Abstract:
We have disclosed systems and methods for monitoring an individual's performance during a physical activity. The systems may include a mount adapted to releasably secure the portable performance monitoring device to the individual's body during the physical activity and a main body coupled to the mount. The main body may include a satellite positioning system receiver adapted to obtain position points during the physical activity, a processor adapted to determine performance information for the individual based on position points during the physical activity, an output adapted to convey at least some of the performance information to the individual during the physical activity, and a user input adapted to be activated in response to the individual tapping.
Abstract:
We have disclosed systems and methods for monitoring an individual's performance during a physical activity. The portable performance monitoring devices may include a satellite positioning system receiver adapted to obtain position data during the physical activity, an accelerometer module adapted to obtain acceleration data during the physical activity, and a processor adapted to determine performance information for the individual based on the position data and the acceleration data. The portable performance monitoring devices may be worn or carried by an individual during a physical activity.
Abstract:
We have disclosed a modular personal network (MPN) that includes multiple devices that may be worn, carried, or used in close proximity to a user. The devices communicate wirelessly. Functions of the MPN may be modified by adding or removing components. The MPN may communicate with a personal computer. General purpose devices may include a control unit, a display, a user input, and an audio output. The MPN may provide a variety of functions, including time, communication, entertainment, organization, guidance, athletic, medical, travel, outdoors, identity, security, and military.
Abstract:
We have disclosed a data transfer system that includes athletic equipment and at least two individual network components. A first individual network component is engaged with athletic equipment and is configured to transmit data to a remote component. A second individual network component is configured to receive data from a remote component. A second individual network component includes at least one of a display device and an audio output device. Data transmitted may include user identity and performance data and route data.
Abstract:
We have disclosed systems and methods for monitoring an individual's athletic performance. Methods may include determining performance parameter data during an athletic activity, determining position parameter data by a global positioning satellite receiver during an athletic activity, correlating the data with a characteristic of a route traversed by an individual during the activity, and generating a graphical display of representation of the route based on the data.
Abstract:
We have disclosed systems and methods for portable performance monitoring of an individual during a physical activity. The systems and methods may include an input device configured to receive position data. The systems and methods may also include a processor configured to determine location information for the fitness activity based on the position data. The systems and methods may also include a memory operatively coupled to the processor and storing computer readable instructions that, when executed by the processor, cause the system to determine weather information based on the location information, and to determine athletic performance information. The systems and methods may also include a display screen configured to display the weather information and the athletic performance information to the individual.
Abstract:
We have disclosed systems and methods for portable performance monitoring of an individual during a physical activity. The systems and methods may include a portable sensor component configured to be carried by the individual during the physical activity and configured to obtain movement data for the athlete individual during the physical activity. The systems and methods may also include a portable output component configured to be carried by the individual during the physical activity and configured to provide an output to the individual during the physical activity. The systems and methods may further include a portable processing component in communication with the portable sensor component and the portable output component, where the portable processing component is configured to be carried by the individual during the physical activity. The portable processing component may be configured to identify movement of the individual during the physical activity.
Abstract:
We have disclosed methods of controlling audio playback at a portable performance monitoring device. These methods may include playing music at a first volume, receiving athletic performance parameter data from a sensor at a portable performance monitoring device, reducing the volume of the music played while continuing to play the music, playing audio performance feedback with a portable performance monitoring device while music plays, and returning the volume to the first volume.
Abstract:
We have disclosed systems and methods for annotating information collected about an individual engaged in a physical activity. The methods may include a server computer system receiving information collected about an individual from a remote computing device, the server computer system receiving an annotation associated with the information collected about the individual from the remote computing device, the server computer system generating visual display data based on the information collected and the associated annotation, and the server computer system transmitting the visual display data to a remote computing device for generating an output.
Abstract:
We have disclosed systems and methods for monitoring an individual's performance during a physical activity. The methods may include using a first component and second component each configured to be worn or carried by the individual during a physical activity. The methods may include the first component communicating wirelessly with the second component over a personal area network during the physical activity, the first component determining that the second component has ceased communication with the first component during the physical activity, and the first component adapting a function in response to determining that the second component has ceased communication with the first component.