Disclosed is an apparatus for installing a valve in a hollow body. The apparatus has a first member and a second member, wherein a part of lengths of the first and second members are complementary to each other to accommodate the first member circumferentially over the second member at the complementary part. The second member is configured to be inserted in a hole on an outer surface of the hollow body; advanced inside the hollow body while retaining the first member against the hole; and withdrawn from the hollow body while retaining the first member against the hole. The apparatus is configured to install the valve into the hollow body while the first member is retained against the hole, and wherein the first member is withdrawn upon the installation of the valve into the hollow body.
A63B 41/12 - Tools or devices for blowing up or closing balls
F16K 15/20 - Check valves specially designed for inflatable bodies, e.g. tyres
F16K 37/00 - Special means in or on valves or other cut-off apparatus for indicating or recording operation thereof, or for enabling an alarm to be given
2.
Interactive sports ball and sports management system
An interactive sports ball. The interactive sports ball includes a body: a sensor arrangement having a first sensor, embedded within the body, to measure acceleration data associated with the ball, and a second sensor, embedded within the body, to measure rotational data associated with the ball; and a communication module operatively coupled to the sensor arrangement and configured to transmit the measured acceleration and rotational data to a processing unit. The processing unit generates a series of sequential measurements corresponding to the measured acceleration and rotational data, calculates a variance using a set of sequential measurements from the series of sequential measurements, and detects a contact event if the calculated variance exceeds a predefined event threshold. Disclosed also is a sports management system.
Disclosed is an apparatus for installing a valve in a hollow body. The apparatus has a first member and a second member, wherein a part of lengths of the first and second members are complementary to each other to accommodate the first member circumferentially over the second member at the complementary part. The second member is configured to be inserted in a hole on an outer surface of the hollow body; advanced inside the hollow body while retaining the first member against the hole; and withdrawn from the hollow body while retaining the first member against the hole. The apparatus is configured to install the valve into the hollow body while the first member is retained against the hole, and wherein the first member is withdrawn upon the installation of the valve into the hollow body.
B60C 23/04 - Signalling devices actuated by tyre pressure mounted on the wheel or tyre
F16K 37/00 - Special means in or on valves or other cut-off apparatus for indicating or recording operation thereof, or for enabling an alarm to be given
G01D 11/30 - Supports specially adapted for an instrumentSupports specially adapted for a set of instruments
4.
Apparatus and method for installing valve in hollow body and sensor arrangement for sensing data therein
An apparatus for installing a valve in a hollow body. The apparatus includes a first member and a second member, wherein a part of lengths of the first and second members are complementary to each other to accommodate the first member circumferentially over the second member at the complementary part. The second member is configured to be inserted in a hole on an outer surface of the hollow body; advanced inside the hollow body while retaining the first member against the hole; and withdrawn from the hollow body while retaining the first member against the hole. The apparatus is configured to install the valve into the hollow body while the first member is retained against the hole, and wherein the first member is withdrawn upon the installation of the valve into the hollow body.
F16K 37/00 - Special means in or on valves or other cut-off apparatus for indicating or recording operation thereof, or for enabling an alarm to be given
B60C 23/04 - Signalling devices actuated by tyre pressure mounted on the wheel or tyre
F16K 15/03 - Check valves with guided rigid valve members with a hinged closure member
F16K 15/14 - Check valves with flexible valve members
F16K 15/16 - Check valves with flexible valve members with tongue-shaped laminae
F16K 15/20 - Check valves specially designed for inflatable bodies, e.g. tyres
F16K 24/06 - Devices, e.g. valves, for venting or aerating enclosures for aerating only
F16K 51/00 - Other details not peculiar to particular types of valves or cut-off apparatus
5.
Method and system for tracking performance of a player
A method for tracking performance of player including determining global direction of magnetic field at first court and computing first court specific data; providing rotation for rotating apparatus about spin axis via player, wherein rotating apparatus comprising XYZ-magnetic field sensor; measuring plurality of magnetic field values as function of time when rotating apparatus is rotating about spin axis; computing magnetic field component of magnetic field in direction of local body co-ordinate of spin axis of rotating apparatus; determining direction of spin axis using computed magnetic field component of magnetic field and determined global direction of magnetic field; determining player specific data comprising angle of spin axis with respect to horizontal ground plane and angle of shot direction with respect to horizontal component of spin axis; and calibrating and storing first court specific data and player specific data to track performance of player at first court.
A method for determining a direction of a spin axis of a rotating apparatus which includes an XYZ-magnetic field sensor. The method includes determining a global direction of a magnetic field; rotating the rotating apparatus around the spin axis, measuring at least one magnetic field value as a function of time with the XYZ-magnetic field sensor when the rotating apparatus is rotating about the spin axis, computing a magnetic field component of the magnetic field in a direction of a local body co-ordinate of the spin axis of the rotating apparatus from the measured at least one magnetic field value and determining a direction of the spin axis using the computed magnetic field component of the magnetic field and the determined global direction of the magnetic field.
