Abstract:
A method of transferring positioning information using a set of data having a standardized set of formats for a single position entity comprises inclusion (212) of data representing at least two separate position entities or an entity having information beyond the standardized set of formats in data containers intended for points defining corners of a single polygon. The method further comprising arranging (214) of data within the set of data according to predetermined rules as an indication of an existence of such data. The set of data is transferred (230) over a communication network. In the transferred set of data, the indication of an existence of such data is detected (224) and data representing the original position is extracted (226) from the data containers intended for points defining corners of a single polygon. A communication network node performing at least a reception part or a transmission part of the method above is also presented.
Abstract:
Provided is a wireless position determining method and apparatus. The wireless position determining includes: a measuring unit that measures a propagation delay tap of a signal received from a transmitting end through a channel; and extractor that extracts delay spread information having various forms based on the propagation delay tap; and an obtaining and calculating unit that obtains a distance between transmission and reception ends based on the delay spread information and calculates a position of a receiving end based on the obtained distance between the transmission and reception ends.
Abstract:
A method for determining location such as vehicle location receives data at a predetermined frequency, validates the received data, stores the received data based on the validation and computes a location based on the stored data. The validation includes verifying a presence of particular data substrings within the received data, verifying a presence of a plurality of data fields within each data substring, computing a parameter based on information contained in two of the plurality of data fields and comparing the computer parameter with a pre-defined threshold.
Abstract:
A location system is disclosed for wireless telecommunication infrastructures. The system is an end-to-end solution having one or more location systems for outputting requested locations of hand sets or mobile stations (MS) based on, e.g., AMPS, NAMPS, CDMA or TDMA communication standards, for processing both local mobile station location requests and more global mobile station location requests via, e.g., Internet communication between a distributed network of location systems. The system uses a plurality of mobile station locating technologies including those based on: (1) two-way TOA and TDOA; (2) home base stations and (3) distributed antenna provisioning. Further, the system can be modularly configured for use in location signaling environments ranging from urban, dense urban, suburban, rural, mountain to low traffic or isolated roadways. The system is useful for 911 emergency calls, tracking, routing, people and animal location including applications for confinement to and exclusion from certain areas.
Abstract:
A control for a system in a building. The control includes a tracking device, a controller, and a programmer. The tracking device is configured to travel with a vehicle and to determine where the tracking device is located. The controller is configured to be located in the building, to communicate with the tracking device, to communicate with the system in the building, to determine an event that should be executed based on information received from the tracking device and a programmed event trigger. The programmed event trigger includes a programmed location for the tracking device. The controller generates a command for the system in the building to execute the determined event. The programmer is configured to communicate with a user interface. The user interface includes an interactive map and one or more geographical boundary tools for creating one or more event triggers on the map. A user uses the user interface to program the event triggers.
Abstract:
An RFID system and method utilizes an RFID device, wherein the RFID device senses a thing or condition interior to a closable container at or proximate the RFID device and transmits messages. The messages include information uniquely identifying the RFID device and information relating to the thing or condition sensed at or proximate the RFID device. Information in the received messages relating to the thing or condition sensed at or proximate the RFID device of messages are employed for determining whether the container is closed, is not closed, has been closed, or has been not closed, or any combination thereof, whereby an opening of and/or tampering with the container may be detected. Messages received from the RFID device, as well as an indication of a condition, may be relayed to a remote location.
Abstract:
A system is described that utilizes an imager in a wireless device (102) in a wireless network (100) and transmits a digital image to a service center (120) that assists in identifying the location of the wireless device (102) within a cell site (104).
Abstract:
A method of transferring positioning information using a set of data having a standardized set of formats for a single position entity comprises inclusion (212) of data representing at least two separate position entities or an entity having information beyond the standardized set of formats in data containers intended for points defining corners of a single polygon. The method further comprising arranging (214) of data within the set of data according to predetermined rules as an indication of an existence of such data. The set of data is transferred (230) over a communication network. In the transferred set of data, the indication of an existence of such data is detected (224) and data representing the original position is extracted (226) from the data containers intended for points defining corners of a single polygon. A communication network node performing at least a reception part or a transmission part of the method above is also presented.
Abstract:
Various embodiments include a system comprising a remote unit operable to determine a geographic location of the remote unit, and to transmit data indicating the location of the remote unit, the remote unit coupled to a subject to be tracked, the remote unit operable to provide a stimulation to the subject, and a base unit operable receive the data indication the location of the remote unit, to determine if the remote unit is within a defined perimeter, and to signal the remote unit to provide the stimulation to the subject if the remote unit is not within the defined perimeter.
Abstract:
A mobile controller unit has a radio positioning system and a two-way communication system and a rover unit also has a radio positioning system and a two-way radio communication system. The controller unit can query the rover unit to send its location data so that the rover unit can be located and if desired, found, such as in the case of a lost child or items. Relative position between the controller and the rover can be displayed on the controller along with an arrow showing where the rover is, as well as how fast it is moving, a track of its movement and other data.The system can also operate in conjunction with a network system that has a PDE and an application server that perform some of the communications and calculation functions.