Abstract:
A prioritization is determined amongst a group of receivers for receiving signals transmitted from the wireless transmitter, without use of accurate channel state information. A signal is transmitted to each receiver based on an order that is determined by the prioritization. The transmitted signal can be encoded so that the receiver is able to receive the signal regardless of a channel state as between that receiver and the wireless transmitter.
Abstract:
A computing device can determine a radio frequency (RF) bandwidth in which one or more frames are to be transmitted by the computing device. The RF bandwidth is within the operating transmission bandwidth of the computing device. A signal interference having an interference bandwidth can interfere with the transmission of the one or more frames. In response to detecting the signal interference, one or more frames can be transmitted within the operating transmission bandwidth and not within the interference bandwidth.
Abstract:
A computing device can determine a radio frequency (RF) bandwidth in which one or more frames are to be transmitted by the computing device. The RF bandwidth is within the operating transmission bandwidth of the computing device. A signal interference having an interference bandwidth can interfere with the transmission of the one or more frames. In response to detecting the signal interference, one or more frames can be transmitted within the operating transmission bandwidth and not within the interference bandwidth.
Abstract:
According to an example, a distributed antenna system includes a central processing apparatus and a plurality of antenna apparatuses connected to the central processing apparatus via Ethernet cables through an Ethernet switch. The plurality of antenna apparatuses are spatially distributed with respect to each other and the central processing apparatus is to communicate Ethernet packets to the plurality of antenna apparatuses. In addition, the plurality of antenna apparatuses are to wirelessly transmit signals corresponding to data contained in the Ethernet packets in a substantially coordinated and synchronized manner with respect to each other.
Abstract:
Data is transmitted over a wireless network by encoding data using a rateless code. A multi-cast signal is wirelessly transmitted to communicate the encoded data for any one or more receivers. The wireless transmission is performed in a manner that is agnostic as to a number of antennas that are utilized by each of the one or more receivers.
Abstract:
According to an example, a distributed antenna system includes a central processing apparatus and a plurality of antenna apparatuses connected to the central processing apparatus via Ethernet cables through an Ethernet switch. The plurality of antenna apparatuses are spatially distributed with respect to each other and the central processing apparatus is to communicate Ethernet packets to the plurality of antenna apparatuses. In addition, the plurality of antenna apparatuses are to wirelessly transmit signals corresponding to data contained in the Ethernet packets in a substantially coordinated and synchronized manner with respect to each other.
Abstract:
According to an example, signal transmissions by a first antenna apparatus and a second antenna apparatus connected to a central processing apparatus through an Ethernet switch may be synchronized with respect to each other. An Ethernet packet containing first data and second data may be generated, in which the first antenna apparatus is to wirelessly transmit the first data and the second antenna apparatus is to wirelessly transmit the second data. In addition, the Ethernet packet may be communicated to the Ethernet switch, in which the Ethernet switch includes a first port that is in communication with the first antenna apparatus and a second port that is in communication with the second antenna apparatus, and the Ethernet switch is to communicate the Ethernet packet through the first port and a copy of the Ethernet packet through the second port substantially simultaneously with respect to each other.
Abstract:
A prioritization is determined amongst a group of receivers for receiving signals transmitted from the wireless transmitter, without use of accurate channel state information. A signal is transmitted to each receiver based on an order that is determined by the prioritization. The transmitted signal can be encoded so that the receiver is able to receive the signal regardless of a channel state as between that receiver and the wireless transmitter.
Abstract:
Multiband operation of a single Wi-Fi radio is described. Some examples can include operating a first radio frequency band on the single Wi-Fi radio of an access point. The method can include switching, based on client device traffic patterns, to a second radio frequency band on the single Wi-Fi radio of the access point.
Abstract:
Example embodiments disclosed herein relate to utilizing client mobile devices for wireless network monitoring. Link quality data for wireless networks are measured by a plurality of wireless client devices and are provided to a network controller. The link quality data is usable to manage a wireless local area network (WLAN). The wireless networks include at least the WLAN and a cellular network. A recommendation for connection is provided to the wireless client devices, where the recommendation indicates if the cellular network is recommended or an access point of the WLAN.