A method for determining a direction of a spin axis of a rotating apparatus which includes an XYZ-magnetic field sensor. The method includes determining a global direction of a magnetic field; rotating the rotating apparatus around the spin axis, measuring at least one magnetic field value as a function of time with the XYZ-magnetic field sensor when the rotating apparatus is rotating about the spin axis, computing a magnetic field component of the magnetic field in a direction of a local body co-ordinate of the spin axis of the rotating apparatus from the measured at least one magnetic field value and determining a direction of the spin axis using the computed magnetic field component of the magnetic field and the determined global direction of the magnetic field.
G01B 7/30 - Measuring arrangements characterised by the use of electric or magnetic techniques for measuring angles or tapersMeasuring arrangements characterised by the use of electric or magnetic techniques for testing the alignment of axes
G01R 1/00 - Details of instruments or arrangements of the types covered by groups or
Disclosed are method and system for automatic identification of at least one player. The system and method are associated with a processing unit, and at least one projectile having a wireless interface and at least one sensor. The sensor collects sensor data at a first moment of time before release of the projectile by the player and communicates the sensor data to the processing unit. The processing unit collects and analyses the sensor data to identify similar data, associates such data to a player, and stores the associated data. The sensor collects further sensor data at a second moment of time before release of the projectile by the player, which second moment of time is later than the first moment of time and communicates the further sensor data to the processing unit. The processing unit compares the further sensor data to the stored associated data to identify the player.
09 - Scientific and electric apparatus and instruments
28 - Games; toys; sports equipment
Goods & Services
Downloadable computer software applications for presenting and displaying via the Internet analytics related to sports and sporting activities [ ; a comprehensive tracking system for the collection and generation of analytics related to sports and sporting activities, comprised of video cameras, computers, image processors, video editing software and video display screens for recording and tracking movement patterns of players engaging in a sporting event ] Sporting equipment, namely, balls [ , pucks, sticks and rackets ] that include one or more embedded radio frequency identification tags
11.
Method and system for automatic identification of player
Disclosed are method and system for automatic identification of at least one player. The system and method are associated with a processing unit, and at least one projectile having a wireless interface and at least one sensor. The sensor collects sensor data at a first moment of time before release of the projectile by the player and communicates the sensor data to the processing unit. The processing unit collects and analyses the sensor data to identify similar data, associates such data to a player, and stores the associated data. The sensor collects further sensor data at a second moment of time before release of the projectile by the player, which second moment of time is later than the first moment of time and communicates the further sensor data to the processing unit. The processing unit compares the further sensor data to the stored associated data to identify the player.
A system (234, 220, 200) for monitoring movements of one or more users and/or one or more projectiles during sports activities performed by the one or more users is provided. The one or more projectiles (200) incorporate sensors (202, 204) for sensing movements of the one or more projectiles (200) during the sports activities. A user interface (220) is used for presenting automated sports training services. A data processing arrangement (234, 232, 220) is used for analysing one or more records of the movements of the one or more projectiles (200) against reference data, for providing the automated sports training services to the one or more users via the user interface (220).
A sport monitoring system includes a projectile(s), sensor units for one or more players to wear, and a data processing arrangement. The projectiles are useable in a game played by players. Each projectile has a motion sensing arrangement for generating one or more motion-indicative signals, and a data recording arrangement for recording the motion-indicative signals as a function of time. Each sensor unit is provided with a motion sensing arrangement for generating a motion-indicative signal(s), and a data recording arrangement for recording the motion-indicative signals as a function of time. The data processing arrangement receives data pertaining to the motion-indicative signals from at least one of the projectiles and/or at least one of the sensor units. The data processing arrangement performs a temporal correlation of the data to determine one or more periods of time when the projectiles are likely to be spatially closely associated with the players.
A position location system for determining a position of a player within a playing area includes a wireless communication arrangement, a wireless-enabled projectile, a target region, and a computing arrangement. The projectile includes a wireless interface for communicating with the wireless terminal to exchange data, and a sensing arrangement for sensing a first distance travelled by the projectile relative to the playing area. The computing arrangement receives a wireless signal from the projectile, and processes the wireless signal to determine a second distance of the projectile from the wireless terminal. The computing arrangement receives data from the projectile indicative of a start and end time of a trajectory of the projectile, the first distance travelled by the projectile as sensed by the sensing arrangement and processes the data as a function of the start and end time to determine the position of the player within the playing area.
