver training includes a shaft with a handle affixed to a first end of the shaft and a distal second end of the shaft being interfaced to a shifter mechanism. A first force sensing device is interfaced to the shaft, outputting a value representative of an amount of force applied to the handle in a forward/rearward direction and a second force sensing device is interfaced to the shaft outputting a value representative of an amount of force applied to the handle in a lateral direction.

Claims (26)

1. A method of training a trainee regarding shifting, the method includes:

providing a shifting training simulator device comprising:

a computer;

a windshield display coupled to the computer;

a shaft;

a handle affixed to a first end of the shaft;

a distal second end of the shaft interfaced to a shifter mechanism; and

a force sensing device interfaced to the shaft, the force sensing device operatively coupled to the computer such that the force sensing device outputs a value representative of an amount of force applied to the handle which is read by the computer;

the computer displaying a training segment on the windshield display while the trainee shifts the handle of the shifting training simulator; and

the computer reading the force sensing device and providing feedback to the trainee regarding the amount of force applied to the handle;

whereas upon reading the force sensor device and detecting a force greater than a predetermined threshold, the computer stopping the training segment and starting a remedial training segment regarding shifter breakage.

2. The method of claim 1 , wherein the shifting training simulator further comprises a transmission lock out solenoid, the transmission lock out solenoid selectively locks the shift handle responsive to signals from the computer and whereas the computer further signaling the lock out solenoid to lock the shift handle, thereby preventing breakage.

3. The method of claim 1 , further comprising a step of providing tactile feedback to the trainee by emitting sound and/or vibration from a transducer, the transducer coupled to the shifting training simulator device.

4. A method of training a trainee regarding shifting, the method includes:

providing a shifting training simulator device comprising:

a computer;

a windshield display coupled to the computer;

a shaft;

a handle affixed to a first end of the shaft;

a distal second end of the shaft interfaced to a shifter mechanism; and

a force sensing device interfaced to the shaft, the force sensing device operatively coupled to the computer such that the force sensing device outputs a value representative of an amount of force applied to the handle which is read by the computer;

the computer displaying a training segment on the windshield display while the trainee shifts the handle of the shifting training simulator; and

the computer reading the force sensing device and providing feedback to the trainee regarding the amount of force applied to the handle;

whereas upon reading the force sensor device and detecting a force greater than a predetermined second, greater threshold, the computer stopping the training segment thereby preventing breakage of the shifting training simulator device.

5. The method of claim 4 , wherein the shifting training simulator further comprises a transmission lock out solenoid, the transmission lock out solenoid selectively locks the shift handle responsive to signals from the computer and whereas the computer further signaling the lock out solenoid to lock the shift handle, thereby preventing breakage.

6. The method of claim 4 , further comprising a step of providing tactile feedback to the trainee by emitting sound and/or vibration from a transducer, the transducer coupled to the shifting training simulator device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 25, 2013
From: BEST, AARON M.; BARTON, J. KEN; HAVELL, DAVID J.; WELLES, REGINALD T.; TURPIN, DARRELL R.; VOORHEES, JAMES W.; KEARNEY, JOHN, SR; PRICE, CAMILLE B.; STAHLMAN, NATHAN P.; TURPIN, AARON J.; PURVIS, AARON M.
To: ADVANCED TRAINING SYSTEM LLC
Reel/Frame 030873/0778 →
Continuity (3)
Continuation In Part 12889452 · Sep 24, 2010
Provisional Application 61277768 · Sep 29, 2009
Related Publication 20130302761A1 · Nov 14, 2013