Abstract:
A system for providing situational recommendations within a vehicle includes a system controller in communication with a plurality of onboard sensors, the plurality of onboard sensors adapted to collect real-time data related to a location of the vehicle and operating conditions of the vehicle, a database in communication with the system controller adapted to store data related to past actions and data related to a location of the vehicle and operating conditions of the vehicle when such past actions occurred, the system controller including a driver specific machine learning model adapted to predict a desired action based on the real-time data related to the location and operating conditions of the vehicle and data from the database, the system controller further adapted to initiate the predicted desired action, receive input from an occupant within the vehicle, and update the driver specific machine learning model.
Abstract:
Method of controlling and smart indication of a child seat latch assembly for a vehicle is provided. The method comprises identifying a vehicle seat in the vehicle when a request for child seat latch assembly activation is received. The vehicle seat is arranged to receive a child seat for securement in the vehicle. The method comprises automatic or manual activating the child seat latch assembly and aligning the child seat with the vehicle seat. The method comprises sensing the base bar relative to the base connector and sensing the back bar relative to the back connector. The method comprises locking the base bar in the base connector and locking the back bar in the back connector. The method further comprises monitoring the portable child seat relative to the stationary vehicle seat to maintain an aligned position, a locked base position, communication of the secureness status and a locked back position.
Abstract:
A resource sharing marketplace platform includes a back-office server including a controller adapted to run a plurality of integrated systems and a wireless communication module in communication with the controller, wherein, the resource sharing marketplace platform is adapted to receive a request from a user, collect data from a plurality of acceptable service providers, and provide a response to the user.
Abstract:
A resource sharing marketplace platform includes a back-office server including a controller adapted to run a plurality of integrated systems and a wireless communication module in communication with the controller, wherein, the resource sharing marketplace platform is adapted to receive a request from a user, collect data from a plurality of acceptable service providers, and provide a response to the user.
Abstract:
A system for controlling an ego vehicle following a lead vehicle without vehicle-to-vehicle (V2V) communication includes sensors disposed on the ego vehicle and capturing ego and lead vehicle condition information. Control modules disposed in the ego vehicle each have a processor, memory, and input/output (I/O) ports. The I/O ports communicate with the one or more sensors. The memory stores control logic, and the processor executes the control logic, including a lead vehicle following (LVF) application. A first control logic receives a start input from a vehicle occupant via a human-machine interface (HMI) in communication with the I/O ports. A second control logic performs a feasibility analysis of ego and lead vehicle conditions according to feasibility conditions. A third control logic selectively initiates lead vehicle following. A fourth control logic continuously monitors feasibility of lead vehicle following, and fifth control logic selectively disables the LVF application upon receiving a disengagement command.
Abstract:
A computing system including a cooperative system architecture for cataloging, informing, sharing, and managing engineering assets within an organization includes a user management subsystem for creating a registered user profile associated with a specific user of the computing system. The registered user profile includes user metadata that provides identifying characteristics of the specific user. The computing system includes an asset management subsystem including an asset repository for recording one or more engineering assets. The asset management subsystem modifies the user metadata of the registered user profile in response to the specific user recording an engineering asset in the asset repository. The computing system includes a test management subsystem including a test repository for recording one or more test bill of materials.
Abstract:
A system for monitoring misbehavior of neighboring vehicles and initiating interventions within a vehicle includes a plurality of onboard vehicle sensors in communication with a system controller, the system controller adapted to identify at least one neighboring vehicle, tag the at least one neighboring vehicle with a unique identifier, monitor, with the plurality of onboard sensors, driving patterns of the at least one neighboring vehicle, classify the at least one neighboring vehicle, and initiate intervention action.
Abstract:
An electric mobility device communication system includes one or more electric mobility devices located within a service area, one or more remotely located client servers, and one or more central computers in wireless communication with the one or more electric mobility devices and the one or more remotely located client servers. The central computers execute instructions to receive a service request from one of the client servers. The service request represents a task that one of the electric mobility devices executes within the service area. The central computers determine a total number of electric mobility devices available within the service area. In response to determining more than one electric mobility device is available within the service area, the central computers identify an electric mobility device that executes the service request based on one or more electric mobility device selection criteria and transmit the service request to the electric mobility device.
Abstract:
A method of automatically developing an ontology for product function and failure mode documentation for an apparatus. The apparatus is identified. A function-flow model is generated for the identified apparatus for identifying a composite structure of the apparatus. Functions and failure modes associated with the identified apparatus are enumerated. Failure data is obtained from a plurality of heterogeneous data sources. A semantic similarity module is applied to the enumerated failures by comparing a plurality of documents between the data sources. The semantic similarity module bridges a variety of terms used in the heterogeneous data to describe a respective failure. Failures associated with the enumerated apparatus functions are extracted from the plurality of documents between heterogeneous data sources. A composite of related terminology is generated for each identified failure mode. A failure mode information document is generated utilizing the composite of related terminology for each identified failure mode.
Abstract:
A method for smart guided selection of networks includes detecting a wireless connectivity issue between. The in-vehicle network device is inside a vehicle, and the network access device may be inside or outside the vehicle. The method further includes receiving network data. The network data includes a list of available networks and network performance characteristics of each of the available networks. The method includes predicting, using machine learning, quality of service (QoS) metrics of the available networks along a trip of a vehicle and selecting a one or more networks from the list of available networks for one or more in-vehicle network devices based constraint solving on the predicted QoS metrics of the list available networks and QoS constraints.