Abstract:
Exemplary embodiments of the present invention provide a virtual dispatch assist system in which various types of Intelligent Agents are deployed (e.g., as part of a new CAD system architecture or as add-ons to existing CAD systems) to analyze vast amounts of historic operational data and provide various types of dispatch assist notifications and recommendations that can be used by a dispatcher or by the CAD system itself (e.g., autonomously) to make dispatch decisions.
Abstract:
Synchronization and resynchronization based on changes in a dead zone geofence include monitoring changes in a dead zone volume relative to a location of a mobile device in communication with a server system via a wireless communication service; determining that the dead zone volume is approaching the location of the mobile device such that the mobile device is predicted to enter the dead zone volume; determining data asset(s) that will be needed for offline work within the dead zone volume; automatically transmitting the data asset(s) from the server system to the mobile device via the wireless communication service prior to the mobile device entering the dead zone volume; determining that the mobile device has subsequently exited the dead zone volume; and automatically resynchronizing offline data stored locally by the mobile device while in the dead zone volume with corresponding data stored on the server system.
Abstract:
Predicting future wireless coverage based on weather includes receiving, for each of a plurality of mobile devices communicating wirelessly with a server system via a wireless communication service, mobile device location information and mobile device communication service information; receiving weather data; correlating the weather data with the mobile device location information and the mobile device communication service information to characterize the effect of weather on the wireless communication service; and generating a dead zone volume map defining a predicted future weather-related dead zone volume for the wireless communication service.
Abstract:
Illustrative embodiments disclose systems for sharing, among a group of consumers, data provided by a contributor. Some embodiments are well-suited for real-time distribution of data developing from ongoing incidents, and may be useful, for example, for emergency management. Illustrative embodiments provide a cloud-based system having tenants that are data contributors and data consumers. The system receives, from each contributor, both data and sharing rules that dictate whether and how that data may be shared, and with whom (which consumer or consumers), and then provide data to such consumer or consumers according to the sharing rules.
Abstract:
Embodiments of the present invention disclose a computer-implemented methodology for automatically indicating in a computer-aided dispatch system for a plurality of assignable participants, such as emergency vehicles, to be dispatched to one of a plurality of facilities, whether a facility is in a diverting status or a receiving status. A centralized database receives a change in status for a vehicle for use in determining the status of a facility. In response to receiving the change in status for the vehicle, the status information about the vehicle including a current status and a prior status is transmitted to one or more client programs. A client program receives the current status and the prior status of the vehicle and uses the current status and prior status of the vehicle along with a criteria set to determine if any of the plurality of facilities' status should be changed from receiving to diverting or from diverting to receiving.
Abstract:
Modifying 2.5D GIS data for a 2D GIS system involves displaying 3D graphic indicia on a display device, the graphic indicia being displayed in a geospatial manner as a function of 2.5D GIS data in a GIS database associated with a 2D GIS system, and further involves modifying the 2.5D GIS data in the GIS database using the 3D graphic indicia displayed on the display device, including mapping user selections relating to the 3D graphic indicia to 2D geo-location coordinates and modifying the 2.5D GIS data based on the 2D geo-location coordinates.
Abstract:
Various embodiments of the present disclosure provide methods, apparatuses, systems, computing devices, computing entities, and/or the like for developing, managing, and executing Python scripts in a containerized, cloud-based (e.g., serverless) multi-tenant manner. Certain embodiments include a Python Studio allowing users to develop and manage scripts and/or a Flex Python system allowing execution of scripts.