H04L12/2803

Retaining legacy STB support with HFC plant migration to high split
11589092 · 2023-02-21 · ·

Propagating a downstream (DS) Out-of-Band (OOB) signal at a frequency receivable by a set of legacy set-top boxes (STBs) while supporting enhanced upstream peak data rates. At an input of an amplifier of a physical device, a portion of the DS-OOB signal is tapped to create a tapped DS-OOB signal, which comprises both the DS-OOB signal and all other downstream signals and channels sent from a head-end to a set of customer premises equipment (CPE) via the physical device. The tapped DS-OOB signal is introduced to a band-pass filter that passes the DS-OOB signal and attenuates all other radio frequency (RF) signals to create a filtered DS-OOB signal. The filtered DS-OOB signal is amplified and coupled to a low-pass side of a high-split diplex filter to propagate onto a transmission medium coupled to the CPE. The physical device may be a high-split RF amplifier or a high-split node.

User switching for multi-user devices

User switching for multi-user devices is provided. Each of multiple users of the multi-user device can have multiple external accounts that are each associated with one or more applications installed at the device. The user switching is provided such that each application installed at the device can be operated using user-specific data for the correct account of the correct user. The user switching is provided such that an app developer of an application for the multi-user device does not have to manage multiple data stores for multiple users.

Systems and methods for smart home data storage

System and methods for storing data include detecting presence of one or more computing devices within a defined geographic area, automatically copying media stored on the one or more computing devices, storing the copied media on a backup storage device, and grouping the stored copied media by at least one of time period, location, event and a source of the copied media.

APPARATUS AND METHODS FOR ENHANCING QUALITY OF EXPERIENCE FOR DATA SERVICES OVER HIGH-CAPACITY WIRELESS NETWORKS
20230050403 · 2023-02-16 ·

Apparatus and methods for guaranteeing a quality of experience (QoE) associated with data provision services in an enhanced data delivery network. In one embodiment, a network architecture having service delivery over at least portions of extant infrastructure (e.g., a hybrid fiber coax infrastructure) is disclosed, which includes standards-compliant ultra-low latency and high data rate services (e.g., 5G NR services) via a common service provider. In one exemplary implementation, “over-the-top” voice data services may enable exchange of voice traffic with client devices in the aforementioned network. A distribution node may use a detection rule to identify received packets as voice traffic, and cause a dedicated bearer to attach to the default bearer, thereby enabling delivery of high-quality voice traffic by at least prioritizing the identified packets thereafter and sustaining the delivery even in a congested network environment, and improving the quality of service (QoS) and QoE for the user(s).

Remote shared content experience systems
11502517 · 2022-11-15 · ·

A system provides a “virtual room” for remotely sharing content experiences via electronic devices at different locations. The system may enable synchronization of the content at the different locations, access control, be able to provide and/or experience interaction feedback regarding the content, control the interaction feedback that is provided and/or experienced, enhance the ability of people to distinguish the content from the interaction feedback, and so on. As such, people may be able to share content experiences more like they were present in a single location while remote from each other.

Electronic apparatus and method for controlling electronic apparatus
11503369 · 2022-11-15 · ·

An electronic apparatus maps each of a plurality of services to a channel number and provides an electronic program guide (EPG) that includes a broadcast channels and the plurality of services mapped to channel numbers of the electronic apparatus.

System for communication with devices on a network to minimize power consumption

A system of controlling one or more building automation devices. The system may incorporate communicating over a first network with one or more network connected devices. An access point for the first network may be utilized to facilitate communication among the network connected devices. One or more of the network connected devices may be a low power device that has a first mode and a second mode. The low power device may expend less energy in one of the first mode and the second than in the other of the first mode and the second mode. The system may allow network devices connected to the first network to receive details about the low power device while the low power device is operating with the first mode and the second mode.

APPARATUS AND METHODS FOR CONTROLLING A HABITAT ENVIRONMENT
20230044821 · 2023-02-09 ·

A system is provided for controlling an aquatic habitat. The system for includes a server, a bridge, and a habitat component. The server includes a database containing information associated with a habitat component. The server also includes a communication interface for transmitting operating data for the habitat component. The bridge has a first communication unit configured to communicate with the server communication interface and transmit the operating data received from the server to the habitat component. The habitat component has a second communication unit for receiving operating data from the bridge.

SMART TRAILER SYSTEM

A smart trailer system coupled to a trailer of a vehicle includes a sensor configured to measure a parameter of the trailer, a sensor interface board electrically coupled to the sensor and configured to retrieve the measured parameter, and a master controller communicatively coupled to the sensor interface board via a data bus.

AUTONOMOUS VEHICLE REFUELING

Methods and systems for autonomous vehicle recharging or refueling are disclosed. Autonomous vehicles may be automatically refueled by routing the vehicles to available fueling stations when not in operation, according to methods described herein. A fuel level within a tank of an autonomous vehicle may be monitored until it reaches a refueling threshold, at which point an on-board computer may generate a predicted use profile for the vehicle. Based upon the predicted use profile, a time and location for the vehicle to refuel the vehicle may be determined. In some embodiments, the vehicle may be controlled to automatically travel to a fueling station, refill a fuel tank, and return to its starting location in order to refuel when not in use.