Patent classifications
H04W84/14
METHOD FOR GROUPING WIFI STAS AND ASSOCIATED APPARATUS
The present application provides a method for a WiFi AP and a WiFi STA. For the WiFi AP, the method includes: being connected by a plurality of WiFi STAs s; performing a grouping operation upon the WiFi STAs; and configuring an ID of each of the WiFi STAs according to a result of the grouping operation. For the WiFi STA, the method includes: connecting to a WiFi AP; receiving an AID from the WiFi AP; and determining the time to exit doze state for receiving beacon according to the AID.
METHOD FOR GROUPING WIFI STAS AND ASSOCIATED APPARATUS
The present application provides a method for a WiFi AP and a WiFi STA. For the WiFi AP, the method includes: being connected by a plurality of WiFi STAs s; performing a grouping operation upon the WiFi STAs; and configuring an ID of each of the WiFi STAs according to a result of the grouping operation. For the WiFi STA, the method includes: connecting to a WiFi AP; receiving an AID from the WiFi AP; and determining the time to exit doze state for receiving beacon according to the AID.
Dual subscriber identification module (SIM) customer premises equipment (CPE) for wireless network power measurements
Methods, apparatus, and systems for monitoring a network. A customer premise equipment device is registered with a spectrum access system. The spectrum access system is informed of a count of subscriber identification module (SIM) cards and a count of radios in the customer premise equipment device and is informed of a frequency and an identity of the network to monitor. One or more measurements are performed by the customer premise equipment device based on the frequency and the identity of the network and the one or more measurements are sent to a managing server.
Techniques for optimizing wireless communications via dynamic slew rate control of a wired communications channel
Various embodiments include techniques for reducing high-frequency interference to a wireless communications channel emanating from a wired communications channel. The techniques are directed towards an application that determines a mode of a particular wired communications channel. The mode of the wired communications channel is indicative of the frequency ranges at which the interference is generated. The application further determines a frequency and/or bandwidth of the wireless communications channel. The application selects a slew rate that reduces the high frequency interference from the wired communications channel at the frequency and/or bandwidth of the wireless communications channel. The application thereby optimizes the reduction of the high-frequency interference from the particular wired communications channel to the particular wireless communications channel.
METHODS AND SYSTEMS FOR BRIDGING FOR MOBILE COMMUNICATIONS SYSTEMS
A bridge may include a donor bridge node and one or more service bridge nodes. The donor bridge node may be configured to connect to a base station pooling location comprising a plurality of cell signals, determine for each cell signal a service link carrier frequency in a service link frequency band and a bridge link carrier frequency in a bridge link frequency band, associate each cell signal and the determined carrier frequencies in the service link frequency band and in the bridge link frequency band with the one or more service bridge nodes, and communicate each cell signal at the bridge link carrier frequency of the cell signal. The service bridge nodes may communicate with the donor bridge node at the carrier frequency of the bridge link frequency band and with user equipment in the service link carrier frequency band of the service link frequency band.
Communications method, apparatus, and system
A communications method, apparatus, and system to implement handover between session management network elements, where a target session management network element sends a first message to a source session management network element based on the information about the source session management network element received. After receiving the first message from the target intermediate session management network element, the source session management network element indicates, based on the first message, a source intermediate user plane network element to establish a forwarding tunnel. As such, the forwarding tunnel between the source intermediate user plane network element and a target intermediate user plane network element is established, and the source intermediate user plane network element can forward data to the target intermediate user plane network element through the forwarding tunnel.
Wireless replacement line also known as a wireless home phone configured for receiving wireless emergency alerts
A wireless telephone base station for a telephone includes a transceiver configured to receive wireless emergency alerts, a display configured to show the wireless emergency alerts, an output device configured to play the wireless emergency alerts, and a processor configured to show the wireless emergency alerts on the display and to play the wireless emergency alerts on the output device.
5G FWA device self-installation application
Systems and methods are provided for effectuating a self-installation application that may be utilized by end users of 5G Fixed Wireless Access (FWA) devices, installation professionals, etc. to optimally locate and position/orient a 5G FWA device relative to an installation environment. Various guidance can be provided to a user depending on the user's level of experience or familiarity with installation of such devices. Calculations can be executed to determine performance of a 5G FWA device depending on its location/position/orientation relative to elements or structures or obstructions that may impact its ability to effectively connect to/obtain service from a serving cell or network infrastructure.
IN-GROUND SENSOR SYSTEMS WITH MODULAR SENSORS AND WIRELESS CONNECTIVITY COMPONENTS
In an embodiment, an integrated sensor system with modular sensors and wireless connectivity components for monitoring properties of field soil is described. In an embodiment, an integrated sensor system comprises one or more sensors that are configured to determine one or more measures of at least one property of soil. The integrated sensor system also includes one or more processing units that are configured to receive, from the sensors, the measures of at least one property of soil and calculate soil property data based on the measures. The system further includes a transmitter that is configured to receive the soil property data from the processing units, establish a communications connection with at least one computer device, and automatically transmit the soil property data to the at least one computer device via the communications connection. In an embodiment, the communications connection is a wireless connection established between the transmitter and a smart hub or a LoRA-enabled device. In an embodiment, the computer sensors, the processors, and the transmitter are installed inside a portable probe.
Communications method, apparatus, and system
A communications method, apparatus, and system to implement handover between session management network elements, where a target session management network element sends a first message to a source session management network element based on the information about the source session management network element received. After receiving the first message from the target intermediate session management network element, the source session management network element indicates, based on the first message, a source intermediate user plane network element to establish a forwarding tunnel. As such, the forwarding tunnel between the source intermediate user plane network element and a target intermediate user plane network element is established, and the source intermediate user plane network element can forward data to the target intermediate user plane network element through the forwarding tunnel.