Reference is now made to the figures wherein like parts are referred to by like numerals throughout. The present invention is directed to a device for measuring the speed of a user's motion. It is contemplated that the device may have particular application for sports such as tennis, baseball, golf, boxing, and the like.
Referring to
The support may take the form of a sports club, such as a baseball bat, tennis racket, golf club, or the like. In a further embodiment, the support may be a training sports bat such as that shown in my U.S. Pat. No. 6,280,353. In such an embodiment, the speed measuring device 10 is mounted to the sports club or mounted in a compartment in the sports club.
In one optional embodiment, a wearable support 12 is provided. The wearable support 12 may take many forms including that of a glove, watch, wrist or arm band, or the like. For example, the embodiment of
In the alternate embodiment of
Referring generally to
The centripetal force is proportional to the velocity of the motion. In an optional embodiment, the data processor 23 uses the sampled centripetal force measurement and a radius of motion to calculate a speed. In one optional embodiment, a fixed estimate corresponding to the radius of motion is stored in the data storage 31. That is, in such an optional embodiment, the radius is treated as a constant value. Alternatively, an input device 25, such as a button, dial, keypad, or the like, may be provided to receive an input radius. Such an embodiment may be suited for a wearable support so that the device could be used in conjunction with a number of different sports clubs. For example, using the flexibility afforded by the input radius, the same device could accurately measure the speed of different clubs, for example a baseball bat and a golf club, by merely entering the relative lengths of the clubs.
In an optional embodiment including a data storage 31 communicating with the data processor 23, the data storage 31 may optionally store speeds calculated. It is contemplated that many different criteria could be used in determining which speeds are stored at the data storage 31. For example, the most recent set of speeds could be stored, with newer speeds replacing older speeds in sequence. In another optional embodiment, a user could selectively store speeds. In yet another optional embodiment, the data storage 31 may store the highest or lowest speeds over a selected number of trials or a selected time period. In other words, the set of stored speeds could be determined by selectively storing or discarding speeds depending on any of a number of possible criteria including the sequence of the speeds, the absolute size of the speeds the relative size of the speeds, or the like.
Further data manipulation may also take place based on one or more of the calculated speeds stored. For example, the data processor 23 may calculate and output the mean speed for a series of trials, the highest and lowest speeds for a series of trials, trends over a series of trials, or other statistical calculations based on the raw speed measurements or the calculated speeds.
Turning back to
An output device 20 is included in the device 10. In an embodiment including a data processor 23, the output device communicates with the data processor 23. The output device 20 could output the speed from the processor 23 in a visual, aural, or computer-readable fashion. That is, the output device 20 could optionally be a display for visually displaying the speed in text or graphic form, an annunciator for generating an audible verbal announcement of a speed, a communication device (optionally wired or wireless) for transmitting the speed from the device 10 to an external device. In the latter optional embodiment, the output could be transmitted through a wire or via radio transmission to one or more external devices such as a personal data assistant (“PDA”), general purpose computer, specific purpose computer, or the like for display, recording and/or analysis. Optionally, the speed measuring device 16, power source 18, data processor 23, and output device 20 are housed in a housing 22.
An optional embodiment of a method according to the present invention is shown in
The data processor 23 outputs the calculated speed through an output device 20. The output device 20 outputs 44 the speed by, for example, displaying the speed, announcing the speed, or electrically transmitting the speed. As noted above, in one optional embodiment, sound files that correspond to calculated speeds are stored at a data storage 31. In one such optional embodiment, the data processor 23 selects a sound file associated with the calculated speed and outputs the sound file as an audible verbal announcement of the speed through the output device 20, in this case an annunciator.
In an optional embodiment, the data storage 31 also stores a auxiliary sound files. The auxiliary sound files may be sound effects, such as a ball hitting a sport club, or audible verbal announcements. In one such optional embodiment, the auxiliary sound files are output with the sound files associated with a speed. In one optional embodiment, an auxiliary sound file is associated with a measurement associated with the motion. For example, in one optional embodiment, the data processor may communicate with an orientation measuring device and the auxiliary sound file may be selected to tell the player the direction of the swing or the result of the swing, e.g. “fly ball,” “grounder,” or the like. In another optional embodiment, the auxiliary sound files are associated with tips, e.g. “keep your head down,” encouragement, e.g. “good swing,” or the like and are randomly selected.
To repeat use, an optional reset button (not shown) may be used to clear the speed measurement or, in an alternate optional embodiment, the user simply swings again.
Referring to an embodiment in which the speed measuring device 10 is mounted to a wearable support 12, the user secures the speed measuring device 10 to the wearable support 12. As discussed above, this mounting may simply be the user inserting the device 10 into a pocket 14 on a strap or band such as that shown in
In the situation in which more than one measurement is sampled 34 by the data processor 23 from the speed measuring device 16, the data processor 23 may optionally select 40 the greatest measurement to calculate the speed. Since the speed is directly proportional to the centripetal force, the greatest measurement corresponds to the maximum speed attained during the discrete motion.
In an other optional embodiment in which the user's motion includes an impact 36, such as when hitting a ball, the data processor 23 may sample centripetal force measurements from the accelerometer at predetemined intervals. The data processor 23 then selects 38 a centripetal force measurement prior to the impact. Optionally, the data processor 23 selects a centripetal force measurement immediately preceding the impact. The data processor 23 could determine the instant of impact by looking for a sudden change in centripetal force as the energy of the swing is transferred through the impact. In an optional embodiment of the invention, the data processor 23 may also determine the effect of the impact on the object struck based upon the relative time of the impact during the user's motion. In one such optional embodiment, an auxiliary sound file may be selected based on that determination to output an audible verbal announcement informing the user of the effect, e.g. “hit to the opposite field,” or “ball pulled down the left field line.”
While certain embodiments of the present invention have been shown and described it is to be understood that the present invention is subject to many modifications and changes without departing from the spirit and scope of the invention presented herein.
The present application is a continuation-in-part of U.S. application Ser. No. 10/383,817 entitled “Speed Measuring Device and Method” filed Mar. 6, 2003 by Applicant herein and issued as U.S. Pat. No. 7,140,248 on Nov. 28, 2006, which, in turn is a continuation-in-part of U.S. application Ser. No. 10/350,251 entitled “Speed Measuring Device and Method” filed Jan. 22, 2003 by Applicant herein and now abandoned, which, in turn, claimed the priority of U.S. Provisional Application Ser. No. 60/351,478 entitled “Speed Measuring Device” filed Jan. 22, 2002 by Applicant herein.
| Number | Date | Country | |
|---|---|---|---|
| 60351478 | Jan 2002 | US |
| Number | Date | Country | |
|---|---|---|---|
| Parent | 10383817 | Mar 2003 | US |
| Child | 11605578 | US | |
| Parent | 10350251 | Jan 2003 | US |
| Child | 10383817 | US |