Abstract:
The present disclosure discloses a baseband data storage control method, including: receiving cell configuration information of each subframe, mapping each cell into a preset cell set according to bandwidth and quantity of antennas in the cell configuration information, where each cell set corresponds to a random storage region; analyzing each cell included in each cell set and cell parameters corresponding to each cell, and computing storage addresses for each cell in the random storage region according to obtained cell parameters; and storing received baseband data into a random storage region corresponding to a cell to which the baseband data belong, according to the computed storage address. The present disclosure further discloses a baseband data storage control device.
Abstract:
Embodiments of the present invention provide a wireless communication method, base station and system. The base station includes several LED lights and/or several VLC/IR receivers. The several LED lights are configured to send downlink signals in an OFDMA standard to a user terminal, and the several VLC/IR receivers are configured to receive uplink signals that are of an SC-FDMA standard and sent by the user terminal. The base station further includes a baseband signal processing unit configured to equate the several LED lights and/or the several VLC/IR receivers with radio remote units of an LTE mode to perform processing and resource management. The embodiments of the present invention are capable of reusing baseband signal processing and resource management manners in an existing LTE system, thereby simplifying resource management and baseband signal processing operations performed by the base station, and saving the base station resources.
Abstract:
Described herein are systems, methods, computer program products, and combinations and sub-combinations thereof, for enabling web content (as well as other objects) to be loaded on mobile devices (as well as other types of devices), and for users of mobile devices to operate with such web content on their mobile devices in an interactive manner while in an off-line mode.
Abstract:
A plurality of physical uplink control channel (PUCCH) groups comprise a primary PUCCH group comprising a primary cell and a secondary PUCCH group comprising a PUCCH secondary cell. A wireless device keeps the PUCCH secondary cell active if a deactivation timer of the PUCCH secondary cell expires and there is an activated secondary cell in the secondary PUCCH group. The activated secondary cell is different from the PUCCH secondary cell.
Abstract:
A method of supporting group communication over LTE MBMS is provided. A UE first establishes a unicast Evolved Packet Service (EPS) bearer in an LTE network for group communication. The UE belongs to a communication group having a communication group ID. The UE receives access information from the network for monitoring downlink (DL) multicast traffic of the DL group communication based on a multicast decision. The UE is then ready for monitoring a multicast Multimedia Broadcast Multicast Service (MBMS) bearer for receiving the DL multicast traffic. In one embodiment, The UE requests to switch the DL multicast traffic from the multicast MBMS bearer to the unicast EPS bearer upon detecting that the UE is approaching an MBMS coverage boundary. In another embodiment, the UE transmits an indication of preferred target cells to the network before performing a handover and thereby maintaining multicast service continuity of the group communication.
Abstract:
Embodiments provide a method and a device for using an unlicensed spectrum. In the method, a first access device receives first indication information sent by a second access device, where the first indication information is used to indicate idle time, in which the second access device does not perform data transmission, in a time segment that is reserved for the second access device to perform, by using an unlicensed spectrum, data transmission, and the first access device performs data transmission in the idle time by using the unlicensed spectrum. In a device provided, a first access device includes a receiving unit and a transmission unit.
Abstract:
A method in a telecom node for controlling a grace period associated with a licensed capacity usage in the telecom node is provided. The telecom node is comprised in a cellular telephone network. The licensed capacity usage is associated with a capacity license limit. The telecom node measures over a specific amount of time, the capacity usage in the telecom node overshooting the capacity license limit. When the measured capacity usage exceeds a preset value of an allowed capacity usage overshoot, the telecom node triggers a grace period of the licensed capacity usage at the expiry of the specific amount of time. During the grace period capacity usage overshoot is allowed. Upon expiry of said grace period the licensed capacity usage is enforced according to the capacity license limit unless the licensed capacity usage is increased.
Abstract:
The present invention relates to a method for communicating between a primary station and at least one secondary station, comprising (a) the secondary station being configured to search a first configuration of search spaces, said search spaces comprising a number of resource sets, where at least one resource set might be used to transmit a message to the secondary station, (b) configuring the secondary station by means of a configuration message to search a second configuration of search spaces, (c) the secondary station in response of the reception of the configuration message entering into a transitional configuration mode, wherein the secondary station searches partly the first configuration of search spaces and the second configuration of search spaces.
Abstract:
A system and method are disclosed that may provide an accurate estimate of an AP's available medium share. The AP may perform a plurality medium access contention operations to determine a duration of a transmit opportunity and a queue service interval for each of a plurality of access categories. The AP may also determine a queue service interval for a number of packet queues associated with each of the access categories. The AP may use timing information derived from the medium access contention operations to estimate a portion of the medium share available on a per-access category and/or per-user basis. The timing information may include the transmit opportunity durations and queue service intervals for the access categories, the queue service intervals for the individual packet queues, and/or values indicative of the AP's PHY rate and medium utilization.
Abstract:
An example avionic data communication method includes determining one or more available communication channels within a plurality of communication channel types, selecting one of the plurality of available communication channels using a channel controller, the channel controller configured to determine the quality of service of the available communication channels and to select one of the plurality of available communication channels having a cost threshold value that is not less than the cost threshold value of another channel type within the plurality of available channel types. The method further includes communicating data between an aircraft and a ground-based system using the selected one of the plurality of available channel types.