Abstract:
The present disclosure relates to computer-implemented methods and systems for intelligent task management. An example method may include identifying one or more authorized entities. The method may further include broadcasting at least one task associated with a user to one or more devices associated with the one or more authorized entities. The method may further include receiving from the one or more authorized entities, via the one or more devices, an indication of acceptance of the at least one task, The method may further include selecting at least one trusted entity among the one or more authorized entities. The method may further include issuing at least one digital certificate to the at least one trusted entity to perform the at least one task.
Abstract:
System and techniques for social cuing based on in-context observation are described herein. A plurality of context attributes about a user and a subject may be received. A period in which an interpersonal interaction between the user and the subject occurs may be determined. A social-interaction-emotional-state may be determined during the period from the plurality of context attributes using a pre-defined classification methodology. A feedback response may be generated based on the determined social-interaction-emotional-state. The feedback may be presented to the user.
Abstract:
Various systems and methods for providing real-time access to resources based on driving record are described herein. A system to provide real-time access to resources based on a driving record comprises: a receiving module to receive vehicle operation data of a vehicle operated by a driver, the vehicle operation data related to an instance of vehicle operation; an offer module to receive an offer for the driver based on the vehicle operation data; and a presentation module to present the offer to the driver substantially concurrent to the instance of the vehicle operation.
Abstract:
Technologies for optimized vehicle parking include a parking management computing device and a number of advanced vehicles, each having an in-vehicle computing system. The parking management computing device establishes a secure control channel with each of the in-vehicle computing systems. Each of the in-vehicle computing systems may send a parking request to park or access the vehicle to the parking management computing device. The parking management computing device queries a number of the advanced vehicles that are already parked for positional or sensor data and determines an optimized parking configuration based on the parking request. The parking management computing device transmits movement requests to the in-vehicle computing systems to implement the optimized parking configuration. Each in-vehicle computing system may perform the movement request by using an autonomous driving capability, by using a remote control capability, or by notifying an operator. Other embodiments are described and claimed.
Abstract:
Systems and methods to request and collect evidence elements from one or more evidence systems responsive to a triggering event are disclosed. An evidence request beacon may be generated based at least in part on information associated with the triggering event. The evidence request beacon may be received by one or more evidence systems and may be evaluated to determine if potentially relevant evidence is available from the evidence system. If potentially relevant evidence elements are available from the one or more evidence systems, then the potentially relevant evidence elements may be provided to the requesting system.
Abstract:
A communication system may include a plurality of geographically proximate nodes that communicate via one or more range-limited wireless technologies such as BLUETOOTH® low energy (BLE). An origin node may generate and communicate a first message responsive to detecting an event occurrence. The message may include an identifier associated with the origin node, data indicative of the event occurrence, a hop count, a maximum hop count, and a number of designated recipient nodes within the communication system. A first designated recipient node may, upon receiving the first message, attempt to confirm the event occurrence included in the first message. Upon confirming the event occurrence, the first designated recipient node may communicate a notification to an external third party. If unable to confirm the event occurrence, the first designated recipient node may generate and communicate a second message to a second designated recipient node included in the first message.
Abstract:
The present disclosure relates to computer-implemented methods and systems for intelligent task management. An example method may include identifying one or more authorized entities. The method may further include broadcasting at least one task associated with a user to one or more devices associated with the one or more authorized entities. The method may further include receiving from the one or more authorized entities, via the one or more devices, an indication of acceptance of the at least one task. The method may further include selecting at least one trusted entity among the one or more authorized entities. The method may further include issuing at least one digital certificate to the at least one trusted entity to perform the at least one task.
Abstract:
Navigation systems that enhance driver awareness are provided. Information associated with a location of a vehicle may be determined. Based at least in part upon the determined location, awareness information associated with the vehicle may be collected. The awareness information may include at least one of crime information, accident information, legal information, or future traffic information. Based at least in part upon the collected awareness information, output information may be generated for presentation, and the generated output information may be output.
Abstract:
Various systems and methods for a wearable input device are described herein. A textile-based wearable system for providing user input to a device comprises a first sensor integrated into the textile-based wearable system, the first sensor to produce a first distortion value representing a distortion of the first sensor. The system also includes an interface module to detect the first distortion value, the distortion value measured with respect to an initial position, and transmit the first distortion value to the device, the device having a user interface, the user interface to be modified, responsive to receiving the first distortion value.
Abstract:
A communication system may include a plurality of geographically proximate nodes that communicate via one or more range-limited wireless technologies such as BLUETOOTH® low energy (BLE). An origin node may generate and communicate a first message responsive to detecting an event occurrence. The message may include an identifier associated with the origin node, data indicative of the event occurrence, a hop count, a maximum hop count, and a number of designated recipient nodes within the communication system. A first designated recipient node may, upon receiving the first message, attempt to confirm the event occurrence included in the first message. Upon confirming the event occurrence, the first designated recipient node may communicate a notification to an external third party. If unable to confirm the event occurrence, the first designated recipient node may generate and communicate a second message to a second designated recipient node included in the first message.