Abstract:
The disclosure relates in some aspects to enabling a user terminal (UT) to obtain information about nearby cells and any beams generated by nearby cells. For example, a network can send a neighbor cell list to UTs, where the list identifies the cells in that neighborhood and provides information about any beams generated by those cells. Thus, a UT can learn the neighboring beams/cells that the UT can reselect to if the current beam/cell becomes weak. In some aspects, the UE can learn the attitude (e.g., pitch, roll, yaw, or any combination thereof) profile of neighboring satellites as well as the pointing angles and the ON-OFF schedules of their beams. In some aspects, the UT can learn a start angle and a span for a satellite and use this information to identify a satellite the UT can reselect to if the current beam/cell becomes weak.
Abstract:
Disclosed are methods and systems for a wireless communication network including detecting a trigger to switch a serving channel at a first access point, and communicating a first channel switch message from the first access point to a second access point. The first access point may be in a downstream and/or upstream or communication flow in relation to the second access point. The process may include communicating a first Channel Switching Announcement (CSA) message from the second access point to at least one client of the second access point, where the least one client is one of a plurality of clients receiving internet connectivity through a series of communication flows including a data flow through the second access point. The process further includes revising a time to switch channel information included in the first channel switch message, where the first CSA message includes the revised time to switch channel information.
Abstract:
Methods and apparatus of compression on multiple data flows for communication between a user equipment (UE) and a serving node. The methods and apparatus include receiving multiple data flows for compression, wherein each of the multiple data flows includes a plurality of data packets, with each data packet having a data packet header and a payload. Further, the methods and apparatus include determining a compression state for each of the multiple data flows. Moreover, the methods and apparatus include performing a first compression algorithm on each of the multiple data flows determined to have a compression state set to a do-not-compress state, wherein the first compression algorithm includes compressing the data packet header of each data packet without compressing the payload of each data packet.
Abstract:
Methods and apparatus are described for synchronizing compression for communication between a user equipment (UE) and a serving node. The methods and apparatus include determining that a compressor memory of a compressor and a decompressor memory of a decompressor are out-of-synchronization based on a checksum failure. Further, the methods and apparatus include resetting the compressor memory and the decompressor memory to a predetermined state in response to determining that the compressor memory and the decompressor memory are out-of-synchronization, wherein the compressor memory and the decompressor memory are synchronized at the predetermined state.
Abstract:
Methods, systems, and devices are described for estimating wireless local area network (WLAN) capacity. In accordance with the present disclosure, one or more applications associated with a mobile device may request WLAN capacity estimation in order to maximize the use of available network resources. In some examples, the mobile device may obtain WLAN information from a WLAN modem driver associated with a WLAN modem via an application program interface (API) to calculate the WLAN capacity. The WLAN capacity may include capacity of an access point (AP) associated with the mobile device to support additional users or data over one or more downlink and/or uplink channels. Accordingly, the mobile device may optimize data download or upload times by efficiently managing the available resources.
Abstract:
Methods and apparatus for wireless communication include receiving, at a compressor component, a data packet flow and determining information associated with the data packet flow from one or more data packets associated with the data packet flow. The determined information includes source or destination information corresponding to the one or more data packets of the data packet flow. Further, the methods and apparatus include classifying the data packet flow as a compressible or an uncompressed data packet flow based on the determined information, and compressing or skipping compressing of the one or more data packets associated with the data packet flow based on the classification of the data packet flow. Additionally, the methods and apparatus include transmitting the one or more compressed or uncompressed data packets depending on the classification of the data packet flow.
Abstract:
Methods and apparatus for offloading traffic from a cellular network to a wireless local area network (WLAN) are described. One example method generally includes receiving, from a serving base station, a request to measure one or more WLAN access points (APs), determining one or more metrics for the WLAN APs, comparing the metrics for the WLAN APs to a threshold, and reporting metrics for at least a first AP of the WLAN APs if the metrics for the first AP exceed the threshold.
Abstract:
This disclosure provides systems, methods and apparatuses for dynamically enabling or disabling spatial reuse (SR) transmissions from wireless communication devices belonging to a first basic service set (BSS). In some instances, a first wireless communication device receives a plurality of intra-BSS packets from a second wireless communication device associated with the first BSS, determines an average power level of the intra-BSS packets at the first wireless communication device, determines a maximum power level of overlapping basic service set (OBSS) packets associated with one or more OBSSs, determines a signal-to-interference-plus-noise ratio (SINR) of the intra-BSS packets based on the determined average power level of the intra-BSS packets and the determined maximum power level of the OBSS packets, and determines whether to transmit a spatial reuse (SR) packet to the second wireless communication device while detecting OBSS packets on the wireless medium based on the determined SINR relative to a value.
Abstract:
Methods and apparatus are described for reducing round-trip time (RRT) for communications between a proxy and a browser. The methods and apparatus may include receiving a webpage from a server in response to forwarding to the server a first request received from the browser. Further, the methods and apparatus may include parsing the webpage for one or more object identifiers. Moreover, the methods and apparatus may include requesting one or more objects from the server based on the one or more object identifiers. Additionally the methods and apparatus may include storing the one or more objects received from the server.
Abstract:
Methods and apparatus are described for configuring features for a user equipment (UE) communicating with a network entity. For example, the methods and apparatus include receiving, at the network entity, a capability message indicating one or more features supported by the UE; transmitting control data in a data type Protocol Data Unit (PDU), wherein the control data is configured to enable one of the one or more features based on the capability message; and enabling one of the one or more features in response to receiving an acknowledgement message from the UE.