Abstract:
Embodiments of systems and methods for jurisdiction-based adaptive communication are disclosed herein. In some embodiments, a wireless device may be configured to store different jurisdiction identifiers, each jurisdiction identifier in association with a stored set of wireless communication operation constraints. In some such embodiments, the wireless device may receive a jurisdiction identifier nominally representative of a jurisdiction in which communication hardware of the wireless device is located, and may validate or invalidate the received jurisdiction identifier. If the received jurisdiction identifier is validated, the wireless device may apply the stored set of wireless communication operation constraints corresponding to the received jurisdiction identifier to adapt the operation of the communication hardware of the wireless device. Other embodiments may be disclosed and/or claimed.
Abstract:
Various aspects provide a radiohead circuit and a communication device including the radiohead circuit. In an example, the radiohead circuit includes an antenna interface, a radio frequency front end configured to receive a channel scan information including an information related to a target communication channel to be scanned from a communication device processor, perform an energy scan for detecting an activity of the target communication channel based on the channel scan information, generate an activity information including an information as to whether there is the activity on the target communication channel, and provide the activity information to a communication interface; the communication interface configured to couple the processor to a radiohead circuit-external processor external to the radiohead circuit.
Abstract:
For example, a wireless communication device may be configured to transmit a reservation frame to reserve a wireless communication medium for a Transmit Opportunity (TxOP). For example, the TxOP may be configured to cover a first reserved duration and a second reserved duration. For example, the first reserved duration may be configured for at least one self-transmission of the STA, and the second reserved duration may be configured for communication of at least one non-self-transmission by the STA. For example, the wireless communication device may be configured to transmit the at least one self-transmission during the first duration. For example, the self-transmission may be configured for transmission from a transmitter of the STA to a receiver of the STA.
Abstract:
For example, an apparatus may include circuitry and logic configured to cause a wireless communication device to identify an end-to-end network latency of a data stream communicated between the wireless communication device and an endpoint via a wireless communication link between the wireless communication device and an Access Point (AP); and to set an idle timeout period for the wireless communication link based on the end-to-end network latency of the data stream. For example, the idle timeout period includes a time period after which the wireless communication device is to be allowed to switch the wireless communication link from an active mode to a power save mode when the wireless communication link is idle.
Abstract:
Embodiments of systems and methods for jurisdiction-based adaptive communication are disclosed herein. In some embodiments, a wireless device may be configured to store different jurisdiction identifiers, each jurisdiction identifier in association with a stored set of wireless communication operation constraints. In some such embodiments, the wireless device may receive a jurisdiction identifier nominally representative of a jurisdiction in which communication hardware of the wireless device is located, and may validate or invalidate the received jurisdiction identifier. If the received jurisdiction identifier is validated, the wireless device may apply the stored set of wireless communication operation constraints corresponding to the received jurisdiction identifier to adapt the operation of the communication hardware of the wireless device. Other embodiments may be disclosed and/or claimed.
Abstract:
In at least one embodiment described herein, an apparatus is provided that can include means for communicating a latency tolerance value for a device connected to a platform from a software latency register if a software latency tolerance register mode is active. The apparatus may also include means for communicating the latency tolerance value from a hardware latency register if a host controller is active. The latency tolerance value can be sent to a power management controller. More specific examples can include means for communicating a latency tolerance value from the software latency register if the software latency tolerance register mode is not active and the host controller is not active. The apparatus can also include means for mapping a resource space in the software latency register for the device using a BIOS/platform driver. The mapping can be achieved using an advanced configuration and power interface device description.
Abstract:
A multi-link device (MLD) apparatus, including at least two transmission queues and first medium access control (MAC) circuitry and second MAC circuitry. The first MAC circuitry and the second MAC circuitry can transmit data of the at least two transmission queues over respective links responsive to receiving a trigger indicating that a transmission opportunity (TXOP) is available on the link corresponding to the respective first MAC circuitry and second MAC circuitry.
Abstract:
This disclosure describes systems, methods, and devices related to enhanced traffic model. A device may maintain, at an upper layer, a self-ordering queue associated with one or more time sensitive packets associated with times sensitive traffic streams. The device may transmit the one or more time sensitive packets from the self-ordering queue to a TSN queue at a lower layer. The device may control one or more enhanced distributed channel access (EDCA) queues by using a control function. The device may transmit the one or more time sensitive packets to a first station device.
Abstract:
In various aspects, a radio communication device is described including a housing, a plurality of radiohead circuits attached to the housing, baseband circuitry connected to the plurality of radiohead circuits via a digital interface; and one or more processors configured to select one or more radiohead circuits of the plurality of radiohead circuits for communication with another radio communication device to fulfill one or more predefined selection criteria with respect to a quality of a communication with the other radio communication device using the one or more selected radiohead circuits and to control the baseband circuitry to perform communication with the other radio communication device using the one or more selected radiohead circuits.