A microfiche appendix including 1 microfiche with 27 frames accompanies and forms a part of this application.
This invention relates to a smart gaming system coupling sports implements and a computer. More particularly, this invention relates to a system wherein a golf club or other sports implements communicate wirelessly to a personal computer and thereby to the internet for competitive tournament play. Players are grouped together by an internet server and once play ensues the internet server stores only player information whereby one player is then designated as the server and the other players as clients.
This system stores a queue of awaiting players and groups players together via an internet server for purposes of tournament game play. However, once play ensures the internet server retains only remote player address and sport information and designates one player's computer within the group at a remote site to function as the server and the other players as clients. This results in remote tournament play devoid of a single internet server having to store information about each game of a particular sport in progress that can result in cycle time delays and player disconnects due to internet server capacity issues.
It is desirable to remotely communicate actual player performance location, whereby more sophisticated analysis and prediction possibilities are realizable via computer technology and state-of-the-art display techniques. Further, it is also desirable to use such performance information in an expanded capacity to provide interactive competitive play among numerous players in locations remote from each other.
This invention relates to a system that interconnects a golf club or other sports implements to a computer. In a preferred embodiment the computer is coupled wirelessly to a sports implement component. Further, the invention, with components summarized below, allows participants to be paired or grouped together to enter into a competition against each other. Each player asks the computer who is available to play a contest via the internet. Once a players pairs up against another player anywhere in the world and play ensues, the computer and display show each participant's score via animation or graphics that preferably relate to a player's individual performance statistics. A single player may play without an opponent to practice and improve basic golfing skills using the computer and display to track performance.
The system application is unlimited. Much of this system can be used not only for golfing competition on the Internet, but for other sports as well. Sports implements other than golf clubs, swing detectors and receptacles can be outfitted with sensors according to this invention and used for training purposes, rehab, or for interactive internet competition.
The technology can be used for training, competition, and the improvement of player reflexes and coordination. With little or no modification, the technology has applications in any competitive sport.
1. Smart Golf Club
A wireless golf club is constructed to contain or alternatively, a standard golf club is modified to contain, a multiple sensor or transducer array located on the club head at the face or hitting surface. Upon impact of the head of the club with a golf ball, the impacted sensors produce detectable variances representing the magnitude and duration of the club-ball impact force and the proximate location of such contact relative to the preferred location, the “sweet spot”, on the face of the club head. The variances are electronically processed into digitally coded information and remotely transmitted by an electrical communication circuit either contained within or attached to the golf club.
In each golf club device and golf ball receptacle device according to this invention, in a preferred embodiment the transducers are or include piezoactive elements and or pressure sensors. As used herein, “piezoactive” includes piezoelectric and piezoresistive components. Piezoactive components are defined as components the electrical properties of which, when the component is subjected to physical force, vary.
The smart golf club system uses biofeedback to create an intelligent golf training and entertainment system. The smart golf club system is a diagnostic and analysis tool used to improve a player's skills by relatively instantaneous visual cues and acoustic feedback with little or no human intervention. The smart golf club system takes the generated data and reconstructs it into a useful visual format that can be presented in a variety of ways including 3-dimensional animation.
The smart golf club system integrated circuit or circuits can be located anywhere within the club including the head and or shaft.
The smart golf club has a means via its built in microcontroller to process, analyze, store, hitting pattern data and transmit it to the computer and or the Internet for further analysis. In playback mode the smart golf club system memorizes how many times each sensor was hit. This provides the golfer information about his or her hitting pattern. Using a computer algorithm, we can analyze and calculate a hitting pattern and having a personalized sports hitting detection system for each athlete.
2. Golf Ball Receptacle
A ball receptacle has an open end to receive a golf ball and contains a transducer located so as to sense the ball entering receptacle. Upon impact with the golf ball, the sensor produces a detectable variance representing impact with the ball. The variance is electronically processed into display coded information and remotely transmitted by an electrical communication circuit. In one preferred embodiment the communication circuit is contained within the receptacle. Preferably the communicate circuit for the receptacle is a radio frequency transmitter. The receptacle can either be designed for indoor use or can be a cup in an actual green with the communication circuit housed in the cup or elsewhere.
