Abstract:
A method for performing cooperation group (CG) indication in a wireless communication system for multi-link operation (MLO) control and associated apparatus one or more AP devices and one or more non-access-point (non-AP) devices are provided. For example, the wireless communication system may include a non-access-point (non-AP) device and at least one other device such as a first access point (AP) and a second AP, and the non-AP device may be wirelessly linking to the first AP and to the second AP. The method may include: comparing a first CG indicator from the first AP with a second CG indicator from the second AP; and configuring a feature support capability of the non-AP device according to a comparison result of the first CG indicator and the second CG indicator.
Abstract:
A method for self-forming a tree topology network is provided. The method is used in a communications apparatus. The method includes: broadcasting a discovery message; determining whether the communications apparatus receives one or more discovery responses from one or more nodes in a lower level of the tree topology network; and establishing a link with each node in the lower level according to the discovery responses.
Abstract:
A wireless communication device includes a network interface circuit and a control circuit. The network interface circuit performs frame exchanges with a first wireless communication device on a link that is selected from a plurality of links. The first wireless communication device is operating in an enhanced multi-link single radio (EMLSR) mode. The control circuit assists the first wireless communication device with a switch back operation for early switching back to a listening operation on the plurality of links after an end of the frame exchanges between the wireless communication device and the first wireless communication device.
Abstract:
A method for performing traffic flow management with aid of auxiliary information and associated apparatus are provided. The method may include: carrying first auxiliary information in at least one first data unit of first data units in a first stream, wherein the first stream and a second stream are assigned to a same traffic identifier (TID); and sending the at least one first data unit carrying the first auxiliary information and at least one second data unit in the second stream to the second device, wherein the first auxiliary information comprises an indication of the first data units being part of the first stream.
Abstract:
A method of reallocating transmission periods for two coexisting wireless modules is disclosed. The method includes determining whether a first transmission period is long enough for a transmission of a first wireless module in a first window before initiating the transmission of the first wireless module; and deferring a transmission of a second wireless module and continuing the transmission of the first wireless module in a second transmission period of a second window following the first window when the first transmission period is determined to be not long enough for the transmission of the first wireless module; wherein the second transmission period and the first transmission period are two successive periods in the first window or in the second window.
Abstract:
A method for performing mode switching management in multi-link operation (MLO) architecture and associated apparatus are provided. The method applicable to a wireless transceiver device communicating with another device within a wireless communications system may include: executing a mode switching procedure regarding a predetermined MLO-related mode in a first protection period dedicated to the mode switching procedure, so that no other transmission request is received during the first protection period, where the first protection period is equal to or longer than the time spent on executing the mode switching. The mode switching procedure may include sending a protection indication in a first communications frame from the wireless transceiver device to the other device that informs the other device not to send any transmission request, or the wireless transceiver device may perform information exchange in advance to notify the other device of mode switch processing delay as the first protection period.
Abstract:
A method for performing wireless communication in MLO architecture is applicable to an AP MLD connected with a non-AP MLD through multiple links. The multiple links include at least a first link and a second link, the non-AP MLD operates in ML-SMPS mode. The method includes transmitting an initial control frame to the non-AP MLD via the first link, to trigger at least one link of the multiple links to be activated at the non-AP MLD to support a reception with respective negotiated number of spatial streams, receiving a response frame via the first link in response to the transmission of the initial control frame, and initiating frame exchange between the AP MLD and the non-AP MLD via a target link of the at least one link. The target link is selected from the at least one link according to the response frame. The first link is a primary link.
Abstract:
A communication method for an extending device in a communication system includes transmitting or receiving a first traffic flow and a second traffic flow from a station of the communication system in a first frequency band; transmitting or receiving the first traffic flow and the second traffic flow from an access point of the communication system in the first frequency band; and transmitting or receiving the second traffic flow from the access point in a second frequency band.
Abstract:
A communication method for an extending device in a communication system includes transmitting or receiving a first traffic flow and a second traffic flow from a station of the communication system in a first frequency band; transmitting or receiving the first traffic flow and the second traffic flow from an access point of the communication system in the first frequency band; and transmitting or receiving the second traffic flow from the access point in a second frequency band.
Abstract:
A time division multiplex system has a client communications device and an external communications device. The client communications device has a first radio activity schedule. The external communications device has a second radio activity schedule. When the client communications device detects the second radio activity schedule, the client communications device reschedules the first radio activity schedule according to the second radio activity schedule.