Abstract:
A method, a mobile device, and a wireless system provide wireless local communication systems and methods from Wide Area Network (WAN) fallback allowing proximate users to maintain connectivity therebetween while WAN connectivity is lost. The wireless local communication systems and methods leverage access point credentials for the WAN to set up local wireless communication amongst the mobile devices when WAN connectivity is lost or when commanded to do so. Local mobile device users can maintain communication such as in a talkgroup while WAN connectivity is disrupted or undesired. The systems and methods include an algorithm where a first mobile device identifies the loss of WAN connectivity and becomes a WAN access point for other proximate mobile devices which share common preconfigured credentials. Subsequent mobile devices which detect the loss of WAN connectivity can associate with the AP thereby maintaining local communication using local wireless connectivity techniques.
Abstract:
A mobile device collaboration method includes provisioning a first mobile device with unique user identification related to a role and skill set of an associated user of the first mobile device, detecting a second mobile device responsive to a condition at the first mobile device, communicating the unique user identification to the second mobile device, authenticating the first mobile device through the second mobile device communicating the unique user identification to an external database, and providing access for the first mobile device through the second mobile device if the authenticating is successful. A mobile device collaboration system and a mobile device are also described.
Abstract:
A communication system (100) provides collaboration between narrowband communication devices (102) and broadband communication devices (104) operating over different networks. The communication devices (102, 104) are linked to provide peer-to-peer communication that supports the dissemination of public safety information to a public safety personnel user utilizing the devices. Applications within the devices (102, 104) automatically control features amongst the plurality of devices for redundancy of critical information, removal of non-critical information and power management. Context information can also be examined and shared between amongst the devices.
Abstract:
A communication system (100) provides collaboration between narrowband communication devices (102) and broadband communication devices (104) operating over different networks. The communication devices (102, 104) are linked to provide peer-to-peer communication that supports the dissemination of public safety information to a public safety personnel user utilizing the devices. Applications within the devices (102, 104) automatically control features amongst the plurality of devices for redundancy of critical information, removal of non-critical information and power management. Context information can also be examined and shared between amongst the devices.
Abstract:
A method and vehicle-based communication system are provided that control a remote microphone by determining that one or more of the remote microphone and a user of the remote microphone is in a field of view (FOV) of a video camera and, in response, instructing the remote microphone to configure itself to receive ambient audio. In various embodiments, the remote microphone may configure itself, or be explicitly instructed to configure itself, to receive ambient audio by adjusting one or more of a beam forming or omni-directional pattern, potentially including noise cancellation algorithms to facilitate reception of ambient audio in contrast to user directed audio. When the one or more of the remote microphone and a user of the remote microphone no longer is in a FOV of the video camera, the method and vehicle-based communication system may instruct the remote microphone to reconfigure itself to receive user directed audio.
Abstract:
A method and apparatus for changing geofence-based operating parameters is provided herein. During operation, all members within a first geofence will have their radio parameters change to those used within a second geofence when a member of the first geofence crosses into the second geofence. Therefore, even though a particular member of the first geofence may not have crossed over the second geofence, the particular member will still have their radio parameters changed to those in use within the second geofence if a member of the first geofence has crossed the second geofence.
Abstract:
A method and device enables transferring a call between devices of a single user. The method comprises pairing, over a master-less communication link, a narrowband communication device operating in a narrowband communication system and a broadband communication device operating in a broadband communication system. A radio identifier is shared between the narrowband communication device and the broadband communication device, enabling call details to be transferred between the narrowband communication device and the broadband communication device. An operational status of either the narrowband communication device or the broadband communication device is then evaluated. When a call associated with particular call details is prior established on both the narrowband communication system and the broadband communication system, the call can be transferred, using the radio identifier and the call details, and based on the operational status, from one to the other of the broadband communication device and the narrowband communication device.
Abstract:
A communication system (100) provides collaboration between narrowband communication devices (102) and broadband communication devices (104) operating over different networks. The communication devices (102, 104) are linked to provide peer-to-peer communication that supports the dissemination of public safety information to a public safety personnel user utilizing the devices. Applications within the devices (102, 104) automatically control features amongst the plurality of devices for redundancy of critical information, removal of non-critical information and power management. Context information can also be examined and shared between amongst the devices.
Abstract:
A communication system (100) provides collaboration between narrowband communication devices (102) and broadband communication devices (104) operating over different networks. The communication devices (102, 104) are linked to provide peer-to-peer communication that supports the dissemination of public safety information to a public safety personnel user utilizing the devices. Applications within the devices (102, 104) automatically control features amongst the plurality of devices for redundancy of critical information, removal of non-critical information and power management. Context information can also be examined and shared between amongst the devices.
Abstract:
A communication system (100) provides collaboration between narrowband communication devices (102) and broadband communication devices (104) operating over different networks. The communication devices (102, 104) are linked to provide peer-to-peer communication that supports the dissemination of public safety information to a public safety personnel user utilizing the devices. Applications within the devices (102, 104) automatically control features amongst the plurality of devices for redundancy of critical information, removal of non-critical information and power management. Context information can also be examined and shared between amongst the devices.