In each of the golf club device and golf ball receptacle device according to this invention, in a preferred embodiment the transducers are or include piezoactive elements. As used herein, “piezoactive” includes piezoelectric and piezoresistive components. Piezoactive components are defined as components the electrical properties of which, when the component is subjected to physical force, vary.
3. Golf Club Motion Sensor Plate
A golf club swing motion sensing device contains an array of uniformly distributed sensing transducers upon or proximate to the device surface. This motion sensing device may be formed as a mat, a plate, or other substantially flat surface from which a golf ball is hit. The transducers produce detectable varying characteristics such as capacitance representing the velocity, angle, and proximity of a golf club relative to the surface of the device. The variances are electronically processed into digitally coded information and remotely transmitted by an electrical communication circuit contained within or electronically connected to the device.
4. Wireless Signal Receiver and Computer
At each remote player site, wireless radio frequency equipment receives the digitally coded transmitted signals from the golf club, the golf ball receptacle, and the club swing motion sensing device. The signals are demodulated and processed into serial binary data suitable for communications to the computer via either serial or parallel ports. As the game progresses, the computer under the control of the golfing software, monitors and directs the flow of communications between the players via the internet and displays the game simulations and performance information.
5. Computer Golfing Software System
At each remote player site, a computer under the control of the golfing software, monitors and controls the sequential play of the game and interacts with the player at the site and also competing players at the other remote sites via the internet. The software system generates the game simulations for display and tracks each player's performance as the game progresses.
The above and further features and advantages of the invention will be better understood with reference to the accompanying drawings and the following detailed description of preferred embodiment.
As shown in
1. Smart Golf Club
The smart golf club 20 has a head 40 and a shaft 42. As shown in
In an alternative embodiment,
In a second alternative embodiment, to retrofit a standard golf club, contact sensors 46 are part of an adapter 40 attached to an ordinary club head as seen in
A golf ball contacting any sensor 46 produces a detectable variance indication the magnitude and duration of sensor-ball impact. The variance may be a change in resistance of a piezo-resistive transducer or a voltage change in the case of a piezo-electric transducer. As shown in
A radio frequency transmitting circuit 58 receives the serial digital data from the microprocessor 56 and wirelessly transmits the information via an internal antenna 60 to a receiver 26 (
2. Golf Ball Receptacle
The golf ball receptacle 22 has a top 62 shaped to allow entry of a golf ball, as shown in
A golf ball entering the receptacle 60 and containing the sensor pad 65, 66 or 67 produces a detectable variance indicating the ball entry event. The variance may be a change in resistance in the case of a piezo-resistive transducer (similar, but not limited to Cooper Instruments LPM 562) or a voltage change in the case of a piezo-electric transducer. As illustrated in
The ball return mechanism 68 can be simple as a back plate 80 located to be engaged by a golf ball entering the receptacle 22 and supported and biased by a spring or springs 82 to eject the ball. Other known ejection devices, similar to those used in pin ball machines and either mechanically or even electrically activated, can be used to improve the effect if desired.
The receptacle configuration is susceptible to much variation. The receptacle illustrated and described above is well suited to indoor use, on carpet for example. It is clear, however, that an actual cup, installed in an actual green, with real or synthetic grass, can be similarly equipped.
3. Golf Club Motion Sensor Plate
The golf club motion sensor plate 80 having a top motion plate 82 and a bottom motion plate 84 is diagrammatically shown in
Applying an energizing high frequency alternating electrical signal having a frequency in the range from 100 MHz to 200 MHz from an oscillator 87 to the golf club motion plate capacitive network 88 produces an electromagnetic field above the surface of each platelet 83 of the capacitive components of the motion sensor plate 80. Any object, including a golf club, passing near the surface of the energized motion plate will cause a perturbation of the electromagnetic field as illustrated by the sample possible pathways 90 across the plate in
The electrical signal from the comparative amplifier network 92 is applied to an analog to digital signal converter 94 (ADC) and the ADC digitized output signal is converted into a serial digital data stream by a multiplexer 96. This data identifies each platelet having had its field disturbed. The serial digital data can be input directly by wire from a multiplexer 96 to the computer 28 located at the site of the golf player and golf club motion sensor plate 80, or as in the preferred embodiment, illustrated in
The computer 28, under the control of the golf system software, will analyze the serial digital club motion signal, recognize from the transmitted signals the platelets 83 over which the club head passed and display the golf club swing motion.
