Abstract:
Various systems and methods for testing devices, issuing certificates, and managing certified devices, are discussed herein. A system is configured for using platform certificates to verify compliance and compatibility of a device when onboarding the device into an internet of things (IoT) network. The system may use an approved product list to verify compliance and compatibility for the device. When the device is certified, the system may use an onboarding tool to onboard the device into the IoT network.
Abstract:
The present disclosure relates to computer-implemented systems and methods for device provisioning. The method may include receiving, by a computer, a selection instructions to detect wireless devices. The computer may include one or more processors, a radio transceiver, and a microphone. The method may also include identifying, by the radio transceiver, a plurality of wireless devices. Additionally, the method may include transmitting, by the radio transceiver to the wireless devices, respective requests for inaudible audio signal transmission. The method may also include receiving, by the microphone, a first inaudible audio signal from a first wireless device of the plurality of wireless devices. Further still, the method may include determining, based at least in part on the first inaudible audio signal, that the first wireless device is located in the same room as the user device.
Abstract:
The disclosure relates to a method, apparatus and system to enable exclusion, inclusion and ranking of discovery and connectivity mechanisms for services using Application Services Platform (ASP). In on embodiment, the disclosure provides an interface to allow services to exclude some discovery and connectivity mechanisms from and ASP2 session setup. The proposed approach can be used or extended for any other out-of-band Wi-Fi/WiGig discovery, connectivity and security mechanism.
Abstract:
Some demonstrative embodiments include devices, systems and methods of communicating via an Application Service Platform (ASP) session. For example, a first device may include a radio to communicate over a Wireless Local Area Network (WLAN); and a controller to establish an ASP Peer-to-Peer (P2P) (ASP-P2P) session between the first device and a second device via a WLAN Access Point (AP), the radio to communicate at least one frame with the second device via the WLAN AP, the frame including an address of the first device, an address of the second device, and an identifier of the WLAN AP.
Abstract:
Systems and methods for device to device communications in an Internet of Things (IoT) setting, via associated cloud services, are described. In an example, a procedure performed by a first IoT device, associated with a first domain or ecosystem, to communicate with a second IoT device, associated with a second domain or ecosystem, includes: obtaining communication information to communicate with a second service associated with the second device; providing the communication information to a first service associated with the first device; obtain service validation information, in response to the first service initiating the validation procedure with the second service; and providing the service validation information to the first service. This service validation information is used to enable a validated connection between the first service and the second service, to then communicate data or commands between the first device and the second device via the first and second remote services.
Abstract:
Disclosed herein are techniques to enable remote wakeup of controlled devices. In particular, a controlling device and a controlled device may each power on a radio during a wakeup window. The controlling device may communicate a wakeup frame to the controlled device during the wakeup window to wake the controlled device from a sleep or low power state for purposes of communicating with the controlled device in a network, such as a peer-to-peer network.
Abstract:
The present disclosure relates to computer-implemented systems and methods for device provisioning. The method may include receiving, by a computer, a selection instructions to detect wireless devices. The computer may include one or more processors, a radio transceiver, and a microphone. The method may also include identifying, by the radio transceiver, a plurality of wireless devices. Additionally, the method may include transmitting, by the radio transceiver to the wireless devices, respective requests for inaudible audio signal transmission. The method may also include receiving, by the microphone, a first inaudible audio signal from a first wireless device of the plurality of wireless devices. Further still, the method may include determining, based at least in part on the first inaudible audio signal, that the first wireless device is located in the same room as the user device.
Abstract:
Various systems and methods for testing devices, issuing certificates, and managing certified devices, are discussed herein. A system is configured for using platform certificates to verify compliance and compatibility of a device when onboarding the device into an internet of things (IoT) network. The system may use an approved product list to verify compliance and compatibility for the device. When the device is certified, the system may use an onboarding tool to onboard the device into the IoT network.
Abstract:
Systems and methods for device to device communications in an Internet of Things (IoT) setting, via associated cloud services, are described. In an example, a procedure performed by a first IoT device, associated with a first domain or ecosystem, to communicate with a second IoT device, associated with a second domain or ecosystem, includes: obtaining communication information to communicate with a second service associated with the second device; providing the communication information to a first service associated with the first device; obtain service validation information, in response to the first service initiating the validation procedure with the second service; and providing the service validation information to the first service. This service validation information is used to enable a validated connection between the first service and the second service, to then communicate data or commands between the first device and the second device via the first and second remote services.
Abstract:
Disclosed herein are techniques to enable discovery of P2P capable devices and associated network connection information. In some embodiments, an information element is included in a transmitted request to indicate a request for network connection information from another wireless device. The device may respond with indications of the requested network connection information. Network connectivity capability determined from the network connection information may be used to decide whether to setup a Wi-Fi Direct link or a Tunneled Direct Link Setup (TDLS), or whether to use an AP infrastructure link with the other device.