Abstract:
A first access point (AP) in a multiple access points (MAP) system of a wireless network is provided. The MAP system further includes a second AP. The first AP includes a transceiver and a control circuit. The transceiver transmits and receives frames over the wireless network. The control circuit transmits a protected frame to a non-AP station associated to the second AP, and receives a response frame in response to the protected frame from the non-AP station.
Abstract:
A communication apparatus includes a first wireless module and a second wireless module. The first wireless module includes a communication device, an antenna module and a filter module. The filter module is coupled between the communication device and the antenna module and includes a first filter, a second filter, a first switch switching in response to a control signal, and a second switch switching in response to the control signal. The communication device includes a processor issuing the control signal according to a radio frequency utilized by the second wireless module to select the first filter or the second filter to electronically connect to the communication device and the antenna module.
Abstract:
The application provides a wireless communication method and a wireless communication device. A part of payload is pre-fetched from a host to a data buffer under a store-and-forward mode before transmission begins. When data transmission begins, the part of the payload pre-fetched in the data buffer is transmitted to an antenna. A remaining part of the payload is fetched to the data buffer under a cut-through mode for payload transmission, wherein the remaining part of the payload is sent from the data buffer to the antenna for radiation.
Abstract:
A method for multi-link operation (MLO) is provided. The method for MLO may be applied to an apparatus. The method for MLO may include the following steps. A multi-chip controller of the apparatus may assign different data to a plurality of chips of the apparatus, wherein each chip corresponds to one link of multi-links. Each chip may determine whether transmission of the assigned data has failed. A first chip of the chips may transmit the assigned data to an access point (AP) in response to the first chip determining that the transmission of the assigned data has not failed.
Abstract:
A multi-link operation (MLO) transmission method is provided. The MLO transmission method may be applied to an apparatus. The MLO transmission method may include the following steps. A plurality of station (STA) modules of the apparatus may each perform a respective backoff procedure. Each STA module may correspond to a different link. An MLO control circuit of the apparatus or a first STA module of the plurality of STA modules may determine whether to perform a synchronous transmission (TX) for a first STA module and at least one of other STA modules in response to a first backoff counter of the first STA module reaching 0.
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.