4. Wireless Signal Receiver and Computer
At each player site, a wireless radio frequency signal receiver 26 is connected to the computer 28 by either the serial (USB) or parallel computer ports, as shown in the functional block diagram,
5. Computer Golfing Software
At each remote player site, the computer 28 (
If the competitive play mode has been selected, the program generates a player participation request and sends 134 the request to the GGC game internet server (GGC server) 34 (
The event at 133 also has the effect of indicating at 139 that it is no longer the local players turn and enables (as indicated by line 139) the serial port listener at 132 to detect an event from the remote player, again via the internet.
If the single player practice mode is selected, the internet communications sequences are disabled, other software sequential operating routines continue as above described and the players golf club stroke, ball-receptacle contact, and/or club swing motion sensor information are communicated only to the computer located at the players site and the performance information analyzed and displayer only at the local players site.
When a game is won, lose, or terminated, the golf software system generates the appropriate output signals 156 (
Using programming as contained in the accompanying microfiche appendix, one skilled in the art can readily accomplish the game programming described. Alternative programming too will be apparent from the foregoing functional description and the illustrations contained in the appended drawings
While a preferred embodiment has been described, it will be appreciated that many variations and modifications in the system, its operation, and its various components may be made without departure from the spirit and scope of invention as set forth in the appended claims.
Priority is claimed from U.S. Provisional Ser. No. 60/13,722, filed May 12, 1999 for all subject matter common hereto. That provisional application is incorporated by reference herein. This is a divisional application and the parent application for this divisional application is, Ser. No. 09/570,233 filed May 12, 2000 now U.S. Pat. No. 7,789,742.
Number | Name | Date | Kind |
---|---|---|---|
5209483 | Gedney et al. | May 1993 | A |
5245537 | Barber | Sep 1993 | A |
5507485 | Fisher | Apr 1996 | A |
5700204 | Teder | Dec 1997 | A |
5884913 | Cohen | Mar 1999 | A |
6073086 | Marinelli | Jun 2000 | A |
6254492 | Taggett | Jul 2001 | B1 |
6336891 | Fedrigon | Jan 2002 | B1 |
7095312 | Erario et al. | Aug 2006 | B2 |
7321330 | Sajima | Jan 2008 | B2 |
7789742 | Murdock | Sep 2010 | B1 |
7789767 | Lindsay | Sep 2010 | B2 |
8002645 | Savarese et al. | Aug 2011 | B2 |
8257189 | Koudele et al. | Sep 2012 | B2 |
8425350 | Savarese et al. | Apr 2013 | B2 |
8861091 | French | Oct 2014 | B2 |
9028338 | Chiono | May 2015 | B2 |
9457228 | Sinha | Oct 2016 | B2 |
20070167247 | Lindsay | Jul 2007 | A1 |
20080076580 | Murdock et al. | Mar 2008 | A1 |
20080188310 | Murdock | Aug 2008 | A1 |
20090036237 | Nipper et al. | Feb 2009 | A1 |
20110081978 | Murdock et al. | Apr 2011 | A1 |
20110082571 | Murdock et al. | Apr 2011 | A1 |
20110087344 | Murdock et al. | Apr 2011 | A1 |
20110092260 | Murdock et al. | Apr 2011 | A1 |
20110130223 | Murdock et al. | Jun 2011 | A1 |
20110151977 | Murdock et al. | Jun 2011 | A1 |
20110212757 | Murdock et al. | Sep 2011 | A1 |
20110281621 | Murdock et al. | Nov 2011 | A1 |
20120220385 | Richardson et al. | Aug 2012 | A1 |
20140297007 | Voutilainen | Oct 2014 | A1 |
20160354660 | Kostuj | Dec 2016 | A1 |
20160361592 | Isogawa | Dec 2016 | A1 |
20170004729 | Kano | Jan 2017 | A1 |
Number | Date | Country | |
---|---|---|---|
20110082571 A1 | Apr 2011 | US |
Number | Date | Country | |
---|---|---|---|
60133722 | May 1999 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 09570233 | May 2000 | US |
Child | 12799529 | US |