H04W 24/00 - Supervisory, monitoring or testing arrangements
H04W 4/02 - Services making use of location information
H04M 11/04 - Telephonic communication systems specially adapted for combination with other electrical systems with alarm systems, e.g. fire, police or burglar alarm systems
G08B 1/08 - Systems for signalling characterised solely by the form of transmission of the signal using electric transmission
A system (234, 220, 200) for monitoring movements of one or more users and/or one or more projectiles during sports activities performed by the one or more users is provided. The one or more projectiles (200) incorporate sensors (202, 204) for sensing movements of the one or more projectiles (200) during the sports activities. A user interface (220) is used for presenting automated sports training services. A data processing arrangement (234, 232, 220) is used for analysing one or more records of the movements of the one or more projectiles (200) against reference data, for providing the automated sports training services to the one or more users via the user interface (220).
A sports apparatus for monitoring movement of a sport projectile includes a sensor and a wireless interface disposed within the sport projectile for communicating sampled data signals from the sensor, a portable communication device in wireless communication with the wireless sensor for receiving sampled data signals from the wireless sensor, the sampled data signals indicative of a motion of the sport projectile. The portable communication device includes a controller having a memory including programming instructions that when executed by the processor cause the controller to detect a sensor signal from the wireless interface, determine a motion characteristic of the sport projectile from the motion characteristic from the sensor signal, and determine if the motion characteristic is passage of the sports projectile through a goal structure, motion of the sports projectile after a shot or an impact of the sport projectile with an object.
A63B 24/00 - Electric or electronic controls for exercising apparatus of groups
G01S 13/34 - Systems for measuring distance only using transmission of continuous waves, whether amplitude-, frequency-, or phase-modulated, or unmodulated using transmission of continuous, frequency-modulated waves while heterodyning the received signal, or a signal derived therefrom, with a locally-generated signal related to the contemporaneously transmitted signal
G01S 13/75 - Systems using reradiation of radio waves, e.g. secondary radar systemsAnalogous systems using transponders powered from received waves, e.g. using passive transponders
G01S 13/82 - Systems using reradiation of radio waves, e.g. secondary radar systemsAnalogous systems wherein continuous-type signals are transmitted
G01S 5/00 - Position-fixing by co-ordinating two or more direction or position-line determinationsPosition-fixing by co-ordinating two or more distance determinations
G01S 5/02 - Position-fixing by co-ordinating two or more direction or position-line determinationsPosition-fixing by co-ordinating two or more distance determinations using radio waves
A63B 71/06 - Indicating or scoring devices for games or players
A sports apparatus is provided for monitoring movement of one or more projectiles associated with a sporting event. The apparatus includes a data processing system for processing sampled data signals generated in operation by one or more sensors (202, 204) included in the one or more projectiles. Moreover, the apparatus includes a mobile telephone coupled in wireless communication with the one or more projectiles for receiving the sampled data signals indicative of motion of the one or more projectiles. Furthermore, the mobile telephone is operable to execute one or more software products therein for analyzing the sampled data signals received at the mobile telephone for providing analysis results indicative of a nature of trajectory of the one or more projectiles.
G01S 13/34 - Systems for measuring distance only using transmission of continuous waves, whether amplitude-, frequency-, or phase-modulated, or unmodulated using transmission of continuous, frequency-modulated waves while heterodyning the received signal, or a signal derived therefrom, with a locally-generated signal related to the contemporaneously transmitted signal
G01S 13/75 - Systems using reradiation of radio waves, e.g. secondary radar systemsAnalogous systems using transponders powered from received waves, e.g. using passive transponders
G01S 13/82 - Systems using reradiation of radio waves, e.g. secondary radar systemsAnalogous systems wherein continuous-type signals are transmitted
18.
SYSTEM AND METHOD FOR AUTOMATIC VIDEO FILMING AND BROADCASTING OF SPORTS EVENTS
A system for automatically video filming an ongoing sports activity within a field uses an imaging device to continuously capture the entire field and the activities of the players involved in the game, and generate video signals. A position measuring arrangement, including multiple transmitters coupled to the different players, regularly measures the spatial locations of the different players with time, as the game continues, and generates position signals that indicate these spatial positions as functions of time. A data processor is coupled to the imaging device and the position measuring arrangement. The data processor receives the position signals and the video signals, and analyzes the position signals to edit the video signals, and to generate an edited output video content which is delivered to the spectators of the sports activity.
A portable computing device for enabling user to view video content of sports activity such as basketball or ice hockey. The computing device is configured to receive video content, video clips, statistics of the game as well as spatial position data of players and position data of for example a ball used in the game as functions of time. Spectators can use the portable computing device to view spatial position of the players and the ball at given time of the game or view spatial position of the players and/or the ball based on set filters by the user. User can for example select to see spatial position of players in at the times when the team scored or according to other statistics. The user/spectator can use the user interface to select an icon of a player to see corresponding video clip of actions in the sports field.
G06F 3/00 - Input arrangements for transferring data to be processed into a form capable of being handled by the computerOutput arrangements for transferring data from processing unit to output unit, e.g. interface arrangements