Abstract:
A cooperative localization process for determining the absolute position of an apparatus to be localized includes a plurality of cooperator apparata able to cooperate, through the exchange of messages and data, in the localization of the apparatus to be localized. The cooperator apparata are equipped with at least one direct, apparatus-to-apparatus radio transmission and reception system for messages and data, and components for estimating the distance between apparata of the set of cooperator apparata. The cooperative localization apparata able to implement this process are also described.
Abstract:
A method for broadcasting messages in a cellular mobile communications system with broadcast functionality includes the steps of: selecting a geographic area over which the message broadcasting must be carried out; obtaining information adapted to identify the languages used in mobile terminals referring to the cellular mobile communications system within the geographic area; composing the messages in the set of the identified languages, thus obtaining one or more multilanguage messages; broadcasting the one or more multilanguage messages to said mobile terminals.
Abstract:
A method and an apparatus for encoding and/or decoding digital images or video streams are provided, wherein the encoding apparatus includes a processor configured for reading at least a portion of the image, segmenting the portion of the image in order to obtain groups of pixels identified by borders information and containing at least two pixels having one or more homogeneous characteristics, computing, for each group of pixels, a weight map on the basis of the borders information associated to the group of pixels, a graph transform matrix on the basis of the weight map, and transform coefficients on the basis of the graph transform matrix (U) and of the pixels contained in the group of pixels.
Abstract:
A method for managing a map (140) stored in a memory (130) associated with a personal navigation device (10), including a command and data entry unit (115) operable by a user, wherein the map (140) can be visualized on a display (115) and includes a road network, the method including the step of combining a first set of data about the road network, stored in the map (140), with a second set of data about at least one road not present in the road network or defined as not viable, in particular a new road, wherein the second data can be entered by the user by the command and data entry unit (115).
Abstract:
An image capturing apparatus includes a body that can be freely inclined relative to a predetermined reference axis through the effect of a rotation about a certain axis of rotation, an optical sensor device capable of capturing luminous radiation incident thereon and of converting it so that it can be stored into a physical medium in the form of a captured image, wherein the optical sensor device is mechanically coupled to the body of the apparatus in a manner such that it can be made capable of controllably rotating about the axis of rotation, an inclination sensor adapted to detect the angular offset of the optical sensor device with respect to the predetermined reference axis, a motor adapted to rotate the optical sensor device about the axis of rotation when it is made capable of controllably rotating about the axis of rotation by the motor, a processor and controller associated with the inclination sensor and with the motor and adapted to change the inclination of the optical sensor device through the motor depending on the angular offset detected by the inclination sensor with respect to the predetermined reference axis.
Abstract:
A method for localizing the position of a wireless device (7) in an environment (2) includes a wireless network (1) having at least one access point (3), wherein the method includes the step of receiving, by the wireless device (7), a radio frequency signal (10) which is transmitted by the at least one access point (3) and which comprises basic information for connecting to the at least one access point (3), wherein the radio frequency signal (10) includes geographic information (20) about the geographic position of at least one electronic radio frequency device (5) located in the environment (2) and not connected to the wireless network (1).
Abstract:
A method and an apparatus are provided for encoding and/or decoding digital images or video streams. The encoding apparatus includes a processor configured for reading at least a portion of an image (f), determining a rotation angle (θ) on the basis of the portion of the image (f), determining rotated transform matrix (V′) which is the result of a rotation of at least one basis vector of a Discrete Cosine Transform matrix (V) by the rotation angle (θ), computing transformed coefficients (f̂) on the basis of the pixel values contained in the portion of the image (f) and the rotated transform information (V′), outputting the transformed coefficients (f̂) to the destination.