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US20170370726A1 - Skydiving trajectory and coordination feedback system - Google Patents

Skydiving trajectory and coordination feedback system
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Publication number
US20170370726A1
US20170370726A1US15/194,131US201615194131AUS2017370726A1US 20170370726 A1US20170370726 A1US 20170370726A1US 201615194131 AUS201615194131 AUS 201615194131AUS 2017370726 A1US2017370726 A1US 2017370726A1
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United States
Prior art keywords
user
controller
drag
jump
skydive
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US15/194,131
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US9863772B1 (en
Inventor
Stephanie Moyerman
Tyler Fetters
James Brian Hall
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Intel Corp
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Intel Corp
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Priority to US15/194,131priorityCriticalpatent/US9863772B1/en
Assigned to INTEL CORPORATIONreassignmentINTEL CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: HALL, JAMES BRIAN, FETTERS, Tyler, MOYERMAN, STEPHANIE
Publication of US20170370726A1publicationCriticalpatent/US20170370726A1/en
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Publication of US9863772B1publicationCriticalpatent/US9863772B1/en
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Abstract

A system for skydiving trajectory and coordination feedback for a user. The system includes a controller coupled to a plurality of sensor inputs. The controller determines a user drag through air based on input data from the plurality of sensor inputs. The controller also receives a user flightpath and determines a projected user trajectory based on the user drag. The controller also determines user drag adjustments to align the projected user trajectory with the received user flightpath. At least one of an aural, haptic, or visual feedback device is coupled to the controller to provide feedback to the user in response to the user drag adjustments.

Description

Claims (25)

1. A system for skydiving trajectory and coordination feedback for a user during a skydive jump, the system comprising:
a controller coupled to a plurality of sensor inputs, the controller to determine a user drag through air during the skydive jump based on input data from the plurality of sensor inputs, the controller to receive a user flightpath of the skydive jump, determine a projected user trajectory of the skydive jump based on the user drag, and determine user drag adjustments to align the projected user trajectory of the skydive jump with the received user flightpath; and
a feedback device interface coupled to the controller to provide feedback signals to at least one of aural, haptic, or visual feedback devices in response to the user drag adjustments such that the user is able to adjust the skydiving trajectory during the skydive jump.
13. A system for skydiving trajectory and coordination feedback for a user during a skydive jump, the system comprising:
a plurality of sensors for measuring at least one of user altitude, user horizontal speed, or user spin rate during the skydive jump;
a controller coupled to the plurality of sensors, the controller to determine, based on input data from the plurality of sensors, the skydive jump from an elevation, a coefficient of drag of the user through air, and a projected trajectory of the user through the air, the controller to determine user drag adjustments to align the projected trajectory of the skydive jump with a desired user flightpath; and
a user feedback device, coupled to the controller, to communicate the user drag adjustments to the user during the skydive jump to enable the user to adjust the flightpath during the skydive jump.
16. A method for skydiving trajectory and coordination feedback during a skydive jump, the method comprising:
receiving a desired user flightpath for the skydive jump;
detecting when a user has initiated the skydive jump from an elevation based on sensor data from sensors indicating a change in altitude and acceleration;
determining a drag of the user through air during the skydive jump;
determining a projected trajectory of the user through the air, during the skydive jump, based on the drag;
determining adjustments to the drag to align the projected trajectory with the desired user flightpath during the skydive jump; and
generating user feedback to at least one of haptic response devices, a speaker, or a display during the skydive jump, the user feedback comprising indications on the adjustments to the drag t& enable the user to adjust the user flightpath during the skydive jump.
US15/194,1312016-06-272016-06-27Skydiving trajectory and coordination feedback systemExpired - Fee RelatedUS9863772B1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US15/194,131US9863772B1 (en)2016-06-272016-06-27Skydiving trajectory and coordination feedback system

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US15/194,131US9863772B1 (en)2016-06-272016-06-27Skydiving trajectory and coordination feedback system

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US20170370726A1true US20170370726A1 (en)2017-12-28
US9863772B1 US9863772B1 (en)2018-01-09

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Cited By (6)

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CN112213753A (en)*2020-09-072021-01-12东南大学 A method of combining Beidou navigation and positioning function with augmented reality technology to plan a skydiving training path
CN114638444A (en)*2022-05-192022-06-17珠海翔翼航空技术有限公司Parachute jumping time prediction method, system and equipment for sudden failure
CN115544772A (en)*2022-10-122022-12-30湖北文理学院Method, device and terminal for multivariate regression and fitting of dynamic parachute opening simulation data of lifesaving parachute
CN117566109A (en)*2023-11-142024-02-20中国人民解放军空军航空大学航空基础学院Ejection parachuting minimum safety height intelligent judgment alarm device
US20240126218A1 (en)*2022-10-172024-04-18Wilcox Industries Corp.Personal digital module
US11972039B1 (en)*2022-12-022024-04-30ARMapsAugmented reality skydiving system

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US10782524B2 (en)*2017-06-092020-09-22Mark HaleySkydiving tracker: an integrated system for flight data collection and virtual reality simulators for improving skydiving safety
US11027850B1 (en)2018-10-152021-06-08United States Of America As Represented By The Secretary Of The Air ForceElevation tracking device
JP2021012349A (en)2019-06-212021-02-04マーク ヘイリーAutomatic ejection technique and skydiving training system for improving pilot safety during transition to autonomous fighter jets

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CN112213753A (en)*2020-09-072021-01-12东南大学 A method of combining Beidou navigation and positioning function with augmented reality technology to plan a skydiving training path
CN114638444A (en)*2022-05-192022-06-17珠海翔翼航空技术有限公司Parachute jumping time prediction method, system and equipment for sudden failure
CN115544772A (en)*2022-10-122022-12-30湖北文理学院Method, device and terminal for multivariate regression and fitting of dynamic parachute opening simulation data of lifesaving parachute
US20240126218A1 (en)*2022-10-172024-04-18Wilcox Industries Corp.Personal digital module
US11972039B1 (en)*2022-12-022024-04-30ARMapsAugmented reality skydiving system
CN117566109A (en)*2023-11-142024-02-20中国人民解放军空军航空大学航空基础学院Ejection parachuting minimum safety height intelligent judgment alarm device

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