Abstract:
A wireless power transfer system is disclosed that allows for directed power distribution. A power station that transmits the power can also transmit a distribution instruction that authorizes and/or prohibits various systems/components within a receiver device to receive power. A manager and power router within the receiver device route the power as directed by the distribution instruction. When multiple components/systems are authorized to receive the power, the receiver device can monitor power need and route as needed between authorized components/systems. In addition, the receiver device can act as a transmitter to wireless flash power to another device. The flash consists of bursting a large amount of power over a relatively short time. Several constraints, configurations, and considerations are required to perform this function.
Abstract:
A temporary work group system may include one or more network devices and one or more working devices. The network device can allocate an access point in a network to provide network access to a temporary work group. Working devices may be selectively identified by the network device as being available for inclusion in the temporary work group based on a first predetermined criteria that includes proximity to the access point and authentication of each of the working devices. Selectively identified working devices can be associated with the temporary work group based on a second predetermined criteria that includes a respective relative location of the working devices and respective functionality of the working devices. The system may preempt working devices from association with the work group session until such devices meet both the first predetermined criteria and the second predetermined criteria.
Abstract:
Disclosed are various embodiments providing a portable wireless communication device that includes a secure element configured to route a set of input/output (I/O) channels to host processing circuitry of a mobile communication device. The secure element includes an application executable by the secure element, the application being configured to obtain a policy via an I/O channel of the set of I/O channels. The application is further configured to prevent the host processing circuitry from accessing data corresponding to at least a portion of the set of I/O channels according to the policy.
Abstract:
A portable terminal may dock to an industrial process controller through a wireless docking interface. The industrial process controller may communicate industrial node (e.g., process sensor) configuration information to the portable terminal. The portable terminal moves within an industrial process environment where processor sensors are located. The portable terminal also docks to the process sensors using the same or different wireless docking interface. Once docked, the portable terminal configures the process sensors with the sensor configuration information.
Abstract:
A device in an industrial environment may adapt communications to account for industrial noise in the industrial environment. The device may send a first communication to a destination device in the industrial environment using a first communication technology. The device may access noise prediction data for the industrial environment, and the noise prediction data may indicate predicted noise for one or more portions of the industrial environment, including a communication pathway to the destination device using the first communication technology. The device may adapt a subsequent communication to the destination device to account for the predicted noise along the communication pathway.
Abstract:
A host apparatus to obtain electronic authentication of a request associated with a group, the host apparatus including a processor to receive the request from an external device external to the group, to generate a digital document based on information associated with the request, to transmit the digital document to a trusted entity device for electronic authentication of the request, to receive the digital document from the trusted entity device, to determine whether the electronic authentication of the request was successful, and to process the request when it is determined that the electronic authentication of the request was successful.
Abstract:
The present disclosure is directed to a method, apparatus, and system for managing wireless communications between wireless devices, including providing radiative power delivery to the wireless devices. The wireless devices may include a communication transceiver to wireless communicate with other wireless devices and a radiative power harvester to receive radiative power transmissions from the other wireless devices. The wireless devices may also include a switching unit to selectively provide a connection to the communication transceiver and the wireless power harvester based on the mode of operation of the wireless devices.
Abstract:
An environment, such as an industrial environment, may include a control network with multiple network devices. A network device in the control network may have groups of communication ports servicing upstream and/or downstream network traffic. The group of communication ports may have, for example, two communication ports. Transmission parameters of the communication ports may be dynamically configured based on a first network port configuration and a second network port configuration for the first and second communication ports, respectively. The first network port configuration may have different transmission parameters than the second network port configuration. The first network port may forward data packets over the control network according to the first network port configuration, while the second network port may forward data packets to the next hop device utilizing the second network port configuration.
Abstract:
A wireless power transfer system is disclosed that allows for directed power distribution. A power station that transmits the power can also transmit a distribution instruction that authorizes and/or prohibits various systems/components within a receiver device to receive power. A manager and power router within the receiver device route the power as directed by the distribution instruction. When multiple components/systems are authorized to receive the power, the receiver device can monitor power need and route as needed between authorized components/systems. in addition, the receiver device can act as a transmitter to wireless flash power to another device. The flash consists of bursting a large amount of power over a relatively short time. Several constraints, configurations, and considerations are required to perform this function.
Abstract:
A wireless power transfer system is described that includes a power station and a chargeable device. The power station transmits discovery beacons in order to detect a chargeable device within its vicinity using any available communication protocols and/or standards. Once a device is discovered, the power station can perform coil selection with the device in order to select preferred coils for power transfer. In addition, the chargeable device is capable of detecting the beacon signal and providing a response to notify the power station of its presence. The chargeable device is capable of performing its own coil selection for further optimization and includes various assistance functionality to aid a user in optimizing a connection with the power station.