Abstract:
Systems and methods directed to augmenting advanced driver assistance systems (ADAS) features of a vehicle with image processing support in on-board vehicle platform are described herein. Images may be received from one or more image sensors associated with an ADAS of a vehicle. The received images may be processed. An action is determined based upon, at least in part, the processed images. A message is transmitted to an ADAS controller responsive to the determination.
Abstract:
System and techniques for radio resource scheduling are described herein. A network request may be received at a first network interface of a gateway device. Here, the network request includes an information request to multiple devices connected to the gateway device via a second network interface. A transmission schedule may be created for the multiple devices that is contention free. The transmission schedule may be propagated to the multiple devices. Information responsive to the information request may be received from the multiple devices according to the transmission schedule. The network request may be fulfilled with the information.
Abstract:
Systems and methods of using machine-learning to improve communications across different networks are described. A CIRN node identifies whether it is within range of a source and destination node in a different network using explicit information or a machine-learning classification model. A neural network is trained to avoid interference using rewards associated with reduced interference or retransmission levels in each network or improved throughput at the CIRN node. A machine-learning scheduling algorithm determines a relay mode of the CIRN node for source and destination node transmissions. The scheduling algorithm is based on the probability of successful transmission between the source and destination nodes multiplied by a collaboration score for successful transmission and the probability of unsuccessful transmission of the particular packet multiplied by a collaboration score for unsuccessful transmission.
Abstract:
Methods, apparatus, systems and articles of manufacture are disclosed provide an apparatus to allocate bandwidth between devices, the apparatus comprising a comparator to determine whether a first dataflow to a first device is below a first fair share throughput attributed to the first device; and a weight adjustor to, in response to the comparator determining that the first dataflow is below the first fair share throughput attributed to the first device adjust the first fair share throughput such that the first dataflow is closer to the first fair share throughput; and adjust a second fair share throughput attributed to a second device such that a second dataflow to the second device is closer to the second fair share throughput.
Abstract:
For example, an apparatus may include logic and circuitry configured to cause a wireless communication device to determine at least one video quality parameter representing an estimated quality of at least one video stream to be streamed via the wireless communication device to a display device over a wireless communication medium; to determine a scheduling policy parameter based at least on the video quality parameter; and to provide the scheduling policy parameter to a Media Access Control (MAC) scheduler to schedule wireless transmission of the at least one video stream to the display device.
Abstract:
System and techniques for device discovery described herein. A gateway device may initiate discovery in a self-organizing network attached to a first network interface of the gateway device. The gateway device may include a second network interface attached to a network that has a discovery protocol different than that of the self-organizing network. A reply from a node in the self-organizing network may be received in response to the discovery. A device class may be extracted from the reply. Here, the device class corresponds to the node and is selected from a set of device classes defined for the network. A mapping between the second network interface and the first network interface based on the device class may be registered. A response to a query from the network may be completed using the mapping.
Abstract:
For example, an apparatus may include logic and circuitry configured to cause a wireless communication device to determine at least one video quality parameter representing an estimated quality of at least one video stream to be streamed via the wireless communication device to a display device over a wireless communication medium; to determine a scheduling policy parameter based at least on the video quality parameter; and to provide the scheduling policy parameter to a Media Access Control (MAC) scheduler to schedule wireless transmission of the at least one video stream to the display device.
Abstract:
A particular device is provided with a communications module to receive signals of a plurality of devices within range of the particular device and further provisioned with grouping logic. The grouping logic is executable by one or more processors to determine from each of the signals a respective identifier for each of the plurality of devices, determine, based at least in part on the identifiers, that a particular subset of the plurality of devices are also included with the particular device in a particular one of a plurality of defined groups, and converge data received from the particular subset of devices based on the particular group.
Abstract:
Methods, apparatus, systems and articles of manufacture are disclosed to coordinate and manage secure shipment of a package. An example shipment coordination apparatus includes an address generator and a verification engine. The example apparatus includes a shipping group coordinator to generate a group including a sender and a receiver based on a) a first digital address associated with the sender, b) a second digital address associated with the receiver, and c) at least one encryption key associated with at least one of the first digital address or the second digital address, the shipping group coordinator to initiate delivery instruction and manage receipt confirmation of a package at a second physical address corresponding to the second digital address based on verification of a token identifying the receiver and to provide messaging between the sender and the receiver in the group using a group encryption key to keep messages private in the group.
Abstract:
An Internet of Things (IoT) system and method including IoT sensors to measure data and forward the data to gateway devices, the gateway devices to receive the data and provide the data to a cloud infrastructure, and a coordinator to assign ownership of the IoT sensors to the gateway devices.