Abstract:
A repeater is disclosed with position location capability. The repeater includes a position location device for determining the location of the repeater. The position location device uses radio-location signals received independently or by a receiver to determine the location of the repeater. The location of the repeater can be used to update a base station almanac.
Abstract:
A method and apparatus to utilize a set of measurements (either partial or compete) to improve the accuracy of an initial position estimate for a wireless terminal. The initial position estimate for the terminal is first obtained (e.g., based on a cell-ID or an enhanced cell-ID solution). Measurements are obtained for the terminal. The initial position estimate is then updated with the measurements to obtain a revised position estimate for the terminal. The updating may be performed by (1) deriving a measurement vector based on the initial position estimate and the measurements, (2) forming an observation matrix for the measurements, (3) determining a matrix of weights, (4) deriving a correction vector based on the measurement vector, the observation matrix, and the weight matrix, and (5) updating the initial position estimate with the correction vector.
Abstract:
A repeater is disclosed with position location capability. The repeater includes a position location device for determining the location of the repeater. The position location device uses radio-location signals received independently or by a receiver to determine the location of the repeater. The location of the repeater can be used to update a base station almanac.
Abstract:
Methods and apparatuses to obtain an ordered set of satellite positioning system (SPS) satellites, in view of a mobile SPS receiver, via one or two-way communication with the mobile SPS receiver. The mobile SPS receiver receives, in one embodiment, an ordered set of SPSD satellites from a cellular transmission site. The ordered set of satellites are those in view of the mobile SPS receiver at a given time; such that the mobile SPS receiver may search for the satellites according to an order of the ordered set of SPS satellites. The order of the ordered set may be obtained by various methods one of which is by minimizing the geometric dilution of precision (GDOP) Satellite; health data may be included in the transmission.
Abstract:
A method and apparatus for determining a position of a mobile satellite positioning system (SPS) receiver is described. A position of a mobile satellite positioning system (SPS) receiver is determined by initially determining a plurality of satellite pseudoranges between said mobile SPS receiver and a corresponding plurality of satellites. Then, at least one non-satellite pseudomeasurement is determined. Finally, a condition of at least one of said plurality of satellite pseudoranges is determined.
Abstract:
A mobile system, such as a wireless phone, communicates its location or othe r position information, such as pseudoranges, to a server system and optionall y sends permission criteria defining which other mobile systems are allowed to access its location. In the case where the mobile system does not provide it s location, the server determines the location using the other position information provided (e.g. pseudoranges for satellites in view of the mobile system). The server system sends the location to other mobile systems in accordance with the permission criteria, with or without a request from another mobile system for the location. If no permission criteria has been sent by the mobile system, the server system queries the mobile system for t he permission criteria in response to a request for the location. If no permission criteria is sent by the mobile system, or if the permission criteria sent denies the request, the server system can, alternately, not reply to the request or reply with an error message. The permission criteria can include additional access limitations such as dates or times during whic h access is permitted or denied, and geographic areas in which access is permitted or denied.
Abstract:
Methods and apparatuses to obtain an ordered set of satellite positioning system (SPS) satellites, in view of a mobile SPS receiver, via one or two-way communication with the mobile SPS receiver. The mobile SPS receiver receives, in one embodiment, an ordered set of SPSD satellites from a cellular transmission site. The ordered set of satellites are those in view of the mobile SPS receiver at a given time; such that the mobile SPS receiver may search for the satellites according to an order of the ordered set of SPS satellites. The order of the ordered set may be obtained by various methods one of which is by minimizing the geometric dilution of precision (GDOP) Satellite; health data may be included in the transmission.
Abstract:
Example methods, apparatuses, or articles of manufacture are disclosed that may be utilized, in whole or in part, to facilitate or support one or more operations or techniques for gesture detection using, at least in part, output or measurement signals from one or more ambient environment sensors, such as, for example, a proximity sensor or ambient light sensor.
Abstract:
A method and system for assisting mobile stations to locate a satellite use an efficient messaging format. A server computes a correction between coarse orbit data of a satellite and precise orbit data of the satellite. A coordinate system is chosen such that variation of the correction is substantially smooth over time. The server further approximates the correction with mathematical functions to reduce the number of bits necessary for transmission to a mobile station. The mobile station, upon receiving the coefficients, evaluates the mathematical functions using the coefficients and a time of applicability (e.g., the current time), converts the evaluated result to a standard coordinate system, and applies the conversion result to the coarse orbit data to obtain the precise orbit data.
Abstract:
A process and device for uniquely identifying an Internet enabled device with a unique identification. The process can include receiving an identification when an Internet user accesses an Internet resource, and determining position-based information for at least one of an Internet user and an Internet enabled device based the identification. The identification may be authenticated, to reduce fraud. The identification may further be used to determine whether or not the device is in a particular geographic area of interest.