摘要:
Methods and apparatus that enable and optimize the simultaneous operation of several wireless femtocells having overlapping coverage areas. In one embodiment of the invention, a resource allocation (e.g., time-frequency grid for an OFDM or TDMA based wireless network) governs the simultaneous operation of several femtocells with overlapping coverage areas by specifying uses for resources. A resource allocation unit (RAU) entity is disclosed for managing and modifying resource allocations for femtocells. The community of femtocells can flexibly share resources according to the time-frequency grid, thereby maximizing spectral efficiency without requiring substantial network overhead.
摘要:
A method of accessing a physical random access channel, a method of signaling access information for accessing a physical random access channel, a mobile communication terminal and a base station are provided. The method of accessing a physical random access channel comprises selecting a plurality of transmission time intervals from transmission time intervals being allowed for accessing a physical random access channel, randomly selecting one transmission time interval of the plurality of transmission time intervals, and accessing the physical random access channel in the randomly selected transmission time interval. A mobile communication terminal is configured to carry out the method.
摘要:
A mobile radio communication network device is descried including a receiver configured to receive control information from a mobile terminal, wherein the receiver is configured to receive the control information in a first mode or in a second mode, wherein in the second mode, less of the control information is received in time from the mobile terminal than in the first mode, and a controller configured to control the receiver to receive the control information in the first mode if the mobile terminal is associated with a first mobile terminal mobility class and to control the receiver to receive the information in the second mode if the mobile terminal is associated with a second mobile terminal mobility class.
摘要:
In an embodiment, a radio communication device is provided. The radio communication device may include a radio communication device control message generation circuit configured to generate a radio communication device control message including allocation information to control a radio resource allocation for radio communication devices of at least two groups of radio communication devices, the radio resource allocation being provided by another radio communication device.
摘要:
In an embodiment, a radio communication device is provided. The radio communication device may include a radio communication device control message generation circuit configured to generate a radio communication device control message including allocation information to control a radio resource allocation for radio communication devices of at least two groups of radio communication devices, the radio resource allocation being provided by another radio communication device.
摘要:
A communication device is provided comprising a message generator configured to generate a message indicating that a mobile terminal should provide data from which information about the configuration of the mobile terminal for the reception of paging messages is derivable and a transmitter configured to transmit the message.
摘要:
In an embodiment, a mobile radio communication device is provided. The mobile radio communication device may include a mobile radio communication protocol circuit configured to provide a mobile radio base station function for a mobile radio communication with another mobile radio communication device, a network control interface circuit configured to receive communication control signals from a mobile radio network circuit being controlled by a mobile radio network operator to control the mobile radio communication protocol circuit, and a trusted processing circuit configured to process a computer program in a trusted processing environment to provide a trusted processing result, wherein the trusted processing circuit is outside of the mobile radio network operator's domain.
摘要:
Methods and apparatus for providing proof of multiple entities being co-located at a specific time and location. An attestor transmits an attestation message via short range communication; the attestation message includes a time stamp, a location stamp, and a verifiable digital signature. An attestee that stores the attestation message can produce the attestation message at a later time to any interested party, as proof of co-location with the attestor at the specified time and location. In one exemplary embodiment, the methods and apparatus are substantially “open” for public implementation. Such public implementation enables attestors and attestees without prior affiliation, to provide attestation. Furthermore, the device-agnostic methods and apparatus can provide attestation capabilities even in previously deployed systems and devices.
摘要:
Systems, methods, and devices for distributed device-to-device (D2D) setup are disclosed herein. User equipment (UE) includes a parameter component, a standardization component, an identifier component, and a D2D session component. The parameter component is configured to determine input parameters corresponding to the UE or a user of the UE based on one or more D2D communication rules. The input parameters include a first set of input parameters having non-standardized data and a second set of input parameters having pre-standardized data. The standardization component is configured to standardize the non-standardized data of the first set of parameters to create UE standardized data. The identifier component is configured to generate a session identifier using the UE standardized data and the pre-standardized data as input in a predefined algorithm. The D2D session component is configured to cause the UE to communicate in a D2D cluster corresponding to the session identifier.
摘要:
Methods and apparatus for providing proof of multiple entities being co-located at a specific time and location. An attestor transmits an attestation message via short range communication; the attestation message includes a time stamp, a location stamp, and a verifiable digital signature. An attestee that stores the attestation message can produce the attestation message at a later time to any interested party, as proof of co-location with the attestor at the specified time and location. In one exemplary embodiment, the methods and apparatus are substantially “open” for public implementation. Such public implementation enables attestors and attestees without prior affiliation, to provide attestation. Furthermore, the device-agnostic methods and apparatus can provide attestation capabilities even in previously deployed systems and devices.