Abstract:
Systems and methods may provide for receiving runtime input from one or more unlock interfaces of a device and selecting a level of access with regard to the device from a plurality of levels of access based on the runtime input. The selected level of access may have an associated security policy, wherein an authentication of the runtime input may be conducted based on the associated security policy. In one example, one or more cryptographic keys are used to place the device in an unlocked state with regard to the selected level of access if the authentication is successful. If the authentication is unsuccessful, on the other hand, the device may be maintained in a locked state with regard to the selected level of access.
Abstract:
Systems, apparatus, and methods of authentication utilizing contextual data to authenticate individuals and prevent security breaches are described herein. An example proxy engine may monitor interactions with a computing device to obtain contextual data unique to a user. The contextual data may be utilized to generate unique challenge questions in response to requests for access to a secure resource, and may eliminate the need for a user to remember credentials to access the resource. Challenge questions may be limited to a single use and vary in difficulty in proportion to the value of the resource. In response to correct responses to challenge question(s), the proxy engine may access a vault containing a credential authorizing access to the resource. The vault and proxy engine may be entirely contained on the computing device or they may be implemented on a remote apparatus accessed via an application or interface on the computing device.
Abstract:
Systems and methods may provide for determining a first proximity status of a first mobile device with respect to a vehicle, and determining a second proximity status of a second mobile device with respect to the vehicle. Additionally, an accessibility of one or more functions of the vehicle may be configured based at least in part on the first proximity status and the second proximity status. In one example, a policy associated with one or more of the first mobile device and the second mobile device may be identified, wherein the accessibility is configured further based on the policy.
Abstract:
Systems and methods for dynamically creating collaborative teams and managing collaborative work of a team are generally disclosed herein. One example embodiment includes the dynamic creation of a collaborative team by creating an association between team members via a managing module. The managing module may be capable of managing, among other things, team members on a team, tasks and goals of each member of the team, as well as documentation associated with the team. In some embodiments, the managing module may use a chat or messaging protocol to manage collaborative modifications to documents of the team.
Abstract:
A method may include receiving, using at least one processor, location information that includes a location of an unmanned aerial vehicle (UAV); querying, using the at least one processor, a policy database to retrieve a notification condition for a first property with respect to UAVs; calculating, using the at least one processor, a distance between the UAV and the first property using the received location information determining, using the at least one processor, if the distance of the UAV with respect to the first property is within a range defined in the notification condition for the first property; and transmitting, using the at least one processor, a notification to a party associated with the first property when the distance of the UAV with respect to the first property is within the range defined in the notification condition for the first property.
Abstract:
A method may include receiving, using at least one processor, location information that includes a location of an unmanned aerial vehicle (UAV); querying, using the at least one processor, a policy database to retrieve a notification condition for a first property with respect to UAVs; calculating, using the at least one processor, a distance between the UAV and the first property using the received location information determining, using the at least one processor, if the distance of the UAV with respect to the first property is within a range defined in the notification condition for the first property; and transmitting, using the at least one processor, a notification to a party associated with the first property when the distance of the UAV with respect to the first property is within the range defined in the notification condition for the first property.
Abstract:
Systems, apparatuses, and methods for enabling sensor discovery in autonomous devices herein. An example system for enabling dynamic sensor discovery including a client that includes an autonomous device. The autonomous device is capable of navigating from a current location to a destination location using sensor data. The client provides a request for sensor information for sensors along a planned route and receives respective sensor information for each of a set of selected sensors selected by a data server based on the request. The client subscribes to a data feed of a sensor of the set of selected sensors along the planned route based on sensor information corresponding to the sensor and client analyzes the data feed to determine whether to proceed with the planned route.
Abstract:
Systems and methods for dynamically creating collaborative teams and managing collaborative work of a team are generally disclosed herein. One example embodiment includes the dynamic creation of a collaborative team by creating an association between team members via a managing module. The managing module may be capable of managing, among other things, team members on a team, tasks and goals of each member of the team, as well as documentation associated with the team. In some embodiments, the managing module may use a chat or messaging protocol to manage collaborative modifications to documents of the team.
Abstract:
Various systems and methods for using a smart jack are described herein. A smart jack device may comprises a lifting mechanism; at least one of: a position sensor or a motion sensor; a processor subsystem; and a memory including instructions, which when executed by the processor subsystem, cause the processor subsystem to: access sensor data from at least one of: the position sensor or the motion sensor, the sensor data indicative of a state of the smart jack device; and cause the presentation of an indication of the state of the smart jack device.
Abstract:
Disclosed in some examples are systems, methods, devices, and machine readable mediums which may produce an audio recording with included verification from the individuals in the recording that the recording is accurate. In some examples, the system may also provide rights management control to those individuals. This may ensure that individuals participating in audio events that are to be recorded are assured that their words are not changed, taken out of context, or otherwise altered and that they retain control over the use of their words even after the physical file has left their control.