Abstract:
Un procedimiento para la comunicación inalámbrica, que comprende: proporcionar una indicación de una duración de suspensión a un nodo inalámbrico (110), donde proporcionar la indicación de la duración de suspensión para su transmisión al nodo inalámbrico (110) comprende además: generar una trama de señal de tiempo de activación objetivo, TWT, (305) durante una ranura de tiempo de un TWT (210); y proporcionar la trama de señal de TWT (305) para su transmisión; en el que la trama de señal de TWT (305) comprende una lista de servicios que identifica al menos un nodo inalámbrico que debe recibir servicio durante al menos una de las ranuras de tiempo del TWT (210) o la duración de suspensión; comunicarse con el nodo inalámbrico durante el TWT (210), donde la comunicación comprende al menos uno de proporcionar datos para su transmisión al nodo inalámbrico (110) u obtener datos recibidos desde el nodo inalámbrico (110); y abstenerse de proporcionar datos para su transmisión al nodo inalámbrico (110) durante al menos la duración de suspensión indicada basándose en, al menos en parte, la temporización de la comunicación.
Abstract:
An access point (AP) may prioritize the allocation of uplink resources between multiple basic service sets (BSSs). In some aspects, the AP may select one of a plurality of BSSs, may allocate one or more random resource units (RUs) to only the selected BSS, and may transmit a frame indicating the allocation of the one or more random RUs to the selected BSS. Wireless devices belonging to the selected BSS may contend for access to the random RUs allocated by the frame, and then transmit uplink data using the random RUs.
Abstract:
Apparatuses and methods are disclosed for delivering queued downlink (DL) data from a second wireless device to a plurality of first wireless devices. In accordance with example embodiments, the second wireless device may determine, for each of the plurality of first wireless devices, a presence of a corresponding set of queued DL data, may transmit a beacon frame identifying which of the plurality of first wireless devices has queued DL data, and may transmit, to each of the identified first wireless devices, permission to request delivery of queued DL data. Next, the second wireless device may receive, from each of the identified first wireless devices, a request for delivery of the queued DL data. Then, the second wireless device may concurrently transmit, to each of the identified first wireless devices, the corresponding set of queued DL data.
Abstract:
A first combination of frequency bands is selected for transmitting a first data packet, and a second, different combination of frequency bands is selected for transmitting a second data packet. A data stream is divided into a first set of data and a second set of data. The first set of data is allocated to the first combination of frequency bands, and the second set of data is allocated to the second combination of frequency bands.
Abstract:
Apparatuses and methods are disclosed for receiving queued downlink (DL) data. In accordance with example embodiments, a first wireless device may receive, from a second wireless device, a beacon frame indicating a presence of queued DL data for concurrent delivery to a plurality of wireless devices. The first wireless device may receive permission to request delivery of the queued DL data. The first wireless device may transmit, to the second wireless device, a request for delivery of the queued DL data based on the permission. The first wireless device may then receive the queued DL data from the second wireless device.