Abstract:
A method and apparatus for dynamically controlling quality of service (QoS) is provided herein. During operation, a QoS manager will determine if a device is currently being used by an individual. The QoS of the device will then be tailored based on whether or not the device is currently being used by the individual. Devices that may be running applications, yet unused by anyone may have their QoS reduced. This will allow the QoS to be increased for devices that are currently being used.
Abstract:
A network device is configured to authenticate a collaborative session between at least two communication devices. The network component receives an indication that at least two devices located within a predefined physical range are attempting to collaborate. The network component determines, based on the indication, that the two devices are authentic and that the two devices are attempting to collaborate. Responsive to determining that the two devices are authentic and attempting to collaborate, the network component determines that the two devices are authorized to collaborate and a level on which the two devices are authorized to collaborate. The network component sends an authorization response to at least one of the at least two devices, wherein if the two devices are authorized to collaborate the authorization response includes the level on which the two devices are authorized to collaborate.
Abstract:
Systems, methods, and computer-readable medium containing instructions for responding to a user-initiated query. One method includes logging data received through an input interface of a communication device, receiving the user-initiated query, and determining a context-based response to the user-initiated query based on the logged data stored in the at least one data base and a probability of a user of the communication device receiving the logged data stored in the at least one data base. The method also includes providing the context-based response in reply to the user-initiated query.
Abstract:
System and method for correcting for impulse noise in speech recognition systems. One example system includes a microphone, a speaker, and an electronic processor. The electronic processor is configured to receive an audio signal representing an utterance. The electronic processor is configured to detect, within the utterance, the impulse noise, and, in response, generate an annotated utterance including a timing of the impulse noise. The electronic processor is configured to segment the annotated utterance into silence, voice content, and other content, and, when a length of the other content is greater than or equal to an average word length for the annotated utterance, determine, based on the voice content, an intent portion and an entity portion. The electronic processor is configured to generate a voice prompt based on the timing of the impulse noise and the intent portion and/or the entity portion, and to play the voice prompt.
Abstract:
A process for improved real-time conflict identification and resolution, and information corroboration, during an interrogation relative to an incident includes capturing a first real-time digital audio or video stream from a first interviewee under interrogation by a first interviewer relative to an incident. The first real-time digital audio or video stream is converted to a first digital text string, which is then semantically processed to identify and store first information relative to the incident. Stored second information created via interrogation of a second interviewee under interrogation relative to the incident is accessed, and a conflict between the stored first information and the stored second information is identified. A visual or audio prompt is generated associated with the conflict and an indication of the conflict is played back via the visual or audio prompt to the first interviewer.
Abstract:
A first device in a group of devices is assigned a role of operating as an elected leader node for the group of devices. The elected leader node determines that a sensor entity of a sensor entity type is associated with one device in the group of communication devices. The elected leader node creates a token and associates the token with the sensor entity. The elected leader node also assigns ownership for the token to one device based on the device being associated with the sensor entity and further based on one or more of: at least one incident allocation criterion; at least one sensor entity allocation criterion; and at least one node allocation criterion. One device executes at least one predefined sensor entity rule associated with the sensor resource type based on ownership of the token assigned to the sensor entity.
Abstract:
Visual perception determination assistance system and method. In one embodiment, a method includes receiving, at an electronic computing device, a primary video or still image from an imaging device; receiving, at the electronic computing device, at least one vision impact parameter from at least one sensor device, the at least one vision impact parameter being indicative of an ability of an observer to visually perceive a scene captured in the primary video or still image; storing the primary video or still image and the at least one vision impact parameter in a memory; identifying, by a processor electrically coupled to the memory, a timing correlation between the primary video or still image and the at least one vision impact parameter; and storing the timing correlation in the memory.
Abstract:
A system and method for providing navigational routing. The method includes determining, at a controller, a first route from a first location to a second location, the determination of the first route using a first set of routing rules. The method also includes determining, at the controller, a second route from the first location to the second location, the determination of the second route using a second set of routing rules applicable to public safety vehicles, the second set of routing rules different from the first set of routing rules. The method further includes the steps of accessing, at the controller, route information related to the second route; identifying, at the controller, a preferred route based on the first travel duration, the second travel duration, and the route information; and outputting the identified preferred route.
Abstract:
Visual perception determination assistance system and method. In one embodiment, a method includes receiving, at an electronic computing device, a primary video or still image from an imaging device; receiving, at the electronic computing device, at least one vision impact parameter from at least one sensor device, the at least one vision impact parameter being indicative of an ability of an observer to visually perceive a scene captured in the primary video or still image; storing the primary video or still image and the at least one vision impact parameter in a memory; identifying, by a processor electrically coupled to the memory, a timing correlation between the primary video or still image and the at least one vision impact parameter; and storing the timing correlation in the memory.
Abstract:
Systems, methods, and computer-readable medium containing instructions for responding to a user-initiated query. One method includes logging data received through an input interface of a communication device, receiving the user-initiated query, and determining a context-based response to the user-initiated query based on the logged data stored in the at least one data base and a probability of a user of the communication device receiving the logged data stored in the at least one data base. The method also includes providing the context-based response in reply to the user-initiated query.